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1 опорный диаметр
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2 опорный диаметр
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3 опорный диаметр
Русско-английский научно-технический словарь Масловского > опорный диаметр
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4 диаметр
caliber, diameter, ( проволоки или винта) gage* * *диа́метр м.1. ( размер) diameterв диа́метре — across [in] diameterпо (но́вому) диа́метру — to (the new) diameter2. ( линия) diametric(al) lineдиа́метр без коры́ ( о бревне) — diameter under barkдиа́метр в ве́рхнем отру́бе ( о бревне) — diameter at the top, top diameterви́димый диа́метр — apparent diameterдиа́метр в коре́ ( о бревне) — diameter inside barkдиа́метр в ни́жнем отру́бе ( о бревне) — diameter at the buttвну́тренний диа́метр — inside [internal] diameterдиа́метр волново́да, крити́ческий — critical diameterдиа́метр в свету́ — clear diameterдиа́метр вхо́да, относи́тельный ( вентилятора) — specific diameterдиа́метр выходно́го сече́ния ( сопла) — exit diameterгла́вный диа́метр — principal diameterдиа́метр гнезда́ кла́пана — valve diameterдиа́метр голо́вки кла́пана — valve bead diameterдиа́метр го́рной вы́работки в прохо́дке — excavated diameter of a mine workingдиа́метр го́рной вы́работки вчерне́ — excavated diameter of a mine workingдиа́метр гребно́го винта́ по ося́м ло́пастей — blade-circle diameter of a propellerдиа́метр дели́тельной окру́жности — pitch diameterдиа́метр Земли́, поля́рный — polar diameter of the Earthдиа́метр Земли́, экваториа́льный — equatorial diameter of the Earthкрепё́жный диа́метр ( радиолампы) — holding diameterдиа́метр крити́ческого сече́ния ( сопла) — throat diameterдиа́метр навива́ния про́вода ( без разрушения) — coiling diameter of a wireнару́жный диа́метр — external [outside] diameterнецентри́рующий диа́метр метал.-об. — non-centr(e)ing diameterномина́льный диа́метр — nominal diameterдиа́метр обто́чки, максима́льный — turning [machining] diameterопо́рный диа́метр ( радиолампы) — seating diameterдиа́метр пузыря́, отрывно́й — diameter of a bubble at departureдиа́метр разду́ва — inflation diameterразрывно́й диа́метр — breaking diameterдиа́метр раскры́тия ку́пола парашю́та — mouth diameter of a parachuteдиа́метр расто́чки — bore (diameter)диа́метр резьбы́, вну́тренний — root [minor] diameter of a threadдиа́метр резьбы́, нару́жный — major diameter of a threadдиа́метр резьбы́, сре́дний — angle diameter of a threadдиа́метр резьбы́, эффекти́вный — effective diameter of a threadдиа́метр сверле́ния — drilled diameterсветово́й диа́метр — clear [free] apertureдиа́метр сква́жины — borehole diameter, borehole sectionизмеря́ть диа́метр сква́жины — caliper a borehole, gauge a hole sectionсопряжё́нные диа́метры — conjugate diametersдиа́метр столкнове́ния части́ц — collision diameterдиа́метр ступе́ни турби́ны, сре́дний — pitch diameter; blade diameterдиа́метр то́чечного мно́жества — diameter of a set of pointsтрансфини́тный диа́метр — transfinite diameterуглово́й диа́метр — angular diameterусло́вный диа́метр — nominal diameterдиа́метр фа́кела ( форсунки) — jet diameterдиа́метр фюзеля́жа — fuselage diameterдиа́метр фюзеля́жа в ми́деле — maximum diameter of a fuselageцентри́рующий диа́метр метал.-об. — centr(e)ing diameterдиа́метр цили́ндра — (cylinder) boreдиа́метр циркуля́ции ( судна) — diameter or gyration, diameter of a turning circle -
5 диаметр
1. м. diameter2. м. diametric line -
6 опорный диаметр
Makarov: seating diameter (радиолампы) -
7 Nervi, Pier Luigi
[br]b. 21 June 1891 Sondrio, Italyd. 9 January 1979 (?), Italy[br]Italian engineer who played a vital role in the use and adaptation of reinforced concrete as a structural material from the 1930s to the 1970s.[br]Nervi early established a reputation in the use of reinforced concrete with his stadium in Florence (1930–2). This elegant concrete structure combines graceful curves with functional solidity and is capable of seating some 35,000 spectators. The stadium was followed by the aircraft hangars built for the Italian Air Force at Orvieto and Ortebello, in which he spanned the vast roofs of the hangars with thin-shelled vaults supported by precast concrete beams and steel-reinforced ribs. The structural strength and subtle curves of these ribbed roofs set the pattern for Nervi's techniques, which he subsequently varied and elaborated on to solve problems that arose in further commissions.Immediately after the Second World War Italy was short of supplies of steel for structural purposes so, in contrast to the USA, Britain and Germany, did not for some years construct any quantity of steel-framed rectangular buildinngs used for offices, housing or industrial use. It was Nervi who led the way to a ferroconcrete approach, using a new type of structure based on these materials in the form of a fine steel mesh sprayed with cement mortar and used to roof all kinds of structures. It was a method that resulted in expressionist curves instead of rectangular blocks, and the first of his great exhibition halls at Turin (1949), with a vault span of 240 ft (73 m), was an early example of this technique. Nervi continued to create original and beautiful ferroconcrete structures of infinite variety: for example, the hall at the Lido di Roma, Ostia; the terme at Chianciano; and the three buildings that he designed for the Rome Olympics in 1960. The Palazzetto dello Sport is probably the most famous of these, for which he co-operated with the architect Annibale Vitellozzi to construct a small sports palace seating 5,000 spectators under a concrete "big top" of 194 ft (59 m) diameter, its enclosing walls supported by thirtysix guy ropes of concrete; inside, the elegant roof displays a floral quality. In 1960 Nervi returned to Turin to build his imaginative Palace of Labour for the centenary celebrations of Garibaldi and Victor Emmanuel in the city. This vast hall, like the Crystal Palace in England a century earlier (see Paxton), had to be built quickly and be suitable for later adaptation. It was therefore constructed partly in steel, and the metal supporting columns rose to palm-leaf capitals reminiscent of those in ancient Nile palaces.Nervi's aim was always to create functional buildings that simultaneously act by their aesthetic qualities as an effective educational influence. Functionalism for Nervi never became "brutalism". In consequence, his work is admired by the lay public as well as by architects. He collaborated with many of the outstanding architects of the day: with Gio Ponti on the Pirelli Building in Milan (1955–9); with Zehrfuss and Breuer on the Y-plan UNESCO Building in Paris (1953–7); and with Marcello Piacentini on the 16,000-seat Palazzo dello Sport in Rome. Nervi found time to write a number of books on building construction and design, lectured in the Universities of Rio de Janiero and Buenos Aires, and was for many years Professor of Technology and Technique of Construction in the Faculty of Architecture at the University of Rome. He continued to design new structures until well into the 1970s.[br]Principal Honours and DistinctionsRIBA Royal Gold Medal 1960. Royal Institute of Structural Engineers Gold Medal 1968. Honorary Degree Edinburgh University, Warsaw University, Munich University, London University, Harvard University. Member International Institute of Arts and Letters, Zurich; American Academy of Arts and Sciences; Royal Academy of Fine Arts, Stockholm.Bibliography1956, Structures, New York: Dodge.1945, Scienza o Arte del Costruire?, Rome: Bussola.Further ReadingP.Desideri et al., 1979, Pier Luigi Nervi, Bologna: Zanichelli.A.L.Huxtable, 1960, Masters of World Architecture; Pier Luigi Nervi, New York: Braziller.DY -
8 шаг
шаг сущpitchбольшой шаг1. coarse pitch2. high pitch воздушный винт изменяемого шага1. adjustable-pitch propeller2. variable pitch propeller 3. controllable propeller воздушный винт с автоматически изменяемым шагомautomatic pitch propellerвоздушный винт с большим шагомhigh-pitch propellerвоздушный винт с гидравлическим управлением шагаhydraulic propellerвоздушный винт фиксированного шага1. constant-pitch propeller2. fixed-pitch propeller в режиме большого шагаin coarse pitchв режиме малого шагаin fine pitchгидравлический упор шага1. hydraulic pitch lock2. hydraulic pitch stop (лопасти воздушного винта) гидравлическое управление шагом воздушного винтаhydraulic propeller pitch controlизменение шагаpitch changeизменяемый шаг1. adjustable pitch2. variable pitch изменять шагchange the pitchканал большого шагаcoarse-pitch passageканал малого шагаfine-pitch passageканал фиксатора шагаpitch lock passageкомпоновка кресел с минимальным шагомhigh-density seatingл управления шагом воздушного винтаpropeller pitch control systemмалый шаг1. fine pitch2. low pitch механизм управления шагом лопастейpitch-control mechanismмеханизм установки шага лопастейpitch-changing mechanismмеханизм фиксатора шагаpitch lock mechanismмеханический упор шагаmechanical pitch lockнеизменяемый шагfixed pitchобщий шагcollective pitchположение малого шагаlow-pitch positionреверсирование шагаpitch reversingручка продольно-поперечного управления циклическим шагомcyclic pitch control stick(несущего винта) ручка шагаpitch control leverсистема ограничения шагаpitch limit system(воздушного винта) система управления общим шагомcollective pitch control system(несущего винта) система управления циклическим шагомcyclic pitch control system(несущего винта) скорость изменения шага винтаpitch-change rateснимать с упора шагаunlatch the pitch stop(лопасти воздушного винта) соотношение шага и диаметраpitch-diameter ratioторможение реверсированием шагаreverse-pitch brakingтяга управления общим шагомcollective pitch control rodтяга управления циклическим шагомcyclic pitch control rodувеличивать шагincrease the pitchуказатель общего шагаcollective pitch indicatorуменьшать шагdecrease the pitchупор большого шага1. high-pitch stop(лопасти воздушного винта) 2. coarse pitch stop (лопасти воздушного винта) упор малого шага1. low-pitch stop(лопасти воздушного винта) 2. fine-pitch stop (лопасти воздушного винта) упор полетного малого шагаflight-fine-pitch stop(лопасти воздушного винта) упор шагаpitch stop(лопасти воздушного винта) управление общим шагомcollective pitch controlуправление циклическим шагомcyclic pitch controlуправление шагом воздушного винтаpropeller pitch controlуправлять шагомcontrol the pitchустанавливать на упор шагаlatch the pitch stop(лопасти воздушного винта) устанавливать шаг воздушного винтаset the propeller pitchустановка шага лопасти воздушного винтаpropeller pitch settingфиксатор шага лопастиblade stop gearфиксатор шага лопасти воздушного винтаpropeller pitch lockциклический шагcyclic pitchшаг воздушного винтаpropeller pitchшаг во флюгерном положенииfeathering pitchшаг в режиме торможенияbraking pitchшаг креселseat pitchшаг лопатокblade spacingшаг несущего винта1. rotor pitch2. main rotor pitch шаг отрицательной тяги1. reverse pitch2. drag pitch шаг положительной тягиforward pitchшаг при отсутствии тяги1. zero-thrust pitch2. no-lift pitch шаг резьбыthread pitchэлектрическое управление шагом воздушного винтаelectric propeller pitch controlэффективный шагeffective pitch
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