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1 spring arrangement
1) Железнодорожный термин: рессорная система, рессорное устройство2) Автомобильный термин: расположение пружин, расположение пружин подвески, расположение рессор, расположение рессор подвески -
2 spring arrangement
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3 spring arrangement
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4 spring arrangement
расположение рессор; расположение пружинАнгло-русский словарь по машиностроению > spring arrangement
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5 spring arrangement
пружинный механизм [устройство]Englsh-Russian aviation and space dictionary > spring arrangement
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6 seismic mass and spring arrangement
did <i&c> ■ Feder-Masse-System nEnglish-german technical dictionary > seismic mass and spring arrangement
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7 arrangement
расположение в определённом порядке; система размещения [расположения]; компоновка; ( аэродинамическая) схема; планировка; переделка, приспособление; монтаж; устройство; pl. приготовления; мероприятия; планыmultiple arrangement of engines — группа [связка] двигателей
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8 arrangement
1) размещение; расположение2) устройство•- cylinder arrangement
- dimmer arrangement
- general arrangement
- locking arrangement
- lubricating arrangement
- parking arrangement
- porting arrangement
- seating arrangement
- spring arrangement
- starting arrangement
- suspension arrangement
- tilting arrangement
- valve arrangement
- wheel arrangement
- wiring arrangement* * * -
9 spring
пружина; рессора (цилиндрическая, листовая); упругость; эластичность; разводка зубьев пилы; источник; родник; ключ; II подвешивать на рессорах; подвешивать на пружинах; подрессоривать; пружинить; соединять пружинами; прыгать; подскакивать- spring and guide assembly - spring application - spring arch - spring arrangement - spring ball joint - spring bearer plate - spring block - spring centre bolt - spring centre clamp - spring centre hump - spring chair - spring collar - spring compressor - spring-controlled - spring coupling plate - spring cover - spring damper coil - spring deflection - spring end - spring fixed end - spring fixed eye - spring forge - spring frame of seat - spring free end - spring gaiter - spring hoop - spring horn - spring-leaf opener - spring-leaf retainer - spring liner - spring-loaded - spring-loaded check valve - spring-loaded oil seal - spring-loaded plunger - spring-loaded valve - spring oiler - spring opener - spring-opposed - spring pivot seat - spring reinforced eye - spring retainer - spring retainer lock - spring-return - spring seat angle - spring seat centre line - spring separator - spring shackle pin - spring solid eye - spring spacer - spring-spoke steering wheel - spring-spoked steering wheel - spring squeak - spring steel - spring stiffness - spring stirrup - spring stop - spring support - spring surge - spring suspension - spring tension pawl - spring-tensioned oil seal - spring thrust - spring tie bolt - spring tongue - spring-trip hitch - spring-tyre self-starter - spring U-bolt - spring upturned eye - spring washer - spring wheel - spring wire - spring with compression shackle - spring wrapper eye - air spring - antagonistic spring - antirattle spring - blade spring - block spring - car spring - carriage spring - case spring - centring spring - close-coiled spring - cluster spring - conical spring - constant spring - disconnecting spring - double-cone spring - double-elliptic spring - draft spring - end spring - feather spring - feed spring - fly spring - Garter spring - hair spring - jack spring - journal spring - nest spring - parabolic spring - pressing spring - progressively wound valve spring - recuperator spring - restoring spring - stabilizer spring - starting crankshaft spring - steering clutch spring - steering knuckle tie rod spring - step spring - stop spring - stiff spring - superposed plate spring - supplementary spring - supporting spring - suspended spring - suspension spring - symmetrical spring - tempered spring - tension spring - three-quarter elliptic spring - throw-over spring - thrust spring - tie-rod spring - torsion spring - torsion bar spring - torsional spring - transverse spring - trailing spring - tripping spring - twist spring - two-stage spring - two-way spring - underhung spring - underslung spring - universal-joint casing spring - unloaded spring - unsymmetrical spring - valve spring - valve rocker shaft spring - variable rate spring - vibrator spring - volute spring - water pump spring - weak spring - wound spring - yoke spring - zero spring -
10 spring-dashpot arrangement
spring-dashpot arrangement ( spring-dashpot combination) Kombination f von Feder und (hydraulischem) Dämpfer (zur Korrektur des Zeitverhaltens)English-German dictionary of Electrical Engineering and Electronics > spring-dashpot arrangement
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11 arrangement
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12 spring nest tension arrangement
English-Russian mining dictionary > spring nest tension arrangement
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13 top roll spring balance arrangement
English-Russian big polytechnic dictionary > top roll spring balance arrangement
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14 top roll spring balance arrangement
Англо-русский металлургический словарь > top roll spring balance arrangement
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15 top roll spring balance arrangement
Универсальный англо-русский словарь > top roll spring balance arrangement
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16 top roll spring balance arrangement
Англо-русский словарь по прокатке металлов > top roll spring balance arrangement
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17 wheel
колесо; штурвал ( управления) ; pl. шасси"light on the wheel" — разг. «едва касаясь ВПП колёсами»
hydraulically powered landing gear wheels — колеса шасси с гидроприводом (напр. для заруливания вертолёта после складывания лопастей несущего винта)
nose (gear) steering wheel — штурвал управления носовым шасси [разворотом передней стойки]
turbine wheel with integral shaft — рабочее колесо турбины, выполненное заодно с валом
wheels down and locked — «шасси вышло и встало на замки»
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18 valve
1) = float needle2) клапан (рис. 15,16); вентиль; задвижка; заслонка; золотник; кран; распределительный кран; створка (дверцы); электронная лампа; гидро- или пневмораспределитель; затвор (гидротехнический); (редко) форсунка; II подавать через клапан; питать через клапан; снабжать; обеспечивать - time the valves - valve acceleration - valve-actuating gear - valve adjusting screw - valve arrangement - valve base patch - valve cock disk - valve control mechanism - valve diameter - valve dust cap - valve edge - valve enclosure - valve end - valve extractor - valve grinding - valve gutter - valve guttering - valve head slot - valve holder - valve hole - valve inside - valve inside plunger pin - valve knock - valve lag - valve lap - valve lead - valve lifter roller - valve lifter roller pin - valve lifting cam - valve location - valve manifold - valve mechanism - valve of tyre - valve operating mechanism - valve refacer - valve refacing - valve refacing machine - valve regulation - valve remover - valve reseating - valve retainer lock - valve return - valve rim - valve rocker arm - valve rocker lever - valve rocker pedestal - valve rocker roller - valve rocker roller pin - valve rocker shaft - valve scaling - valve scorching - valve seal - valve seat bore - valve seat extractor - valve seat grinder - valve seating - valve seating tool - valve sinkage - valve slot - valve spring compressor - valve spring damper - valve spring holder - valve spring key - valve spring lifter - valve spring remover - valve spring retainer - valve spring seat - valve spring seat key - valve spring seat pin - valve spring surge - valve spring tool - valve spring washer - valve stem end - valve stem groove - valve stem guide - valve stem seal - valve stripping - valve surge damper - valve system - valve tab - valve tappet clearance - valve tappet roller pin - valve tappet tube - valve tension spring - valve the gas - valve thimble - valve throat - valve timing - valve timing diagram - valve tip - valve train - valve travel - valve unit - valve unloader assembly - valve velocity - valve wrench - supplementary air valve - clapper swing-check valve - closed-centre valve - cross-feed valve - compensation valve - flapper-nozzle valve - flow regulator valve - large capacity brake valve - metering valve - multipurpose valve - pilot valve - programmable valve with 24 hour/7 day timer for closing and opening the compressed air ringmain - programmable valve with line-to-valve-connection and 1 BSP - quick-closing valve - quick-opening valve - single-stage valve - slide valve collar - sliding-sleeve valve - sliding throttle valve - spool valve - spring turn - spring-and-ball valve - stainless steel padlockable decompressing valve- T-valve- water check valve - water-cooled valve - zero-lap valve -
19 Huygens, Christiaan
SUBJECT AREA: Horology[br]b. 14 April 1629 The Hague, the Netherlandsd. 8 June 1695 The Hague, the Netherlands[br]Dutch scientist who was responsible for two of the greatest advances in horology: the successful application of both the pendulum to the clock and the balance spring to the watch.[br]Huygens was born into a cultured and privileged class. His father, Constantijn, was a poet and statesman who had wide interests. Constantijn exerted a strong influence on his son, who was educated at home until he reached the age of 16. Christiaan studied law and mathematics at Ley den University from 1645 to 1647, and continued his studies at the Collegium Arausiacum in Breda until 1649. He then lived at The Hague, where he had the means to devote his time entirely to study. In 1666 he became a Member of the Académie des Sciences in Paris and settled there until his return to The Hague in 1681. He also had a close relationship with the Royal Society and visited London on three occasions, meeting Newton on his last visit in 1689. Huygens had a wide range of interests and made significant contributions in mathematics, astronomy, optics and mechanics. He also made technical advances in optical instruments and horology.Despite the efforts of Burgi there had been no significant improvement in the performance of ordinary clocks and watches from their inception to Huygens's time, as they were controlled by foliots or balances which had no natural period of oscillation. The pendulum appeared to offer a means of improvement as it had a natural period of oscillation that was almost independent of amplitude. Galileo Galilei had already pioneered the use of a freely suspended pendulum for timing events, but it was by no means obvious how it could be kept swinging and used to control a clock. Towards the end of his life Galileo described such a. mechanism to his son Vincenzio, who constructed a model after his father's death, although it was not completed when he himself died in 1642. This model appears to have been copied in Italy, but it had little influence on horology, partly because of the circumstances in which it was produced and possibly also because it differed radically from clocks of that period. The crucial event occurred on Christmas Day 1656 when Huygens, quite independently, succeeded in adapting an existing spring-driven table clock so that it was not only controlled by a pendulum but also kept it swinging. In the following year he was granted a privilege or patent for this clock, and several were made by the clockmaker Salomon Coster of The Hague. The use of the pendulum produced a dramatic improvement in timekeeping, reducing the daily error from minutes to seconds, but Huygens was aware that the pendulum was not truly isochronous. This error was magnified by the use of the existing verge escapement, which made the pendulum swing through a large arc. He overcame this defect very elegantly by fitting cheeks at the pendulum suspension point, progressively reducing the effective length of the pendulum as the amplitude increased. Initially the cheeks were shaped empirically, but he was later able to show that they should have a cycloidal shape. The cheeks were not adopted universally because they introduced other defects, and the problem was eventually solved more prosaically by way of new escapements which reduced the swing of the pendulum. Huygens's clocks had another innovatory feature: maintaining power, which kept the clock going while it was being wound.Pendulums could not be used for portable timepieces, which continued to use balances despite their deficiencies. Robert Hooke was probably the first to apply a spring to the balance, but his efforts were not successful. From his work on the pendulum Huygens was well aware of the conditions necessary for isochronism in a vibrating system, and in January 1675, with a flash of inspiration, he realized that this could be achieved by controlling the oscillations of the balance with a spiral spring, an arrangement that is still used in mechanical watches. The first model was made for Huygens in Paris by the clockmaker Isaac Thuret, who attempted to appropriate the invention and patent it himself. Huygens had for many years been trying unsuccessfully to adapt the pendulum clock for use at sea (in order to determine longitude), and he hoped that a balance-spring timekeeper might be better suited for this purpose. However, he was disillusioned as its timekeeping proved to be much more susceptible to changes in temperature than that of the pendulum clock.[br]Principal Honours and DistinctionsFRS 1663. Member of the Académie Royale des Sciences 1666.BibliographyFor his complete works, see Oeuvres complètes de Christian Huygens, 1888–1950, 22 vols, The Hague.1658, Horologium, The Hague; repub., 1970, trans. E.L.Edwardes, AntiquarianHorology 7:35–55 (describes the pendulum clock).1673, Horologium Oscillatorium, Paris; repub., 1986, The Pendulum Clock or Demonstrations Concerning the Motion ofPendula as Applied to Clocks, trans.R.J.Blackwell, Ames.The balance spring watch was first described in Journal des Sçavans 25 February 1675, and translated in Philosophical Transactions of the Royal Society (1675) 4:272–3.Further ReadingH.J.M.Bos, 1972, Dictionary of Scientific Biography, ed. C.C.Gillispie, Vol. 6, New York, pp. 597–613 (for a fuller account of his life and scientific work, but note the incorrect date of his death).R.Plomp, 1979, Spring-Driven Dutch Pendulum Clocks, 1657–1710, Schiedam (describes Huygens's application of the pendulum to the clock).S.A.Bedini, 1991, The Pulse of Time, Florence (describes Galileo's contribution of the pendulum to the clock).J.H.Leopold, 1982, "L"Invention par Christiaan Huygens du ressort spiral réglant pour les montres', Huygens et la France, Paris, pp. 154–7 (describes the application of the balance spring to the watch).A.R.Hall, 1978, "Horology and criticism", Studia Copernica 16:261–81 (discusses Hooke's contribution).DV -
20 brake
тормоз; тормозное устройство; с.х. тяжёлая борона; II тормозить; притормаживать; разбивать комья (бороной); месить; мять- brake actuating piston - brake anchor plate - brake anchorage - brake application time - brake band clevis - brake band lining - brake bell crank - brake bleed nipple spanner - brake bleeder tank - brake bleeder tube - brake cable - brake caliper - brake caliper lever - brake cam - brake camshaft - brake camshaft lever - brake chamber - brake chatter - brake cheek - brake clevis - brake clip - brake compressor - brake conduit - brake cone - brake control - brake controller - brake controls - brake coupling - brake cross lever - brake cylinder - brake cylinder lever - brake cylinder piston - brake cylinder piston cup - brake cylinder pressure - brake cylinder release valve - brake diagram - brake disk - brake disk pack - brake drag - brake drum - brake drum anvil - brake drum dust cover - brake drum fin - brake drum lathe - brake-drum liner - brake dynamometer - brake equalizer - brake expander - brake fade - brake fluid - brake fluid header tank - brake fluid reservoir - brake fluid warning light - brake force - brake force limiter - brake fuel consumption - brake gear - brake governor - brake hand lever - brake handle - brake hard - brake head - brake hop - brake hood - brake horsepower - brake horsepower efficiency - brake horsepower-hour - brake hose - brake hose clip - brake housing - brake hub - brake hydraulic valve - brake intermediate shaft - brake latch - brake latch rod - brake latch spoon - brake latch spring - brake lever - brake lever pawl - brake lever quadrant - brake lever sector - brake lever segment - brake lights - brake line - brake lining - brake linkage - brake load - brake lug - brake master cylinder - brake mean effective pressure - brake motor - brake operating cam - brake operating lever - brake operating spindle - brake pad - brake pawl - brake pedal - brake pedal arm - brake pedal shaft - brake pipe - brake piston - brake power - brake pressure - brake pull-rod - brake pulley - brake push rod - brake ratchet - brake release - brake release spring - brake reliner - brake reservoir - brake resistance - brake rigging - brake ring - brake rod - brake rod yoke - brake scotch - brake shaft - brake shoe - brake shoe adjusting cam - brake shoe anchor bolt - brake shoe carrier - brake shoe expander - brake shoe facing - brake shoe fulcrum pin - brake shoe grinder - brake shoe hinge pin - brake shoe lining - brake shoe return spring - brake slack - brake specific fuel consumption - brake spring - brake spring pliers - brake squeak - brake support - brake surface - brake test - brake tester - brake thermal efficiency - brake thrust ring - brake thrust screw - brake toggle - brake torque - brake tube flaring tool set - brake up - brake value - brake valve - brake with two leading shoes - release the brake - air-brake failure - air-brake hose - air-over-hydraulic brake - baking brake plate - cable-operated brake - cable-operated hand brake - cam brake - cam-actuated brake - cam-operated brake - Carpenter brake - centrifugal brake - chain brake - cheek brake - clasp brake - clip brake - clutch brake - coaster brake - combined compressed-air and hydraulic brake - compressed-air brake - cone brake - contracting band brake - crane brake - dead-weight brake - differential brake - differential steering brake - disc brake - double-block brake - drum brake - duo-servo brake - dynamometer brake - eddy-current brake - effective brake - electric brake - electromagnetic brake - electromagnetic brake with clamping jaws - electropneumatic brake - emergency brake - emergency contracting brake - engine brake - exhaust brake - expanding brake - expanding band brake - expanding inside brake - expanding wedge brake - expansion brake - external brake - external block brake - external cheek brake - external contracting brake - externally acting brake - fan brake - fluid brake - foot brake - four-wheel brakes - friction brake - front-wheel brake - grip brake - gripper brake - half servo brake - hand brake - hand lever brake - hoist brake - hoisting gear brake - hub brake - hydraulic brake - hydraulic brake with vacuum power - hydraulic foot brake - inboard brake - inner brake - inside brake - internal brake - internal block brake - internal-expanding brake - internal wheel brake - internally acting brake - key-operated brake - knee brake - Kunze-Knorr brake - lever brake - lift brake - link brake - liquid brake - load-pressure brake - load reaction brake - lowering brake - magnetic brake - Maley brake - master clutch brake - mechanical brake - multiple-disc brake - needle brake - oil brake - outer brake - outer band brake - outside-mounted brake - overrunning trailer brake - parking brake - pedal brake - plate brake - pneumatic brake - power brake - progressive brake - Prony brake - quick-action air brake - regenerative brake - rim brake - rope brake - safety brake - screw brake - segmented rotor brake - self-acting brake - self-actuating brake - self-energizing brake - service brake - servo brake - servo and power brake - servo-assisted brake - shoe brake - single-block brake - skate brake - slipper brake - solenoid brake - speed brake - steering brake - steering-clutch brake - stopping brake - strap brake - thrust brake - toggle brake - track brake - transmission brake - triple servo brake - tyre brake - unbalanced brake - vacuum brake - vacuum power brake - V-block brake - water brake - water-cooled brake - wedge brake - wedge-operated brake - weight brake - Westinghouse brake - wheel brake - wing brake
См. также в других словарях:
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