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101 rod drilling
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102 sensitometric development
lith development — проявление < лит>
English-Russian big polytechnic dictionary > sensitometric development
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103 short-hole drilling
English-Russian big polytechnic dictionary > short-hole drilling
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104 spray development
lith development — проявление < лит>
English-Russian big polytechnic dictionary > spray development
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105 thermal drilling
English-Russian big polytechnic dictionary > thermal drilling
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106 thermic development
lith development — проявление < лит>
English-Russian big polytechnic dictionary > thermic development
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107 toner development
lith development — проявление < лит>
English-Russian big polytechnic dictionary > toner development
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108 trial drilling
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109 capability
1. возможность; способность4-D capability9-g capabilityaccel-decel capabilityacceleration-deceleration capabilityacoustic processing capabilityaft-loading cargo capabilityair-defence capabilityair-superiority capabilityair-to-air capabilityair-to-air combat capabilityaircraft design capabilityairdrop capabilityall-aspect capabilityall-altitude penetration capabilityall-weather capabilityaltitude reporting capabilityanti-g capabilityantihelicopter capabilityantisubmarine capabilityarea navigation capabilityautolanding capabilityautonomous landing capabilitybaseline capabilitybeyond-visual-range capabilitybirdstrike capabilitybump absorption capabilityCat I capabilityclimb capabilityCLmax capabilitycomputational capabilitycontinued takeoff capabilitycost-effective capabilitycounter-countermeasures capabilitycrossfeed capabilitycrosswind capabilitydecoupling capabilitydegraded mode capabilitydesign capabilitydiagnostic capabilitydirect force capabilitydry-run capabilitydual-role capabilityendurance capabilityenergy absorbing capabilityenergy absorption capabilityengine-out capabilityenhanced capabilityfail-operational capabilityfailure mode capabilityfirst-look capabilityfirst-shoot capabilityfirst-shot capabilityflutter prediction capabilityforward field capabilityfull-aerobatic capabilityfull-envelope 9-g load factor capabilityfull-envelope escape capabilityfull-lift capabilityfull-envelope capabilityfunctional capabilityG capabilityg onset rate capabilitygo-around capabilitygross weight capabilityhands-off landing capabilityhard-turning capabilityhigh-alpha capabilityhigh-g maneuver capabilityhigh-lift capabilityhigh-payload/long-range capabilityhigh-speed cruise capabilityhover capabilityIFR capabilityincidence capabilityindependent capabilityinspection capabilityinstantaneous maneuver capabilityinstantaneous turn capabilityinstantaneous turning capabilityinstrument flight rule capabilitylaunch-and-leave capabilitylift capabilitylimited all-weather capabilityload factor capabilityload-carrying capabilityloaded capabilitylock-on after launch capabilitylook-ahead capabilitylook-down shoot-down capabilitylook-into-turn capabilityMach 1.8 capabilityMach number capabilitymaneuver capabilitymaneuvering capabilitymoving-base capabilitymultidesign-point capabilitymultimission capabilitymultiple-frequency capabilitymultipoint tanker capabilitynap-of-the-earth capabilitynaval attack capabilitynegative-g capabilitynight fighting capabilitynozzle vector capabilityoff-airfield capabilityoff-axis capabilityoff-boresight capabilityoff-boresight angle capabilityparadrop capabilitypayload capabilitypayload-carrying capabilitypayload/range capabilitypilot-aircraft capabilitypitch rate capabilitypitch-snatch capabilitypoint-and-shoot capabilitypost-stall capabilityprobe-and-drogue capabilityPST capabilityrange capabilityrate of climb capabilityreal-time capabilityreduced-field-length capabilityrotor overspeed capabilityrough airfield capabilityrough field capabilityrough ground capabilityrough surface capabilityrugged-terrain capabilitysee-through capabilityself-diagnostic capabilityshort-field capabilityshort-landing capabilityshort-takeoff capabilitysimulation capabilitysink-rate capabilitysix degree-of-freedom capabilitysnap/shoot attack capabilitysortie generation capabilityspeed capabilitystandoff capabilitystealth capabilitysustained turn capabilitysustained-g capabilityswing capabilityswing-role capabilitytemperature capabilityterrain-clearance capabilitytolerance capabilitytouchscreen capabilitytracking capabilitytrim capabilityturn capabilitytwo-fail-operate capabilityunimproved-field capabilityvariable-cycle capabilityvector capabilityvertical capabilityvertical landing capabilityzero altitude zero speed escape capability -
110 Evans, Oliver
SUBJECT AREA: Agricultural and food technology[br]b. 13 September 1755 Newport, Delaware, USAd. 15 April 1819 New York, USA[br]American millwright and inventor of the first automatic corn mill.[br]He was the fifth child of Charles and Ann Stalcrop Evans, and by the age of 15 he had four sisters and seven brothers. Nothing is known of his schooling, but at the age of 17 he was apprenticed to a Newport wheelwright and wagon-maker. At 19 he was enrolled in a Delaware Militia Company in the Revolutionary War but did not see active service. About this time he invented a machine for bending and cutting off the wires in textile carding combs. In July 1782, with his younger brother, Joseph, he moved to Tuckahoe on the eastern shore of the Delaware River, where he had the basic idea of the automatic flour mill. In July 1782, with his elder brothers John and Theophilus, he bought part of his father's Newport farm, on Red Clay Creek, and planned to build a mill there. In 1793 he married Sarah Tomlinson, daughter of a Delaware farmer, and joined his brothers at Red Clay Creek. He worked there for some seven years on his automatic mill, from about 1783 to 1790.His system for the automatic flour mill consisted of bucket elevators to raise the grain, a horizontal screw conveyor, other conveying devices and a "hopper boy" to cool and dry the meal before gathering it into a hopper feeding the bolting cylinder. Together these components formed the automatic process, from incoming wheat to outgoing flour packed in barrels. At that time the idea of such automation had not been applied to any manufacturing process in America. The mill opened, on a non-automatic cycle, in 1785. In January 1786 Evans applied to the Delaware legislature for a twenty-five-year patent, which was granted on 30 January 1787 although there was much opposition from the Quaker millers of Wilmington and elsewhere. He also applied for patents in Pennsylvania, Maryland and New Hampshire. In May 1789 he went to see the mill of the four Ellicot brothers, near Baltimore, where he was impressed by the design of a horizontal screw conveyor by Jonathan Ellicot and exchanged the rights to his own elevator for those of this machine. After six years' work on his automatic mill, it was completed in 1790. In the autumn of that year a miller in Brandywine ordered a set of Evans's machinery, which set the trend toward its general adoption. A model of it was shown in the Market Street shop window of Robert Leslie, a watch-and clockmaker in Philadelphia, who also took it to England but was unsuccessful in selling the idea there.In 1790 the Federal Plant Laws were passed; Evans's patent was the third to come within the new legislation. A detailed description with a plate was published in a Philadelphia newspaper in January 1791, the first of a proposed series, but the paper closed and the series came to nothing. His brother Joseph went on a series of sales trips, with the result that some machinery of Evans's design was adopted. By 1792 over one hundred mills had been equipped with Evans's machinery, the millers paying a royalty of $40 for each pair of millstones in use. The series of articles that had been cut short formed the basis of Evans's The Young Millwright and Miller's Guide, published first in 1795 after Evans had moved to Philadelphia to set up a store selling milling supplies; it was 440 pages long and ran to fifteen editions between 1795 and 1860.Evans was fairly successful as a merchant. He patented a method of making millstones as well as a means of packing flour in barrels, the latter having a disc pressed down by a toggle-joint arrangement. In 1801 he started to build a steam carriage. He rejected the idea of a steam wheel and of a low-pressure or atmospheric engine. By 1803 his first engine was running at his store, driving a screw-mill working on plaster of Paris for making millstones. The engine had a 6 in. (15 cm) diameter cylinder with a stroke of 18 in. (45 cm) and also drove twelve saws mounted in a frame and cutting marble slabs at a rate of 100 ft (30 m) in twelve hours. He was granted a patent in the spring of 1804. He became involved in a number of lawsuits following the extension of his patent, particularly as he increased the licence fee, sometimes as much as sixfold. The case of Evans v. Samuel Robinson, which Evans won, became famous and was one of these. Patent Right Oppression Exposed, or Knavery Detected, a 200-page book with poems and prose included, was published soon after this case and was probably written by Oliver Evans. The steam engine patent was also extended for a further seven years, but in this case the licence fee was to remain at a fixed level. Evans anticipated Edison in his proposal for an "Experimental Company" or "Mechanical Bureau" with a capital of thirty shares of $100 each. It came to nothing, however, as there were no takers. His first wife, Sarah, died in 1816 and he remarried, to Hetty Ward, the daughter of a New York innkeeper. He was buried in the Bowery, on Lower Manhattan; the church was sold in 1854 and again in 1890, and when no relative claimed his body he was reburied in an unmarked grave in Trinity Cemetery, 57th Street, Broadway.[br]Further ReadingE.S.Ferguson, 1980, Oliver Evans: Inventive Genius of the American Industrial Revolution, Hagley Museum.G.Bathe and D.Bathe, 1935, Oliver Evans: Chronicle of Early American Engineering, Philadelphia, Pa.IMcN -
111 engine
engine nдвигательadjust the engineрегулировать двигатель до заданных параметровair-cooled engineавиационный двигатель воздушного охлажденияall engines speedскорость при всех работающих двигателяхaltitude engineвысотный двигательasymmetric engines powerасимметричная тяга двигателейaxial-flow итьбю.gas turbine engineгазотурбинный двигатель с осевым компрессоромblow down an engineвыполнять холодный запуск двигателяboost engineфорсажный двигательbypass engineдвухконтурный двигательcenter engineсредний двигательclose down an engineостанавливать двигательcombustion engineдвигатель внутреннего сгоранияcritical engine failure speedскорость при отказе критического двигателяcut-off engine operationпорядок выключения двигателяdead engineотказавший двигательdecelerate an engineубирать обороты двигателяdefinitive engineокончательный вариант двигателяderated engineдвигатель с пониженной тягойdigital engine controlцифровой электронный регулятор режимов работы двигателяdouble-flow engineдвухконтурный турбореактивный двигательdouble-row radial engineдвигатель типа двухрядная звездаdual-flow turbojet engineдвухконтурный турбореактивный двигательduct burning bypass engineдвухконтурный турбореактивный двигатель с дожиганием топлива во втором контуреducted-fan engineдвухконтурный турбовентиляторный двигательelectronic engine control systemэлектронная система управления двигателемengine accessory gear boxкулачковый механизмengine acoustic performanceакустическая характеристика двигателяengine adapterприставка двигателяengine adjustmentрегулировка двигателяengine air bleed flangeфланец отбора воздуха от двигателяengine airflowрасход воздуха через двигательengine altitude performancesвысотные характеристики двигателяengine anti-icing systemпротивообледенительная система двигателей(постоянного действия) engine attach fittingузел подвески двигателяengine attachment pilotшкворень крепления двигателяengine backup ringопорное кольцо вала двигателяengine baffleдефлектор двигателяengine bayдвигательный отсекengine bellcrankкачалка системы управленияengine blastструя двигателяengine breather systemсистема суфлирования двигателяengine bulkheadперегородка двигателяengine check padотбойный щит для опробования двигателейengine compartmentотсек двигателяengine control systemсистема управления двигателемengine coolingохлаждение двигателяengine coreвнутренний контур двигателяengine cowlкапот двигателяengine cowl flapстворка капота двигателяengine crankingраскрутка двигателяengine critical altitudeвысотность двигателяengine cycleцикл двигателяengine cylinderцилиндр двигателяengine deicing systemпротивообледенительная система двигателей(переменного действия) engine detunerглушитель двигателяengine developmentдоводка двигателяengine dollyтележка для транспортировки двигателейengine drive shaftглавный вал двигателяengine dry startingхолодная прокрутка двигателяengine duct treatmentоблицовка каналов двигателяengine emissionэмиссия от двигателейengine failureотказ двигателяengine false startingложный запуск двигателяengine fanвентилятор двигателяengine fire shieldпротивопожарный экран двигателяengine fuel systemтопливная система двигателяengine gasketпрокладка в системе двигателяengine generator coolingобдув генератора двигателяengine ground test timeвремя опробования двигателя на землеengine hot startingзапуск двигателя с забросом температуры(выше допустимой) engine impellerрабочее колесо двигателяengine installationустановка двигателяengine internal fineпожар внутри двигателяengine jacketкожух двигателяengine lifting beamбалка крепления двигателяengine lifting deviceприспособление для подъема двигателяengine limit governorрегулятор предельных оборотов двигателяengine moduleмодуль двигателяengine module constructionмодульная конструкцияengine mountрама крепления двигателяengine mount beamбалка крепления двигателяengine mounting attachmentузел крепления двигателяengine mounting railsрельсы закатки двигателяengine mounting trunnionцапфа подвески двигателяengine mount strutстойка подмоторной рамыengine nacelleгондола двигателяengine offвыключенный двигательengine onработающий двигательengine operating timeнаработка двигателяengine outотказавший двигательengine overspeedзаброс оборотов двигателяengine performancesхарактеристики двигателяengine pylonпилон двигателяengine relightвстречный запуск двигателяengine retainerпроставка двигателяengine roll-in fittingузел закатки двигателяengine rundownвыбег двигателяengine runin timeвремя обкатки двигателяengine runningработа двигателяengine run-up operationопробование двигателяengine screenфильтр двигателяengine seizureзаклинивание двигателяengine setting-upотладка двигателяengine speed holdupзависание оборотов двигателяengine speed lossпадение оборотов двигателяengine starterстартер двигателяengine starter buttonкнопка запуска двигателяengine startingзапуск двигателяengine starting procedureпорядок запуска двигателяengine starting systemсистема запуска двигателейengine start modeработа в режиме запуска двигателяengine start systemсистема запуска двигателейengine start valveклапан запуска двигателяengines trend monitoringконтроль состояния двигателейengine tachometer indicatorуказатель оборотов двигателяengine takeoff speedчисло оборотов двигателя на взлетном режимеengine tearwayотрыв двигателяengine test baseиспытательная станцияengine test benchстенд для испытания двигателейengine throttleсектор газа двигателяengine throttle control leverрычаг раздельного управления газом двигателяengine throttle interlock systemсистема блокировки управления двигателемengine thrustтяга двигателяengine thrust marginизбыток тяги двигателяengine timingрегулирование зажигания двигателяengine torqueкрутящий моментengine torquemeter mechanismмеханизм измерителя крутящего момента на валу двигателяengine troubleперебои в работе двигателяengine vent systemдренажная система двигателейengine vibrationтряска двигателяengine vibration indicating systemсистема индикации виброперегрузок двигателяengine vibration indicatorуказатель вибрации двигателяengine wet startingложный запуск двигателяfan-type engineтурбовентиляторный двигательfire an engineзапускать двигательfree-turbine engineдвигатель со свободной турбинойgas turbine engineгазотурбинный двигательhigh bypass ratio engineдвигатель с высокой степенью двухконтурностиhigh compression ratio engineдвигатель с высокой степенью сжатияidling engineдвигатель на режиме малого газаidling engine operationработа двигателя на режиме малого газаin-board engineдвигатель, установленный в фюзеляжеinflight engine testиспытание двигателя в полетеinstall an engineустанавливать двигательjet engineреактивный двигательleft-hand engineдвигатель с левым вращением ротораlift jet engineподъемный реактивный двигательlight an engineзапускать двигательlonger-lived engineдвигатель с большим ресурсомlow bypass ratio engineдвигатель с низкой степенью двухконтурностиmaximum engine overspeedмаксимально допустимый заброс оборотов двигателяmodular engineмодульный двигательmodular engine designмодульная конструкция двигателяnaccele-mounted engineдвигатель, установленный в мотогондолеon-wing mounted engineдвигатель, установленный на крылеopen up an engineдавать двигателю полный газoutboard engineдвигатель, установленный вне фюзеляжаpiston engineпоршневой двигательpodded engineдвигатель, установленный в отдельной гондолеport-outer engineлевый крайний двигательport-side engineлевый внешний двигательpreflight engine runпредполетное опробование двигателяpylon-mounted engineдвигатель, установленный на пилонеquiet engineбесшумный двигательradial engineзвездообразный двигательramjet engineпрямоточный воздушно-реактивный двигательreciprocating engineпоршневой двигательrestart the engine in flightзапускать двигатель в полетеright-hand engineдвигатель с правым вращением ротораrough engineразрегулированный двигательrough engine operationsперебои в работе двигателяrun-down engine operationвыбег двигателяrun in an engineобкатывать двигательrun up an engineопробовать двигательselection of engine modeвыбор режима работы двигателяself-aspirating engineдвигатель без наддуваshut down an engineостанавливать двигательside engineбоковой двигательside engine nacelleгондола двигателя на пилонеsimulated engine failureимитированный отказ двигателяsingle-rotor engineоднокаскадный двигательsingle-shaft turbine engineодновальный газотурбинный двигательslow down an engineснижать режим работы двигателяstarboard engineправый внешний двигательstart an engineзапускать двигательstarting engineпусковой двигательstarting engine operationзапуск двигателяstarting from an operating engineперекрестный запускsubsonic engineдозвуковой двигательthree-flow turbojet engineтрехконтурный турбореактивный двигательthree-pointer engine gageтрехстрелочный указатель двигателяthree-pointer engine gage unitтрехстрелочный указательthree-rotor turbofan engineтрехвальный турбовентиляторный двигательturbine engineгазотурбинный двигательturbofan engineтурбовентиляторный двигательturbojet engineтурбореактивный двигательturboprop engineтурбовинтовой двигательturboshaft engineтурбовальный двигательtwo-rotor engineдвухроторный двигательtwo-shaft turbine engineдвухвальный газотурбинный двигательtwo-spool engineдвухкаскадный двигательunder any kind of engine failureпри любом отказе двигателяunderwing engineподкрыльевой двигательunreverse an engineвыводить двигатель из режима реверсаuprated engineфорсированный двигательwarmed-up engineпрогретый двигательwarm up an engineпрогревать двигательwater-cooled engineдвигатель водяного охлажденияwinding engineлебедкаwing engineкрыльевой двигательwith an engine suddenly failedпри внезапном отказе двигателя
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