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81 spindle
1) шпиндель; вал, валик; ось2) пиноль3) стержень; палец4) шейка вала; цапфа5) микрометрический винт; измерительный наконечник (напр. индикатора)6) ходовой винт•- 50 INT spindle
- AC acting spindle
- AC spindle
- AC variable frequency spindle
- adapter spindle
- add-on spindle
- adjusting spindle
- air-bearing spindle
- air-operated spindle
- angularly offset spindle
- articulated spindle
- attachment spindle
- automatic locking spindle
- automatic shank spindle
- automatic swivel spindle
- auxiliary spindle
- axle spindle
- back end working spindle
- back spindle
- back turning spindle
- backwork spindle
- ball-bearing spindle
- bar spindle
- bar-type spindle
- belt spindle
- belted spindle
- BODTM spindle
- bored spindle
- boring spindle
- brake spindle
- C axis spindle
- cartridge motorized spindle
- cartridge spindle
- cartridge-type motorized spindle
- cartridge-type spindle
- center facing spindle
- centering spindle
- ceramic ball-bearing spindle
- chuck spindle
- coarse-thread spindle
- collet spindle
- collet-chucking spindle
- control spindle
- copy spindle
- counter headstock spindle
- counterboring spindle
- cross spindle
- cutter spindle
- cutting spindle
- DC acting spindle
- DC spindle
- dead spindle
- diamond grinding spindle
- diamond spindle
- double sliding spindle
- dressing spindle
- drill spindle
- drilling spindle
- drive spindle
- dual spindles
- electric high-speed spindle
- electric spindle
- electrical spindle
- face grinding spindle
- facing spindle
- fast-tool-swapping spindle
- feed spindle
- feed-out spindle
- fine-tuned spindle
- finish milling spindle
- fixed spindle
- flooded coolant spindle
- footstock spindle
- force-sensing spindle
- front spindle
- gang spindle
- grease-packed spindle
- grinding spindle
- grinding wheel spindle
- ground spindle
- guide spindle
- HF spindle
- high-frequency internal grinding spindle
- high-frequency spindle
- high-speed spindle
- high-torque spindle
- hollow bore spindle
- hollow spindle
- hollow-shank spindle
- hydrostatic spindle
- hydrostatically controlled spindle
- inclinable spindle
- index spindle
- indexable spindle
- index-head spindle
- induced coolant spindle
- integral-motor spindle
- intermediate spindle
- internal grinding spindle
- internal hole grinding spindle
- ISO 30 spindle
- ISO 40 spindle
- ISO 50 spindle
- knuckle spindle
- lathe spindle
- lifting spindle
- limited rotation spindle
- linearly moving spindle
- liquid-cooled spindle
- live spindle
- main spindle
- mill spindle
- milling spindle
- milling, drilling and boring spindle
- motor spindle
- motorized spindle
- nutating spindle
- oil turbine spindle
- opposite spindle
- output spindle
- pick-off spindle
- pick-up spindle
- planetary spindle
- pneumatic spindle
- preload ball-bearing spindle
- programmable speed spindle
- pump spindle
- quill spindle
- quill-mounted spindle
- ram-type spindle
- rear spindle
- refrigerated spindle
- right-angle spindle
- roller bearing spindle
- rotary axis controlled spindle
- rough milling spindle
- router spindle
- routing spindle
- screw spindle
- screwed spindle
- second pick-up spindle
- second right hand spindle
- secondary spindle
- second-op spindle
- sliding head spindle
- sliding spindle
- smooth-running spindle
- speeding spindle
- splined spindle
- steep-taper spindle
- subsidiary spindle
- support spindle
- surfacing wheel spindle
- suspension spindle
- swing spindle
- swing-away spindle
- synchronous pick-off spindle
- tailstock spindle
- taper shank spindle
- tapered spindle
- tapping spindle
- telescopic spindle
- temperature-controlled spindle
- test spindle
- threaded spindle
- three-range spindle
- tiltable spindle
- tilting cutter spindle
- tilting work spindle
- tool spindle
- tool-carrying spindle
- toolhead spindle
- tool-holding spindle
- torsionally overloaded spindle
- touch sensor spindle
- tracer spindle
- transfer spindle
- traversing spindle
- turbine-powered spindle
- turning spindle
- turret spindle
- twin-motor spindle
- two-range spindle
- valve spindle
- variable frequency controlled spindle
- variable-frequency spindle
- vertical live spindle
- vertical quill spindle
- vertical to horizontal spindle
- wheel spindle
- wide-band spindle
- wind-up spindle
- work spindle
- work-carrying spindle
- workhead spindle
- work-receiving spindle
- work-supporting spindleEnglish-Russian dictionary of mechanical engineering and automation > spindle
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82 system
система; комплекс; средство; способ; метод; сеть (напр. дорог) ;aiming-navigation system (analog, digital) — прицельно-навигационная система (аналоговая, цифровая)
air observation, acquisition and fire control system — (бортовая) система воздушной разведки, засечки целей и управления огнем
air support aircraft ECM (equipment) system — (бортовая) система РЭП для самолетов авиационной поддержки
airborne (ground) target acquisition and illumination laser system — ав. бортовая лазерная система обнаружения и подсветки (наземных) целей
airborne (ground) targeting and laser designator system — ав. бортовая лазерная система обнаружения и целеуказания (наземных целей)
airborne laser illumination, ranging and tracking system — ав. бортовая система лазерной подсветки, определения дальности и сопровождения цели
artillery (nuclear) delivery system — артиллерийская система доставки (ядерного) боеприпаса (к цели)
C2 system — система оперативного управления; система руководства и управления
C3 system — система руководства, управления и связи; система оперативного управления и связи
channel and message switching (automatic) communications system — АСС с коммутацией каналов и сообщений
country-fair type rotation system (of instruction) — метод одновременного обучения [опроса] нескольких учебных групп (переходящих от одного объекта изучения к другому)
dual-capable (conventional/nuclear) weapon delivery system — система доставки (обычного или ядерного) боеприпаса к цели
electromagnetic emitters identification, location and suppression system — система обнаружения, опознавания и подавления источников электромагнитных излучений [излучающих РЭС]
field antimissile (missile) system — полевой [войсковой] ПРК
fire-on-the-move (air defense) gun system — подвижный зенитный артиллерийский комплекс для стрельбы в движении [на ходу]
fluidic (missile) control system — ркт. гидравлическая [струйная] система управления полетом
forward (area) air defense system — система ПВО передового района; ЗРК для войсковой ПВО передового района
graduated (availability) operational readiness system — Бр. система поэтапной боевой готовности (частей и соединений)
high-resolution satellite IR detection, tracking and targeting system — спутниковая система с ИК аппаратурой высокой разрешающей способности для обнаружения, сопровождения целей и наведения средств поражения
ICBM (alarm and) early warning satellite system — спутниковая система обнаружения пусков МБР и раннего предупреждения (средств ПРО)
information storage, tracking and retrieval system — система накопления, хранения и поиска информации
instantaneous grenade launcher (armored vehicle) smoke system — гранатомет (БМ) для быстрой постановки дымовой завесы
Precision Location [Locator] (and) Strike system — высокоточная система обеспечения обнаружения и поражения целей; высокоточный разведывательно-ударный комплекс
rapid deceleration (parachute) delivery system — парашютная система выброски грузов с быстрым торможением
real time, high-resolution reconnaissance satellite system — спутниковая разведывательная система с высокой разрешающей способностью аппаратуры и передачей информации в реальном масштабе времени
received signal-oriented (output) jamming signal power-adjusting ECM system — система РЭП с автоматическим регулированием уровня помех в зависимости от мощности принимаемого сигнала
sea-based nuclear (weapon) delivery system — система морского базирования доставки ядерного боеприпаса к цели
small surface-to-air ship self-defense (missile) system — ЗРК ближнего действия для самообороны корабля
Status Control, Alerting and Reporting system — система оповещения, контроля и уточнения состояния [боевой готовности] сил и средств
surface missile (weapon) system — наземный [корабельный] РК
target acquisition, rapid designation and precise aiming system — комплекс аппаратуры обнаружения цели, быстрого целеуказания и точного прицеливания
— ABM defense system— antimissile missile system— central weapon system— countersurprise military system— laser surveying system— tank weapon system— vertical launching system— weapons system -
83 aircraft
воздушное судно [суда], атмосферный летательный аппарат [аппараты]; самолёт (ы) ; вертолёты); авиация; авиационный; см. тж. airplane, boostaircraft in the barrier — самолёт, задержанный аварийной (аэродромной) тормозной установкой
aircraft off the line — новый [только что построенный] ЛА
B through F aircraft — самолёты модификаций B, C, D, E и F
carrier(-based, -borne) aircraft — палубный ЛА; авианосная авиация
conventional takeoff and landing aircraft — самолёт с обычными взлетом и посадкой (в отличие от укороченного или вертикального)
keep the aircraft (headed) straight — выдерживать направление полёта ЛА (при выполнении маневра); сохранять прямолинейный полет ЛА
keep the aircraft stalled — сохранять режим срыва [сваливания] самолёта, оставлять самолёт в режиме срыва [сваливания]
nearly wing borne aircraft — верт. ЛА в конце режима перехода к горизонтальному полёту
pull the aircraft off the deck — разг. отрывать ЛА от земли (при взлете)
put the aircraft nose-up — переводить [вводить] ЛА на кабрирование [в режим кабрирования]
put the aircraft through its paces — определять предельные возможности ЛА, «выжимать все из ЛА»
reduced takeoff and landing aircraft — самолёт укороченного взлета и посадки (с укороченным разбегом и пробегом)
rocket(-powered, -propelled) aircraft — ракетный ЛА, ЛА с ракетным двигателем
roll the aircraft into a bank — вводить ЛА в крен, накренять ЛА
rotate the aircraft into the climb — увеличивать угол тангажа ЛА для перехода к набору высоты, переводить ЛА в набор высоты
short takeoff and landing aircraft — самолёт короткого взлета и посадки (с коротким разбегом и пробегом)
single vertical tail aircraft — ЛА с одинарным [центральным] вертикальным оперением
strategic(-mission, -purpose) aircraft — ЛА стратегического назначения; стратегический самолёт
take the aircraft throughout its entire envelope — пилотировать ЛА во всем диапазоне полётных режимов
trim the aircraft to fly hands-and-feet off — балансировать самолёт для полёта с брошенным управлением [с брошенными ручкой и педалями]
turbofan(-engined, -powered) aircraft — ЛА с турбовентиляторными двигателями, ЛА с ТРДД
turbojet(-powered, -propelled) aircraft — ЛА с ТРД
undergraduate navigator training aircraft — учебно-тренировочный самолёт для повышенной лётной подготовки штурманов
water(-based, takeoff and landing) aircraft — гидросамолёт
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84 engine
двигатель; мотор; машинаbuzz up an engine — жарг. запускать двигатель
clean the engine — прогазовывать [прочищать] двигатель (кратковременной даней газа)
engine of bypass ratio 10: 1 — двигатель с коэффициентом [степенью] двухконтурности 10:1
flight discarded jet engine — реактивный двигатель, отработавший лётный ресурс
kick the engine over — разг. запускать двигатель
lunar module ascent engine — подъёмный двигатель лунного модуля [отсека]
monofuel rocket engine — ЖРД на однокомпонентном [унитарном] топливе
open the engine up — давать газ, увеличивать тягу или мощность двигателя
prepackaged liquid propellant engine — ЖРД на топливе длительного хранения; заранее снаряжаемый ЖРД
production(-standard, -type) engine — серийный двигатель, двигатель серийного образца [типа]
return and landing engine — ксм. двигатель для возвращения и посадки
reversed rocket engine — тормозной ракетный двигатель; ксм. тормозная двигательная установка
run up the engine — опробовать [«гонять»] двигатель
secure the engine — выключать [останавливать, глушить] двигатель
shut down the engine — выключать [останавливать, глушить] двигатель
shut off the engine — выключать [останавливать, глушить] двигатель
solid(-fuel, -grain) rocket engine — ракетный двигатель твёрдого топлива
turn the engine over — проворачивать [прокручивать] двигатель [вал двигателя]
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85 car
2) вагон3) повозка; тележка4) вагонетка5) электрокар6) горн. клеть9) гондола (ЛА)10) сокр. от
cargo груз•to couple a car — прицеплять вагон;to operate a car — эксплуатировать вагон;to park a car — парковать автомобиль;to pull a car — осаживать вагон;to put a car on the road — пускать автомобиль в эксплуатацию;to run a car — эксплуатировать вагон;to set out a car — отцеплять вагон;to shove a car up the crest — надвигать вагон на торб горки;-
accumulator car
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active car
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administration car
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advertizing car
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air car
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all-purpose car
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ambulance car
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amphibious car
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articulated car
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bad-order car
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baggage car
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ballast car
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bilevel car
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boarding outfit car
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bottom-discharge car
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box car
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brake car
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breeze car
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buffer car
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bulkhead flat car
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cab car
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cabin car
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catapult car
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catering car
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cattle car
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center-depressed car
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charging car
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coach car
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coil-steel car
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coke quenching car
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commuter car
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compact car
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compartment car
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compartment-tank car
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container car
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control car
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controlled-temperature car
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conveyor car
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cushioned car
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cushion-underframed car
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custom-made car
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cylindrical hopper car
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diesel-engined car
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dining car
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direct-service car
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disabled car
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ditching car
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domeless tank car
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domestic car
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double-sheathed automobile box car
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drop-bottom car
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drop-end car
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drying car
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dry-quenching car
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dual-control car
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dummy car
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dump car
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dump-cinder car
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dynamometric car
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eight-wheel car
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electric motor car
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electric car
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electric-powered car
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elevator car
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emission-free car
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empty car
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engine car
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estate car
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feed car
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ferguson formula four-wheel drive car
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fire grate car
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flat car
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flaw detector car
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flywheel shuttle car
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foreign car
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Forty-nine state car
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four-wheel car
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freight car
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front-driven car
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fumeless charging car
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furnace car
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general service car
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generator car
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gondola car
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good-order car
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hammer car
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hand car
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head car
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heater-piped tank car
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heavy-duty car
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heavy-rail motor car
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high-capacity car
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high-mileage car
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high-pollution car
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high-side gondola car
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high-speed car
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high-volume car
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home car
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hooded-quenching car
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hopper car
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hospital car
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hot-metal ladle car
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hot-metal mixer car
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ice-cooled car
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independently sprung car
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ingot car
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ingot casting car
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inspection car
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insulated car
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interchange car
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intercity car
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intermediate car
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jack car
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ladle car
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ladle-tundish car
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larry car
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leading car
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leased car
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leg-driven car
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light-rail car
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lightweight car
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loaded car
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local car
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long-distance car
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lounge car
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low-level flat car
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low-pollution car
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luggage car
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luxury car
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mail car
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main-line car
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mechanical refrigerator car
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mid-engine car
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midget car
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midsector car
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mine car
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mold car
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monorail weigh car
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motor car
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motor-rail car
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muscle car
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naturally aspirated car
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noninsulated box car
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nonpiped tank car
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observation car
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one-spot charging car
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open-top coke car
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open-top hopper car
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pan car
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part-load car
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passenger car
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performance-oriented car
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postal car
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postal-baggage car
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pot car
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power car
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powered car
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pressure car
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pressure differential car
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production car
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quad-hopper car
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racing car
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rack car
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rack-dryer car
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rail tank car
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railmotor car
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railway car
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railway service car
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rear-drive car
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rear-end car
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rebuilt car
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refrigerator car
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rescue car
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research car
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restaurant car
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robotic car
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roll handling car
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ropeway car
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rotary-drum quenching car
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rotary-table charging car
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runaway car
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sanitary car
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sanitation car
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scale car
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scale test car
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schnabel car
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scrap-charging car
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screw-coupling car
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screw-feed larry car
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self-cleaning car
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self-contained car
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self-propelled car
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self-sufficient car
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self-unloading car
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shaved car
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shelf car
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shuttle car
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side-gate car
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side-shirt car
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skeletonized car
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skip car
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slave car
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sleeping car
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snow-removing car
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soft sprung car
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solar car
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solid carbon dioxide car
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solid-bottom car
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special-purpose car
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sports car
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store-supply car
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street car
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stripped-down car
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subcompact car
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suburban car
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supereconomy car
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surge car
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swing-roof hopper car
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talking car
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tank car
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teeming ladle car
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test car
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three-banger car
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three-box car
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through car
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tilting car
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tilting-bottom quenching car
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tippler car
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track measurement car
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trailer car
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trailer-mounted car
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transfer car
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tripping car
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tunnel kiln car
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turborotary car
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turn-around car
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twin-engined car
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twin-pot cinder car
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two-axle car
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two-box car
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two-compartment center flow car
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unit train coal car
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up-market car
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versatile car
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vistadome car
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volume car
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watering car
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weigh car
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weigh larry car
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well car
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world car -
86 BIOS
['baios] n. shkurtesë nga b asic i nput o utput s ystem ( BIOS) sistemi themelor për hyrje-dalje ( informatikë)What is BIOS?BIOS is an acronym for Basic Input/Output System. It is the boot firmware program on a PC, and controls the computer from the time you start it up until the operating system takes over. When you turn on a PC, the BIOS first conducts a basic hardware check, called a Power-On Self Test (POST), to determine whether all of the attachments are present and working. Then it loads the operating system into your computer's random access memory, or RAM.The BIOS also manages data flow between the computer's operating system and attached devices such as the hard disk, video card, keyboard, mouse, and printer.The BIOS stores the date, the time, and your system configuration information in a battery-powered, non-volatile memory chip, called a CMOS (Complementary Metal Oxide Semiconductor) after its manufacturing process.Although the BIOS is standardized and should rarely require updating, some older BIOS chips may not accommodate new hardware devices. Before the early 1990s, you couldn't update the BIOS without removing and replacing its ROM chip. Contemporary BIOS resides on memory chips such as flash chips or EEPROM (Electrically Erasable Programmable Read-Only Memory), so that you can update the BIOS yourself if necessary.For detailed information about BIOS updates, visit:What is firmware?Firmware consists of programs installed semi-permanently into memory, using various types of programmable ROM chips, such as PROMS, EPROMs, EEPROMs, and flash chips.Firmware is non-volatile, and will remain in memory after you turn the system off.Often, the term firmware is used to refer specifically to boot firmware, which controls a computer from the time that it is turned on until the primary operating system has taken over. Boot firmware's main function is to initialize the hardware and then to boot (load and execute) the primary operating system. On PCs, the boot firmware is usually referred to as the BIOS.What is the difference between memory and disk storage?Memory and disk storage both refer to internal storage space in a computer.The term memory usually means RAM (Random Access Memory). To refer to hard drive storage, the terms disk space or storage are usually used.Typically, computers have much less memory than disk space, because RAM is much more expensive per megabyte than a hard disk. Today, a typical desktop computer might come with 512MB of RAM, and a 40 gigabyte hard disk.Virtual memory is disk space that has been designated to act like RAM.Computers also contain a small amount of ROM, or read-only memory, containing permanent or semi-permanent (firmware) instructions for checking hardware and starting up the computer. On a PC, this is called the BIOS.What is RAM?RAM stands for Random Access Memory. RAM provides space for your computer to read and write data to be accessed by the CPU (central processing unit). When people refer to a computer's memory, they usually mean its RAM.New computers typically come with at least 256 megabytes (MB) of RAM installed, and can be upgraded to 512MB or even a gigabyte or more.If you add more RAM to your computer, you reduce the number of times your CPU must read data from your hard disk. This usually allows your computer to work considerably faster, as RAM is many times faster than a hard disk.RAM is volatile, so data stored in RAM stays there only as long as your computer is running. As soon as you turn the computer off, the data stored in RAM disappears.When you turn your computer on again, your computer's boot firmware (called BIOS on a PC) uses instructions stored semi-permanently in ROM chips to read your operating system and related files from the disk and load them back into RAM.Note: On a PC, different parts of RAM may be more or less easily accessible to programs. For example, cache RAM is made up of very high-speed RAM chips which sit between the CPU and main RAM, storing (i.e., caching) memory accesses by the CPU. Cache RAM helps to alleviate the gap between the speed of a CPU's megahertz rating and the ability of RAM to respond and deliver data. It reduces how often the CPU must wait for data from main memory.What is ROM?ROM is an acronym for Read-Only Memory. It refers to computer memory chips containing permanent or semi-permanent data. Unlike RAM, ROM is non-volatile; even after you turn off your computer, the contents of ROM will remain.Almost every computer comes with a small amount of ROM containing the boot firmware. This consists of a few kilobytes of code that tell the computer what to do when it starts up, e.g., running hardware diagnostics and loading the operating system into RAM. On a PC, the boot firmware is called the BIOS.Originally, ROM was actually read-only. To update the programs in ROM, you had to remove and physically replace your ROM chips. Contemporary versions of ROM allow some limited rewriting, so you can usually upgrade firmware such as the BIOS by using installation software. Rewritable ROM chips include PROMs (programmable read-only memory), EPROMs (erasable read-only memory), EEPROMs (electrically erasable programmable read-only memory), and a common variation of EEPROMs called flash memory.What is an ACPI BIOS?ACPI is an acronym that stands for Advanced Configuration and Power Interface, a power management specification developed by Intel, Microsoft, and Toshiba. ACPI support is built into Windows 98 and later operating systems. ACPI is designed to allow the operating system to control the amount of power provided to each device or peripheral attached to the computer system. This provides much more stable and efficient power management and makes it possible for the operating system to turn off selected devices, such as a monitor or CD-ROM drive, when they are not in use.ACPI should help eliminate computer lockup on entering power saving or sleep mode. This will allow for improved power management, especially in portable computer systems where reducing power consumption is critical for extending battery life. ACPI also allows for the computer to be turned on and off by external devices, so that the touch of a mouse or the press of a key will "wake up" the computer. This new feature of ACPI, called OnNow, allows a computer to enter a sleep mode that uses very little power.In addition to providing power management, ACPI also evolves the existing Plug and Play BIOS (PnP BIOS) to make adding and configuring new hardware devices easier. This includes support for legacy non-PnP devices and improved support for combining older devices with ACPI hardware, allowing both to work in a more efficient manner in the same computer system. The end result of this is to make the BIOS more PnP compatible.What is CMOS?CMOS, short for Complementary Metal Oxide Semiconductor, is a low-power, low-heat semiconductor technology used in contemporary microchips, especially useful for battery-powered devices. The specific technology is explained in detail at:http://searchsmb.techtarget.com/sDefinition/0,,sid44_gci213860,00.htmlMost commonly, though, the term CMOS is used to refer to small battery-powered configuration chips on system boards of personal computers, where the BIOS stores the date, the time, and system configuration details.How do I enter the Setup program in my BIOS?Warning: Your BIOS Setup program is very powerful. An incorrect setting could cause your computer not to boot properly. You should make sure you understand what a setting does before you change it.You can usually run Setup by pressing a special function key or key combination soon after turning on the computer, during its power-on self test (POST), before the operating system loads (or before the operating system's splash screen shows). During POST, the BIOS usually displays a prompt such as:Press F2 to enter SetupMany newer computers display a brief screen, usually black and white, with the computer manufacturer's logo during POST.Entering the designated keystroke will take you into the BIOS Setup. Common keystrokes to enter the BIOS Setup are F1, F2, F10, and Del.On some computers, such as some Gateway or Compaq computers, graphics appear during the POST, and the BIOS information is hidden. You must press Esc to make these graphics disappear. Your monitor will then display the correct keystroke to enter.Note: If you press the key too early or too often, the BIOS may display an error message. To avoid this, wait about five seconds after turning the power on, and then press the key once or twice.What's the difference between BIOS and CMOS?Many people use the terms BIOS (basic input/output system) and CMOS (complementary metal oxide semiconductor) to refer to the same thing. Though they are related, they are distinct and separate components of a computer. The BIOS is the program that starts a computer up, and the CMOS is where the BIOS stores the date, time, and system configuration details it needs to start the computer.The BIOS is a small program that controls the computer from the time it powers on until the time the operating system takes over. The BIOS is firmware, which means it cannot store variable data.CMOS is a type of memory technology, but most people use the term to refer to the chip that stores variable data for startup. A computer's BIOS will initialize and control components like the floppy and hard drive controllers and the computer's hardware clock, but the specific parameters for startup and initializing components are stored in the CMOS. -
87 press
1. уст. машина; печатный станок2. пресс; прессовать; давитьmultiple-deck press — многоплитный пресс; многоэтажный пресс
3. пресса; печать; печатать4. типографияto pass for press — сдавать в набор, сдавать в типографию
5. издательствоpress book — книга, выпущенная частным издательством
6. тиражный оттиск7. нажиматьto be off the press — выходить в свет, выходить из печати
autographic press — машина для печатания с литографских форм, изготовленных способом автографии
back-to-back perfecting press — машина с секциями типа «резина к резине»
baling press — пресс для упаковки бумаги в кипы, паковальный макулатурный пресс
belt press — печатная машина с ленточным формоносителем, печатная машина с формами, смонтированными на бесконечной ленте
blanket-to-blanket press — офсетная печатная машина с секциями типа «резина к резине»
8. машина для печатания книг, книжная печатная машинаpress conditions — данные, характеризующие состояние машины
9. переплётный прессBoston press — тигельная машина типа «Бостон»
bundling press — паковальный пресс; паковально-обжимной пресс
carbon tissue lay down press — переводной станок для пигментной бумаги, пигментно-переводной станок
10. нелегальная литератураcolor press — машина для многокрасочной печати, многокрасочная печатная машина
common-impression cylinder press — машина для многокрасочной печати с общим цилиндром, многокрасочная печатная машина планетарного типа
convertible press — машина, переналаживаемая на несколько вариантов печатания
copperplate printing press — машина металлографской печати, станок для печатания офортов
copying press — копировальная машина, копировальный аппарат
11. машина для печатания провинциальных газет12. провинциальная прессаcustom-built press — печатная машина, сконструированная по особому заказу
cutting creasing-and-embossing press — пресс для высечки, биговки и тиснения
decuple press — пятисекционная печатная машина, печатная машина с десятью печатными аппаратами, печатная машина с пятью секциями для двусторонней печати
digital input press — печатная машина с цифровым управлением; машина, печатающая без формы
Dilitho press — машина для печатания по способу «Ди-лито»
direct flat-bed cylinder press — плоскопечатная машина для непосредственного печатания с формы на бумаге
direct planographic rotary press — ротационная машина для непосредственного печатания с плоских форм на бумаге, ротационная литографская печатная машина
double acting printing press — плоскопечатная машина, в которой используются оба хода талера
13. рулонная печатная машина с двумя приёмными устройствамиpress noise — шум, создаваемый печатной машиной
14. рулонная печатная машина с поворотными штангамиdouble-feeder platen press — двухнакладный печатный станок; двухнакладная тигельная печатная машина
duodecuple press — шестисекционная печатная машина, печатная машина с двенадцатью печатными аппаратами, печатная машина с шестью секциями для двусторонней печати
eight-page press — узкорулонная печатная машина; машина, печатающая 8 страниц формата А4 в 4 краски за один прогон
engine press — печатная машина с механическим приводом, печатная машина с моторным приводом, приводная печатная машина
flexoprinting press — машина для печатания с эластичных форм, флексографская печатная машина
15. печатная машина линейного типа16. одноярусная печатная машинаfour pillar embossing press — четырёхколонный пресс; позолотный пресс
17. свободная прессаgranulating press — пресс — гранулятор
18. распространяемая бесплатно печатная продукцияfully automatic press — печатный автомат, полностью автоматизированная печатная машина
19. ручной пресс20. печатная машина с ручным приводом21. издания тайной типографии22. тайная типография23. нелегальная печать24. нелегальная типография25. машина для печатания через промежуточную поверхность26. печатная машина с офсетным цилиндромindirect flat-bed cylinder press — плоскопечатная машина для печатания через промежуточную поверхность
27. печатная машина секционного типа28. машина, входящая в состав поточной линииiron press — металлический печатный станок; металлический печатный пресс
label-cutting press — высекальная машина, машина для высечки этикеток
leftist press — левая печать; левая пресса
29. ручной корректурный станокprinting press — печатная машина; печатный станок
30. рычажный печатный станокliberty job printing press — тигельная печатная машина со сложным движением тигля иили талера перемещаются в вертикальном направлении
31. офсетная печатная машина, машина офсетной печатиBoston press — тигельная машина типа < Бостон>
32. литографская печатная машина33. обрезные тиски с гобелем34. ручной пресс переплётчикаmultistage press — многоплитный пресс; многоэтажный пресс
35. обжимной пресс36. матричный прессmash filter press — фильтр — пресс для отделения затора
37. пресс для изготовления пластмассовых стереотиповmulticolor flexographic press — многокрасочная флексографская печатная машина, многокрасочная машина для печатания с эластичных форм
multicolor flexographic rotary press — многокрасочная ротационная флексографская печатная машина, многокрасочная ротационная машина для печатания с эластичных форм
38. печатная машина одинарной ширины39. узкорулонная печатная машинаoctuple press — печатная машина с восемью печатными аппаратами; печатная машина с четырьмя секциями для двусторонней печати, четырёхсекционная печатная машина двойной ширины
offset press — офсетная печатная машина, машина офсетной печати
offset press for offices — малая офсетная машина конторского типа, ротапринт
offset gravure press — машина глубокой офсетной печати, машина глубокой печати с промежуточной передачей изображения
one-color press — машина для однокрасочной печати, однокрасочная печатная машина
pad-transfer press — тампопечатная машина, машина для тампопечати
128-page press — машина, печатающая за один цикл 128 страниц
paste ink letter press — машина высокой печати, использующая густотёртые краски
pillar press — пресс на колонне, колонный пресс
power press — приводная печатная машина, машина
printing press — печатная машина; печатный станок
production press — работающая печатная машина; машина, печатающая тиражные оттиски
40. пробопечатный станок41. корректурный станокquadruple press — печатная машина с четырьмя печатными аппаратами, печатная машина с двумя секциями для двусторонней печати
rightist press — правая печать; правая пресса
roller press — плоскопечатная машина с печатным аппаратом, состоящим из двух цилиндров
42. лощильный пресс43. машина металлографской печати -
88 Lanchester, Frederick William
[br]b. 28 October 1868 Lewisham, London, Englandd. 8 March 1946 Birmingham, England[br]English designer and builder of the first all-British motor car.[br]The fourth of eight children of an architect, he spent his childhood in Hove and attended a private preparatory school, from where, aged 14, he went to the Hartley Institution (the forerunner of Southampton University). He was then granted a scholarship to the Royal College of Science, South Kensington, and also studied practical engineering at Finsbury Technical College, London. He worked first for a draughtsman and pseudo-patent agent, and was then appointed Assistant Works Manager of the Forward Gas Engine Company of Birmingham, with sixty men and a salary of £1 per week. He was then aged 21. His younger brother, George, was apprenticed to the same company. In 1889 and 1890 he invented a pendulum governor and an engine starter which earned him royalties. He built a flat-bottomed river craft with a stern paddle-wheel and a vertical single-cylinder engine with a wick carburettor of his own design. From 1892 he performed a number of garden experiments on model gliders relating to problems of lift and drag, which led him to postulate vortices from the wingtips trailing behind, much of his work lying behind the theory of modern aerodynamics. The need to develop a light engine for aircraft led him to car design.In February 1896 his first experimental car took the road. It had a torsionally rigid chassis, a perfectly balanced and almost noiseless engine, dynamically stable steering, epicyclic gear for low speed and reverse with direct drive for high speed. It turned out to be underpowered and was therefore redesigned. Two years later an 8 hp, two-cylinder flat twin appeared which retained the principle of balancing by reverse rotation, had new Lanchester valve-gear and a new method of ignition based on a magneto generator. For the first time a worm and wheel replaced chain-drive or bevel-gear transmission. Lanchester also designed the machinery to make it. The car was capable of about 18 mph (29 km/h): future cars of his travelled at twice that speed. From 1899 to 1904 cars were produced for sale by the Lanchester Engine Company, which was formed in 1898. The company had to make every component except the tyres. Lanchester gave up the managership but remained as Chief Designer, and he remained in this post until 1914.In 1907–8 his two-volume treatise Aerial Flight was published; it included consideration of skin friction, boundary-layer theory and the theory of stability. In 1909 he was appointed to the Government's Committee for Aeronautics and also became a consultant to the Daimler Company. At the age of 51 he married Dorothea Cooper. He remained a consultant to Daimler and worked also for Wolseley and Beardmore until 1929 when he started Lanchester Laboratories, working on sound reproduction. He also wrote books on relativity and on the theory of dimensions.[br]Principal Honours and DistinctionsFRS.Bibliographybht=1907–8, Aerial Flight, 2 vols.Further ReadingP.W.Kingsford, 1966, F.W.Lanchester, Automobile Engineer.E.G.Semler (ed.), 1966, The Great Masters. Engineering Heritage, Vol. II, London: Institution of Mechanical Engineers/Heinemann.IMcNBiographical history of technology > Lanchester, Frederick William
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89 circuit
1) сеть
2) кругооборот
3) циркуляционный
4) циркуляционный контур
5) <tech.> цепь
6) схема
7) поток
8) неупорядоченный цикл
9) оборудование
10) обход
11) схемный
12) выключатель
– absorption circuit
– alarm circuit
– alternating-current circuit
– analog circuit
– analogous circuit
– AND-to OR circuit
– AND-to-AND circuit
– antenna circuit
– anti-coincidence circuit
– anticoincidence circuit
– antihunt circuit
– arm circuit
– arm of circuit
– astable circuit
– balanced circuit
– balancing of a circuit
– band-elimination circuit
– be in traffic circuit
– bias circuit
– bipartite circuit
– blanking circuit
– blocking circuit
– boosted circuit
– bootstrap circuit
– braking circuit
– breadboard circuit
– break in circuit
– bridge circuit
– built-up circuit
– carry circuit
– cascode circuit
– cathode-coupled circuit
– checking circuit
– circuit algebra
– circuit analysis
– circuit breaker
– circuit capacitance
– circuit card
– circuit closer
– circuit closure
– circuit continuity
– circuit design
– circuit diagram
– circuit element
– circuit grade
– circuit matrix
– circuit noise
– circuit order
– circuit switching
– circuit technology
– circuit tester
– circuit theory
– circuit time
– circuit wiring
– clipper-limiter circuit
– closed circuit
– coding circuit
– coincidence circuit
– communication circuit
– comparison circuit
– compensating circuit
– complete circuit
– composite circuit
– control circuit
– conveyer circuit
– cord circuit
– corrector circuit
– counting circuit
– coupled circuit
– cryotron circuit
– current circuit
– cut in circuit
– de-emphasis circuit
– de-energize circuit
– dead circuit
– decoding circuit
– deemphasis circuit
– deenergizing circuit
– delay circuit
– derivation circuit
– derived circuit
– differentiating circuit
– digital circuit
– direct-current circuit
– disabling circuit
– discharge circuit
– distributed-parameter circuit
– divide-by-two circuit
– dividing circuit
– doubling circuit
– draw up circuit
– drive circuit
– dual circuit
– earth-return circuit
– electronic circuit
– enabling circuit
– energizing circuit
– engineer's circuit
– equalize circuit
– equivalent circuit
– excitation circuit
– exciting circuit
– exclusive OR circuit
– extend circuit
– feedback circuit
– ferroresonance circuit
– filament circuit
– finite circuit
– forward circuit
– gang circuit
– gate circuit
– ground circuit
– grounded-cathode circuit
– grounded-emitter circuit
– grounded-grid circuit
– guard circuit
– halving circuit
– high-frequency circuit
– high-speed circuit
– high-tension circuit
– hold a circuit
– hold circuit
– hybrid circuit
– idler circuit
– ignition circuit
– impulse circuit
– inclusive OR circuit
– incomplete circuit
– information circuit
– inhibit circuit
– injection circuit
– inland circuit
– inoperative circuit
– input circuit
– insulate circuit
– integrated circuit
– integrating circuit
– interruption of circuit
– interstage circuit
– inverter circuit
– isolating circuit
– isolation circuit
– keying circuit
– ladder circuit
– level circuit
– line circuit
– linear circuit
– linearity circuit
– load circuit
– local circuit
– logic circuit
– made circuit
– magnetic circuit
– main circuit
– marking circuit
– matrix circuit
– measuring circuit
– memory circuit
– metering circuit
– micrologic circuit
– microminiature circuit
– microprinted circuit
– microvave circuit
– mixing circuit
– mnemonic circuit
– modular circuit
– modulator circuit
– monitoring circuit
– monolithic circuit
– multichip circuit
– multifunction circuit
– multiple circuit
– multiplex circuit
– multiply-by-two circuit
– multiplying circuit
– multistable circuit
– narrow-gate circuit
– network circuit
– non-coincidence circuit
– nonlinear circuit
– NOR logic circuit
– NOT AND circuit
– not circuit
– NOT OR circuit
– NOT-AND circuit
– obtain circuit
– off-centering circuit
– open circuit
– open-wire circuit
– opposition circuit
– OR circuit
– OR-to-AND circuit
– OR-to-OR circuit
– oscillatory circuit
– output circuit
– parallel circuit
– parasitic circuit
– passive circuit
– period-computing circuit
– phantom circuit
– physical circuit
– planar circuit
– plank-magnetic circuit
– plated circuit
– polyphase circuit
– potted circuit
– power circuit
– primary circuit
– principle circuit
– printed circuit
– protect circuit
– protection circuit
– pulmonary circuit
– pulse-actuated circuit
– pulse-generating circuit
– pump circuit
– push-pull circuit
– radiotelephone circuit
– read circuit
– reciprocal circuit
– regenerative circuit
– reheat circuit
– rejecter circuit
– relaxation circuit
– reset circuit
– resistive circuit
– resonance circuit
– resonant circuit
– response of circuit
– return circuit
– ring-bus circuit
– ring-down circuit
– ringdown circuit
– safety circuit
– scale-of-five circuit
– scale-of-ten circuit
– scale-of-two circuit
– scaling circuit
– schematic circuit
– secondary circuit
– see-saw circuit
– seize a circuit
– self-exciting circuit
– semibutterfly circuit
– separation circuit
– sequence circuit
– sequential circuit
– series circuit
– shift circuit
– short circuit
– side circuit
– simplexed circuit
– single-channel circuit
– single-core circuit
– single-ended circuit
– single-wire circuit
– sling circuit
– software circuit
– solid-state circuit
– squaring circuit
– squelch circuit
– stabilizing circuit
– staggered circuit
– starting circuit
– steam-generating circuit
– stick circuit
– storage circuit
– subtraction circuit
– sweep circuit
– switch circuit
– switching circuit
– symmetrical circuit
– sync circuit
– synchronizing circuit
– systemic circuit
– talking circuit
– tank circuit
– tapped circuit
– telephone circuit
– testing circuit
– thick-film circuit
– thin-film circuit
– three-phase circuit
– through circuit
– timer circuit
– totem-pole-type circuit
– track circuit
– transfer circuit
– transistor circuit
– trap circuit
– voltage-doubling circuit
– water-slurry circuit
– water-steam circuit
– welding circuit
– write circuit
alignment of tuned circuit — < radio> подстройка контура
analog integrated circuit — аналоговая микросхема, аналоговая интегральная микросхема
aperiodic oscillatory circuit — колебательный апериодический
automatic circuit breaker — автомат защиты сети, выключатель автоматический
bridge-type balancing circuit — <electr.> схема мостовая компенсационная
deposited integrated circuit — осажденная интегральная схема
digital integrated circuit — цифровая микросхема, цифровая ИМС
directly-coupled transistor circuit — схема с непосредственной связью на полупроводниковых триодах
double flip-flop circuit — <comput.> схема двухперекидная
double-rail track circuit — < railways> цепь рельсовая двухниточная
ferroresonant computing circuit — феррорезонансная вычислительная схема
film integrated circuit — пленочная микросхема, пленочная интегральная микросхема
gas-blast circuit breaker — выключатель с газовым дутьем, выключатель автокомпрессионный элегазовый
half-wave track circuit — импульсная рельсовая цепь < railways>
hybrid integrated circuit — гибридная микросхема, гибридная интегральная микросхема
integrated circuit amplifier — усилитель на интегральных схемах
large-scale integration circuit — большая интегральная микросхема
meter-reading access circuit — схема вывода показаний измерительного прибора
microprocessor integrated circuit — микропроцессорная интегральная микросхема
microwave integrated circuit — интегральная схема СВЧ диапазона, сверхвысокочастотная ИМС
monolithic integrated circuit — полупроводниковая микросхема
multitank oil circuit breaker — камерный масляный выключатель
semiconducnor integrated circuit — полупроводниковая интегральная микросхема
series track circuit — < railways> цепь рельсовая конденсаторная
short circuit current — <electr.> ток короткого замыкания
single-path magnetic circuit — неразветвленный магнитопровод
single-rail track circuit — однониточная рельсовая цепь, < railways> цепь рельсовая однониточная
single-tank oil circuit breaker — баковый масляный выключатель
turn-to-turn short circuit — междувитковое короткое замыкание
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90 circuit
2) канал3) т. граф. простая цепь, контур•- active circuit
- acyclic circuit
- adding circuit
- add circuit
- addressing circuit
- advancing circuit
- alarm circuit
- amplifying circuit
- analogous circuit
- analog circuit
- AND-to-OR circuit
- antialiasing circuit
- anticoincidence circuit
- antihunting circuit
- antihunt circuit
- aperiodic circuit
- arithmetic circuit
- arithmetical circuit
- astable circuit
- averaging circuit
- balanced circuit
- basis circuit
- beam-lead integrated circuit
- benchmark circuit
- binary-valued digital circuit
- binary-valued circuit
- bipolar circuit
- bistable circuit
- blanking circuit
- bleeder circuit
- bridge circuit
- buffer circuit
- carry circuit
- character selection circuit
- checking circuit
- check circuit
- clamping circuit
- clocked circuit
- clock-recovery circuit
- closed circuit
- code disjoint circuit
- coincidence circuit
- combinational circuit
- combinatorial circuit
- communication circuit
- comparator circuit
- compare circuit
- comparison circuit
- complementary circuit
- complementary integrated circuit
- complementary transistor logic circuit
- complex function circuit
- computer circuit
- computer test circuit
- computing circuit
- control circuit
- core-diode circuit
- core-transistor circuit
- correcting circuit
- correction circuit
- counter circuit
- counting circuit
- coupling circuit
- current-limit circuit
- current-operated circuit
- current-summation circuit
- custom product integrated circuit
- custom integrated circuit
- custom-wired integrated circuit
- cutoff circuit
- cycle circuit
- cyclic circuit
- dead-on-arrival integrated circuit
- decode circuit
- decoding circuit
- deenergizing circuit
- deflection circuit
- delay circuit
- densely packed circuit
- differentiating circuit
- digital computing circuit
- diode circuit
- diode-coupled circuit
- diode-transistor logic circuit
- direct-coupled circuit
- direct-coupled transistor logic circuit
- direct-current circuit
- discrete component circuit
- discrete logic-level
- discrete wired circuit
- display circuit
- divide-by-two circuit
- dividing circuit
- double-sided printed circuit
- doubling circuit
- drive circuit
- dry circuit
- dual circuit
- duplex circuit
- Eccles-Jordan circuit
- edge-activated circuit
- emitter-coupled circuit
- emitter-coupled logic circuit
- emitter-emitter-coupled logic circuit
- equality circuit
- equivalent circuit
- etched circuit
- Euler circuit
- except circuit
- fanout-free circuit
- fast-switching circuit
- fault detection circuit
- fault-free circuit
- fault-secure circuit
- faulty circuit
- feedback circuit
- ferrite-diode circuit
- ferrite-transistor circuit
- ferroresonant computing circuit
- film integrated circuit
- flag-testing circuit
- flat-pack integrated circuit
- flexible printed circuit
- flexible circuit
- flip-chip integrated circuit
- flip-flop circuit
- frame-grounding circuit
- frequency-halving circuit
- function circuit
- gate circuit
- Goto-pair circuit
- half-duplex circuit
- halving circuit
- Hamilton circuit
- hand-designed circuit
- hardwired circuit
- high-speed circuit
- high-threshold logic circuit
- holding circuit
- hybrid circuit
- idler circuit
- imbedded circuit
- IMOS circuit
- impulse circuit
- inhibit circuit
- input circuit
- integrated circuit
- integrating circuit
- integro-differential circuit
- interchange circuit
- interface circuit
- interfacing circuit
- interlock circuit
- invert circuit
- ion-implanted MOS circuit
- irredundant circuit
- Josephson integrated circuit
- junction transistor circuit
- ladder circuit
- lag-lead circuit
- laminar circuit
- large arithmetic circuit
- large-scale integrated circuit
- large-scale integration circuit
- latch circuit
- lead-lag circuit
- leased circuit
- level circuit
- linear circuit
- linear integrated circuit
- linearity circuit
- liquid logic circuit
- load circuit
- locked pair circuit
- locking circuit
- logic circuit
- logical circuit
- low-threshold integrated circuit
- LSI circuit
- lumped circuit
- magnetic circuit
- magnetic-core circuit
- majority circuit
- match circuit
- material equivalence circuit
- matrix circuit
- maximum-remembering circuit
- measuring circuit
- medium-scale integration circuit
- memory circuit
- memory-decoder circuit
- message circuit
- metal-oxide-semiconductor circuit
- microamp circuit
- microelectronic integrated circuit
- microminiature circuit
- microwave circuit
- mil spec integrated circuit
- milliwatt circuit
- miniature circuit
- minimum-remembering circuit
- mixed-level circuit
- mixing circuit
- modularized circuit
- molecular integrated circuit
- monitoring circuit
- monolithic integrated circuit
- monostable circuit
- MOS circuit
- MOS integrated circuit
- MOS LSI circuit
- MSI circuit
- multichip integrated circuit
- multifunction integrated circuit
- multilayer circuit
- multilevel circuit
- multiple output circuit
- multiplying circuit
- multipoint circuit
- multistable circuit
- multistage circuit
- nanosecond circuit
- n-channel circuit
- network circuit
- noise-balancing circuit
- noncoincidence circuit
- noncutoff circuit
- non-self-checking circuit
- one-core-per-bit circuit
- one-generator equivalent circuit
- one-out-of-four selecting circuit
- one-shot circuit
- open circuit
- optical commutation circuit
- optical memory circuit
- optically coupled circuit
- optoelectronic circuit
- output circuit
- packaged circuit
- packed circuit
- p-channel circuit
- phantom circuit
- phase-comparison circuit
- phase-inverting circuit
- picosecond circuit
- pilot circuit
- plastic-embedded circuit
- point-to-point circuit
- power circuit
- power monitoring circuit
- power-fail circuit
- printed circuit
- priority circuit
- propagation circuit
- protection circuit
- pulse circuit
- pulse-actuated circuit
- pulse-broadening circuit
- pulse-regenerating circuit
- pulse-shaping circuit
- pulse-stretching circuit
- pulse-switching circuit
- pumped tunnel-diode transistor logic circuit
- pumping circuit
- quenching circuit
- race-free circuit
- radio-frequency circuit
- random-logic circuit
- ratioed circuit
- reading circuit
- received-data circuit
- receiving circuit
- reconfigurable integrated circuit
- redundant circuit
- reference circuit
- refreshing circuit
- relaxation circuit
- reset circuit
- retriggerable circuit
- rewriting circuit
- ring circuit
- rounding circuit
- sample-hold circuit
- saturated circuit
- scale-of-N circuit
- scale-of-two circuit
- scaling circuit
- schematic circuit
- Schmitt trigger circuit
- Schmitt circuit
- screen printed circuit
- selection circuit
- select circuit
- self-checking circuit
- self-testing circuit
- self-timed circuit
- semiconductor circuit
- send-request circuit
- sequential circuit
- shifting circuit
- shift circuit
- short circuit
- shunt-peaking circuit
- sign-controlled circuit
- silicon integrated circuit
- silicon-on-sapphire integrated circuit
- simplex circuit
- single-chip circuit
- single-ended circuit
- single-level circuit
- single-phase circuit
- single-shot circuit
- small-scale integration circuit
- solid-state circuit
- solid circuit
- SOS integrated circuit
- squaring circuit
- SSI circuit
- stabilizing circuit
- stamped circuit
- start-stop circuit
- steering circuit
- storage circuit
- storage-selection circuit
- strongly fault-secure circuit
- subtraction circuit
- summing circuit
- sweep circuit
- switching circuit
- symbolic circuit
- synchronizing circuit
- synthesis circuit
- thick-film circuit
- thin-film circuit
- threshold circuit
- time-anticoincidence circuit
- time-base circuit
- time-coincidence circuit
- time-delay circuit
- toll circuit
- totally self-checking circuit
- transistor circuit
- transistor-core circuit
- transistor-resistor circuit
- transistor-transistor-logic circuit
- translation circuit
- transmitted-data circuit
- transmitting circuit
- tree circuit
- trigger -action circuit
- trigger circuit
- trunk circuit
- tunnel diode circuit
- twin-tunnel-diode circuit
- twin circuit
- two-cores-per-bit circuit
- two-input circuit
- two-level circuit
- two-way circuit
- ultra-large-scale integration circuit
- unidirectional circuit
- unpackaged circuit
- unpacked circuit
- very-high-speed integrated circuit
- very-large-scale integration circuit
- virtual circuit
- VLSI circuit
- voice circuit
- voice-grade circuit
- voltage-control circuit
- voltage-doubling circuit
- voltage-multiplying circuit
- voltage-summation circuit
- voter circuit
- wave-shaping circuit
- whole-wafer circuit
- wired AND circuit
- wired OR circuit
- wire-wrapped circuit
- writing circuit
- zero circuitEnglish-Russian dictionary of computer science and programming > circuit
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91 Hamilton, Harold Lee (Hal)
[br]b. 14 June 1890 Little Shasta, California, USAd. 3 May 1969 California, USA[br]American pioneer of diesel rail traction.[br]Orphaned as a child, Hamilton went to work for Southern Pacific Railroad in his teens, and then worked for several other companies. In his spare time he learned mathematics and physics from a retired professor. In 1911 he joined the White Motor Company, makers of road motor vehicles in Denver, Colorado, where he had gone to recuperate from malaria. He remained there until 1922, apart from an eighteenth-month break for war service.Upon his return from war service, Hamilton found White selling petrol-engined railbuses with mechanical transmission, based on road vehicles, to railways. He noted that they were not robust enough and that the success of petrol railcars with electric transmission, built by General Electric since 1906, was limited as they were complex to drive and maintain. In 1922 Hamilton formed, and became President of, the Electro- Motive Engineering Corporation (later Electro-Motive Corporation) to design and produce petrol-electric rail cars. Needing an engine larger than those used in road vehicles, yet lighter and faster than marine engines, he approached the Win ton Engine Company to develop a suitable engine; in addition, General Electric provided electric transmission with a simplified control system. Using these components, Hamilton arranged for his petrol-electric railcars to be built by the St Louis Car Company, with the first being completed in 1924. It was the beginning of a highly successful series. Fuel costs were lower than for steam trains and initial costs were kept down by using standardized vehicles instead of designing for individual railways. Maintenance costs were minimized because Electro-Motive kept stocks of spare parts and supplied replacement units when necessary. As more powerful, 800 hp (600 kW) railcars were produced, railways tended to use them to haul trailer vehicles, although that practice reduced the fuel saving. By the end of the decade Electro-Motive needed engines more powerful still and therefore had to use cheap fuel. Diesel engines of the period, such as those that Winton had made for some years, were too heavy in relation to their power, and too slow and sluggish for rail use. Their fuel-injection system was erratic and insufficiently robust and Hamilton concluded that a separate injector was needed for each cylinder.In 1930 Electro-Motive Corporation and Winton were acquired by General Motors in pursuance of their aim to develop a diesel engine suitable for rail traction, with the use of unit fuel injectors; Hamilton retained his position as President. At this time, industrial depression had combined with road and air competition to undermine railway-passenger business, and Ralph Budd, President of the Chicago, Burlington \& Quincy Railroad, thought that traffic could be recovered by way of high-speed, luxury motor trains; hence the Pioneer Zephyr was built for the Burlington. This comprised a 600 hp (450 kW), lightweight, two-stroke, diesel engine developed by General Motors (model 201 A), with electric transmission, that powered a streamlined train of three articulated coaches. This train demonstrated its powers on 26 May 1934 by running non-stop from Denver to Chicago, a distance of 1,015 miles (1,635 km), in 13 hours and 6 minutes, when the fastest steam schedule was 26 hours. Hamilton and Budd were among those on board the train, and it ushered in an era of high-speed diesel trains in the USA. By then Hamilton, with General Motors backing, was planning to use the lightweight engine to power diesel-electric locomotives. Their layout was derived not from steam locomotives, but from the standard American boxcar. The power plant was mounted within the body and powered the bogies, and driver's cabs were at each end. Two 900 hp (670 kW) engines were mounted in a single car to become an 1,800 hp (l,340 kW) locomotive, which could be operated in multiple by a single driver to form a 3,600 hp (2,680 kW) locomotive. To keep costs down, standard locomotives could be mass-produced rather than needing individual designs for each railway, as with steam locomotives. Two units of this type were completed in 1935 and sent on trial throughout much of the USA. They were able to match steam locomotive performance, with considerable economies: fuel costs alone were halved and there was much less wear on the track. In the same year, Electro-Motive began manufacturing diesel-electrie locomotives at La Grange, Illinois, with design modifications: the driver was placed high up above a projecting nose, which improved visibility and provided protection in the event of collision on unguarded level crossings; six-wheeled bogies were introduced, to reduce axle loading and improve stability. The first production passenger locomotives emerged from La Grange in 1937, and by early 1939 seventy units were in service. Meanwhile, improved engines had been developed and were being made at La Grange, and late in 1939 a prototype, four-unit, 5,400 hp (4,000 kW) diesel-electric locomotive for freight trains was produced and sent out on test from coast to coast; production versions appeared late in 1940. After an interval from 1941 to 1943, when Electro-Motive produced diesel engines for military and naval use, locomotive production resumed in quantity in 1944, and within a few years diesel power replaced steam on most railways in the USA.Hal Hamilton remained President of Electro-Motive Corporation until 1942, when it became a division of General Motors, of which he became Vice-President.[br]Further ReadingP.M.Reck, 1948, On Time: The History of the Electro-Motive Division of General Motors Corporation, La Grange, Ill.: General Motors (describes Hamilton's career).PJGRBiographical history of technology > Hamilton, Harold Lee (Hal)
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92 clutch
•-
air-actuated friction clutch
-
air-assisted hydraulic operated clutch
-
air-conditioning clutch
-
automate clutch
-
automatic control clutch
-
bevel clutch
-
brake actuating clutch
-
cable control clutch
-
cable-operated clutch
-
cam clutch
-
centrifugal clutch
-
cold weather disconnect clutch
-
cone clutch
-
constantly engaged clutch
-
countershaft transmission clutch
-
cutoff clutch
-
diaphragm clutch
-
differential lock clutch
-
direct drive clutch
-
direction clutch
-
disengaging clutch
-
disk clutch
-
dog clutch
-
double-cone clutch
-
double-disk clutch
-
dry clutch
-
dual impeller clutch
-
elastic clutch
-
electromagnetic clutch
-
electromagnetic friction clutch
-
expansion clutch
-
external connection clutch
-
fan drive clutch
-
fluid actuated clutch
-
flywheel clutch
-
forward clutch
-
freewheel clutch
-
friction clutch
-
gear clutch
-
gripping clutch
-
high-speed clutch
-
hydraulic clutch
-
hydraulic-operated clutch
-
impeller clutch
-
input clutch
-
internal connection clutch
-
internal gear clutch
-
jaw clutch
-
jaw-type overload-release clutch
-
large perimeter-mounted clutch
-
lever-actuated friction clutch
-
lock-up clutch
-
manual shirt transmission clutch
-
marine transmission clutch
-
multicone friction clutch
-
multidisk clutch
-
multiplate steering clutch
-
multiple disk clutch
-
nonreversible clutch
-
oil bath clutch
-
oil-actuated friction clutch
-
oil-type clutch
-
one-way clutch
-
one-way rotation clutch
-
overload release clutch
-
overload shearing clutch
-
overrunning clutch
-
overtime clutch
-
pinion clutch
-
piston actuated clutch
-
planetary clutch
-
plate clutch
-
pneumatic clutch
-
power clutch
-
power takeoff clutch
-
pressure circulated oil clutch
-
radiator fan clutch
-
release clutch
-
retaining clutch
-
reverse clutch
-
ring gear clutch
-
rotating clutch
-
safety clutch
-
safety friction clutch
-
safety notch clutch
-
self-actuated clutch
-
shearing clutch
-
single-disk clutch
-
sleeve-type clutch
-
slicing dog clutch
-
slipping clutch
-
slip clutch
-
solenoid clutch
-
speed clutch
-
split power clutch
-
starting clutch
-
starting engine clutch
-
steering clutch
-
toggle clutch
-
tooth clutch
-
torque converter clutch
-
torque converter lockup clutch
-
transmission clutch
-
transmission power shift clutch
-
twin disk clutch
-
vacuum clutch
-
wet-type clutch
-
winch clutch
-
winch directional clutch -
93 engine
1) двигатель
2) машина-двигатель
3) мотостроительный
4) скоропечатный
5) мотор
6) механизм
7) орудие
8) инструмент
9) локомотив
10) моторный
– accelerate the engine
– air-breathing jet engine
– air-cooled engine
– aircraft engine
– altitude engine
– arc-heating jet engine
– atmospheric jet engine
– augmented engine
– axial engine
– basic engine
– beam engine
– birotary engine
– boat engine
– build up engine
– bypass engine
– carburetor engine
– carburettor engine
– compound engine
– compression-ignition engine
– cowl engine
– crank engine
– cross-head engine
– crosshead engine
– crude oil engine
– cruise engine
– decelerate the engine
– diaphragm engine
– diesel engine
– double-acting engine
– double-row engine
– ducted-fan engine
– electric engine
– engine bay
– engine bed
– engine block
– engine brake
– engine braking
– engine break-away
– engine capacity
– engine case
– engine control
– engine cowling
– engine cycle
– engine department
– engine flameout
– engine frame
– engine hatch
– engine is dead
– engine is generating
– engine is running
– engine misses
– engine motoring
– engine mounting
– engine nacelle
– engine performance
– engine pings
– engine press
– engine reconditioning
– engine relay
– engine room
– engine rpm indicator
– engine shutdown
– engine smokes
– engine speed
– engine stalls
– engine support
– engine telegraph
– engine throttle
– engine torque
– engine tune-up
– engine works
– engine yard
– explosion engine
– flood engine
– flush engine
– four-cycle engine
– four-stroke engine
– free-piston engine
– fuel-injection engine
– fuel-pump engine
– gas turbine jet engine
– gas-turbine engine
– gasoline engine
– geared engine
– heat engine
– heavy-oil engine
– high-speed engine
– hoist engine
– hot-bulb engine
– hydraulic engine
– hydrojet engine
– in-line engine
– industrial engine
– ion rocket jet engine
– jet engine
– jet engine fuel
– left-hand engine
– lift engine
– liquid-cooled engine
– liquid-propellant jet engine
– loop-scavenged engine
– low-compression engine
– low-speed engine
– marine engine
– micro engine
– multibank engine
– multicrank engine
– multinozzle engine
– multipropellant engine
– multirow engine
– non-reversible engine
– nuclear engine
– outboard engine
– overhauled engine
– overhead engine
– piston engine
– plate-measuring engine
– pod-type engine
– power of an engine
– prime engine
– production engine
– prototype engine
– pulsejet engine
– racing of engine
– radial engine
– ramjet engine
– relight engine
– restart of engine
– rev up engine
– reversible engine
– revving-up engine
– right-hand engine
– rocket engine
– rotary-piston engine
– run in engine
– self-ignition engine
– semidiesel engine
– short-stroke engine
– sing-acting engine
– spark-ignition engine
– stand-by engine
– start engine
– starting engine
– steam engine
– steering engine
– supercharged engine
– supercompression engine
– sustainer engine
– switch engine
– tear-down of engine
– traction engine
– tune engine
– turbo-ramjet engine
– turbocharged engine
– turbojet engine
– turboprop engine
– turborocket engine
– turboshaft engine
– two-cycle engine
– two-stroke engine
– uncooled engine
– unsupercharged engine
– variable-stroke engine
– vectored-thrust engine
– Vee of engine
– Wankel engine
– water-cooled engine
aircraft engine mechanic — <aeron.> авиамоторист
back-pressure steam engine — паровая машина с противодавлением
bipropellant rocket engine — < rocket> двигатель двухкомпонентный
diesel locomotive engine — < railways> двигатель тепловозный
engine is installed as a unit — двигатель устанавливается в сборе
hybrid rocket engine — < rocket> двигатель ракетный комбинированный
jet engine starter system — <engin.> турбостартер
liquid-fuel rocket engine — <cosm.> двигатель реактивный жидкостный
liquid-propellant rocket engine — жидкостный ракетный двигатель
monopropellant rocket engine — < rocket> двигатель ракетный однокомпонентный
solid-propellant rocket engine — < rocket> двигатель ракетный твердотопливный
spontaneous ignition engine — < rocket> двигатель самореагирующий
twin ramjet engine — <engin.> двигатель прямоточнный спаренный
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94 press
1) пресс || прессовать; сжимать2) поджимать3) пресс, печатная машина•to press down — нажимать; толкать вниз
- assembling pressto press up — поджимать; толкать вверх
- automatic notching press for stamping electric motor stator and rotor notches
- automatic press for cold pressing of nuts
- automatic press
- baling press
- bench press
- bench-mounted drill press
- bench-type press
- bending and hot forming press
- bending and straightening press
- bending press
- blank press
- blanking press
- bolt-heading press
- briquetting press
- broaching press
- cabbaging press
- calibrating press
- cam press
- car body stamping press
- C-frame press
- closed die stamping press
- close-frame press
- coining press
- cold automatic press for bolts
- cold extrusion automatic press
- cold forming press
- cold heading press
- cold press for bolts
- cold upsetting press
- column press
- continuous roller press
- crank press
- cutting press
- dial press
- dial-feed press
- die spotting press
- double-action press
- double-column press
- double-crank press
- double-point press
- down-stroke press
- drawing press
- drill press
- drop press
- drop-hammer press
- eccentric press
- eccentric-shaft press
- ejecting press
- end-wheel-type press
- extruding press
- extrusion press
- filter press
- fine blanking press
- fine blanking punch press
- fixed press
- flanging press
- fly press
- folding press
- foot lever press
- foot press
- forcing press
- forging press
- forming press
- four-column press
- four-crank press
- four-point press
- four-point suspension press
- frame-construction press
- friction press
- friction screw press
- front mechanical press
- gap press
- gap-frame press
- gear-drive press
- geared press
- hand lever press
- hand-power press
- hard metal powder alloy automatic press
- heading press
- high-speed press
- hobbing press
- hole-punching press
- horn press
- horning press
- hot die-forging press
- hot forging press
- hot stamping press
- hydraulic press
- hydraulic screw press
- hydropneumatic press
- hydrostatic press
- inclinable press
- knuckle-joint press
- lamination automatic press
- lamination segments blanking press
- lever press
- link drive press
- mechanical press
- metal powder compacting press
- metal stamping press
- microdrill press
- multiple-point press
- multislide press
- noninclinable press
- notching press
- nut press
- OBI press
- one-point press
- one-point suspension press
- open press
- open-back press
- open-frame press
- open-front press
- open-rod press
- overhead drive press
- percussion power press
- percussion press
- perforating press
- plastics molding press
- powder compacting automatic press
- powder compacting press
- powder-metal compacting press
- powder-metal press
- power press
- power-screw press
- punch press
- punching press
- quenching press
- radial drill press
- radial-type drill press
- rail press
- redrawing press
- riveting press
- rolling press
- rotary table press
- rubber press
- rubber-bladder press
- scrap baling press
- screw press with electric arc drive
- screw press with flywheel and reversing clutch
- screw press with main clutch
- screw press
- sensitive drill press
- shearing press
- sheet bending press
- sheet stamping automatic press
- sheet-metal press
- sheet-metal stamping press
- side press
- side ram press
- single-acting press
- single-action press
- single-crank press
- single-point press
- spark-discharge forming press
- spruce-cutting press
- stamping press
- staving press
- straightening press
- straight-side press
- straight-sided press
- stretch forming press
- stretching press
- table drill press
- toggle press
- toggle-lever press
- tool magazine-fed press
- transfer press
- trimming press
- triple-acting press
- triple-action press
- turret punch press
- turret punching press
- two-crank press
- two-point press
- underdrive press
- underdriven press
- upright drill press
- upsetting press
- upstroke press
- veneering press
- vertical press
- warm press for bolts
- warm-heading press
- wide-frame crank drawing press
- wide-frame drawing press
- wide-frame pressEnglish-Russian dictionary of mechanical engineering and automation > press
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95 race
гонка имя существительное:состязание в скорости (race, racing)быстрое течение (race, Flight)глагол:участвовать в скачках (race, ride a race) -
96 rotor
-
97 engine
машина; двигатель
* * *
* * *
машина; двигатель
* * *
двигатель; мотор- crude engine
- drilling engine
- dual fuel engine
- gas engine
- gas blowing engine
- hoist engine
- hoisting engine
- Horning engine
- monkey engine
- mud engine
- multifuel engine
- oil engine
- oil-electrical engine
- piston engine
- prime engine
- rear engine
- Ricardo variable compression testing engine
- rotary drive engine
- trifuel engine
- turbo charged diesel engine
- twin cylinder drilling engine -
98 belt
1) ремень || ремённый2) лента; пояс; бандаж || ленточный•- armored beltbelt with reinforced edge — лента с усиленным бортом, конвейерная лента с усиленным бортом
- banded-together belt
- bare duck belt
- buffing belt
- chain belt
- cleated belt
- closed loop belt
- coated abrasive belt
- cog belt
- cogged belt
- continuous belt
- conveyor belt
- cord belt
- cross belt
- crossed belt
- drive belt
- driving belt
- elevator belt
- endless belt
- endless metal belt
- feed belt
- flat belt
- grinding aid belt
- grinding belt
- guarantee belt
- half-crossed belt
- halved belt
- high-speed reversing belt
- inclined belt
- indexing belt
- layered belts
- leather belt
- mesh belt
- multiple V-belt
- oblique belt
- open belt
- perforated belt
- power transmission belt
- quarter-turn belt
- quarter-twist belt
- radius belt
- raised rib belt
- resin-bond cloth belt
- reverse belt
- round driving belt
- round-section driving belt
- rubber belt
- rubber-impregnated belt
- safety belt
- sanding belt
- shifting belt
- solid woven conveyor belt
- steel belt
- steel cord conveyor belt
- stitched belt
- synchronous belt
- tapered grinding belt
- timing belt
- toothed belt
- transmission belt
- turn belt
- V belt
- variable speed belt
- variable speed V belt
- vee belt
- V-shaped belt
- wedge belt
- wet grinding belt
- wind belt
- woven fabric beltEnglish-Russian dictionary of mechanical engineering and automation > belt
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99 engine
1) двигатель, мотор2) машина; механизм3) локомотив4) орудие, средство•to accelerate the engine — прибавлять обороты, увеличивать обороты, разгонять двигатель
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100 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
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