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1 a factor used during a proving run to adjust for pressure on the steel in the prover and pipe
Oil: CpsУниверсальный русско-английский словарь > a factor used during a proving run to adjust for pressure on the steel in the prover and pipe
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2 gauge of unstrained thermal expansion in the steel
компенсирующий преобразователь для ликвидации действия свободного термического расширения сталиАнгло-русский словарь промышленной и научной лексики > gauge of unstrained thermal expansion in the steel
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3 Steel Frame
Metaphor for elite Indian Administrative Service, IAS; the steel frame that holds up the India edificeIभारतीय अंग्रेजी खिचड़ी (Indian-English slang) > Steel Frame
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4 steel
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5 steel
[stiːl] noun, adjective1.(of) a very hard alloy of iron and carbon, used for making tools etc:steel knives/chisels
فولاذHe had a grip of steel (= a very strong grip).
2. verbto harden and strengthen (oneself, one's nerves etc) in preparation for doing, or resisting, something:يَسْتَجْمِعُ قُوَّتَه وشَجاعَتَهHe steeled himself to meet the attack / to tell his wife the truth.
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6 steel
صُلْب \ callous: (of the skin) hardened and thick. firm: solid; hard; steady: We were standing on firm ground. The rope was firmly tied. hard: firm; not soft: as hard as iron. rigid: stiff; not bending; unable to bend. solid: (in science) not in the form of liquid or gas: Ice is water in a solid form. steel: iron that is hardened, by mixture with carbon, etc., so that it is very strong. stiff: not easily bent or shaped with one’s fingers: stiff cardboard; a stiff paste. tough: not easily cut or torn or broken: tough meat; tough glass. -
7 the correction for pressure on steel
Oil: CpsУниверсальный русско-английский словарь > the correction for pressure on steel
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8 the correction for temperature of steel
Oil: CtsУниверсальный русско-английский словарь > the correction for temperature of steel
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9 weten hoe de vork in de steel zit
know the ins and outs of the matter, know how the matter standsVan Dale Handwoordenboek Nederlands-Engels > weten hoe de vork in de steel zit
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10 de steel van een hamer
de steel van een hamerVan Dale Handwoordenboek Nederlands-Engels > de steel van een hamer
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11 Metro, the Paris
First opened in 1900, the Paris Metro (or Métropolitain) is the city's subway system or underground railway system. Most of the network within central Paris is underground, though there are some aerial sections, notably on routes 2 and 6. It is linked with the city's suburban rapid transit system, the RER. The Paris Metro is Europe's second most-used urban subway system after the Moscow underground. Most routes use standard gauge steel rail tracks, though five of the routes operate with rubber-tyred rolling stock, running on concrete tracks. These are considerably quieter than the traditional trains used on other routes. The most recent route, line 14, opened in 1998 and known as the "Météor", uses driverless trains.Dictionnaire Français-Anglais. Agriculture Biologique > Metro, the Paris
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12 A solid steel wire used to support the structure of an airplane's wings or fuselage.
Aviation: bracing wireУниверсальный русско-английский словарь > A solid steel wire used to support the structure of an airplane's wings or fuselage.
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13 International Organization for Co-operation in the Iron & Steel Industry
Abbreviation: INTERMETALУниверсальный русско-английский словарь > International Organization for Co-operation in the Iron & Steel Industry
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14 под
•The steel cylinder lies beneath an electrostatic field.
•A tray is fitted underneath (or below, or under) the electrodes for storage of unheated rivets.
•The region beneath the dotted curve represents...
IIсм. отделыватьIVРусско-английский научно-технический словарь переводчика > под
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15 поступать в продажу в виде
•The steel is available in rolled strip form.
Русско-английский научно-технический словарь переводчика > поступать в продажу в виде
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16 Stelco
The Steel Company of Canada Ltd — (фирм., Канада) - см. приложение 2Англо-русский словарь промышленной и научной лексики > Stelco
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17 Riley, James
SUBJECT AREA: Metallurgy[br]b. 1840 Halifax, Englandd. 15 July 1910 Harrogate, England[br]English steelmaker who promoted the manufacture of low-carbon bulk steel by the open-hearth process for tin plate and shipbuilding; pioneer of nickel steels.[br]After working as a millwright in Halifax, Riley found employment at the Ormesby Ironworks in Middlesbrough until, in 1869, he became manager of the Askam Ironworks in Cumberland. Three years later, in 1872, he was appointed Blast-furnace Manager at the pioneering Siemens Steel Company's works at Landore, near Swansea in South Wales. Using Spanish ore, he produced the manganese-rich iron (spiegeleisen) required as an additive to make satisfactory steel. Riley was promoted in 1874 to be General Manager at Landore, and he worked with William Siemens to develop the use of the latter's regenerative furnace for the production of open-hearth steel. He persuaded Welsh makers of tin plate to use sheets rolled from lowcarbon (mild) steel instead of from charcoal iron and, partly by publishing some test results, he was instrumental in influencing the Admiralty to build two naval vessels of mild steel, the Mercury and the Iris.In 1878 Riley moved north on his appointment as General Manager of the Steel Company of Scotland, a firm closely associated with Charles Tennant that was formed in 1872 to make steel by the Siemens process. Already by 1878, fourteen Siemens melting furnaces had been erected, and in that year 42,000 long tons of ingots were produced at the company's Hallside (Newton) Works, situated 8 km (5 miles) south-east of Glasgow. Under Riley's leadership, steelmaking in open-hearth furnaces was initiated at a second plant situated at Blochairn. Plates and sections for all aspects of shipbuilding, including boilers, formed the main products; the company also supplied the greater part of the steel for the Forth (Railway) Bridge. Riley was associated with technical modifications which improved the performance of steelmaking furnaces using Siemens's principles. He built a gasfired cupola for melting pig-iron, and constructed the first British "universal" plate mill using three-high rolls (Lauth mill).At the request of French interests, Riley investigated the properties of steels containing various proportions of nickel; the report that he read before the Iron and Steel Institute in 1889 successfully brought to the notice of potential users the greatly enhanced strength that nickel could impart and its ability to yield alloys possessing substantially lower corrodibility.The Steel Company of Scotland paid dividends in the years to 1890, but then came a lean period. In 1895, at the age of 54, Riley moved once more to another employer, becoming General Manager of the Glasgow Iron and Steel Company, which had just laid out a new steelmaking plant at Wishaw, 25 km (15 miles) south-east of Glasgow, where it already had blast furnaces. Still the technical innovator, in 1900 Riley presented an account of his experiences in introducing molten blast-furnace metal as feed for the open-hearth steel furnaces. In the early 1890s it was largely through Riley's efforts that a West of Scotland Board of Conciliation and Arbitration for the Manufactured Steel Trade came into being; he was its first Chairman and then its President.In 1899 James Riley resigned from his Scottish employment to move back to his native Yorkshire, where he became his own master by acquiring the small Richmond Ironworks situated at Stockton-on-Tees. Although Riley's 1900 account to the Iron and Steel Institute was the last of the many of which he was author, he continued to contribute to the discussion of papers written by others.[br]Principal Honours and DistinctionsPresident, West of Scotland Iron and Steel Institute 1893–5. Vice-President, Iron and Steel Institute, 1893–1910. Iron and Steel Institute (London) Bessemer Gold Medal 1887.Bibliography1876, "On steel for shipbuilding as supplied to the Royal Navy", Transactions of the Institute of Naval Architects 17:135–55.1884, "On recent improvements in the method of manufacture of open-hearth steel", Journal of the Iron and Steel Institute 2:43–52 plus plates 27–31.1887, "Some investigations as to the effects of different methods of treatment of mild steel in the manufacture of plates", Journal of the Iron and Steel Institute 1:121–30 (plus sheets II and III and plates XI and XII).27 February 1888, "Improvements in basichearth steel making furnaces", British patent no. 2,896.27 February 1888, "Improvements in regenerative furnaces for steel-making and analogous operations", British patent no. 2,899.1889, "Alloys of nickel and steel", Journal of the Iron and Steel Institute 1:45–55.Further ReadingA.Slaven, 1986, "James Riley", in Dictionary of Scottish Business Biography 1860–1960, Volume 1: The Staple Industries (ed. A.Slaven and S. Checkland), Aberdeen: Aberdeen University Press, 136–8."Men you know", The Bailie (Glasgow) 23 January 1884, series no. 588 (a brief biography, with portrait).J.C.Carr and W.Taplin, 1962, History of the British Steel Industry, Harvard University Press (contains an excellent summary of salient events).JKA -
18 арматура
accessory, armature, carcass строит., fitment, fitting, fixture, ( из металлов) hardware, reinforcement, reinforcing steel, ( железобетона) steel* * *армату́ра ж.1. ( принадлежности) accessories, fitting(s), fixtures2. ( элемент усиления железобетонных конструкций) reinforcementзаде́лывать армату́ру — embed the steelзакрепля́ть армату́ру (в бето́не) — anchor reinforcing bars to (concrete)захва́тывать армату́ру — grip the bars [wires]насыща́ть армату́рой — congest with reinforcementнасы́щенный армату́рой — congested with reinforcementнатя́гивать армату́ру ( в случае напряжённого армирования) — stress the steelнатя́гивать армату́ру упо́ры — pre-tension the tendonsнатя́гивать армату́ру механи́ческим спо́собом — tension the tendons with jacksнатя́гивать армату́ру на бето́н — post-tension the tendonsнатя́гивать армату́ру электротерми́ческим спо́собом — tension the tendons by electrical heatingопрессо́вывать армату́ру в обо́йме — swage a fitting on (a strand of) barsармату́ра передаё́т предвари́тельное напряже́ние на бето́н (напр. посредством сцепления) — the tendons transfer the prestress to the concreteсцепля́ть армату́ру с бето́ном — bond the concrete to the barsустана́вливать армату́ру — place the steelармату́ра для железобето́на — reinforcementармату́ра для железобето́на, вспомога́тельная — secondary [auxiliary] reinforcementармату́ра для железобето́на, вя́заная — spliced bars, tied reinforcementармату́ра для железобето́на, ги́бкая — flexible reinforcementармату́ра для железобето́на, гла́вная — principal reinforcementармату́ра для железобето́на, гла́дкая — plain (reinforcing) barsармату́ра для железобето́на, гну́тая — bent barsармату́ра для железобето́на, двойна́я — double [twin] barsармату́ра для железобето́на, двойна́я кручё́ная — twin-twisted barsармату́ра для железобето́на, двухсло́йная — two-layer reinforcementармату́ра для железобето́на, диспе́рсная — dispersed [distributed] reinforcementармату́ра для железобето́на, жё́сткая — stiff [rigid] reinforcementармату́ра для железобето́на, заанкеро́ванная — end-anchored reinforcementармату́ра для железобето́на заводско́го изготовле́ния — prefabricated reinforcementармату́ра для железобето́на, защемлё́нная — gripped reinforcementармату́ра для железобето́на, из про́волочной се́тки — wire-fabric reinforcementармату́ра для железобето́на, карка́сная1. ( плоская) bar mat (reinforcement)2. ( пространственная) cage reinforcementармату́ра для железобето́на, квадра́тного сече́ния — square barsармату́ра для железобето́на, концева́я — end reinforcementармату́ра для железобето́на, коса́я — diagonal reinforcementармату́ра для железобето́на, кру́глая — round (reinforcing) barsармату́ра для железобето́на, кручё́ная — twisted steel barsармату́ра для железобето́на, монта́жная — auxiliary [secondary] reinforcementармату́ра для железобето́на, накло́нная — pitch reinforcementармату́ра для железобето́на, напряга́емая — tendonsотпуска́ть напряга́емую армату́ру для железобето́на — relieve the external pull on the tendonsрастя́гивать напряга́емую армату́ру для железобето́на — stretch (the) tendonsармату́ра для железобето́на, несу́щая — bearing (steel) barsармату́ра для железобето́на, неразрезна́я — continuous (steel) barsармату́ра для железобето́на, ото́гнутая — bent-up (reinforcing) barsармату́ра для железобето́на, перекрё́стная — two-way reinforcementармату́ра для железобето́на, периоди́ческого про́филя — deformed (reinforcing steel) barsармату́ра для железобето́на, попере́чная — lateral [transverse] reinforcementармату́ра для железобето́на, про́волочная — wire reinforcement, wire bindersармату́ра для железобето́на, продо́льная — longitudinal reinforcementармату́ра для железобето́на, прутко́вая — bar [rod] reinforcementармату́ра для железобето́на, пря́девая — strand reinforcementармату́ра для железобето́на, пучко́вая — cable reinforcementармату́ра для железобето́на, рабо́тающая на изги́б — reinforcement bendingармату́ра для железобето́на, рабо́тающая на растяже́ние — tensile reinforcementармату́ра для железобето́на, рабо́тающая на сжа́тие — compression reinforcementармату́ра для железобето́на, рабо́тающая на срез — shear reinforcementармату́ра для железобето́на, рабо́чая — principal [main] reinforcementармату́ра для железобето́на, распредели́тельная — distribution reinforcementармату́ра для железобето́на, растя́нутая — tensile reinforcementармату́ра для железобето́на, самоанкеру́ющаяся — bond-anchored barsармату́ра для железобето́на, сварна́я — welding rodsармату́ра для железобето́на, се́тчатая — fabric reinforcementармату́ра для железобето́на, сжа́тая — compressive reinforcementармату́ра для железобето́на, спира́льная — spiral [hooped] reinforcementармату́ра для железобето́на, стальна́я — steel rods, steel barsармату́ра для железобето́на, стержнева́я — bar reinforcementармату́ра для железобето́на, тавро́вая — tee barsармату́ра для железобето́на, уса́дочная — shrinkage barsкоте́льная армату́ра — boiler valves (and accessories)лине́йная армату́ра эл. — line accessoriesармату́ра ли́ний электропереда́чи для опо́р — pole fittings, pole attachmentsармату́ра ли́нии электропереда́чи для проводо́в — line accessoriesармату́ра ли́нии электропереда́чи для тро́са заземле́ния — earth-wire [ground-wire] attachmentsармату́ра ли́нии электропереда́чи, изоля́торная — insulator attachmentsармату́ра ли́нии электропереда́чи, сцепна́я — line accessoriesосвети́тельная армату́ра — брит. lighting fittings; амер. lighting fixturesосвети́тельная, брызгозащищё́нная армату́ра — splash-proof lighting fittingsосвети́тельная, взрывобезопа́сная армату́ра — брит. flame-proof lighting fittings; амер. explosion-proof lighting fixturesосвети́тельная, вибропро́чная армату́ра — vibration-proof lighting fittingосвети́тельная, вибросто́йкая армату́ра — vibration-resistant lighting fittingосвети́тельная, водонепроница́емая армату́ра — water-proof lighting fittingосвети́тельная, подвесна́я армату́ра — pendant lighting fittingосвети́тельная, потоло́чная армату́ра — ceiling lighting fittingосвети́тельная, струезащи́тная армату́ра — hose-proof lighting fittingпечна́я армату́ра — furnace accessoriesармату́ра прока́тного ста́на, валко́вая — guide [roll] fittingsармату́ра прока́тного ста́на, канту́ющая — twist guideармату́ра прока́тного ста́на, приводна́я — driving barsармату́ра прока́тного ста́на, проводко́вая — guide unitармату́ра прока́тного ста́на, распредели́тельная — distributing barsармату́ра прока́тного ста́на, ро́ликовая — roller guide unitсма́зочная армату́ра — lubrication fittingsтрубопрово́дная армату́ра — valvesтрубопрово́дная, бесфла́нцевая армату́ра — welding-end valvesтрубопрово́дная, га́зовая армату́ра — gas-line valves (and accessories)трубопрово́дная, дро́ссельная армату́ра — throttling valvesтрубопрово́дная, забо́ртная армату́ра мор. — sea valvesтрубопрово́дная, запо́рная армату́ра — stop valvesтрубопрово́дная, защи́тная армату́ра — relief [safety] valvesтрубопрово́дная, му́фтовая армату́ра — screwed valvesтрубопрово́дная, предохрани́тельная армату́ра — relief [safety] valvesтрубопрово́дная, приварна́я армату́ра — welding-end valvesтрубопрово́дная, приводна́я армату́ра — power(-operated) valvesтрубопрово́дная, проду́вочная армату́ра — blow-off valvesтрубопрово́дная, регули́рующая армату́ра — control valvesтрубопрово́дная, фла́нцевая армату́ра — flanged valvesармату́ра цили́ндра — cylinder fittingsэлектроустано́вочная армату́ра — wiring accessories -
19 Huntsman, Benjamin
SUBJECT AREA: Metallurgy[br]b. 1704 Barton-on-Humber, Lincolnshire, Englandd. 21 June 1776 Sheffield, England[br]English inventor of crucible steelmaking.[br]Of Dutch descent, Hunstman was apprenticed to a clockmaker at Epworth, Lincolnshire. In 1725 he set up in Doncaster as a maker of clocks, locks and roasting jacks. He made improvements in his tools but found himself hampered by the poor quality of the steel available, then made by the cementation process, which yielded a steel with a non-uniform carbon content. Around 1740, Huntsman moved to Handsworth, now part of Sheffield, and began experimenting by heating varying compositions of fuel and flux with crude steel in a crucible, to obtain a steel of uniform composition. During the years 1745 to 1750 he attained his object, but not without many unsuccessful "heats", as excavations of the site of his works now reveal. Although his steel was far better than that previously available, however, the conservative cutlers of Sheffield rejected it, claiming it was too hard to work; therefore Huntsman exported his product to France, where the cutlers promptly worked it into high-quality knives and razors that were exported to England. The Sheffield cutlers' attempts to prevent Huntsman from exporting his steel proved unsuccessful. Huntsman did not patent his process, preferring to retain his advantage by shrouding his work in secrecy, carrying out his melting at night to escape observation, but a rival cutler, Samuel Walker, gained admittance to Huntsman's works disguised as a tramp seeking food. As a result, Walker was able to make crucible steel at a handsome profit. Huntsman fought back and earned success through the sheer quality of his steel, and had to move to.a larger site at Attercliffe in 1770. Crucible steelmaking remained important through the nineteenth century although, as it was a small-scale process, its application was restricted to engineers' cutting tools and the cutting edges of certain tools.[br]Further ReadingE.W.Hulme, 1945, "The pedigree and career of Benjamin Huntsman, inventor in Europe of crucible steel", Transactions of the Newcomen Society 24:37–48.W.K.V.Gale, 1969, Iron and Steel, London: Longman.LRD -
20 износ рельса вертикальный
Tengiz: head height loss (wear on the top of the railhead i.e. reduction of the railhead caused by the wheel tread - result of abrasive action between the steel wheel on the steel rail), top wear ( wear on the top of the railhead i.e. reduction of the railhead caused by the wheel tread - result of abrasive action between the steel wheel on the steel rail), tread wear (wear on the top of the railhead i.e. reduction of the railhead caused by the wheel tread - result of abrasive action between the steel wheel on the steel rail), vertical wear (wear on the top of the railhead i.e. reduction of the railhead caused by the wheel tread - result of abrasive action between the steel wheel on the steel rail)Универсальный русско-английский словарь > износ рельса вертикальный
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