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1 rear-engine installation
Englsh-Russian aviation and space dictionary > rear-engine installation
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2 installation
установка; монтаж; оборудование; сооружение; ( пусковой) комплекс; объект; сборка, устройство, размещение; расположение; см. тж. facility -
3 engine
двигатель (внутреннего сгорания); машина; мотор- engine analyzer - engine and gearbox unit - engine area - engine assembly - engine assembly shop - engine bonnet - engine braking force - engine breathing - engine-building - engine capacity - engine cleansing agents - engine column - engine component - engine conk - engine control - engine-cooling - engine-cooling thermometer - engine cowl flap - engine cross-drive casing - engine cutoff - engine cycle - engine data - engine deck - engine department - engine details - engine diagnostic connector - engine-driven air compressor - engine-driven industrial shop truck - engine dry weight - engine efficiency - engine failure - engine fan pulley - engine flameout - engine flywheel - engine for different fuels - engine frame - engine front - engine front area - engine front support bracket - engine fuel - engine gearbox - engine-gearbox unit - engine-generator - engine-governed speed - engine governor - engine gum - engine hatch - engine hoist - engine hood - engine house - engine idles rough - engine in situ - engine installation - engine is smooth - engine is tractable - engine knock - engine lacquer - engine life - engine lifetime pecypc - engine lifting bracket - engine lifting fixture - engine lifting hook - engine location - engine lubrication system - engine lug - engine management - engine management system - engine map - engine misfires - engine model - engine motoring - engine mount - engine-mounted - engine mounted longitudinally - engine mounted transversally - engine mounting - engine-mounting bracket - engine nameplate - engine noise - engine number - engine off - engine oil - engine oil capacity - engine oil filler cap - engine oil filling cap - engine oil tank - engine on - engine operating temperature - engine out of work - engine output - engine overhaul - engine pan - engine peak speed - engine performance - engine picks up - engine pings - engine piston - engine plant - engine power - engine pressure - engine primer - engine rating - engine rear support - engine reconditioning - engine renovation - engine repair stand - engine retarder - engine revolution counter - engine rig test - engine room - engine roughness - engine rpm indicator - engine run-in - engine runs rough - engine runs roughly - engine shaft - engine shed - engine shield - engine shop - engine shorting-out - engine shutdown - engine sludge - engine snubber - engine speed - engine speed sensor - engine stability - engine stalls - engine start - engine starting system - engine starts per day - engine stroke - engine subframe - engine sump - engine sump well - engine support - engine temperature sensor - engine test stand - engine testing room - engine throttle - engine timing case - engine-to-cabin passthrough aperture - engine-transmission unit - engine torque - engine trends - engine trouble - engine tune-up - engine turning at peak revolution - engine under seat - engine unit - engine vacuum checking gauge - engine valve - engine varnish - engine vibration - engine wash - engine water inlet - engine water outlet - engine wear - engine weight - engine weight per horsepower - engine winterization system - engine with supercharger - engine wobble - engine works - engine yard - engine's flexibility - aero-engine - atmospheric engine - atmospheric steam engine - atomic engine - augmented engine - AV-1 engine - aviation engine - back-up engine - birotary engine - blast-injection diesel engine - blower-cooled engine - bored-out engine - boxer engine - bull engine - car engine - charge-cooled engine - crank engine - crankcase-scavenged engine - crude engine - crude-oil engine - diaphragm engine - diesel-electric engine - Diesel engine - Diesel engine with air cell - Diesel engine with antechamber - Diesel engine with direct injection - Diesel engine with mechanical injection - direct injection engine - divided-chamber engine - double-flow engine - double-overhead camshaft engine - drilling engine - driving engine - drop-valve engine - ducted-fan engine - duofuel engine - emergency engine - explosion engine - external combustion engine - external-internal combustion engine - F-head engine - failed engine - fan engine - federal engine - field engine - fire-engine - five-cylinder engine - fixed engine - flame engine - flat engine - flat-four engine - flat twin engine - flexibly mounted engine - forced-induction engine - four-cycle engine - four-cylinder engine - four-stroke engine - free-piston engine - free-piston gas generator engine - front-mounted engine - free-turbine engine - fuel-injection engine - full-load engine - gas engine - gas blowing engine - gas-power engine - gas-turbine engine - gasoline engine - geared engine - heat engine - heavy-duty engine - heavy-oil engine - high-by-pass-ratio turbofan engine - high-compression engine - high-efficiency engine - high-performance engine - high-power engine - high-speed engine - hoisting engine - hopped-up engine - horizontal engine - horizontally opposed engine - hot engine - hot-air engine - hot-bulb engine - hydrogen engine - I-head engine - in-line engine - inclined engine - indirect injection engine - individual-cylinder engine - industrial engine - inhibited engine - injection oil engine - injection-type engine - intercooled diesel engine - intermittent-cycle engine - internal combustion engine - inverted engine - inverted Vee-engine - jet engine - jet-propulsion engine - kerosene engine - knock test engine - L-head engine - launch engine - lean-burn engine - left-hand engine - lift engine - light engine - liquid-cooled engine - liquid propane engine - locomotive engine - longitudinal engine - long-stroke engine - low-compression engine - low-consumption engine - low-emission engine - low-performance engine - low-speed engine - marine engine - modular engine - monosoupape engine - motor engine - motor an engine round - motor-boat engine - motor-fire engine - motorcycle engine - motored engine - multibank engine - multicarburetor engine - multicrank engine - multicylinder engine - multifuel engine - multirow engine - naturally aspirated engine - non-compression engine - non-condensing engine - non-exhaust valve engine - non-poppet valve engine - non-reversible engine - nuclear engine - oil engine - oil-electric engine - oil well drilling engine - one-cylinder engine - operating engine - opposed engine - opposed cylinders engine - Otto engine - out-board engine - overcooled engine - overhead valve engine - oversquare engine - overstroke engine - pancake engine - paraffin engine - paraffine engine - petrol engine - Petter AV-1 Diesel engine - pilot engine - piston engine - piston blast engine - port engine - precombustion chamber engine - prime an engine - producer-gas engine - production engine - prototype engine - pumping engine - pushrod engine - quadruple-expansion engine - qual-cam engine - racing engine - radial engine - radial cylinder engine - radial second motion engine - railway engine - ram induction engine - ram-jet engine - reaction engine - 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solid-injection engine - spark-ignition engine - spark-ignition fuel-injection engine - split-compressor engine - square engine - square stroke engine - stalled engine - stand-by engine - start the engine cold - start the engine light - start the engine warm- hot- starting engine - static engine - stationary engine - steam engine - steering engine - Stirling engine - straight-eight engine - straight-line engine - straight-type engine - stratified charge engine - stripped engine - submersible engine - suction gas engine - supercharged engine - supercompression engine - supplementary engine - swash-plate engine - switching engine - tandem engine - tank engine - thermal engine - three-cylinder engine - traction engine - triple-expansion engine - tractor engine - transversally-mounted engine - truck engine - trunk-piston Diesel engine - turbine engine - turbo-jet engine - turbo-charged engine - turbo-compound engine - turbo-prop engine - turbo-ramjet engine - turbo-supercharged engine - turbocharged-and-aftercooled engine - turbofan engine - turboprop engine - twin engine - twin cam engine - twin crankshaft engine - twin six engine - two-bank engine - two-cycle engine - two-cylinder engine - two-spool engine - two-stroke engine - unblown engine - uncooled engine - underfloor engine - undersquare engine - uniflow engine - unsupercharged engine - uprated engine - V-engine - V-type engine - valve-in-the-head engine - valveless engine - vaporizer engine - vaporizing-oil engine - variable compression engine - variable-stroke engine - variable valve-timing engine - vee engine - vertical engine - vertical turn engine - vertical vortex engine - W-type engine - Wankel engine - warm engine - waste-heat engine - water-cooled engine - winding engine - windshield wiper engine - woolly-type engine - worn engine - X-engine - Y-engine - yard engine -
4 двигатель
- (газотурбинный, поршневой, тепловой) — engine
- (гидравлический, пневматический, электрический) — motor
-, авиационный — aircraft engine
двигатель, используемый или предназначенный к использованию в авиации для перемещения и (или) поддержания ла, на котором он установлен, в воздухе (рис. 46). — an engine that is used or intended to be used in propelting or lifting aircraft.
- аналогичной конструкции — engine of identical design and сonstruction
- без наддува (ид) — unsupercharged engine
-, безредукторный — direct-drive engine
-, безредукторный винто-вентиляторный (незакопоченный) — unducted fan engine (udf)
винтовентиляторы вращаются непосредственно силовой (свободной) турбиной с противоположным вращением рабочих колес. — fans are driven directly by a counter-rotating turbine, eliminating complexity of a reduction gearbox.
-, бензиновый — gasoline engine
-, боковой (рис. 13) — side engine
- в подвесной мотогондоле — pod engine
-, вентиляторный, с противоположным вращением вентиляторов — contrafan engine
- вертикальной наводки, приводной (стрелкового вооружения) — (gun) elevation drive motor
-, винто-вентиляторный (тввд) — prop-fan engine
-, включенный (работающий) — operating/running/engine
-, внешний (по отношению к фюзеляжу) (рис. 44) — outboard engine
- внутреннего сгорания — internal-combustion engine
-, внутренний (по отношению к наружному двигателю) (рис. 44) — inboard engine
- воздушного охлаждения (пд) — air-cooled engine
двигатель, у которого отвод тепла от цилиндров производится воздухом, непосредственно обдувающим их. — an engine whose running temperature is controlled by means of air cooled cylinders.
-, вспомогательный (всу) — auxiliary power unit (apu)
-, выключенный — shutdown engine
-, выключенный (неработающий) — inoperative engine
-, высокооборотный — high-speed engine
-, высотный — high-altitude engine
-, газотурбинный (гтд) — turbine engine
-, газотурбинный (вертолетныи) — helicopter turboshaft engine
-,газотурбинный-энергоузел (стартер-энергоузел) — turbine-starter - auxiliary power unit, starter - apu
- (-) генератор — motor-generator
устройство для преобразования одного вида эл. энергии в другую (напр., переменный ток в постоянный). — а motor-generator combination for converting one kind of electric power to another (e.g. ас to dc)
- горизонтальной наводки, приводной (стрелкового вооружения) — (gun) azimuth drive motor
- двухвальной схемы (турбовальный) — two-shaft turbine engine
-, двухвальный турбовинтовой — two-shaft turboprop engine
-, двухвальный турбореактивный — two-shaft /-rotor, -spool/turbojet engine
-, двухкаскадный — two-rotor /-shaft, -spool/ engine, twin-spool engine
двухвальный турбореактивный двигатель называется также двухроторным или двухкаскадным двигателем. — а two-rotor engine is a twoshaft or two-spool engine with lp and hp compressors and hp and lp turbines.
-, двухкаскадный, двухконтурный, (турбореактивный) — two-rotor /twin-spool/ by-pass turbo-jet engine
-, двухкаскадный, турбовальный, газотурбинный, со свободной турбиной — two-rotor /twin-spool/ turboshaft engine with free-power turbine
-, двухкаскадный, турбовентиляторвый с устройством отклонения направления тяги — two-rotor /twin-spool/ turbofan engine with thrust deflector system
-, двухконтурный — by-pass /bypass/ engine
гтд, в котором, помимо основного внутреннего (первого) контура, имеется наружный (второй) контур, представляющий собой канал кольцевого сечения, оканчивающийся у реактивного сопла. — in а by-pass engine, a part of the air leaving the lp cornpressor is dueted through the by-pass duct around the engine main duct to the exhaust unit to be exhausted to the atmosphere.
-, двухконтурный с дожиганиem во втором контуре — duct-burning by-pass engine
-, двухконтурный со смешиванием потоков наружного и и внутренного контуров — by-pass exhaust mixing engine
-, двухроторный — two-rotor engine
- двухрядная звезда (пд) — double-row radial engine
двигатель, у которого цнлиндры расположены двумя рядами радиально относительнo одного oбщего коленчатоro вала. — an engine having two rows of cylinders arranged radially around а common crankshaft. the corresponding front and rear cylinders may or may not be in line.
-, двухтактный (пд) — two-cycle engine
-, дозвуковой — subsonic engine
-, доработанный по модификации (1705) — engine incorporating mod. (1705), post-mod. (1705) engine
-, звездообразный — radial engine
поршневой двигатель с радиальным расположением цилиндров, оси которых лежат в одной, двух или нескольких плоскостях, перпендикулярных к оси коленчатого вала — an engine having stationary cylinders arranged radially around а commom crankshaft.
-, звездообразный двухрядный — double-row radial engine
-, звездообразный однорядный — single-row radial engine
-, исполнительный (эл.) — (electric) actuator, servo motor
-, исполнительный, канала курса (крена или тангажа) (гироплатформы) — azimuth (roll or pitch) servornotor
-, карбюраторный (пд) — carburetor engine
-, коррекционный (гироскопического прибора) — erection torque motor
-, критический — critical engine
двигатель, отказ которого вызывает наиболее неблагоприятные изменения в поведении самолета, управляемости и избытке тяги. — "critical engineп means the engine whose failure would most adversely affect the performance or handling qualities of an aircraft.
-, крыльевой (установленный на крыле) — wing engine
- левого вращения — engine of lh rotation
-, маломощный — low-powered engine
-, многорядный (пд) — multirow engine
-, многорядный звездообразный — multirow radial engine
-, модифицированный — modified engine
- модульной конструкции — module-construction engine
lp compressor - module i, hp compressor - module 2, etc.
-, мощный — high-powered engine
-, недоработанный no модификацин (1705) — engine not incorporating mod. (1705), pre-mod. (1705) engine
-, незакапоченный — uncowled engine
- непосредственного впрыска (пд) — fuel injection engine
-, неработающий — inoperative engine
-, одновальный (гтд) — single-shaft /single-rotor/ turbine engine
-, одновальный двухконтурный — single-shaft /single-rotor/ bypass engine
-, одновальный турбовентиляторный — single-shaft /single-rotor/ turbofan engine
-, одновальный турбовинтовой — single-shaft turboprop engine
-, одновальный турбореактивный — single-shaft /single-rotor/turbojet engine
-, однорядный (пд) — single-row engine
-, опытный — prototype engine
двигатель определенного тиna, еще не прошедший типовые государственные испытания. — the tirst engine of a type and arrangement not approved previously, to be submitted for type approval test.
-, основной — main engine
-, оставшийся (продолжающий работать) — remaining engine
-, отказавший — inoperative/failed/ engine
- отработки (эл., исполнительный) — servomotor
- отработки следящей системы — servo loop drive motor
- подтяга (патронной ленты) — ammunition booster torque motor
-, поперечный коррекционный (авиагоризонта) — roll erection torque motor
-, поршневой (пд) — reciprocating engine
- правого вращения — engine of rh rotation
-, продольный коррекционный (авиагоризонта) — pitch erection torque motor
-, прямоточный — ramjet engine
двигатель без механического компрессора, в котором сжатие воздуха обеспечивается поступательным движением самого двигателя. — а jet engine with no meehanical compressor, and using the air for combustion compressed by forward motion of the engine.
- работающий — operating engine
-, работающий с перебоями — rough engine
двигатель, работающий с неисправной системой зажигания или подачи топлива (рабочей смеси) — an engine that is running or firing unevenly, usually due to а faulty condition in either the fuel or ignition systems.
- рамы крена (гироплатформы — roll-gimbal servomotor
- рамы курса (гироплатформы — azimuth-gimbal servomotor
- рамы тангажа (гироплатформы) — pitch-gimbal servomotor
-, реактивный — jet-engine
двигатель, в котором энергия топлива преобразуется в кинетическую энергию газовой струи, вытекающей из двигателя, a получающаяся за счет этого сила реакции нenоcредственно используется как сила тяги для перемещения летательного аппарата. — an aircraft engine that derives all or most of its thrust by reaction to its ejection of combustion products (or heated air) in a jet and that obtains oxygen from the atmosphere for the combustion of its fuel.
-, реактивный, пульсирующий — pulse jet (engine)
применяется для непосредственного вращения несущеro винта вертолета. — pulse jets are designed for helicopter rotor propulsion.
-, ремонтный — overhauled engine
серийный двигатель, отремонтированный или восстановленный до состояния, удовлетворяющего требованиям серийного стандарта, и пригодный для дальнейшей эксплуатации в течение установленного межремонтного ресурса. — an engine which has been repaired or reconditioned to а standard rendering it eligible for the complete overhaul life agreed by the national authority.
- с внешним смесеобразованием (пд) — carburetor engine
двигатель внутреннего сгорания, у которого горючая смесь образуется вне рабочего цилиндра. — an engine in which the fuel/air mixture is formed in the carburetor.
- с внутренним смесеобразованием — fuel-injection engine
двигатель, у которого горючая смесь образуется внутри рабочего цилиндра. — an engine in which fuel is directly injected into the cylinders.
- с водяным охлаждением (пд) — water-cooled engine
- с высокой степенью сжатия — high-compression engine
- с нагнетателем (пд) — supercharged engine
- с наддувом (пд) с осевым компрессором (пд) — supercharged engine axial-flom turbine engine
- с передним расположением вентилятора — front fan turbine engine
- с противоточной камерой сгорания (гтд) — reverse-flow turbine engine
- с редуктором — engine with reduction gear
- с форсажной камерой (гтд). двигатель с дополнительным сжиганием топлива в специальной камере за турбиной — engine with afterburner, afterburning engine, reheat(ed) engine, engine with thrust augmentor
- с форсированной (взлетной) мощностью — engine with augmented (takeoff) power rating
- с центробежным компрессором (гтд) — radial-flow turbine engine
-, серийный — series engine
двигатель, изготовляемый в серийном производстве и соответствующий опытному двигателю, принятому при государственных испытаниях для серийного производства. — an engine essentially identiin design, in materials, and in methods of construction, with one which has been approved previously.
- со свободной турбиной — free-luroine engine
двигатель с двумя турбинами, валы которых кинематически не связаны. одна из турбин обычно служит для привода компрессора, а другая используется для передачи полезной работы потребителю, например, воздушному (или несущему) винту. — the engine with two turbines whose shafts are not mechanically coupled. one turbine drives the compressor, and the other free turbine drives the propeller or rotor.
- следящей системы по внутреннему крену (гироплатформы) — inner roll gimbal servomotor
- следящей системы по наружному крену (гироплатформы) — outer roll gimbal servomotor
- следящей системы по курсу (гироплатформы) — azimuth gimbal servomotor
- следящей системы по тангажу (гироплатформы) — pitch gimbal servomotor
-, собственно — engine itself
-, средний (рис. 44) — center engine
- стабилизации гироплатформы — stable platform-stabilization servomotor/servo/
-, стартовый (работающий при взлете) — booster
-, стартовый твердотопливный — solid propellant booster
-, трехкаскадный, турбореактивный, с передним вентилятором — three-rotor /triple-spool, triple shaft/ front fan turbo-jet engine
-, турбовентиляторный — turbofan engine
двухконтурный турбореактивный двигатель, в котором часть воздуха выбрасывается за первыми ступенями компрессора низкого давления, а остальная часть воздуха за кнд поступает в основной контур с камерами сгорания. — in the turbofan engine a part of the air bypassed and exhausted to atmosphere after the first (two) stages of lp compressor. about half of the thrust is produced by the fan exhaust.
-, турбовентиляторный (с дожиганием в вентиляторном контуре) — duct-burning turbofan engine
-, турбовинтовентиляторный — (turbo) propfan engine, unducted fan engine (ufe)
-, турбовинтовой (твд) — turboprop engine
газотурбинный двигатель, в котором тепло превращается в кинетическую энергию реактивной струи и в механическую работу на валу двигателя, которая используется для вращения воздушного винта. — а turboprop engine is a turbine engine driving the propeller and developing an additional propulsive thrust by reaction to ejection of combustion products.
-, "турбовинтовой" (вертолетный, с отбором мощности на вал) — turboshaft engine
-, турбовинтовой, с толкающим винтом — pusher-turboprop engine
-, турбопрямоточный — turbo/ram jet engine
комбинация из турбореактивного (до м-з) и прямоточного (для больших чисел м). — combines а turbo-jet engine (for speeds up to mach 3) and ram jet engine for higher mach numbers.
-,турбо-ракетный — turbo-rocket engine
аналог турбопрямоточному двигателю с автономным кислородным питанием, — а turbo/ram jet engine with its own oxygen to provide combustion.
-, турбореактивный — turbojet engine
газотурбинный двигатель (с приводом компрессора от турбин), в котором тепло превращается только в кинетическую энергию реактивной струи. — a jet engine incorporating a turbine-driven air compressor to take in and compress the air for the combustion of fuel, the gases of combustion being used both to rotate the turbine and to create a thrust-producing jet.
-, установленный в мотогондоле — nacelle-mounted engine
-, установленный в подвесной мотогондоле — pod engine
-, четырехтактный (поршневой — four-cycle engine
за два оборота коленчатого вала происходит четыре хода поршня в каждом цилиндре, по одному такту на ход. такт 1 - впуск всасывание рабочей смеси в цилиндр), такт 2 - матке рабочей смеси, такт 3 - рабочий ход (зажигание смеси), такт 4 - выхлоп (выпуск отработанных газов из цилиндра в атмосферу) — a common type of engine which requires two revolutions of the crankshaft (four strokes of the piston) to complete the four events of (1) admission of or forcing the charged mixture of combustible gas into the cylinder, (2) compression of the charge, (3) ignition and burning of the charge, which develops pressure (power) acting on the piston and (4) exhaust or expulsion of the charge from the cylinder.
-, шаговой (эл.) — step-servo motor
-, электрический — electric motor
устройство, преобразующее электрическую энергию во вращательное механическое движение. — device which converts electrical energy into rotating mechanical energy.
- (-) энергоузел, газотурбинный (ггдэ) — turbine starter /auxiliary power unit, starter/ apu
для запуска основн. двигателей, хол. прокрутки (стартерный режим) и привода агрегатов самолета при неработающих двигателях (режим энергоузла), имеет свой электростартер.
в зоне д. — in the region of the engine
выбег д. — engine run-down
гонка д. — engine run
данные д. — engine data
заливка д. (пд перед запуском) — engine priming
замена д. — engine replacement /change/
запуск д. — engine start
испытание д. — engine test
мощность д. — engine power
на входе в д. — at /in/ inlet to the engine
обороты д. — engine speed /rpm, rpm/
опробование д. — engine ground test
опробование д. в полете — in-flight engine test
опробование д. на земле — engine ground test
останов д. (выключение) — engine shutdown
остановка д. (отказ) — engine failure
остановка д. (выбег) — run down
остановка д. вслествие недостатка масла (топлива) — engine failure due to oil (fuel) starvation
отказ д. — engine failure
перебои в работе д. — rough engine operation
подогрев д. — engine heating
проба д. (на земле) — engine ground test
прогрев д. — engine warm-up
прокрутка д. (холодная) — engine cranking /motoring/
работа д. — engine operation
разгон д. — engine acceleration
стоянка д. (период, в течение которого двигатель не работает) — engine shutdown. one hundred starts must be made of which 25 starts must be preceded by at least a two-hour engine shutdown.
тряска д. — engine vibration
тяга д. — engine thrust
установка д. — engine installation
шум д. — engine noise
вывешивать д. с помощью лебедки — support weight of the engine by a hoist
выводить д. на требуемые обороты % — accelerate the engine to a required speed of %
выключать д. — shut down the engine
глушить д. — shut down the engine
гонять д. — run the engine
заливать д. (пд) — prim the engine
заменять д. — replace the engine
запускать д. — start the engine
запускать д. в воздухе — (re)start the engine
испытывать д. — test the engine
опробовать д. на земле — ground test the engine
останавливать д. — shut down the engine
подвешивать д. — mount the engine
поднимать д. подъемником — hoist the engine
подогревать д. — heat the engine
проворачивать д. на... оборотов — turn the engine... revolutions
прогревать д. (на оборотах...%) — warm up the engine (at a speed of... %)
продопжать полет на (двух) д. — continue flight on (two) engines
разгоняться на одном д. — accelerate with one engine operating
разгоняться при неработающем критическом д. — accelerate with the critical епgine inoperative
сбавлять (убирать) обороты (работающего) д. — decelerate the engine
увеличивать обороты (работающего) д. — accelerate the engine
устанавливать д. — install the engineРусско-английский сборник авиационно-технических терминов > двигатель
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5 Porsche, Ferdinand
[br]b. 3 September 1875 Maffersdorf, Austriad. 30 January 1952 Stuttgart, Baden-Württemberg, Germany[br]Austrian automobile engineer, designer of the Volkswagen car.[br]At the age of fifteen, Porsche built a complete electrical installation for his home. In 1894 he went to technical school in Vienna. Four years later he became Manager of the test department of the Bela Egger concern, which later became part of the Brown Boveri organization where he became the first Assistant in the calculating section. In 1899 he joined the long-established coachbuilders Jacob Lohner, and in 1902 a car of his design with mixed drive won the 1,000 kg (2,200 lb) class in the Exelberg races. In 1905 he joined the Austro-Daimler Company as Technical Director; his subsequent designs included an 85 hp mixed-drive racing car in 1907 and in 1912 an air-cooled aircraft engine which came to be known in later years as the "great-grandfather" of the Volkswagen engine. In 1916, he became Managing Director of Austro-Daimler.In 1921 he designed his first small car, which, appearing under the name of Sasch, won its class in the 1922 Targa Florio, a gruelling road-race in Italy. In 1923 Porsche left Austro-Daimler and joined the Daimler Company in Untertürk-heim, near Stuttgart, Germany. In 1929 he joined the firm of Steyr in Austria as a director and chief engineer, and in 1930 he set up his own independent design office in Stuttgart. In 1932 he visited Russia, and in the same year completed the design calculations for the Auto-Union racing car.In 1934, with his son Ferry (b. 1909), he prepared a plan for the construction of the German "people's car", a project initiated by Adolf Hitler and his Nazi regime; in June of that year he signed a contract for the design work on the Volkswagen. Racing cars of his design were also successful in 1934: the rear-engined Auto-Union won the German Grand Prix, and another Au to-Union car took the Flying Kilometre speed record at 327 km/h (203.2 mph). In 1935 Daimler-Benz started preproduction on the Volkswagen. The first trials of the cars took place in the autumn of 1936, and the following year thirty experimental cars were built by Daimler-Benz. In that year, Porsche visited the United States, where he met Henry Ford; in October an Auto-Union took the Flying Five Kilometre record at 404.3 km/h (251.2 mph). On 26 May 1938, the foundation stone of the Volkswagen factory was laid in Wolfsburg, near Braunschweig, Germany.In October 1945 Ferdinand Porsche was arrested by a unit of the United States Army and taken to Hessen; the French army removed him to Baden-Baden, then to Paris and later to Dijon. During this time he was consulted by Renault engineers regarding the design of their 4CV and designed a diesel-engined tractor. He was finally released on 5 August 1947. His last major work before his death was the approval of the design for the Cisitalia Grand Prix car.[br]Principal Honours and DistinctionsPoetting Medal 1905. Officer's Cross of Franz Josef 1916. Honorary PhD, Vienna Technical University 1916. Honorary PhD, University of Stuttgart 1924.Further ReadingK.Ludvigsen, 1983, Porsche: Excellence Was Expected: The Complete History of the Sports and Racing Cars, London: Frederick Muller.T.Shuler and G.Borgeson, 1985, "Origin and Evolution of the VW Beetle", AutomobileQuarterly (May).M.Toogood, 1991, Porsche—Germany's Legend, London: Apple Press.IMcN -
6 Izod, Edwin Gilbert
SUBJECT AREA: Metallurgy[br]b. 17 July 1876 Portsmouth, Englandd. 2 October 1946 England[br]English engineer who devised the notched-bar impact test named after him.[br]After a general education at Vickery's School at Southsea, Izod (who pronounced his name Izzod, not Izod) started his career as a premium apprentice at the works of Maudslay, Sons and Field at Lambeth in January 1893. When in 1995 he was engaged in the installation of machinery in HMS Renown at Pembroke, he gained some notoriety for his temerity in ordering Rear Admiral J.A.Fisher, who had no pass, out of the main engine room. He subsequently worked at Portsmouth Dockyard where the battleships Caesar and Gladiator were being engined by Maudslay's. From 1898 to 1900 Izod worked as a Demonstrator in the laboratories of University College London, and he was then engaged by Captain H. Riall Sankey as his Personal Assistant at the Rugby works of Willans and Robinson. Soon after going to Rugby, Izod was asked by Sankey to examine a failed gun barrel and try to ascertain why it burst in testing. Conventional mechanical testing did not reveal any significant differences in the properties of good and bad material. Izod found, however, that, when specimens from the burst barrel were notched, gripped in a vice, and then struck with a hammer they broke in a brittle manner, whereas sounder material merely bent plastically. From these findings his well-known notched-bar impact test emerged. His address to the British Association in September 1903 described the test and his testing machine, and was subsequently published in Engineering. Izod never claimed any priority for this method of test, and generously acknowledged his predecessors in this field, Swedenborg, Fremont, Arnold and Bent Russell. The Izod Test was rapidly adopted by the English-speaking world, although Izod himself, being a busy man, did little to publicize his work, which was introduced to the engineering world largely through the efforts of Captain Sankey. Izod became Assistant Managing Director at Willans, and in 1910 was appointed Chief Consulting Mechanical and Electrical Engineer to the Central Mining Corporation at Johannesburg. He became Managing Director of the Rand Mines in 1918, and returned to the UK in 1927 to become the Managing Director of Weymann Motor Bodies Ltd of Addlestone. As Chairman of this company he extended its activitiesconsiderably.[br]Principal Honours and DistinctionsMBE. Member of the Iron and Steel Institute.Further Reading1903, "Testing brittleness of steel", Engineering (25 September): 431–2.ASD
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