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41 Singer, Isaac Merritt
[br]b. 27 October 1811 Pittstown, New York, USAd. 23 July 1875 Torquay, Devonshire, England[br]American inventor of a sewing machine, and pioneer of mass production.[br]The son of a millwright, Singer was employed as an unskilled labourer at the age of 12, but later gained wide experience as a travelling machinist. He also found employment as an actor. On 16 May 1839, while living at Lockport, Illinois, he obtained his first patent for a rock-drilling machine, but he soon squandered the money he made. Then in 1849, while at Pittsburgh, he secured a patent for a wood-and metal-carving machine that he had begun five years previously; however, a boiler explosion in the factory destroyed his machine and left him penniless.Near the end of 1850 Singer was engaged to redesign the Lerow \& Blodgett sewing machine at the Boston shop of Orson C.Phelps, where the machine was being repaired. He built an improved version in eleven days that was sufficiently different for him to patent on 12 August 1851. He formed a partnership with Phelps and G.B. Zieber and they began to market the invention. Singer soon purchased Phelps's interest, although Phelps continued to manufacture the machines. Then Edward Clark acquired a one-third interest and with Singer bought out Zieber. These two, with dark's flair for promotion and marketing, began to create a company which eventually would become the largest manufacturer of sewing machines exported worldwide, with subsidiary factories in England.However, first Singer had to defend his patent, which was challenged by an earlier Boston inventor, Elias Howe. Although after a long lawsuit Singer had to pay royalties, it was the Singer machine which eventually captured the market because it could do continuous stitching. In 1856 the Great Sewing Machine Combination, the first important pooling arrangement in American history, was formed to share the various patents so that machines could be built without infringements and manufacture could be expanded without fear of litigation. Singer contributed his monopoly on the needle-bar cam with his 1851 patent. He secured twenty additional patents, so that his original straight-needle vertical design for lock-stitching eventually included such refinements as a continuous wheel-feed, yielding presser-foot, and improved cam for moving the needle-bar. A new model, introduced in 1856, was the first to be intended solely for use in the home.Initially Phelps made all the machines for Singer. Then a works was established in New York where the parts were assembled by skilled workers through filing and fitting. Each machine was therefore a "one-off" but Singer machines were always advertised as the best on the market and sold at correspondingly high prices. Gradually, more specialized machine tools were acquired, but it was not until long after Singer had retired to Europe in 1863 that Clark made the change to mass production. Sales of machines numbered 810 in 1853 and 21,000 ten years later.[br]Bibliography12 August 1851, US patent no. 8,294 (sewing machine)Further ReadingBiographies and obituaries have appeared in Appleton's Cyclopedia of America, Vol. V; Dictionary of American Biography, Vol XVII; New York Times 25 July 1875; Scientific American (1875) 33; and National Cyclopaedia of American Biography.D.A.Hounshell, 1984, From the American System to Mass Production 1800–1932. TheDevelopment of Manufacturing Technology in the United States, Baltimore (provides a thorough account of the development of the Singer sewing machine, the competition it faced from other manufacturers and production methods).RLH -
42 Poniatoff, Alexander Mathew
[br]b. 25 March 1892 Kazan District, Russiad. 24 October 1980[br]Russian (naturalized American in 1932) electrical engineer responsible for the development of the professional tape recorder and the first commercially-successful video tape recorder (VTR).[br]Poniatoff was educated at the University of Kazan, the Imperial College in Moscow, and the Technische Hochschule in Karlsruhe, gaining degrees in mechanical and electrical engineering. He was in Germany when the First World War broke out, but he managed to escape back to Russia, where he served as an Air Force pilot with the Imperial Russian Navy. During the Russian Revolution he was a pilot with the White Russian Forces, and escaped into China in 1920; there he found work as an assistant engineer in the Shanghai Power Company. In 1927 he immigrated to the USA, becoming a US citizen in 1932. He obtained a post in the research and development department of the General Electric Company in Schenectady, New York, and later at Dalmo Victor, San Carlos, California. During the Second World War he was involved in the development of airborne radar for the US Navy.In 1944, taking his initials to form the title, Poniatoff founded the AMPEX Corporation to manufacture components for the airborne radar developed at General Electric, but in 1946 he turned to the production of audio tape recorders developed from the German wartime Telefunken Magnetophon machine (the first tape recorder in the truest sense). In this he was supported by the entertainer Bing Crosby, who needed high-quality replay facilities for broadcasting purposes, and in 1947 he was able to offer a professional-quality product and the business prospered.With the rapid post-war boom in television broadcasting in the USA, a need soon arose for a video recorder to provide "time-shifting" of live TV programmes between the different US time zones. Many companies therefore endeavoured to produce a video tape recorder (VTR) using the same single-track, fixed-head, longitudinal-scan system used for audio, but the very much higher bandwidth required involved an unacceptably high tape-speed. AMPEX attempted to solve the problem by using twelve parallel tracks and a machine was demonstrated in 1952, but it proved unsatisfactory.The development team, which included Charles Ginsburg and Ray Dolby, then devised a four-head transverse-scan system in which a quadruplex head rotating at 14,400 rpm was made to scan across the width of a 2 in. (5 cm) tape with a tape-to-head speed of the order of 160 ft/sec (about 110 mph; 49 m/sec or 176 km/h) but with a longitudinal tape speed of only 15 in./sec (0.38 m/sec). In this way, acceptable picture quality was obtained with an acceptable tape consumption. Following a public demonstration on 14 April 1956, commercial produc-tion of studio-quality machines began to revolutionize the production and distribution of TV programmes, and the perfecting of time-base correctors which could stabilize the signal timing to a few nanoseconds made colour VTRs a practical proposition. However, AMPEX did not rest on its laurels and in the face of emerging competition from helical scan machines, where the tracks are laid diagonally on the tape, the company was able to demonstrate its own helical machine in 1957. Another development was the Videofile system, in which 250,000 pages of facsimile could be recorded on a single tape, offering a new means of archiving information. By 1986, quadruplex VTRs were obsolete, but Poniatoff's role in making television recording possible deserves a place in history.Poniatoff was President of AMPEX Corporation until 1955 and then became Chairman of the Board, a position he held until 1970.[br]Further ReadingA.Abrahamson, 1953, "A short history of television recording", Part I, JSMPTE 64:73; 1973, Part II, Journal of the Society of Motion Picture and Television Engineers, 82:188 (provides a fuller background).Audio Biographies, 1961, ed. G.A.Briggs, Wharfedale Wireless Works, pp. 255–61 (contains a few personal details about Poniatoff's escape from Germany to join the Russian Navy).E.Larsen, 1971, A History of Invention.Charles Ginsburg, 1981, "The horse or the cowboy. Getting television on tape", Journal of the Royal Television Society 18:11 (a brief account of the AMPEX VTR story).KF / GB-NBiographical history of technology > Poniatoff, Alexander Mathew
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43 shop
1) цех || цеховой2) завод, небольшой завод3) мастерская; станция (напр. обслуживания)•- assembly shop
- authorized service shop
- automotive tool-and-die shop
- auxiliary shop
- batch machine shop
- blank preparation shop
- blank production shop
- body shop
- bodyshell shop
- boring shop
- captive shop
- cellular shop
- CNC shop
- computerized machine shop
- contract shop
- conventional machine shop
- craft shop
- custom shop
- development shop
- engine shop
- engineering shop
- engineer-to-order shop
- erecting shop
- fabrication shop
- fettling shop
- fitter's shop
- fitting shop
- flow shop
- FMS shop
- focused shop
- forge shop
- forging shop
- gear shop
- hammer shop
- hardening shop
- heat-treatment shop
- heavy machine shop
- high-production shop
- home shop
- instrument shop
- job shop
- jobbing shop
- knocking-out and fettling shop
- laser machine shop
- machine shop
- machining shop
- main shop
- maintenance shop
- make-to-stock shop
- manual shop
- marking-off shop
- medium size shop
- metal-cutting shop
- metal-forming shop
- milling shop
- model shop
- mold shop
- molding shop
- mold-making shop
- NC machine shop
- NC shop
- nonproductive shop
- overhaul shop
- paint shop
- painting shop
- pattern shop
- planing shop
- plate shop
- plating shop
- press-shop
- production shop
- project shop
- repair shop
- repairing shop
- research-and-development shop
- roll shop
- roll-turning shop
- screw machine shop
- sheet-metal shop
- short-run job shop
- small job shop
- small size shop
- stamp shop
- stamping shop
- support shop
- tool-and-die shop
- toolmaker's shop
- turning shop
- vacuum metallizing shopEnglish-Russian dictionary of mechanical engineering and automation > shop
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44 system
1) система || системный2) система; установка; устройство; комплекс3) программа•- adaptive control system
- address selection system
- addressing system
- advice-giving system
- AI planning system
- AI system
- analog computing system
- analog-digital computing system
- analysis information system
- application system
- arabic number system
- arithmetic system
- assembly system
- asymmetrical system
- atomic system
- attached processor system
- audio system
- authoring system
- automated office system
- automatic block system
- automatic checkout system
- automatic control system
- automatic search system
- automatic test system
- automatically programmed system
- automatically taught system
- autoprogrammable system
- axiomatic system
- backup system
- bad system
- bang-bang system
- base-2 system
- basic system
- batch-processing system
- binary system
- binary-coded decimal system
- binary-number system
- biquinary system
- bit-mapped system
- bit-slice system
- black-board expert system
- block parity system
- buddy system
- business system
- bus-oriented system
- bussed system
- CAD system
- call-reply system
- carrier system
- cause-controlled system
- character recognition system
- character-reading system
- chargeback system
- check sum error-detecting system
- chip-layout system
- clock system
- closed loop system
- closed system
- co-authoring system
- code recognition system
- code system
- coded-decimal system
- code-dependent system
- code-insensitive system
- code-sensitive system
- code-transparent system
- coding system
- coincident selection system
- cold system
- color-coded system
- command system
- common-bus system
- communication data system
- communications-oriented system
- complete articulated system
- computer system
- computer-aided design system
- computer-aided system
- computer-based system
- computer-based weapon system
- computerized system
- computing system
- concatenated coding system
- concealment system
- conservative system
- contention system
- continuous presence system
- control system
- controlled system
- controlling system
- coordinate system
- cordonnier system
- costrained vision system
- cross system
- crossbar switch system
- data acquisition system
- data collection system
- data exchange system
- data flow system
- data gethering system
- data handling system
- data management system
- data preparation system
- data processing system
- data reduction system
- data retrieval system
- data storage system
- data system
- data transmission system
- database management system
- database support system
- data-managed system
- decimal number system
- decimal system
- decimal numeration system
- decision support system
- decision-aided system
- decision-making system
- decision-support system
- decision-taking system
- decoding selection system
- decomposable system
- dedicated system
- degenerate system
- design library support system
- design-automation system
- design-verification system
- development support system
- development system
- digital communication system
- digital computing system
- direct-current system
- directly coupled system
- discrete system
- discrete-continuous system
- disk operating system
- display system
- distributed database management system
- distributed function system
- distributed intelligence system
- distributed parameter system
- distributed system
- distribution system
- double intermediate tape system
- down system
- drafting system
- dual system
- dual-computer system
- dual-processor system
- duodecimal number system
- duodecimal system
- duotricenary number system
- duotricenary system
- duplexed computer system
- duplex computer system
- dyadic number system
- dyadic system
- dynamic mapping system
- dynamic scene system
- dynamic support system
- electronic data processing system
- electronic sorting system
- encoding system
- equipment adapted data system
- erasing system
- error-controlled system
- error-correcting system
- error-detecting system
- executive file-control system
- executive system
- expert control system
- expert support system
- expert system
- expert-planning system
- externally pulsed system
- fail-safe system
- fail-soft system
- fan-out system
- fault-tolerant system
- feasible system
- federated system
- feed system
- feedback system
- feedforward control system
- fiche retrieval system
- file control system
- file system
- fixed-lenght record system
- fixed-point system
- fixed-radix numeration system
- floating-point system
- fluid transport system
- follow-up system
- forgiving system
- front-end system
- fuzzy expert system
- generic expert system
- geographically distributed system
- goal-seeking system
- good system
- graceful degradation system
- graphic data system
- graphics display system
- graphics system
- help system
- heterogeneous system
- hexadecimal number system
- hexadecimal system - host system
- hostless system
- host-satellite system
- human visual system
- hunting system
- hypermedia system
- imaging system
- incremental system
- independent system
- indirectly coupled system
- information storage and retrieval system
- information retrieval system
- information handling system
- information management system
- information processing system
- information system
- information-feedback system
- in-plant system
- input/output control system
- instruction system
- instrumentation management system
- integrated system
- intelligence system
- interactive control system
- interactive system
- intercommunicating system
- interlock system
- internal number system
- internal system
- Internet-enabled system
- interrupt system
- isolated system
- kernel system
- key-to-disk/tape system
- knowledge base management system
- knowledge system
- knowledge-based system
- large-scale computing system
- laser communication system
- layered control system - lexicon-driven system
- library reference system
- local-network system
- long-haul system
- lumped-parameter system
- machine tool control system
- machine-limited system
- machine-oriented programming system
- macroinstruction system
- macro system
- magnetic memory system
- magnetic recording system
- magnetic tape plotting system
- mail message system
- mail system
- mailbox system
- management information system
- man-machine system
- mapping system
- map-reading system
- mass memory system
- mass storage system
- master/slave system
- matrix memory system
- memory driver system
- memory system
- message handling system
- message system
- microcomputer system
- microfilm printing system
- midsplit system
- MIMO system
- mixed-base numbering system
- mixed-base number system
- mixed-radix numeration system
- model-based expert system
- modular system
- monitoring system
- monitor system
- mosaic system - multicomputer system
- multidimensional system
- multifrequency system
- multilevel storage system
- multiloop system
- multimaster communication system
- multimicroprocessor system
- multiple computation system
- multiple-bus system
- multiple-coincident magnetic storage system
- multiple-output control system
- multiplex system
- multiport system
- multiprocessing system
- multiprocessor system
- multiprogramming computer system
- multiprogramming system
- multisite system
- multispeaker system
- multistable system
- multitasking operating system
- multiterminal system
- multiuser computer system
- multiuser system
- multiuser operating system
- multivariable system
- multivariate system
- negative-base number representation system
- negative-base number system
- network operating system
- node-replicated system
- noncomputerized system
- nonconsistently based number system
- nondegenerate system
- number representation system
- numbering system
- number system
- numeral system
- numeration system
- numerical system
- octal number system
- octal system
- office automation system
- off-line system
- on-demand system
- one-level storage system
- one-loop system
- one-over-one address system
- on-line system
- open-ended system
- open system
- open-loop system
- operating system
- operational system
- optical memory system
- overdetermined system
- overload-hold system
- page-on-demand system
- panelboard system
- paper-tape system
- parameter-driven expert system
- pattern recognition system
- peek-a-boo system
- peripheral system
- pipeline system
- polled system
- polymorphic system
- polyphase system
- portable system
- positional representation system
- Post-production system
- priority scheduling system
- priority system
- procedural expert system
- process control system
- processor-sharing system
- production control system
- production system
- program system
- programming system
- protection system
- pulse system
- pulse-or-no-pulse system
- pulse-signal system
- punch card computer system
- pure-binary numeration system
- purposeful system
- quadruplex system
- question-answering system
- queueing system
- queue system
- radix numbering system
- radix number system
- reactive system
- reading system
- real-time expert system
- real-time operating system
- real-time system
- reasoning system
- recognition system
- recording system
- recovery system
- reduntant number system
- reduntant system
- reflected binary number system
- reflected binary system
- refreshment system
- remote-access system
- replicating system
- representation system
- request-repeat system
- rerecording system
- residue number system
- residue system
- resource-sharing system
- restorable system
- retrieval system
- retrieval-only system - robotic system
- robot system
- rule-based expert system
- rule-based system
- scalable system
- selection system
- self-adapting system
- self-adjusting system
- self-aligning system
- self-balancing system
- self-check system
- self-contained system
- self-correcting system
- self-descriptive system
- self-learning system
- self-organizing system
- self-sustained oscillation system
- self-test system
- sensor-based system
- sequential scheduling system
- sexadecimal number system
- sexadecimal system
- shared-files system
- shell expert system
- silicon-development system
- simplex system
- single-drive system
- single-inheritance system
- single-phase clock system
- single-site system
- single-user computer system
- SISO system
- skeletal expert system
- slave system
- soft-sectored disk system
- software system
- sound system
- source code control system
- source-destination system
- space-division system
- stabilizing system
- stable system
- stand-alone system
- start-stop system
- state-determined system
- stepped start-stop system
- stereo system
- stochastically disturbed system
- storage system
- stripped-down expert system
- subsplit system
- supervisor control system
- switching system
- symbolic assembly system
- syntactical system
- system explanation system
- system of logic
- system of notation
- system with delay
- system with time lag
- tabulating system
- tape data processing system
- tape drive system
- tape handling system
- tape operating system
- tape plotting system
- tape resident system
- tape-oriented system
- target system
- taught system
- telecommunictions system
- telecontrol system
- terminal system
- ternary number system
- ternary system
- test system
- testbed system
- text-to-speech system
- time-division system
- time-pattern control system
- time-shared system
- time-shared-bus system
- time-sharing system
- timing system
- total system
- translating system
- translation system
- translator writing system
- transmitting system
- tree-structured system
- trusted computer system
- two-failure mode system
- two-level return system
- two-level system
- two-phase clock system
- ultrastable system
- Unified system
- uninterruptible power system
- uniprocessor system
- unrestorable system
- unstable system
- up system
- variable-lenght record system
- virtual system
- virtual-memory operating system
- vision system
- visual system
- voice/audio processing system
- voice-response system
- volunteer system
- weighted number system
- weighted system
- writing system
- xerox copy system
- zero-one systemEnglish-Russian dictionary of computer science and programming > system
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45 Appleby, John F.
SUBJECT AREA: Agricultural and food technology[br]b. 1840 New York, US Ad. ? USA[br]American inventor of the knotting mechanism used on early binders and still found on modern baling machines.[br]As a young man John Appleby worked as a labourer for a farmer near Whitewater in Wisconsin. He was 18 when the farmer bought a new reaping machine. Appleby believed that the concept had not been progressed far enough and that the machine should be able to bind sheaths as well as to cut the corn. It is claimed that while watching a dog playing with a skipping rope he noticed a particular knot created as the dog removed its head from the loop that had passed over it, and recognized the potential of the way in which this knot had been formed. From a piece of apple wood he carved a device that would produce the knot he had seen. A local school teacher backed Appleby's idea with a $50 loan, but the American Civil War and service in the Union Army prevented any further development until 1869 when he took out a patent on a wire-tying binder. A number of the devices were made for him by a company in Beloit. Trials of wire binders held in 1873 highlighted the danger of small pieces of wire caught up in the hay leading to livestock losses. Appleby looked again at the possibility of twine. In 1875 he successfully operated a machine and the following season four were in operation. A number of other developments, not least Behel's "bill hook" knotting device, were also to have an influence in the final development of Appleby's twine-tying binder. As so often happens, it was the vision of the entrepreneur which ultimately led to the success of Appleby's device. In 1877 Appleby persuaded William Deering to produce and market his binder, and 3,000 twine binders, together with the twine produced for them, were put on the market in 1880, with immediate success. Over the next dozen years all harvesting-machine manufacturers adopted the idea, under licence to Appleby.[br]Further ReadingG.Quick and W.Buchele, 1978, The Grain Harvesters, American Society of Agricultural Engineers (provides an account of the development of harvesting machinery and the various tying devices developed for them).1927, "Twine knotter history", Wisconsin Magazine of History (a more specific account).AP -
46 Johnson, Eldridge Reeves
SUBJECT AREA: Recording[br]b. 18 February 1867 Wilmington, Delaware, USAd. 14 November 1945 Moorestown, New Jersey, USA[br]American industrialist, founder and owner of the Victor Talking Machine Company; developer of many basic constructions in mechanical sound recording and the reproduction and manufacture of gramophone records.[br]He graduated from the Dover Academy (Delaware) in 1882 and was apprenticed in a machine-repair firm in Philadelphia and studied in evening classes at the Spring Garden Institute. In 1888 he took employment in a small Philadelphia machine shop owned by Andrew Scull, specializing in repair and bookbinding machinery. After travels in the western part of the US, in 1891 he became a partner in Scull \& Johnson, Manufacturing Machinists, and established a further company, the New Jersey Wire Stitching Machine Company. He bought out Andrew Scull's interest in October 1894 (the last instalment being paid in 1897) and became an independent general machinist. In 1896 he had perfected a spring motor for the Berliner flat-disc gramophone, and he started experimenting with a more direct method of recording in a spiral groove: that of cutting in wax. Co-operation with Berliner eventually led to the incorporation of the Victor Talking Machine Company in 1901. The innumerable court cases stemming from the fact that so many patents for various elements in sound recording and reproduction were in very many hands were brought to an end in 1903 when Johnson was material in establishing cross-licencing agreements between Victor, Columbia Graphophone and Edison to create what is known as a patent pool. Early on, Johnson had a thorough experience in all matters concerning the development and manufacture of both gramophones and records. He made and patented many major contributions in all these fields, and his approach was very business-like in that the contribution to cost of each part or process was always a decisive factor in his designs. This attitude was material in his consulting work for the sister company, the Gramophone Company, in London before it set up its own factories in 1910. He had quickly learned the advantages of advertising and of providing customers with durable equipment and records. This motivation was so strong that Johnson set up a research programme for determining the cause of wear in records. It turned out to depend on groove profile, and from 1911 one particular profile was adhered to and processes for transforming the grooves of valuable earlier records were developed. Without precise measuring instruments, he used the durability as the determining factor. Johnson withdrew more and more to the role of manager, and the Victor Talking Machine Company gained such a position in the market that the US anti-trust legislation was used against it. However, a generation change in the Board of Directors and certain erroneous decisions as to product line started a decline, and in February 1926 Johnson withdrew on extended sick leave: these changes led to the eventual sale of Victor. However, Victor survived due to the advent of radio and the electrification of replay equipment and became a part of Radio Corporation of America. In retirement Johnson took up various activities in the arts and sciences and financially supported several projects; his private yacht was used in 1933 in work with the Smithsonian Institution on a deep-sea hydrographie and fauna-collecting expedition near Puerto Rico.[br]BibliographyJohnson's patents were many, and some were fundamental to the development of the gramophone, such as: US patent no. 650,843 (in particular a recording lathe); US patent nos. 655,556, 655,556 and 679,896 (soundboxes); US patent no. 681,918 (making the original conductive for electroplating); US patent no. 739,318 (shellac record with paper label).Further ReadingMrs E.R.Johnson, 1913, "Eldridge Reeves Johnson (1867–1945): Industrial pioneer", manuscript (an account of his early experience).E.Hutto, Jr, "Emile Berliner, Eldridge Johnson, and the Victor Talking Machine Company", Journal of AES 25(10/11):666–73 (a good but brief account based on company information).E.R.Fenimore Johnson, 1974, His Master's Voice was Eldridge R.Johnson, Milford, Del.(a very personal biography by his only son).GB-NBiographical history of technology > Johnson, Eldridge Reeves
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47 Murray, Matthew
SUBJECT AREA: Land transport, Mechanical, pneumatic and hydraulic engineering, Railways and locomotives, Steam and internal combustion engines[br]b. 1765 near Newcastle upon Tyne, Englandd. 20 February 1826 Holbeck, Leeds, England[br]English mechanical engineer and steam engine, locomotive and machine-tool pioneer.[br]Matthew Murray was apprenticed at the age of 14 to a blacksmith who probably also did millwrighting work. He then worked as a journeyman mechanic at Stockton-on-Tees, where he had experience with machinery for a flax mill at Darlington. Trade in the Stockton area became slack in 1788 and Murray sought work in Leeds, where he was employed by John Marshall, who owned a flax mill at Adel, located about 5 miles (8 km) from Leeds. He soon became Marshall's chief mechanic, and when in 1790 a new mill was built in the Holbeck district of Leeds by Marshall and his partner Benyon, Murray was responsible for the installation of the machinery. At about this time he took out two patents relating to improvements in textile machinery.In 1795 he left Marshall's employment and, in partnership with David Wood (1761– 1820), established a general engineering and millwrighting business at Mill Green, Holbeck. In the following year the firm moved to a larger site at Water Lane, Holbeck, and additional capital was provided by two new partners, James Fenton (1754–1834) and William Lister (1796–1811). Lister was a sleeping partner and the firm was known as Fenton, Murray \& Wood and was organized so that Fenton kept the accounts, Wood was the administrator and took charge of the workshops, while Murray provided the technical expertise. The factory was extended in 1802 by the construction of a fitting shop of circular form, after which the establishment became known as the "Round Foundry".In addition to textile machinery, the firm soon began the manufacture of machine tools and steam-engines. In this field it became a serious rival to Boulton \& Watt, who privately acknowledged Murray's superior craftsmanship, particularly in foundry work, and resorted to some industrial espionage to discover details of his techniques. Murray obtained patents for improvements in steam engines in 1799, 1801 and 1802. These included automatic regulation of draught, a mechanical stoker and his short-D slide valve. The patent of 1801 was successfully opposed by Boulton \& Watt. An important contribution of Murray to the development of the steam engine was the use of a bedplate so that the engine became a compact, self-contained unit instead of separate components built into an en-gine-house.Murray was one of the first, if not the very first, to build machine tools for sale. However, this was not the case with the planing machine, which he is said to have invented to produce flat surfaces for his slide valves. Rather than being patented, this machine was kept secret, although it was apparently in use before 1814.In 1812 Murray was engaged by John Blenkinsop (1783–1831) to build locomotives for his rack railway from Middleton Colliery to Leeds (about 3 1/2 miles or 5.6 km). Murray was responsible for their design and they were fitted with two double-acting cylinders and cranks at right angles, an important step in the development of the steam locomotive. About six of these locomotives were built for the Middleton and other colliery railways and some were in use for over twenty years. Murray also supplied engines for many early steamboats. In addition, he built some hydraulic machinery and in 1814 patented a hydraulic press for baling cloth.Murray's son-in-law, Richard Jackson, later became a partner in the firm, which was then styled Fenton, Murray \& Jackson. The firm went out of business in 1843.[br]Principal Honours and DistinctionsSociety of Arts Gold Medal 1809 (for machine for hackling flax).Further ReadingL.T.C.Rolt, 1962, Great Engineers, London (contains a good short biography).E.Kilburn Scott (ed.), 1928, Matthew Murray, Pioneer Engineer, Leeds (a collection of essays and source material).C.F.Dendy Marshall, 1953, A History of Railway Locomotives Down to the End of theYear 1831, London.L.T.C.Rolt, 1965, Tools for the Job, London; repub. 1986 (provides information on Murray's machine-tool work).Some of Murray's correspondence with Simon Goodrich of the Admiralty has been published in Transactions of the Newcomen Society 3 (1922–3); 6(1925–6); 18(1937– 8); and 32 (1959–60).RTS -
48 Pratt, Francis Ashbury
[br]b. 15 February 1827 Woodstock, Vermont, USAd. 10 February 1902 Hartford, Connecticut, USA[br]American mechanical engineer and machine-tool manufacturer.[br]Francis A.Pratt served an apprenticeship as a machinist with Warren Aldrich, and on completing it in 1848 he entered the Gloucester Machine Works as a journeyman machinist. From 1852 to 1854 he worked at the Colt Armory in Hartford, Connecticut, where he met his future partner, Amos Whitney. He then became Superintendent of the Phoenix Iron Works, also at Hartford and run by George S.Lincoln \& Company. While there he designed the well-known "Lincoln" miller, which was first produced in 1855. This was a development of the milling machine built by Robbins \& Lawrence and designed by F.W. Howe, and incorporated a screw drive for the table instead of the rack and pinion used in the earlier machine.Whitney also moved to the Phoenix Iron Works, and in 1860 the two men started in a small way doing machine work on their own account. In 1862 they took a third partner, Monroe Stannard, and enlarged their workshop. The business continued to expand, but Pratt and Whitney remained at the Phoenix Iron Works until 1864 and in the following year they built their first new factory. The Pratt \& Whitney Company was incorporated in 1869 with a capital of $350,000, F.A.Pratt being elected President. The firm specialized in making machine tools and tools particularly for the armament industry. In the 1870s Pratt made no less than ten trips to Europe gaining orders for equipping armouries in many different countries. Pratt \& Whitney was one of the leading firms developing the system of interchangeable manufacture which led to the need to establish national standards of measurement. The Rogers-Bond Comparator, developed with the backing of Pratt \& Whitney, played an important part in the establishment of these standards, which formed the basis of the gauges of many various types made by the firm. Pratt remained President of the company until 1898, after which he served as their Consulting Engineer for a short time before retiring from professional life. He was granted a number of patents relating to machine tools. He was a founder member of the American Society of Mechanical Engineers in 1880 and was elected a vice-president in 1881. He was an alderman of the city of Hartford.[br]Principal Honours and DistinctionsVice-President, American Society of Mechanical Engineers 1881.Further ReadingJ.W.Roe, 1916, English and American Tool Builders, New Haven; reprinted 1926, New York, and 1987, Bradley, 111. (describes the origin and development of the Pratt \& Whitney Company).RTS -
49 Wolseley, Frederick York
[br]b. 1837 Co. Dublin, Irelandd. 1899 England[br]Irish inventor who developed the first practical sheep shears and was also involved in the development of the car which bore his name.[br]The credit for the first design of sheep shears lies with James Higham, who patented the idea in 1868. However, its practical and commercial success lay in the work of a number of people, to each of whom Frederick Wolseley provides the connecting link.One of three brothers, he emigrated to Australia in 1854 and worked in New South Wales for five years. In 1867 he produced a working model of mechanical sheep shears, but it took a further five years before he actually produced a machine, whilst working as Manager of a sheep station in Victoria. In the intervening period it is possible that he visited America and Britain. On returning to Australia in 1872 he and Robert Savage produced another working model in a workshop in Melbourne. Four years later, by which time Wolseley had acquired the "Euroka" sheep station at Walgett, they tested the model and in 1877 acquired joint patent rights. The machine was not successful, and in 1884 another joint patent, this time with Robert Pickup, was taken out on a cog-gear universal joint. Development was to take several more years, during which a highly skilled blacksmith by the name of George Gray joined the team. It is likely that he was the first person to remove a fleece from a sheep mechanically. Finally, the last to be involved in the development of the shears was another Englishman, John Howard, who emigrated to Australia in 1883 with the intention of developing a shearing machine based on his knowledge of existing horse clippers. Wolseley purchased Howard's patent rights and gave him a job. The first public demonstration of the shears was held at the wool stores of Goldsborough \& Co. of Melbourne. Although the hand shearers were faster, when the three sheep that had been clipped by them were re-shorn using the mechanical machine, a further 2 lb (900 g) of wool was removed.Wolseley placed the first manufacturing order with A.P.Parks, who employed a young Englishman by the name of Herbert Austin. A number of improvements to the design were suggested by Austin, who acquired patents and assigned them to Wolseley in 1895 in return for shares in the company. Austin returned to England to run the Wolseley factory in Birmingham. He also built there the first car to carry the Wolseley name, and subsequently opened a car factory carrying his own name.Wolseley resigned as Managing Director of the company in 1894 and died five years later.[br]Further ReadingF.Wheelhouse, 1966, Digging Stock to Rotary Hoe: Men and Machines in Rural Australia (provides a detailed account of Wolseley's developments).APBiographical history of technology > Wolseley, Frederick York
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50 Clark, Edward
SUBJECT AREA: Domestic appliances and interiors[br]fl. 1850s New York State, USA[br]American co-developer of mass-production techniques at the Singer sewing machine factory.[br]Born in upstate New York, where his father was a small manufacturer, Edward Clark attended college at Williams and graduated in 1831. He became a lawyer in New York City and from then on lived either in the city or on his rural estate near Cooperstown in upstate New York. After a series of share manipulations, Clark acquired a one-third interest in Isaac M. Singer's company. They soon bought out one of Singer's earlier partners, G.B.Zeiber, and in 1851, under the name of I.M.Singer \& Co., they set up a permanent sewing machine business with headquarters in New York.The success of their firm initially rested on marketing. Clark introduced door-to-door sales-people and hire-purchase for their sewing machines in 1856 ($50 cash down, or $100 with a cash payment of $5 and $3 a month thereafter). He also trained women to demonstrate to potential customers the capabilities of the Singer sewing machine. At first their sewing machines continued to be made in the traditional way, with the parts fitted together by skilled workers through hand filing and shaping so that the parts would fit only onto one machine. This resembled European practice rather than the American system of manufacture that had been pioneered in the armouries in that country. In 1856 Singer brought out their first machine intended exclusively for home use, and at the same time manufacturing capacity was improved. Through increased sales, a new factory was built in 1858–9 on Mott Street, New York, but it soon became inadequate to meet demand.In 1863 the Singer company was incorporated as the Singer Manufacturing Co. and began to modernize its production methods with special jigs and fixtures to help ensure uniformity. More and more specialized machinery was built for making the parts. By 1880 the factory, then at Elizabethport, New Jersey, was jammed with automatic and semi-automatic machine tools. In 1882 the factory was producing sewing machines with fully interchangeable parts that did not require hand fitting in assembly. Production rose from 810 machines in 1853 to half a million in 1880. A new family model was introduced in 1881. Clark had succeeded Singer, who died in 1875, as President of the company, but he retired in 1882 after he had seen through the change to mass production.[br]Further ReadingNational Cyclopaedia of American Biography.D.A.Hounshell, 1984, From the American System to Mass Production, 1800–1932. The Development of Manufacturing Technology in the United States, Baltimore (a thorough account of Clark's role in the development of Singer's factories).F.B.Jewell, 1975, Veteran Sewing Machines. A Collector's Guide, Newton Abbot.RLH -
51 Edison, Thomas Alva
SUBJECT AREA: Architecture and building, Automotive engineering, Electricity, Electronics and information technology, Metallurgy, Photography, film and optics, Public utilities, Recording, Telecommunications[br]b. 11 February 1847 Milan, Ohio, USAd. 18 October 1931 Glenmont[br]American inventor and pioneer electrical developer.[br]He was the son of Samuel Edison, who was in the timber business. His schooling was delayed due to scarlet fever until 1855, when he was 8½ years old, but he was an avid reader. By the age of 14 he had a job as a newsboy on the railway from Port Huron to Detroit, a distance of sixty-three miles (101 km). He worked a fourteen-hour day with a stopover of five hours, which he spent in the Detroit Free Library. He also sold sweets on the train and, later, fruit and vegetables, and was soon making a profit of $20 a week. He then started two stores in Port Huron and used a spare freight car as a laboratory. He added a hand-printing press to produce 400 copies weekly of The Grand Trunk Herald, most of which he compiled and edited himself. He set himself to learn telegraphy from the station agent at Mount Clements, whose son he had saved from being run over by a freight car.At the age of 16 he became a telegraphist at Port Huron. In 1863 he became railway telegraphist at the busy Stratford Junction of the Grand Trunk Railroad, arranging a clock with a notched wheel to give the hourly signal which was to prove that he was awake and at his post! He left hurriedly after failing to hold a train which was nearly involved in a head-on collision. He usually worked the night shift, allowing himself time for experiments during the day. His first invention was an arrangement of two Morse registers so that a high-speed input could be decoded at a slower speed. Moving from place to place he held many positions as a telegraphist. In Boston he invented an automatic vote recorder for Congress and patented it, but the idea was rejected. This was the first of a total of 1180 patents that he was to take out during his lifetime. After six years he resigned from the Western Union Company to devote all his time to invention, his next idea being an improved ticker-tape machine for stockbrokers. He developed a duplex telegraphy system, but this was turned down by the Western Union Company. He then moved to New York.Edison found accommodation in the battery room of Law's Gold Reporting Company, sleeping in the cellar, and there his repair of a broken transmitter marked him as someone of special talents. His superior soon resigned, and he was promoted with a salary of $300 a month. Western Union paid him $40,000 for the sole rights on future improvements on the duplex telegraph, and he moved to Ward Street, Newark, New Jersey, where he employed a gathering of specialist engineers. Within a year, he married one of his employees, Mary Stilwell, when she was only 16: a daughter, Marion, was born in 1872, and two sons, Thomas and William, in 1876 and 1879, respectively.He continued to work on the automatic telegraph, a device to send out messages faster than they could be tapped out by hand: that is, over fifty words per minute or so. An earlier machine by Alexander Bain worked at up to 400 words per minute, but was not good over long distances. Edison agreed to work on improving this feature of Bain's machine for the Automatic Telegraph Company (ATC) for $40,000. He improved it to a working speed of 500 words per minute and ran a test between Washington and New York. Hoping to sell their equipment to the Post Office in Britain, ATC sent Edison to England in 1873 to negotiate. A 500-word message was to be sent from Liverpool to London every half-hour for six hours, followed by tests on 2,200 miles (3,540 km) of cable at Greenwich. Only confused results were obtained due to induction in the cable, which lay coiled in a water tank. Edison returned to New York, where he worked on his quadruplex telegraph system, tests of which proved a success between New York and Albany in December 1874. Unfortunately, simultaneous negotiation with Western Union and ATC resulted in a lawsuit.Alexander Graham Bell was granted a patent for a telephone in March 1876 while Edison was still working on the same idea. His improvements allowed the device to operate over a distance of hundreds of miles instead of only a few miles. Tests were carried out over the 106 miles (170 km) between New York and Philadelphia. Edison applied for a patent on the carbon-button transmitter in April 1877, Western Union agreeing to pay him $6,000 a year for the seventeen-year duration of the patent. In these years he was also working on the development of the electric lamp and on a duplicating machine which would make up to 3,000 copies from a stencil. In 1876–7 he moved from Newark to Menlo Park, twenty-four miles (39 km) from New York on the Pennsylvania Railway, near Elizabeth. He had bought a house there around which he built the premises that would become his "inventions factory". It was there that he began the use of his 200- page pocket notebooks, each of which lasted him about two weeks, so prolific were his ideas. When he died he left 3,400 of them filled with notes and sketches.Late in 1877 he applied for a patent for a phonograph which was granted on 19 February 1878, and by the end of the year he had formed a company to manufacture this totally new product. At the time, Edison saw the device primarily as a business aid rather than for entertainment, rather as a dictating machine. In August 1878 he was granted a British patent. In July 1878 he tried to measure the heat from the solar corona at a solar eclipse viewed from Rawlins, Wyoming, but his "tasimeter" was too sensitive.Probably his greatest achievement was "The Subdivision of the Electric Light" or the "glow bulb". He tried many materials for the filament before settling on carbon. He gave a demonstration of electric light by lighting up Menlo Park and inviting the public. Edison was, of course, faced with the problem of inventing and producing all the ancillaries which go to make up the electrical system of generation and distribution-meters, fuses, insulation, switches, cabling—even generators had to be designed and built; everything was new. He started a number of manufacturing companies to produce the various components needed.In 1881 he built the world's largest generator, which weighed 27 tons, to light 1,200 lamps at the Paris Exhibition. It was later moved to England to be used in the world's first central power station with steam engine drive at Holborn Viaduct, London. In September 1882 he started up his Pearl Street Generating Station in New York, which led to a worldwide increase in the application of electric power, particularly for lighting. At the same time as these developments, he built a 1,300yd (1,190m) electric railway at Menlo Park.On 9 August 1884 his wife died of typhoid. Using his telegraphic skills, he proposed to 19-year-old Mina Miller in Morse code while in the company of others on a train. He married her in February 1885 before buying a new house and estate at West Orange, New Jersey, building a new laboratory not far away in the Orange Valley.Edison used direct current which was limited to around 250 volts. Alternating current was largely developed by George Westinghouse and Nicola Tesla, using transformers to step up the current to a higher voltage for long-distance transmission. The use of AC gradually overtook the Edison DC system.In autumn 1888 he patented a form of cinephotography, the kinetoscope, obtaining film-stock from George Eastman. In 1893 he set up the first film studio, which was pivoted so as to catch the sun, with a hinged roof which could be raised. In 1894 kinetoscope parlours with "peep shows" were starting up in cities all over America. Competition came from the Latham Brothers with a screen-projection machine, which Edison answered with his "Vitascope", shown in New York in 1896. This showed pictures with accompanying sound, but there was some difficulty with synchronization. Edison also experimented with captions at this early date.In 1880 he filed a patent for a magnetic ore separator, the first of nearly sixty. He bought up deposits of low-grade iron ore which had been developed in the north of New Jersey. The process was a commercial success until the discovery of iron-rich ore in Minnesota rendered it uneconomic and uncompetitive. In 1898 cement rock was discovered in New Village, west of West Orange. Edison bought the land and started cement manufacture, using kilns twice the normal length and using half as much fuel to heat them as the normal type of kiln. In 1893 he met Henry Ford, who was building his second car, at an Edison convention. This started him on the development of a battery for an electric car on which he made over 9,000 experiments. In 1903 he sold his patent for wireless telegraphy "for a song" to Guglielmo Marconi.In 1910 Edison designed a prefabricated concrete house. In December 1914 fire destroyed three-quarters of the West Orange plant, but it was at once rebuilt, and with the threat of war Edison started to set up his own plants for making all the chemicals that he had previously been buying from Europe, such as carbolic acid, phenol, benzol, aniline dyes, etc. He was appointed President of the Navy Consulting Board, for whom, he said, he made some forty-five inventions, "but they were pigeonholed, every one of them". Thus did Edison find that the Navy did not take kindly to civilian interference.In 1927 he started the Edison Botanic Research Company, founded with similar investment from Ford and Firestone with the object of finding a substitute for overseas-produced rubber. In the first year he tested no fewer than 3,327 possible plants, in the second year, over 1,400, eventually developing a variety of Golden Rod which grew to 14 ft (4.3 m) in height. However, all this effort and money was wasted, due to the discovery of synthetic rubber.In October 1929 he was present at Henry Ford's opening of his Dearborn Museum to celebrate the fiftieth anniversary of the incandescent lamp, including a replica of the Menlo Park laboratory. He was awarded the Congressional Gold Medal and was elected to the American Academy of Sciences. He died in 1931 at his home, Glenmont; throughout the USA, lights were dimmed temporarily on the day of his funeral.[br]Principal Honours and DistinctionsMember of the American Academy of Sciences. Congressional Gold Medal.Further ReadingM.Josephson, 1951, Edison, Eyre \& Spottiswode.R.W.Clark, 1977, Edison, the Man who Made the Future, Macdonald \& Jane.IMcN -
52 EDM
1) Военный термин: Enterprise Data Model, electronic distance measuring, emergency destruction of munitions, engineering design memorandum, engineering development model, engineering drafting manual, equipment deadlined for maintenance, exploratory development model2) Техника: electric detonator, electric discharge machining, electric drive mechanism, electrical disintegration machining, electro-discharge machining, electronic drafting machine, engineering design machine, engineering drafting machine, external device monitoring3) Автомобильный термин: electronic distributor modulator (Ford)4) Металлургия: ЭМО (электроразрядная механическая обработка)5) Музыка: Electronic Dance Music6) Оптика: electron discharge machining7) Сокращение: Electro Discharge Machining, ElectroDischarge Machine, Electronic Distance Measurer, Engine Data Multiplexer, Engineering Data Management, Engineering Disposition Management (USAF)8) Электроника: Electronic design machining, Electronic Data Manager9) Вычислительная техника: Extended Data Message, electronic document management, enterprise document management, администратор дескрипторов окружения (environmental descriptor manager)10) Нефть: electronic distance meter11) Деловая лексика: Electronic Document Manager, Electronic Drawing Management12) Глоссарий компании Сахалин Энерджи: Система Электронного Обмена Документами, электродетонатор13) Полимеры: N, N1-ethylene dimaleimide, electrical discharge machining14) Автоматика: electrical discharge machine, электроэрозионный станок15) Макаров: МКР, метод конечных разностей16) SAP.тех. модель данных предприятия17) Нефть и газ: электрический детонатор18) МИД: electrical discharge machines19) Программное обеспечение: Enterprise Desktop Manager -
53 stop
1. transitive verb,- pp-1) (not let move further) anhalten [Person, Fahrzeug]; aufhalten [Fortschritt, Verkehr, Feind]; verstummen lassen (geh.) [Gerücht, Geschichte, Lüge]; [Tormann:] halten [Ball]stop thief! — haltet den Dieb!
there's no stopping somebody — jemand lässt sich nicht aufhalten
2) (not let continue) unterbrechen [Redner, Spiel, Gespräch, Vorstellung]; beenden [Krieg, Gespräch, Treffen, Spiel, Versuch, Arbeit]; stillen [Blutung]; stoppen [Produktion, Uhr, Streik, Inflation]; einstellen [Handel, Zahlung, Lieferung, Besuche, Subskriptionen, Bemühungen]; abstellen [Strom, Gas, Wasser, Missstände]; beseitigen [Schmerz]stop that/that nonsense/that noise! — hör damit/mit diesem Unsinn/diesem Lärm auf!
bad light stopped play — (Sport) das Spiel wurde wegen schlechter Lichtverhältnisse abgebrochen
stop the show — (fig.) Furore machen
just you try and stop me! — versuch doch, mich daran zu hindern!
stop smoking/crying — aufhören zu rauchen/weinen
he tried to stop us parking — er versuchte uns am Parken zu hindern
he phoned his mother to stop her [from] worrying — er rief seine Mutter an, damit sie sich keine Sorgen machte
stop something [from] happening — verhindern, dass etwas geschieht
4) (cause to cease working) abstellen [Maschine usw.]; [Streikende:] stilllegen [Betrieb]5) (block up) zustopfen [Loch, Öffnung, Riß, Ohren]; verschließen [Wasserhahn, Rohr, Schlauch, Flasche]6) (withhold) streichen2. intransitive verb,stop [payment of] a cheque — einen Scheck sperren lassen
- pp-1) (not extend further) aufhören; [Straße, Treppe:] enden; [Ton:] verstummen; [Ärger:] verfliegen; [Schmerz:] abklingen; [Zahlungen, Lieferungen:] eingestellt werden2) (not move or operate further) [Fahrzeug, Fahrer:] halten; [Maschine, Motor:] stillstehen; [Uhr, Fußgänger, Herz:] stehen bleibenhe never stops to think [before he acts] — er denkt nie nach [bevor er handelt]
stop dead — plötzlich stehen bleiben; [Redner:] abbrechen
3) (coll.): (stay) bleiben3. nounstop at a hotel/at a friend's house/with somebody — in einem Hotel/im Hause eines Freundes/bei jemandem wohnen
1) (halt) Halt, derthere will be two stops for coffee on the way — es wird unterwegs zweimal zum Kaffeetrinken angehalten
this train goes to London with only two stops — dieser Zug fährt mit nur zwei Zwischenhalten nach London
bring to a stop — zum Stehen bringen [Fahrzeug]; zum Erliegen bringen [Verkehr]; unterbrechen [Arbeit, Diskussion, Treffen]
come to a stop — stehen bleiben; [Fahrzeug:] zum Stehen kommen; [Gespräch:] abbrechen; [Arbeit, Verkehr:] zum Erliegen kommen; [Vorlesung:] abgebrochen werden
make a stop at or in a place — in einem Ort haltmachen
put a stop to — abstellen [Missstände, Unsinn]; unterbinden [Versuche]; aus der Welt schaffen [Gerücht]
without a stop — ohne Halt [fahren, fliegen]; ohne anzuhalten [gehen, laufen]; ununterbrochen [arbeiten, reden]
2) (place) Haltestelle, diethe ship's first stop is Cairo — der erste Hafen, den das Schiff anläuft, ist Kairo
the plane's first stop is Frankfurt — die erste Zwischenlandung des Flugzeuges ist in Frankfurt
Phrasal Verbs:- stop by- stop off- stop out- stop up* * *[stop] 1. past tense, past participle - stopped; verb1) (to (make something) cease moving, or come to rest, a halt etc: He stopped the car and got out; This train does not stop at Birmingham; He stopped to look at the map; He signalled with his hand to stop the bus.) anhalten2) (to prevent from doing something: We must stop him (from) going; I was going to say something rude but stopped myself just in time.) zurückhalten3) (to discontinue or cease eg doing something: That woman just can't stop talking; The rain has stopped; It has stopped raining.) aufhören4) (to block or close: He stopped his ears with his hands when she started to shout at him.) verstopfen5) (to close (a hole, eg on a flute) or press down (a string on a violin etc) in order to play a particular note.) greifen6) (to stay: Will you be stopping long at the hotel?) bleiben2. noun1) (an act of stopping or state of being stopped: We made only two stops on our journey; Work came to a stop for the day.) der Halt2) (a place for eg a bus to stop: a bus stop.) die Haltestelle3) (in punctuation, a full stop: Put a stop at the end of the sentence.) der Punkt4) (a device on a flute etc for covering the holes in order to vary the pitch, or knobs for bringing certain pipes into use on an organ.) das Griffloch, die Klappe, das Register5) (a device, eg a wedge etc, for stopping the movement of something, or for keeping it in a fixed position: a door-stop.) die Sperre•- stoppage- stopper
- stopping
- stopcock
- stopgap
- stopwatch
- put a stop to
- stop at nothing
- stop dead
- stop off
- stop over
- stop up* * *[stɒp, AM stɑ:p]<- pp->to \stop a ball einen Ball stoppen; goalkeeper einen Ball haltento \stop a blow einen Schlag abblockento \stop sb/a car jdn/ein Auto anhaltento \stop one's car anhaltento \stop the enemy den Feind aufhaltento \stop a thief/the traffic einen Dieb/den Verkehr aufhalten\stop thief! haltet den Dieb!\stop that man! haltet den Mann!2. (make cease)this will \stop the pain das wird dir gegen die Schmerzen helfen\stop that nonsense! hör auf mit dem Unsinn!\stop it! hör auf [damit]!what can I do to \stop this nosebleed? was kann ich gegen dieses Nasenbluten tun?something must be done to \stop the fighting den Kämpfen muss ein Ende gesetzt werdenthis fighting has to be \stopped! die Kämpfe müssen aufhören!\stop being silly! hör auf mit dem Unsinn!I just couldn't \stop myself ich konnte einfach nicht andersto \stop the bleeding die Blutung stillento \stop the clock die Uhr anhaltenthe clock is \stopped when a team scores a goal die Spielzeit wird unterbrochen, wenn ein Team ein Tor schießtto \stop the engine den Motor abstellento \stop the fighting die Kämpfe einstellento \stop inflation/progress die Inflation/den Fortschritt aufhaltento \stop a machine eine Maschine abstellento \stop a match ein Spiel beenden; referee ein Spiel abbrechento \stop the production of sth die Produktion einer S. gen einstellento \stop a rumour einem Gerücht ein Ende machento \stop a speech eine Rede unterbrechento \stop a subscription ein Abonnement kündigento \stop a war einen Krieg beenden3. (cease an activity)what time do you usually \stop work? wann hören Sie normalerweise auf zu arbeiten?4. (prevent)▪ to \stop sb [from] doing sth jdn davon abhalten, etw zu tunif she really wants to leave, I don't understand what's \stopping her wenn sie wirklich weggehen will, verstehe ich nicht, was sie davon abhältsome people smoke because they think it \stops them putting on weight manche rauchen, weil sie meinen, dass sie dann nicht zunehmenI couldn't \stop myself from having another piece of cake ich musste einfach noch ein Stück Kuchen essenhe handed in his resignation — I just couldn't \stop him er hat gekündigt — ich konnte ihn einfach nicht davon abhaltenyou can't \stop me from doing that du kannst mich nicht davon abhalten5. (refuse payment)to \stop sb's allowance/pocket money jdm den Unterhalt/das Taschengeld streichento \stop [AM payment on] a cheque einen Scheck sperrento \stop wages keine Löhne mehr zahlenthe money will be \stopped out of his salary das Geld wird von seinem Gehalt abgezogen6. (block)▪ to \stop sth etw verstopfen; gap, hole, leak etw [zu]stopfento \stop one's ears sich dat die Ohren zuhaltenwhen he starts shouting I just \stop my ears wenn er anfängt zu schreien, mache ich einfach die Ohren zu! fam7. BOXING▪ to \stop sb jdn schlagenhe was \stopped by a knockout in the fourth round er schied durch K.o. in der vierten Runde austo \stop a left/right eine Linke/Rechte parierento \stop a punch einen Hieb einstecken [müssen]8. MUS\stopped pipe gedackte Pfeife fachsprto \stop a string eine Saite greifen9.▶ to \stop a bullet eine Kugel abbekommen▶ to \stop the show der absolute Höhepunkt einer Show sein<- pp->\stop! halt!to \stop dead abrupt innehaltenI \stopped to pick up the letter that I had dropped ich blieb stehen und hob den Brief auf, den ich hatte fallenlassen; ( fig)\stop to [or and] think before you speak erst denken, dann reden!2. (cease, discontinue) machine nicht mehr laufen; clock, heart, watch stehen bleiben; rain aufhören; pain abklingen, nachlassen; production, payments eingestellt werden; film, programme zu Ende sein; speaker abbrechenI will not \stop until they set them free ich werde keine Ruhe geben, bis sie sie freigelassen habenshe doesn't know where to \stop sie weiß nicht, wann sie aufhören musshis heart \stopped during the operation während der Operation hatte er einen Herzstillstandrain has \stopped play das Spiel wurde wegen Regens unterbrochenshe \stopped right in the middle of the sentence sie hielt mitten im Satz inneonce I start eating chocolate I can't \stop wenn ich einmal anfange, Schokolade zu essen, kann ich einfach nicht mehr aufhörenI just couldn't \stop laughing ich habe mich echt totgelacht slif you have to keep \stopping to answer the telephone, you'll never finish wenn du ständig unterbrechen musst, um ans Telefon zu gehen, wirst du nie fertig werdenI wish you'd \stop telling me what to do ich wünschte, du würdest endlich damit aufhören, mir zu sagen, was ich tun soll\stop being silly! hör auf mit dem Unsinn!\stop shouting! hör auf zu schreienI \stopped seeing him last year wir haben uns letztes Jahr getrenntI've \stopped drinking alcohol ich trinke keinen Alkohol mehrshe \stopped drinking sie trinkt nicht mehrplease, \stop crying hör doch bitte auf zu weinen!to \stop smoking mit dem Rauchen aufhören; (on plane etc.) das Rauchen einstellento \stop working aufhören zu arbeitenI'm not \stopping ich bleibe nicht langeI can't \stop — Malcolm's waiting for me outside ich kann nicht bleiben, Malcolm wartet draußen auf michwe \stopped for a quick bite at a motorway services wir machten kurz bei einer Autobahnraststätte Station, um etwas zu essenI \stopped at a pub for some lunch ich habe an einem Pub haltgemacht und was zu Mittag gegessencan you \stop at the fish shop on your way home? kannst du auf dem Nachhauseweg kurz beim Fischladen vorbeigehen?he usually \stops at a bar for a quick drink on the way home normalerweise schaut er auf dem Nachhauseweg noch kurz auf ein Gläschen in einer Kneipe vorbeiare you \stopping here bleibst du hier?to \stop for dinner/tea zum Abendessen/Tee bleibento \stop at a hotel in einem Hotel übernachtendoes this train \stop at Finsbury Park? hält dieser Zug in Finsbury Park?6. (almost)to \stop short of doing sth sich akk [gerade noch] bremsen [o ÖSTERR, SCHWEIZ a. zurückhalten], etw zu tunI \stopped short of telling him my secrets beinahe hätte ich ihm meine Geheimnisse verraten7.▶ to \stop at nothing vor nichts zurückschreckenIII. NOUNplease wait until the airplane has come to a complete \stop bitte warten Sie, bis das Flugzeug seine endgültige Parkposition erreicht hatemergency \stop Notbremsung fto bring a car to a \stop ein Auto anhaltento bring a conversation to a \stop ein Gespräch beendento bring the traffic to a \stop den Verkehr zum Erliegen bringento bring sth to a sudden \stop etw dat ein jähes Ende bereitento come to a \stop stehen bleiben; car also anhalten; rain aufhören; traffic, business zum Erliegen kommen; project, production eingestellt werdenthe conversation came to a \stop das Gespräch verstummteto come to a sudden [or dead] \stop car abrupt anhalten [o stehen bleiben]; project, undertaking ein jähes Ende findento make a \stop anhaltento put a \stop to sth etw dat ein Ende setzen [o einen Riegel vorschiebenwe made two \stops wir haben zweimal haltgemacht... including a thirty minute \stop for lunch... inklusive einer halben Stunde Pause für das Mittagessenthere were a lot of \stops and starts throughout the project die Entwicklung des Projekts verlief sehr stockendto drive without a \stop durchfahrento have a \stop haltmachento have a \stop for coffee ein Kaffeepause machento make a \stop at a service station an einer Raststätte haltmachenwithout a \stop ohne Pause [o Unterbrechungthe ship's first \stop is Sydney das Schiff läuft als Erstes Sydney an; (for plane) Zwischenlandung fthe plane's first \stop is Birmingham das Flugzeug wird zunächst in Birmingham zwischenlandenI'm getting off at the next \stop bei der nächsten Haltestelle steige ich ausis this your \stop? steigen Sie hier aus?is this our \stop? müssen wir hier aussteigen?bus/tram \stop Bus-/Straßenbahnhaltestelle frequest \stop Bedarfshaltestelle f (Haltestelle, bei der man den Bus herwinken muss, da er nicht automatisch hält)account on \stop gesperrtes Kontoto put a \stop on a cheque einen Scheck sperren lassen10.▶ to pull out all the \stops alle Register ziehen* * *[stɒp]1. nto bring sth to a stop (lit) — etw anhalten or stoppen, etw zum Stehen bringen; traffic etw zum Erliegen bringen; (fig) project, meeting, development einer Sache (dat) ein Ende machen; conversation etw verstummen lassen
to come to a stop (car, machine) — anhalten, stoppen; (traffic) stocken; ( fig, meeting, rain ) aufhören; (research, project) eingestellt werden; (conversation) verstummen
to come to a dead/sudden stop (vehicle) — abrupt anhalten or stoppen; (traffic) völlig/plötzlich zum Erliegen kommen; (rain) ganz plötzlich aufhören; (research, project, meeting) ein Ende nt/ein abruptes Ende finden; (conversation) völlig/abrupt verstummen
when the aircraft has come to a complete stop — wenn die Maschine völlig zum Stillstand gekommen ist
to make a stop (bus, train, tram) — (an)halten; (plane, ship) (Zwischen)station machen
to put a stop to sth — einer Sache (dat) einen Riegel vorschieben
3) (= stopping place) Station f; (for bus, tram, train) Haltestelle f; (for ship) Anlegestelle f; (for plane) Landeplatz m4) (Brit: punctuation mark) Punkt m5) (MUS of wind instruments) (Griff)loch nt; (on organ also stopknob) Registerzug m; (= organ pipe) Register nt7) (PHOT: f number) Blende f2. vt1) (= stop when moving) person, vehicle, clock anhalten; ball stoppen; engine, machine etc abstellen; blow abblocken, auffangen; (= stop from going away, from moving on) runaway, thief etc aufhalten; attack, enemy, progress aufhalten, hemmen; traffic (= hold up) aufhalten; (= bring to complete standstill) zum Stehen or Erliegen bringen; (policeman) anhalten; (= keep out) noise, light abfangen, auffangento stop sb dead or in his tracks — jdn urplötzlich anhalten lassen; (in conversation) jdn plötzlich verstummen lassen
2) (= stop from continuing) activity, rumour, threat, crime ein Ende machen or setzen (+dat); nonsense, noise unterbinden; match, conversation, work beenden; development aufhalten; (temporarily) unterbrechen; flow of blood stillen, unterbinden; progress, inflation aufhalten, hemmen; speaker, speech unterbrechen; production zum Stillstand bringen; (temporarily) unterbrechenhe was talking and talking, we just couldn't stop him — er redete und redete, und wir konnten ihn nicht dazu bringen, endlich aufzuhören
the referee stopped play — der Schiedsrichter hat das Spiel abgebrochen; (temporarily)
3) (= cease) aufhören mitto stop doing sth — aufhören, etw zu tun, etw nicht mehr tun
to stop smoking — mit dem Rauchen aufhören; (temporarily) das Rauchen einstellen
I'm trying to stop smoking — ich versuche, das Rauchen aufzugeben or nicht mehr zu rauchen
stop saying that — nun sag das doch nicht immer
4) (= suspend) stoppen; payments, production, fighting einstellen; leave, cheque, water supply, wages sperren; privileges unterbinden; subsidy, allowances, grant etc streichen; battle, negotiations, proceedings abbrechen; (= cancel) subscription kündigen; (temporarily) delivery, newspaper abbestellento stop oneself — sich beherrschen, sich bremsen (inf)
there's nothing stopping you or to stop you — es hindert Sie nichts, es hält Sie nichts zurück
6)(in participial construction)
to stop sb (from) doing sth — jdn davon abhalten or (physically) daran hindern, etw zu tunthat'll stop the gas (from) escaping/the pipe( from) leaking — das wird verhindern, dass Gas entweicht/das Rohr leckt
it will stop you from worrying — dann brauchen Sie sich (dat) keine Sorgen zu machen
7) (= block) verstopfen; (with cork, bung, cement etc) zustopfen (with mit); (= fill) tooth plombieren, füllen; (fig) gap füllen, stopfen; leak of information stopfen; (MUS) string greifen; finger hole zuhaltento stop one's ears with cotton wool/one's fingers — sich (dat) Watte/die Finger in die Ohren stecken
3. vi1) (= halt) anhalten; (train, car) (an)halten, stoppen; (traveller, driver, hiker) haltmachen; (pedestrian, clock, watch) stehen bleiben; (engine, machine) nicht mehr laufenstop right there! — halt!, stopp!
we stopped for a drink at the pub — wir machten in der Kneipe Station, um etwas zu trinken
to stop at nothing (to do sth) (fig) — vor nichts haltmachen(, um etw zu tun)
See:→ short2) (= finish, cease) aufhören; (heart) aufhören zu schlagen, stehen bleiben; (production, payments, delivery) eingestellt werden; (programme, show, match, film) zu Ende seinto stop doing sth — aufhören, etw zu tun, mit etw aufhören
ask him to stop — sag ihm, er soll aufhören
I will not stop until I find him/convince you — ich gebe keine Ruhe, bis ich ihn gefunden habe/dich überzeugt habe
stop to think before you speak — erst denken, dann reden
he never knows when or where to stop — er weiß nicht, wann er aufhören muss or Schluss machen muss
* * *A v/t prät und pperf stopped, obs stopt1. aufhören ( doing zu tun):stop doing sth auch etwas bleiben lassen;do stop that noise hör (doch) auf mit dem Lärm!;stop it hör auf (damit)!2. a) allg aufhören mitc) Verhandlungen etc abbrechennothing could stop him nichts konnte ihn aufhaltenc) einen Wagen, Zug etc stoppen, anhaltend) eine Maschine, den Motor, auch das Gas etc abstellene) eine Fabrik stilllegenf) Lärm etc unterbindeng) Boxen: einen Kampf abbrechen5. einen Sprecher etc unterbrechen6. SPORTa) Boxen, Fechten: einen Schlag, Hieb parierenb) einen Gegner besiegen, stoppen:stop a blow sich einen Schlag einfangen;stop sb (from) doing sth jemanden davon abhalten oder daran hindern, etwas zu tunstop one’s ears sich die Ohren zuhalten;stop sb’s mouth fig jemandem den Mund stopfen, jemanden zum Schweigen bringen (a. euph umbringen); → gap 19. versperren, -stopfen, blockieren10. Blut, auch eine Wunde stillen11. einen Zahn plombieren, füllenout of, from von)13. MUSa) eine Saite, einen Ton greifenb) ein Griffloch zuhalten, schließenc) ein Blasinstrument, einen Ton stopfen14. LING interpunktierenB v/i1. (an)halten, haltmachen, stehen bleiben (auch Uhr etc), stoppen2. aufhören, an-, innehalten, eine Pause machen:he stopped in the middle of a sentence er hielt mitten in einem Satz inne;he’ll stop at nothing er schreckt vor nichts zurück, er geht über Leichen;3. aufhören (Lärm, Zahlung etc)4. stop offa) kurz haltmachen,b) Zwischenstation machen5. stop over Zwischenstation machen7. bleiben:stop away (from) fernbleiben (dat), wegbleiben (von);stop behind noch dableiben;b) SCHULE nachsitzen;a) wegbleiben, nicht heimkommen,b) WIRTSCH weiterstreiken;stop up aufbleiben, wach bleibenC s1. a) Stopp m, Halt m, Stillstand mb) Ende n:come to a stop anhalten, weitS. zu einem Ende kommen, aufhören;2. Pause f3. BAHN etc Aufenthalt m, Halt m4. a) BAHN Station fc) SCHIFF Anlegestelle f5. Absteigequartier n6. Hemmnis n, Hindernis n7. TECH Anschlag m, Sperre f, Hemmung f8. WIRTSCHa) Sperrung f, Sperrauftrag m (für Scheck etc)9. MUSa) Griff m, Greifen n (einer Saite etc)b) Griffloch nc) Klappe fd) Ventil ne) Register n (einer Orgel etc)f) Registerzug m:pull out all the stops fig alle Register ziehen, alle Hebel in Bewegung setzen10. LINGa) Knacklaut mb) Verschlusslaut m11. FOTO f-Blende f (als Einstellmarke)12. a) Satzzeichen nb) Punkt m* * *1. transitive verb,- pp-1) (not let move further) anhalten [Person, Fahrzeug]; aufhalten [Fortschritt, Verkehr, Feind]; verstummen lassen (geh.) [Gerücht, Geschichte, Lüge]; [Tormann:] halten [Ball]2) (not let continue) unterbrechen [Redner, Spiel, Gespräch, Vorstellung]; beenden [Krieg, Gespräch, Treffen, Spiel, Versuch, Arbeit]; stillen [Blutung]; stoppen [Produktion, Uhr, Streik, Inflation]; einstellen [Handel, Zahlung, Lieferung, Besuche, Subskriptionen, Bemühungen]; abstellen [Strom, Gas, Wasser, Missstände]; beseitigen [Schmerz]stop that/that nonsense/that noise! — hör damit/mit diesem Unsinn/diesem Lärm auf!
bad light stopped play — (Sport) das Spiel wurde wegen schlechter Lichtverhältnisse abgebrochen
stop the show — (fig.) Furore machen
just you try and stop me! — versuch doch, mich daran zu hindern!
stop smoking/crying — aufhören zu rauchen/weinen
stop it! — hör auf [damit]!; (in more peremptory tone) Schluss damit!
3) (not let happen) verhindern [Verbrechen, Unfall]he phoned his mother to stop her [from] worrying — er rief seine Mutter an, damit sie sich keine Sorgen machte
stop something [from] happening — verhindern, dass etwas geschieht
4) (cause to cease working) abstellen [Maschine usw.]; [Streikende:] stilllegen [Betrieb]5) (block up) zustopfen [Loch, Öffnung, Riß, Ohren]; verschließen [Wasserhahn, Rohr, Schlauch, Flasche]6) (withhold) streichen2. intransitive verb,stop [payment of] a cheque — einen Scheck sperren lassen
- pp-1) (not extend further) aufhören; [Straße, Treppe:] enden; [Ton:] verstummen; [Ärger:] verfliegen; [Schmerz:] abklingen; [Zahlungen, Lieferungen:] eingestellt werden2) (not move or operate further) [Fahrzeug, Fahrer:] halten; [Maschine, Motor:] stillstehen; [Uhr, Fußgänger, Herz:] stehen bleibenhe never stops to think [before he acts] — er denkt nie nach [bevor er handelt]
stop dead — plötzlich stehen bleiben; [Redner:] abbrechen
3) (coll.): (stay) bleiben3. nounstop at a hotel/at a friend's house/with somebody — in einem Hotel/im Hause eines Freundes/bei jemandem wohnen
1) (halt) Halt, derthere will be two stops for coffee on the way — es wird unterwegs zweimal zum Kaffeetrinken angehalten
this train goes to London with only two stops — dieser Zug fährt mit nur zwei Zwischenhalten nach London
bring to a stop — zum Stehen bringen [Fahrzeug]; zum Erliegen bringen [Verkehr]; unterbrechen [Arbeit, Diskussion, Treffen]
come to a stop — stehen bleiben; [Fahrzeug:] zum Stehen kommen; [Gespräch:] abbrechen; [Arbeit, Verkehr:] zum Erliegen kommen; [Vorlesung:] abgebrochen werden
make a stop at or in a place — in einem Ort haltmachen
put a stop to — abstellen [Missstände, Unsinn]; unterbinden [Versuche]; aus der Welt schaffen [Gerücht]
without a stop — ohne Halt [fahren, fliegen]; ohne anzuhalten [gehen, laufen]; ununterbrochen [arbeiten, reden]
2) (place) Haltestelle, diethe ship's first stop is Cairo — der erste Hafen, den das Schiff anläuft, ist Kairo
4) (in telegram) stopPhrasal Verbs:- stop by- stop off- stop out- stop up* * *(mechanics) n.Sperre -n f. n.Halt -e m.Pause -n f. v.absperren v.anhalten v.arretieren v.aufhalten v.aufhören v.pfropfen v.zustöpseln v. -
54 Bell, Revd Patrick
SUBJECT AREA: Agricultural and food technology[br]b. 1799 Auchterhouse, Scotlandd. 22 April 1869 Carmyllie, Scotland[br]Scottish inventor of the first successful reaping machine.[br]The son of a Forfarshire tenant farmer, Patrick Bell obtained an MA from the University of St Andrews. His early association with farming kindled an interest in engineering and mechanics and he was to maintain a workshop not only on his father's farm, but also, in later life, at the parsonage at Carmyllie.He was still studying divinity when he invented his reaping machine. Using garden shears as the basis of his design, he built a model in 1827 and a full-scale prototype the following year. Not wishing the machine to be seen during his early experiments, he and his brother planted a sheaf of oats in soil laid out in a shed, and first tried the machine on this. It cut well enough but left the straw in a mess behind it. A canvas belt system was devised and another secret trial in the barn was followed by a night excursion into a field, where corn was successfully harvested.Two machines were at work during 1828, apparently achieving a harvest rate of one acre per hour. In 1832 there were ten machines at work, and at least another four had been sent to the United States by this time. Despite their success Bell did not patent his design, feeling that the idea should be given free to the world. In later years he was to regret the decision, feeling that the many badly-made imitations resulted in its poor reputation and prevented its adoption.Bell's calling took precedence over his inventive interests and after qualifying he went to Canada in 1833, spending four years in Fergus, Ontario. He later returned to Scotland and be-came the minister at Carmyllie, with a living of £150 per annum.[br]Principal Honours and DistinctionsLate in the day he was honoured for his part in the development of the reaping machine. He received an honorary degree from the University of St Andrews and in 1868 a testimonial and £1,000 raised by public subscription by the Highland and Agricultural Society of Scotland.Bibliography1854, Journal of Agriculture (perhaps stung by other claims, Bell wrote his own account).Further ReadingG.Quick and W.Buchele, 1978, The Grain Harvesters, American Society of Agricultural Engineers (gives an account of the development of harvesting machinery).L.J.Jones, 1979, History of Technology, pp. 101–48 (gives a critical assessment of the various claims regarding the originality of the invention).J.Hendrick, 1928, Transactions of the Highland and Agricultural Society of Scotland, pp.51–69 (provides a celebration of Bell's achievement on its centenary).AP -
55 drilling
бурение; сверление; высверливаниеbottom supported marine drilling — бурение скважин с опорой на дно (со стационарной свайной платформы)
* * *
1. бурение2. pl. буровой шлам, буровая мелочь
* * *
* * *
1) бурение; сверление; высверливание || буровой; бурильный2) pl выбуренная порода3) pl буровой шлам, буровая мука; буровая мелочь4) pl скважины5) pl алмазы величиной от 4 до 23 штук на карат•drilling afloat — бурение наплаву;
drilling ahead — 1) бурение ниже башмака обсадной колонны ( на значительную глубину) 2) бурение, опережающее проходку горной выработки;
drilling by flame — 1) термическое бурение 2) прожигание скважин;
drilling by jetting method — 1) бурение гидравлическим способом 2) гидромониторное бурение;
drilling deeper — углубка скважины;
drilling for gas — бурение на газ;
drilling for oil — бурение на нефть;
drilling for structure — картировочное бурение;
drilling for water — бурение на воду;
drilling from floating vessel — бурение с плавучего основания;
drilling in cramped quarter — бурение глубоких скважин из выработки малого сечения;
drilling into abnormal pressure zone — бурение в зоне высокого давления;
not drilling — простаивающий ();
drilling off the whipstock — бурение со стационарного отклонителя;
drilling on the bottom — чистое бурение;
drilling out of cement plug — разбуривание цементной пробки;
drilling suspended indefinitely — бурение прекращено на неопределённое время;
drilling the pay — разбуривание продуктивного пласта;
drilling to completion — бурение до проектной глубины;
drilling to predetermined depth — бурение до проектной глубины;
drilling to projected depth — бурение до проектной глубины;
drilling with aerated fluid — бурение с промывкой аэрированной жидкостью;
drilling with aerated formation water — бурение с промывкой аэрированными пластовыми водами;
drilling with air — бурение с очисткой забоя воздухом;
drilling with counterflow — бурение с обратной промывкой;
drilling with explosives — взрывное бурение;
drilling with localized mud circulation — бурение с местной промывкой;
drilling with mud — бурение с промывкой буровым раствором;
drilling with oil — бурение с промывкой раствором на углеводородной основе;
drilling with salt water — бурение с промывкой солёной водой;
drilling with sound vibration — вибробурение со звуковыми частотами;
- drilling of submarine wellsdrilling without drill pipe — беструбное бурение;
- abrasive jet drilling
- aerated-fluid drilling
- aerated-mud drilling
- aeration drilling
- air drilling
- air-and-gas drilling
- air-and-stable-foam drilling
- air-flush drilling
- air-hammer drilling
- air-hammer rotary drilling
- air-motor drilling
- air-percussion drilling
- air-reverse-circulation drilling
- angled drilling
- angular drilling
- anomaly drilling
- appraisal drilling
- arc drilling
- auger drilling
- balanced drilling
- barge drilling
- bench drilling
- blasthole drilling
- blind drilling
- borehole drilling
- bottom supported marine drilling
- bottomhole circulation drilling
- bottom-supported offshore drilling
- branched-hole drilling
- cable drilling
- cable-churn drilling
- cable-Pennsylvanian drilling
- cable-rotary drilling
- cable-tool drilling
- calibration drilling
- Calyx drilling
- Canadian drilling
- carbide percussion drilling
- chain bit drilling
- checkerboard drilling
- chemical drilling
- chilled-shot drilling
- churn drilling
- churn flame drilling
- city-lot drilling
- clean drilling
- close drilling
- close-spaced surface drilling
- close-spaced underground drilling
- cluster drilling
- cluster directional drilling of slant
- combination drilling
- compressed air drilling
- continuous penetration drilling
- contract drilling
- control angle drilling
- controlled drilling
- controlled-angle drilling
- core drilling
- counterflush drilling
- counterflush core drilling
- cover drilling
- Craelius method drilling
- deep drilling
- deep-hole drilling
- deep-water drilling
- deep-well drilling
- definition drilling
- dense drilling
- development drilling
- diamond drilling
- diamond core drilling
- direct-air-circulation drilling
- direct-circulation drilling
- directed drilling
- directional drilling
- directional drilling of slant holes
- double-barreled drilling
- double-directional drilling
- double-hand drilling
- double-inclinated drilling
- double-simultaneous drilling
- double-tube drilling
- downhole drilling
- downhole electrical motor drilling
- downhole hammer drilling
- downhole percussion drilling
- downhole turbine motor drilling
- down-the-hole drilling
- drainhole drilling
- drive-pipe drilling
- dry drilling
- dry-hole drilling
- dry percussive drilling
- dual-bore cluster drilling
- dual-hole simultaneous drilling
- dust-free drilling
- dustless drilling
- easy drilling
- electrical drilling
- electrical arc drilling
- electrical bottomhole drilling
- electrohydraulic drilling
- electrojet drilling
- electron beam drilling
- erosion drilling
- erosion jet drilling
- exhaust gas drilling
- exploration drilling
- exploratory drilling
- explosion drilling
- extended reach drilling
- failure-free drilling
- fan drilling
- flame drilling
- flame-jet drilling
- floating drilling
- fluid circulating drilling
- fluid core drilling
- flush drilling
- foam drilling
- formation drilling
- full-diameter drilling
- full-hole drilling
- gas drilling
- gas-well drilling
- geological drilling
- group drilling
- grout-hole drilling
- guided drilling
- hand drilling
- hand churn drilling
- hand hammer drilling
- hard-rock drilling
- heavy weight drilling
- high-frequency drilling
- high-frequency percussion drilling
- high-velocity jet drilling
- hooded dry drilling
- horizontal drilling
- horizontal branched-hole drilling
- horizontal-drainhole drilling
- horizontal-radial diamond drilling
- horizontal-ring drilling
- hydraulical drilling
- hydraulical percussion drilling
- hydraulical rotary drilling
- hydrodynamical drilling
- hydropercussion drilling
- hydropercussion rotary drilling
- hydroturbine downhole motor drilling
- implosion drilling
- inclination drilling
- induction drilling
- infill drilling
- injection drilling
- instrumental drilling
- intermediate hole drilling
- inverted oil emulsion drilling
- jet drilling
- jet-bit drilling
- jet-erosion drilling
- jet-piercer drilling
- jet-piercing drilling
- jetted-particle drilling
- jetting drilling
- jump drilling
- key well drilling
- large-hole drilling
- laser drilling
- lateral drilling
- line drilling
- line-hole drilling
- line-well drilling
- long-hole drilling
- machine drilling
- magnetostriction drilling
- magnetostriction rotary drilling
- marine drilling
- mechanical drilling
- mechanized drilling
- Mesabi structural drilling
- microbit drilling
- mist drilling
- moderate drilling
- mud-circulating drilling
- mud-powered hammer drilling
- multidirectional drilling
- multihole drilling
- multiple drilling
- multiple-plan drilling
- noncore drilling
- nonpressure drilling
- offset drilling
- offshore drilling
- oil-emulsion drilling
- oil-mud drilling
- oil-well drilling
- old-well deeper drilling
- one-man drilling
- on-land drilling
- optimized drilling
- oriented drilling
- original drilling
- outstep drilling
- overbalanced drilling
- overburden drilling
- overhead drilling
- parallel hole drilling
- pay drilling
- pellet impact drilling
- Pennsylvanian drilling
- percussion drilling
- percussion-air drilling
- percussion-rod drilling
- percussion-rotation drilling
- percussive drilling
- percussive-machine drilling
- percussive-rotary drilling
- performance drilling
- permafrost drilling
- petroleum drilling
- pier drilling
- pillar extraction drilling
- pilot drilling
- pipe-driving drilling
- pipeless drilling
- pipeless downhole electrical motor drilling
- placer drilling
- plasma drilling
- plug drilling
- pneumatical drilling
- preliminary drilling
- pressure drilling
- probe drilling
- production drilling
- prospect drilling
- pulsed jet drilling
- push-button drilling
- push-feed drilling
- quick-blow drilling
- radial drilling
- random drilling
- rapid-blow drilling
- reduced-pressure drilling
- remote automated drilling
- reverse-circulation core drilling
- ring drilling
- rock drilling
- rocket drilling
- rod drilling
- rod-tool drilling
- roller-bit drilling
- rope drilling
- rotary drilling
- rotary-percussion drilling
- rotary-turbine drilling
- rotation drilling
- rotation-vibropercussion drilling
- rough drilling
- run-to-waste drilling
- safe drilling
- salt-dome drilling
- sample drilling
- scattered drilling
- seam drilling
- secondary drilling
- sectional steel drilling
- self-cleaning drilling
- shaft drilling
- shallow drilling
- shaped charge drilling
- shelf drilling
- ship-side drilling
- shock-wave drilling
- shot drilling
- shot core drilling
- shothole drilling
- simultaneous drilling
- single-hand drilling
- single-pass drilling
- single-row drilling
- slant-hole drilling
- slim-hole drilling
- sonic combination drilling
- spark drilling
- spindle feed drilling
- spring-pole drilling
- steel-shot drilling
- straight-ahead drilling
- straight-hole drilling
- straight-hole directional drilling
- stratigraphic test drilling
- structure drilling
- subgrade drilling
- submarine drilling
- subsurface drilling
- superdeep drilling
- surface drilling
- surface blasthole drilling
- surface hole drilling
- tension drilling
- test drilling
- test-hole drilling
- test-well drilling
- thermal drilling
- top hammer drilling
- top hole drilling
- tough drilling
- town-lot drilling
- triple-hole simultaneous drilling
- trouble-free drilling
- tungsten-carbide drilling
- turbine motor drilling
- ultradeep drilling
- ultrasonic drilling
- underbalanced drilling
- underground drilling
- underwater drilling
- up-hole drilling
- upper-hole drilling
- vacuum drilling
- vertical drilling
- vertical ring drilling
- vibration drilling
- vibratory drilling
- vibratory-percussion drilling
- vibratory-rotary drilling
- vibropercussion drilling
- vibropercussion rotary drilling
- wash drilling
- water drilling
- water-assisted drilling
- water-flush drilling
- water-jet drilling
- water-well drilling
- well drilling
- wet drilling
- wild-cat drilling
- wireline drilling* * *Англо-русский словарь нефтегазовой промышленности > drilling
-
56 ADM
1) Компьютерная техника: add2) Авиация: Уведомление об агентской задолженности (Agency debit memo), air data module3) Военный термин: Arrow Diagram Method, Assistant Deputy Minister, advanced development model, air decoy missile, air defense missile, air defense mission, area defense missile, area denial munitions, artillery delivered mines, assessment development model, atomic demolition mine, atomic demolition munition4) Техника: acoustic digital memory, action description memorandum, armament development center, asynchronous disconnected mode, automatic distribution of microfiche, automatic drafting machine5) Автомобильный термин: автоматическое затемнение зеркала/зеркал заднего вида6) Грубое выражение: A Dumb Machine7) Испанский язык: Мексиканская зубоврачебная ассоциация ((сокр.) Asociación Dental Mexicana = Mexican Dental Association)8) Телекоммуникации: Add/Drop Multiplexer9) Сокращение: Acquisition Decision Memorandum, Adaptive Delta Modulation, Advanced Demonstration / Development Model, African Democratic Movement (Ciskei), Air Defence Missile, Asynchronous Data Modem, Atomic Demolition Munitions, Automatic Demolition Munition, Automatic Drive-train Management, Asian Dollar Market (сокр.) (рынок азиатских долларов, азиатский долларовый рынок)10) Физиология: Admit, Adult Onset Diabetes Mellitus11) Нефть: add and drop multiplexer12) Биотехнология: Antenna dye molecule13) Атомная энергия: ядерный фугас14) Фирменный знак: Archer Daniels Midland15) Деловая лексика: Additional Dealer Mark, Additional Dealer Markup16) Менеджмент: arrow diagramming method17) Образование: Average Daily Membership18) Полимеры: amalgam decomposing material19) Автоматика: adaptive data multiplexing, automated data management, automatic distribution microfiche20) Макаров: alternating directions method21) Расширение файла: AfterDark MultiModule screensaver22) Логистика: обеспечение23) NYSE. Archer Daniels Midland Company24) Программное обеспечение: Advanced Desktop Manager, Application Development Methodology -
57 Adm
1) Компьютерная техника: add2) Авиация: Уведомление об агентской задолженности (Agency debit memo), air data module3) Военный термин: Arrow Diagram Method, Assistant Deputy Minister, advanced development model, air decoy missile, air defense missile, air defense mission, area defense missile, area denial munitions, artillery delivered mines, assessment development model, atomic demolition mine, atomic demolition munition4) Техника: acoustic digital memory, action description memorandum, armament development center, asynchronous disconnected mode, automatic distribution of microfiche, automatic drafting machine5) Автомобильный термин: автоматическое затемнение зеркала/зеркал заднего вида6) Грубое выражение: A Dumb Machine7) Испанский язык: Мексиканская зубоврачебная ассоциация ((сокр.) Asociación Dental Mexicana = Mexican Dental Association)8) Телекоммуникации: Add/Drop Multiplexer9) Сокращение: Acquisition Decision Memorandum, Adaptive Delta Modulation, Advanced Demonstration / Development Model, African Democratic Movement (Ciskei), Air Defence Missile, Asynchronous Data Modem, Atomic Demolition Munitions, Automatic Demolition Munition, Automatic Drive-train Management, Asian Dollar Market (сокр.) (рынок азиатских долларов, азиатский долларовый рынок)10) Физиология: Admit, Adult Onset Diabetes Mellitus11) Нефть: add and drop multiplexer12) Биотехнология: Antenna dye molecule13) Атомная энергия: ядерный фугас14) Фирменный знак: Archer Daniels Midland15) Деловая лексика: Additional Dealer Mark, Additional Dealer Markup16) Менеджмент: arrow diagramming method17) Образование: Average Daily Membership18) Полимеры: amalgam decomposing material19) Автоматика: adaptive data multiplexing, automated data management, automatic distribution microfiche20) Макаров: alternating directions method21) Расширение файла: AfterDark MultiModule screensaver22) Логистика: обеспечение23) NYSE. Archer Daniels Midland Company24) Программное обеспечение: Advanced Desktop Manager, Application Development Methodology -
58 adm
1) Компьютерная техника: add2) Авиация: Уведомление об агентской задолженности (Agency debit memo), air data module3) Военный термин: Arrow Diagram Method, Assistant Deputy Minister, advanced development model, air decoy missile, air defense missile, air defense mission, area defense missile, area denial munitions, artillery delivered mines, assessment development model, atomic demolition mine, atomic demolition munition4) Техника: acoustic digital memory, action description memorandum, armament development center, asynchronous disconnected mode, automatic distribution of microfiche, automatic drafting machine5) Автомобильный термин: автоматическое затемнение зеркала/зеркал заднего вида6) Грубое выражение: A Dumb Machine7) Испанский язык: Мексиканская зубоврачебная ассоциация ((сокр.) Asociación Dental Mexicana = Mexican Dental Association)8) Телекоммуникации: Add/Drop Multiplexer9) Сокращение: Acquisition Decision Memorandum, Adaptive Delta Modulation, Advanced Demonstration / Development Model, African Democratic Movement (Ciskei), Air Defence Missile, Asynchronous Data Modem, Atomic Demolition Munitions, Automatic Demolition Munition, Automatic Drive-train Management, Asian Dollar Market (сокр.) (рынок азиатских долларов, азиатский долларовый рынок)10) Физиология: Admit, Adult Onset Diabetes Mellitus11) Нефть: add and drop multiplexer12) Биотехнология: Antenna dye molecule13) Атомная энергия: ядерный фугас14) Фирменный знак: Archer Daniels Midland15) Деловая лексика: Additional Dealer Mark, Additional Dealer Markup16) Менеджмент: arrow diagramming method17) Образование: Average Daily Membership18) Полимеры: amalgam decomposing material19) Автоматика: adaptive data multiplexing, automated data management, automatic distribution microfiche20) Макаров: alternating directions method21) Расширение файла: AfterDark MultiModule screensaver22) Логистика: обеспечение23) NYSE. Archer Daniels Midland Company24) Программное обеспечение: Advanced Desktop Manager, Application Development Methodology -
59 system
1) система || системный3) вчт операционная система; программа-супервизор5) вчт большая программа6) метод; способ; алгоритм•system halted — "система остановлена" ( экранное сообщение об остановке компьютера при наличии серьёзной ошибки)
- CPsystem- H-system- h-system- hydrogen-air/lead battery hybrid system- Ksystem- Lsystem- L*a*b* system- master/slave computer system- p-system- y-system- Δ-system -
60 system
1) система2) установка; устройство•- 2D design system
- 2-D draughting system
- 2D milling CAM system
- 3 nonsimultaneous axes control system
- 3D CAD system
- 3D design system
- 3D milling CAM system
- 3-D surface-modeling system
- 3-D system
- abrasive waterjet cutting system
- absolute control system
- absolute dimension measuring system
- accident-protection system
- accountancy system
- accounting data system
- ACO system
- acoustic feedback control system
- acquisition system
- active enclosure system
- adaptable system
- adaptive CNC system
- adaptive control constraint system
- adaptive control system
- adaptive pulsing system
- adaptive robot system
- add-on NC programming system
- administrative information data system
- administrative information system
- ADR system
- advanced command data system
- advanced data analysis system
- advanced data display system
- advanced display system
- advanced integrated data system
- advanced interactive debugging system
- advanced management information system
- advisory system
- AGV system
- air flotation system
- air-bearing system
- air-cooling system
- air-delivery system
- air-gaging system
- airlock system
- air-oil mist lubrication system
- air-plasma arc-profiling system
- air-purge system
- alarm system
- all-enveloping guard system
- analog computing system
- analog recording system
- angstrom-positioning system
- antideflection system
- antilock brake system
- antisag system
- application-specific system
- APT generating expert system
- Archimedes system
- array system
- AS/RS system
- assembly management system
- assembly system
- attitude display system
- autolube system
- automated communications and messages processing system
- automated design and optimization of control system
- automated design system
- automated digital design system
- automated industrial management system
- automated information data system
- automated information dissemination system
- automated information retrieval system
- automated inventory distribution system
- automated machining system
- automated management information system
- automated management system
- automated measuring system
- automated parts input-output system
- automated reliability and maintenance management system
- automated storage control system
- automatic alignment-and-centering system
- automatic call distribution system
- automatic CAM system
- automatic chuck-changing system
- automatic data acquisition system
- automatic data distribution system
- automatic data system
- automatic diagnostic-and-recovery system
- automatic display plotting system
- automatic distributive numerical control system
- automatic fixturing system
- automatic gaging-and-compensating system
- automatic measurement-and-compensation system
- automatic message accounting system
- automatic message distribution system
- automatic pallet storage/retrieval system
- automatic program transfer system
- automatic record evaluation system
- automatic telemetry system
- automatic test analysis system
- automatic test system
- automatic testing, evaluating and reporting system
- automatic tool cassette changer system
- automatic tool retraction system
- automatic tool retraction/correction/reentry system
- automatic tool wear/tool broken sensing system
- automatically taught system
- automation system
- autonomous system
- autopatch system
- AWS system
- axis drive system
- axis motor system
- axis-stopping system
- backlash-free friction system
- back-to-back system
- balance system
- balanced system of forces
- balanced system
- bar feed system
- bar pulling system
- bar pusher system
- barring coding system
- base coordinate system
- base data system
- base file system
- base operating information system
- basic disk operating system
- basic hole system
- basic input/output system
- basic NC system
- basic programming system
- basic shaft system
- batching system
- batch-machining system
- battery system
- BCC management information system
- beam delivery system
- belt turnover system
- belt twist system
- binary system
- binary vision system
- biped robotic system
- block-tool system
- block-type tool change system
- bonded stores system
- boring system
- bought-in control system
- brake system
- branch information system
- breakaway system
- breathing system
- broad system of ordering
- BTA deep-hole-drilling system
- BTA-style deep-hole-drilling system
- bug-free system
- building block system
- bulk system
- business information system
- buy-and-plug-in system
- C/C system
- cable and hose carrying system
- CAD access system
- CAD system
- CAD/CAM system
- CAD/CAM/CAE and product data management system
- CAD/CAM/CAE system
- CAD/CAPP/CAM system
- CADAR system
- CAD-integrating system
- CAD-only system
- CAE system
- CAE/CAD/CAM system
- CAG system
- CAM system
- cam-and-lever system
- capacitance-based measuring system
- CAPP system
- capture system
- carrierband system
- cart/pallet transfer system
- Cartesian coordinate system
- cassette jaw-change system
- cell control system
- cell management system
- cell-type system
- cellular manufacturing system
- central analog data distributing and controlling system
- central automatic message accounting system
- central storage system
- centralized control system
- centralized coolant and extractor system
- centralized swarf conveying system
- centralized swarf removal system
- chain conveyor system
- check system
- checking system
- checkout system
- chiller system
- chip conveyor system
- chip guard system
- chip-evacuation system
- chuck/chuck jaw changing system
- chucking system
- chuck-jaw system
- chuck-loading system
- CIM system
- circular monitoring system
- circular part-processing system
- circulating lubrication system
- circulating oil system
- circulation system
- clamping system
- closed cooling system
- closed loop control system
- closed loop machine control system
- closed loop size control system
- closed loop system
- closed-proprietary system
- CM system
- CNC hardware system
- CNC machine tool system
- CNC programming system
- CNC system
- CNC transfer system
- CNC-ACC system
- CNC-control system
- coherent system of units
- collecting system
- collet pad top jaw system
- combined cooling system
- combined production system
- command-line NC system
- commercial vision system
- communication system
- companion system
- comprehensive power measurement system
- computer analysis and design system
- computer automation real-time operating system
- computer data communication system
- computer NC system
- computer system
- computer vision system
- computer-aided design support system
- computer-aided dispatch system
- computer-aided gaging system
- computer-aided programming system
- computer-aided telemetry system
- computer-aided test system
- computer-assisted command system
- computer-assisted message processing system
- computer-assisted microfilm retrieval system
- computer-assisted operation sequence planning system
- computer-automated machine-tool system
- computer-automated test system
- computer-based management system
- computer-based message system
- computer-controlled materials-handling system
- computer-controlled system
- computer-coordinated measuring system
- computer-directed swing-arm tool-changing system
- computer-driven control system
- computer-hosted manufacturing system
- computer-integrated manufacturing system
- computer-integrated system
- computerized information retrieval system
- computerized machine control system
- computerized manufacturing system
- computerized numerical control system
- computerized production control system
- computerized shopfloor data collection system
- computer-oriented production management system
- computer-oriented system
- computing system
- concurrent force system
- conductor system
- conservative system
- constant delivery system
- constant volume system
- constant-contact scanning system
- constraint satisfaction system
- continuous feedback control system
- continuous flow system
- continuous-path CNC system
- continuous-path control system
- contouring control system
- contouring system
- controlled path system
- controlling system
- conventional ACC system
- conversational analysis and drafting system
- conveying system
- conveyor system
- conveyoring system
- conveyorized work-handling system
- coolant clarification system
- coolant laundering system
- coolant mist system
- coolant recirculating system
- coolant recovery system
- coolant recycling system
- coolant supply system
- coolant-circulating system
- coolant-thru-body system
- cooling system
- coordinate drive system
- coordinate system
- coprocessor board system
- copymill control system
- corporate information and office system
- coupling system
- CPS system
- CRT control system
- CRT system
- customer-oriented system
- customized FMS control system
- cut-piece transfer system
- cycloidal tooth system
- data base management system
- data communication system
- data control system
- data input management system
- data management system
- data origination system
- data processing system
- data retrieval system
- data transfer system
- datum system for geometrical tolerancing
- datum system
- DDM system
- decentralized DNC system
- decision enabling system
- decision support system
- dedicated production system
- deep-hole-drilling system
- defect-free machining system
- delivery system
- demand pull flexible system
- demand push flexible system
- departmental management system
- descaling system
- design coordinate system
- design support system
- design-automation system
- design-for-manufacturing system
- design-with-feature system
- desk-top publishing system
- deterministic system
- dexel-based system
- diagnostic communication control system
- diagnostic computer control system
- dialog system
- diamond-lapping system
- digital readout system
- digitizing system
- digitizing/data capture system
- dimensional verification system
- direct impingement starting system
- direct lubrication system
- direct NC system
- discrete-continuous system
- dispatcher system
- distributed computer system
- distributed mass-spring system
- distributed microprocessor system
- distributed processing system
- distributed quality system
- distributed system
- distributive numerical control system
- DNC flexible machining system
- DNC machine control system
- DNC machine tool control system
- DNC system
- DNC/FM system
- document processing system
- document retrieval system
- document search system
- domain-expert system
- Doppler system
- DOS CAM system
- double tube system
- dowel pin system
- DRO system
- drop-feed-lubrication system
- DTP system
- dual laser optical system
- dual laser referencing system
- dual system
- dual-beam LDDM system
- dual-pallet shuttle system
- dual-shaft electric propulsion system
- dynamic beam focusing laser system
- dynamic data system
- dynamic mapping system
- early warning system
- eddy current damper system
- edge-sensing system
- edge-type positioning system
- eight-station pallet system
- electrical contact tracing system
- electrofluidic control system
- emergency protection system
- enclosure system
- encoder checking system
- endpoint locating system
- energy-adaptive system
- energy-saving drive system
- engine starting system
- entry-level NC system
- environmental control system
- equivalent rigid link system
- equivalent systems of forces
- ESD system
- estimating system
- example-driven system
- expert control system
- expert process planning system
- expert system
- external box system
- extractor system
- fact retrieval system
- factory automation system
- fault detection system
- fault-signal system
- FBG system
- feasibility routing system
- feature-based CAM system
- feature-based system
- feed system
- feedback control system
- feedback gaging system
- feedback position control system
- feedback system
- feed-drive system
- feedforward compensatory control system
- feed-only AC system
- feed-overriding system
- FFS system
- file control system
- finite capacity scheduling system
- fixed coordinate system
- fixed-feature NC system
- fixed-rail system
- fixture design system
- fixture system
- fixturing system
- flanged pipe system
- flexible assembly system
- flexible automated manufacturing system
- flexible automation system
- flexible computer-controlled robotic system
- flexible fabricating system
- flexible fixturing system
- flexible handling system
- flexible laser optical system
- flexible laser system
- flexible lathe system
- flexible machine system
- flexible machining center system
- flexible machining system
- flexible manufacturing system
- flexible NC system
- flexible press system
- flexible tooling system
- flexible transfer system
- flexible turning system
- flood coolant system
- flow-line production system
- flow-type manufacturing system
- fluid management system
- fluid power system
- flush-type cooling system
- fly system
- FMS operating system
- FMS/CAD/CAM system
- FMS-type production system
- force measurement system
- force sensory system
- force system
- force-sensing system
- forecasting system
- four-station pallet system
- four-tier quality system
- FROG navigation system
- FROG system
- full-blown system
- fully specified system
- gage system
- gaging computer system
- gaging-and-compensating system
- gantry loading system
- gantry-based turning system
- gantry-style motion system
- gas-turbine starting system
- gating system
- gear roller system
- gear system
- gear testing system
- general information retrieval system
- generative planning system
- generic control system
- generic messaging system
- generic system
- glass fiber system
- glazing system
- goal-seeking system
- graphic numerical control system
- graphic processing system
- graphics system
- graphics-oriented system
- grating measuring system
- gravity oil system
- gray scale imaging system
- grinder vision system
- group control system
- guarding system
- guidance system
- guiding system
- handling system
- handwriting-input system
- hard-automated system
- hardware NC system
- hardware support system
- head change system
- head changer system
- head-changing flexible manufacturing system
- help system
- hierarchical coding system
- hierarchical control system
- hierarchical information control system
- high-noise-immunity system
- high-rise system
- high-speed positioning system
- high-speed-processor control system
- high-volume system
- Hirth gear-tooth system
- holding system
- holding tool system
- hole system
- holonomic system
- host computer-assisted programming system
- host distributive numerical control system
- hybrid computing system
- hydraulic oil system
- hydraulic system
- hydraulic-circuit system
- hypertext system
- ID system
- IDNC system
- illumination system
- image detection system
- image processing system
- imaging system
- IMC system
- immersion-washing system
- inconsistent system of equations
- incremental measuring system
- index system
- indirect lubrication system
- individual lubrication system
- inductive telemetry system
- inductively guided cart system
- industrial vision system
- in-feed system
- inference system
- in-floor chip-disposal system
- information infrastructure system
- information logical system
- information processing system
- information storage and retrieval system
- information system
- information-gathering system
- information-management system
- information-sharing system
- infrared imaging system
- infrared system
- in-house minicomputer system
- in-house system
- inlet control system
- in-process gaging system
- in-process sensing system
- in-process storage system
- insert-selection system
- instrumentation system
- insulating system
- integral movement monitoring system
- integrated CAD/CAPP/CAM system
- integrated CAM system
- integrated circuit numerical control system
- integrated computer system
- integrated information system
- integrated machine system
- integrated machining system
- integrated manufacturing and assembly system
- integrated manufacturing system
- integrated NC machine system
- integrated production system
- integrated sensor system
- intelligent control system
- interactive control system
- interactive graphics processing system
- interactive manufacturing control system
- interconnection system
- interdepartmental communication system
- interferometer measuring system
- interlocking system
- interrupt-driven system
- inventory-management system
- involute tooth system
- IR fault-signal system
- IR system
- ISO system of limits and tolerances
- isolated word recognition system
- jig boring measuring system
- job shop-type flexible system
- joint-actuation system
- just-in-time production system
- kanban pull system
- kinetic control system
- kitting system
- knowledge base management system
- knowledge system
- knowledge-based information system
- knowledge-based system
- krypton laser system
- labeling system
- labor-intensive system
- language-based NC system
- laser beam orientation system
- laser beam positioning system
- laser calibration system
- laser combination energy system
- laser digitizing system
- laser driving system
- laser full automated system
- laser inspection system
- laser interferometer measuring system
- laser machining system
- laser metalworking system
- laser micrometer system
- laser monitoring system
- laser mount system
- laser optical transformation system
- laser pulse power system
- laser pump system
- laser referencing system
- laser thread measurement system
- laser transducer system
- laser-cutting system
- laser-gaging system
- layered control system
- LDDM system
- lead screw drive system
- learning system
- library reference system
- library system
- light guide system
- light recognition system
- line motion control system
- line motion system
- line path system
- linear index system
- linear system of constant coefficients
- linear time invariant system
- linear time-varying system
- linear-encoder-equipped system
- LMFC system
- load/unload system
- loading robot system
- load-monitoring system
- local communications system
- logistics system
- look-up table system
- low-loss optical system
- low-volume lubricant delivery system
- lube system
- lubrication system with continuous delivery
- lubrication system with cyclic delivery
- lubrication system with performance control
- lubrication system without performance control
- lubrication system
- M system
- machine control system
- machine coordinate system
- machine health-monitoring system
- machine management system
- machine surveillance system
- machine tool capability-conditioning system
- machine tool system
- machine vision system
- machine/control system
- machine/tool/workpiece system
- machine-flexible system
- machine-zero reference system
- machining-cell system
- magnetic control system
- magnetic shaft suspension system
- main control system
- maintenance tracking system
- make-up system
- management control system
- management information system
- management system
- management-and-manufacturing system
- managerial reporting system
- man-computer system
- man-machine system
- man-plus-machine system
- manual data input system
- manual programming system
- manufacturing execution system
- manufacturing optimization system
- manufacturing software system
- manufacturing system
- many-degrees-of-freedom system
- many-variable system
- mass-elastic system
- master manufacturing control system
- master-slave control system
- material flow system
- material movement system
- material storage system
- materials-handling control system
- materials-handling system
- matrix array system
- matrix-type system
- MDI contouring control system
- MDI control system
- MDI NC system
- mean line system
- measurement/inspection system
- measuring coordinate system
- measuring system
- measuring/compensation system
- mechanical interface coordinate system
- memory NC system
- memory system
- menu drive system
- menu system
- menu-driven programming system
- metalforming production system with robots
- metalworking laser system
- metamorphic system
- metareasoning system
- metering system
- metrology system
- MIC system
- micro CAD/CAM programming system
- microadjustment system
- microchip-managed control system
- microdispensing system
- microintegrated system
- microload system
- micropackaged distributed system
- microprocessor based system
- microprocessor CNC system
- microprocessor system
- microprocessor-development system
- microstep control system
- microwave drill detection system
- milling CAM system
- milling system
- minicomputer-based numerical control system
- minicomputer-based system
- minicomputer-based test system
- miniload automated storage and retrieval system
- miniload system
- minimal constraint system
- minimum phase shift system
- mist-cooling system
- mixed forging-machining system
- mobility system
- model reference adaptive system
- moderately sized manufacturing system
- modular clamping system
- modular component tooling system
- modular fixture system
- modular holding system
- modular system
- modular tooling system
- modular work holding system
- monitoring system
- monorail material handling system
- motor position sensing system
- mounting system
- MPM system
- MRC system
- MRP system
- MS-DOS system
- multiaxis laser system
- multimachine system
- multimedia system
- multinetwork system
- multipallet system
- multiple computer system
- multiple laser technology system
- multiple pallet changer system
- multiple pallet handling system
- multiple parts feeding system
- multiple sensory system
- multiple spindle head handling-and-changing system
- multiple system of indexing
- multiple-gun spraying system
- multipoint lubrication system
- multipoint network control system
- multiprocessing system
- multiprocessor NC system
- multiprocessor system
- multiproduct manufacturing system
- multiprofile tool system
- multiprogramming system
- multirobot system
- multisensor system
- multiserver queueing system
- multistage system
- multitasking control system
- multiterminal system
- multiuser system
- multivendor information system
- multiwindowing software system
- Nagare system
- narrowly defined expert system
- national information system
- navigation system
- NC contouring system
- NC machine system
- NC part-programming system
- NC system
- NC tooling system
- NC/TP system
- nesting system
- network computer system
- network switching system
- network system
- noise diagnostic system
- noncircular copy-turning system
- noncompensated system
- noncontact laser marking system
- noncontact microwave system
- nonexpert system
- non-NC system
- numerical computer control system
- numerical contour control system
- numerical control system
- numerically controlled tool point system
- object-oriented system
- office system
- office-based programming system
- off-line adviser-type expert system
- off-line programming system
- off-line system
- off-the-shelf system
- oil mist system
- oil scavenge system
- oil system
- oil wash system
- oil-recirculating system
- oligarchical manufacturing system
- OLP system
- one man/one machine system
- one man-one operation-one job system
- one-machine flexible system
- one-piece tape spar-measuring system
- one-shot lubrication system
- on-line information system
- on-line process system
- on-line retrieval system
- on-line system
- on-line tool control system
- on-machine gaging system
- on-machine probing system
- on-off control system
- open architecture system
- open cooling system
- open system
- open-front system
- open-loop control system
- operating system
- operational system
- operator guidance system
- operator-controlled NC system
- optical detection system
- optical laser ranging system
- optical MAP system
- optical measurement/inspection system
- optical recognition system
- optical system for laser processing
- optical tracer backup system
- optical transmission system
- opti-feed system
- optimal-position control system
- order-driven system
- order-entry system
- order-picking system
- oscillating system
- oscillatory system
- out-feed system
- output collecting system
- overall system
- p.-t.-p. NC system
- package confinement system
- paging system
- pallet conveyor system
- pallet gripper system
- pallet ID system
- pallet storage system
- pallet storage/changer system
- pallet/platen transfer system
- pallet/robot flexible-machining system
- pallet-based materials handling system
- pallet-based system
- pallet-changer system
- pallet-coding system
- pallet-handling system
- palletized tool magazine system
- pallet-loading system
- pallet-moving system
- pallet-shuttle change system
- pallet-transfer system
- pallet-transport system
- paperless NC system
- parallel force system
- parallel lubrication system
- parametric CNC system
- part flow system
- part handling-and-storage system
- part program-editing system
- part queue system
- part-conveying system
- partial laser system
- part-programming system
- part-retrieval system
- passively mode-locked laser system
- path control system of a machine
- path control system
- pattern recognition system
- pattern tracing system
- pattern-directed system
- PC system
- PC-based CAD system
- PC-based vision system
- pendant-mounted CNC system
- perceptual system
- permanent electro system
- personal computer-based robotic vision system
- phase switching control system
- photogrammetric vision system
- photooptic tracing system
- photooptical tracing system
- piece rate system
- plane system of forces
- planner-oriented system
- plant-integration system
- platen system
- platform-independent CAM system
- playback system
- plugboard control system
- plugboard programming system
- point-to-point system
- popular laser system
- position control system
- positioning control system
- postprocess inspection system
- postprocess system
- postprocess-feedback gaging system
- potentiometer-setting system
- power generating system
- power system
- powered clamping system
- powered track system
- powerful robot system
- precision positioning system
- predictive machinability system
- predictive maintenance system
- pre-emptive system
- pregaging system
- preload system
- preset tooling system
- presetting system
- prismatic flexible manufacturing system
- prismatic machining system
- probe communication system
- problem-oriented information system
- process planning system
- process-flexible system
- production control system
- production expert system
- production-monitoring system
- productions system
- product-testing system
- programmable automation system
- programmable control system
- programmable logic control system
- programmable power monitoring system
- programmed sequence control system
- programming system
- proof-of-concept system
- proprietary NC system
- propulsion system
- propulsive system
- protection system
- prototype system
- prototyping system
- pull system of production
- pull system
- punch tape NC system
- purpose-made materials feeding system
- push system
- qualitative system
- quality control system
- quality system
- quantity produced systems
- question-and-answer system
- question-answering system
- queuing system
- quick-change system
- quick-change workpiece-fixturing system
- quick-change-cutter system
- rack system
- rack-picking system
- rail-borne robotic handling system
- rail-guided transport system
- random mission system
- random mix system
- random order system
- ranging system
- readout system
- ready-to-go system
- real-time vision system
- recirculation system
- rectangular coordinate system
- rectangular triordinate system
- reeving system
- reference retrieval system
- reference system
- reflecting high-power beam optical system
- register system
- registration system
- relay ladder logic system
- reporting system
- reprographic system
- resolver system
- restraint system
- RETIC system
- retrieval system
- retrofit system
- return spring system
- RGV pallet delivery system
- rigid track workpiece transport system
- rigid transfer system
- robot control system
- robot gantry storage-and-retrieval system
- robot learning system
- robot parts-handling system
- robot system
- robot teaching system
- robot tool changing system
- robot-based turning system
- robotic system
- robotic vision system
- robotics CAD system
- robotized metalforming system
- robot-like inspection system
- robot-measuring system
- rod memory system
- roller system
- roll-generating system
- rotary transfer system
- rotary-type tool-mounting system
- rotational system
- routing-flexible system
- rule-based expert system
- running fail-safe system
- running system
- run-time system
- safety actuation system
- safety system
- scale back system
- seam tracking laser processing system
- seam-tracking system
- security system
- selective assembly system
- selective control system
- self-adapting system
- self-contained starting system
- self-contained system
- self-monitoring measuring system
- self-optimizing adaptive control system
- self-programming NC system
- self-teaching system
- self-test system
- sensing system
- sensor system
- sensor-based system
- sensory control system
- sensory feedback system
- sensory interactive system
- sensory-processing system
- sentence recognition system
- sequencing control system
- sequential control system
- series lubrication system
- service system
- servo control system
- servo drive system
- servo positioning system
- servo transducer system
- servo-controlled blade-feed-pressure system
- setting system
- SFP system
- shaft system
- shared tools system
- shopfloor communication message system
- shopfloor part-programming system
- shopfloor programming system
- shopfloor-programming control system
- short-closed oil system
- shuttle car system
- shuttle system
- shuttle-type container system
- side-loading pallet system
- sign system
- signature-analysis system
- silhouetting system
- single system
- single-board computer system
- single-cell system
- single-line lubrication system
- single-point lubrication system
- single-stage system
- single-tube system
- single-unit machining system
- single-variable system
- sinking system
- six-station pallet system
- size-monitoring system
- skidless system
- skid-type system
- small knowledge system
- small scale system
- small-batch manufacturing system
- sociotechnical system
- software-based system
- software-operating system
- solid model CAD system
- solid modeling system
- solids-based system
- sonic digitizing system
- space-monitoring sensor system
- special-purpose CNC system
- special-purpose material handling system
- speech-understanding system
- spindle airblast system
- spindle-probe system
- splash lubrication system
- split-type of tooling system
- spray lubrication system
- sprocket-chain system
- stabilization system
- stabilizing system
- stacking system
- stand-alone system
- standard control system
- standard unit system
- starting system
- statistical process control system
- steady-state system
- stepping motor drive system
- stocker system
- stocking system
- stop-bolt locking system
- storage system
- storage-and-retrieval system
- storage-retrieval system
- straight cut control system
- straight-line control system
- stress calculations infinite element system
- structurally stable system
- structurally unstable system
- stub-tooth system
- subloop system
- supervision system
- supervisory computer control system
- supervisory control system
- surface-measurement system
- surveillance system
- suspension system
- swarf conveyance system
- swarf-management system
- swarf-removal system
- switching system
- synthetic vision system
- system of dimensioning
- system of forces
- system of limits and fits
- system of quantities
- system of the machine retaining devices
- system of units
- tactile sensing system
- tailored NC system
- tailor-made system
- tape-oriented system
- target system
- teach system
- teachable-logic control system
- teaching system
- teach-mode programming system
- technology-intensive system
- telecommunication system
- telemetry gage system
- telemetry system
- teleoperated system
- telepresence system
- telerobotic system
- ten-station pallet system
- term system
- test system
- testing system
- text organizing system
- thermal control system
- thermal enclosure system
- thermal propulsion system
- thread measurement system
- thread measuring system
- three-dimensional CAM system
- three-dimensional coordinate system
- three-wire thread measuring system
- through feed system
- through-the-tool system
- time control system
- time cycle system
- time-shared system
- time-sharing NC programming system
- time-sharing system
- tool animation system
- tool breakage prevention system
- tool change system
- tool condition monitoring system
- tool coolant system
- tool deflection calibration system
- tool identification tag system
- tool life control system
- tool life management system
- tool magazine exchanger system
- tool management system
- tool position-compensating system
- tool shank cleaning system
- tool storage and transport system
- tool storage/management system
- tool-associated system
- tool-clamp system
- tool-holder-work system
- tool-ID system
- tooling AGV system
- tooling system
- tool-in-hand system
- tool-in-use system
- tool-machine system
- tool-monitoring system
- tool-mounting system
- tool-presetting system
- tool-probing system
- tool-to-turret connection system
- tool-transfer system
- torque-monitoring system
- total system
- total-loss lubrication system
- touch-probe digitizer system
- touch-probe digitizing system
- touch-probe system
- towline cart system
- towline conveyor system
- towline handling system
- towline material handling system
- towline transfer system
- tracer control system
- tracing system
- track system
- tracking/scheduling system
- track-monitoring system
- transfer system
- translating system
- transmission system
- transporter system
- traverse-metering system
- tray-type transfer system
- triangulation system
- tribomechanical system
- tri-level stocker system
- triordinate system
- trolley control system
- trouble-free control system
- T-slot system
- tuned system
- turning system
- turning-and-chucking system
- turnkey computer control system
- turnkey system
- turret probing system
- turret tooling system
- two-line lubrication system
- two-machine system
- two-pallet exchange system
- two-shift system
- two-tier inspection system
- unattended machining system
- unattended production system
- uncertain system
- unified system
- unit bore system
- unit system
- unit-build system
- unit-load automated storage and retrieval system
- unit-load system
- UNIX-based 32-bit computer system
- unmonitored control system
- unstable system
- user identification system
- user's CAD system
- V coding system
- vacuum system
- variable pallet system
- variable-coefficient system
- variable-gain ACC system
- variable-mission system
- versatile data acquisition system
- vertical carousel system
- vertical rotating warehouse system
- vibration system
- vibratory system
- video measuring system
- video-based measurement system
- viewing system
- virtual design system
- virtual storage system
- vision guidance system
- vision metrology system
- vision optical system
- vision sensor system
- vision system
- vision tool-presetting system
- vision-based inspection system
- vision-based system
- visual computing system
- visual inspection system
- VME-based system
- voice data entry system
- voice system
- voice-input system
- volume-flexible system
- volume-metric lubrication system
- voluntary standards system
- warehousing system
- warning protection system
- warning system
- wash system
- waste material treatment system
- watchdog system
- waterjet system
- way-lubrication system
- wedge-locked tool clamping system
- wheelhead-measuring system
- windowing system
- wire-cut system
- wire-frame CAD system
- wire-guided transport system
- wire-guided trolley routing system
- word recognition system
- work infeed system
- work transfer system
- work transport system
- workhandling system
- work-holding system
- workpiece-cleaning system
- workstation-oriented CNC system
- zero error position systemEnglish-Russian dictionary of mechanical engineering and automation > system
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