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121 nozzle
сопло; форсунка (рис. 24); патрубок; штуцер; насадка; выпускное отверстие; раздаточный кран; сливной наконечник; носок; мундштук - nozzle aperture - nozzle head - nozzle holder - nozzle inclination - nozzle pressure - nozzle ring - nozzle tester - nozzle throat - nozzle valve - nozzle valve rod - acceleration nozzle - adjustable nozzle - annular nozzle - ball-headed nozzle - blast nozzle - booster nozzle - canted nozzle - divergent nozzle - exhaust nozzle - expanding nozzle - fanging nozzle - injecting nozzle - inlet nozzle - sand-blowing nozzle - special slit nozzle - spray nozzle - steam nozzle - turbine nozzle - variable-area nozzle - water-spraying nozzle - wide slit nozzle with reflector
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122 Axis
1. n полит. ист. ось Берлин—Рим; гитлеровская Германия и её союзники2. n полит. неодобр. ось, блок; политическая коалицияthe Washington—Bonn axis — ось Вашингтон—Бонн
3. n центральный вопрос, стержень4. n геометрическая ось5. n редк. вал6. n бот. главная или центральная ось растения, главный стебель7. n анат. второй шейный позвонокСинонимический ряд:1. alliance (noun) alliance; coalition; confederation; union2. crux (noun) basis; crux; decisive factor; essence3. pivot (noun) arbor; arbour; axle; dividing line; line of revolution; line of rotation; line of symmetry; pivot; shaft; spindle -
123 cylinder
1. барабан2. валикadvance cylinder — передаточный цилиндр бумагопитающей системы, листоускоряющий цилиндр
blanketed impression cylinder — печатный цилиндр, обтянутый резиновым полотном
3. медный вал, медный цилиндр4. цилиндр, на котором формируется изображениеinfeed cylinder — листоускоряющий цилиндр; вспомогательный цилиндр для передачи листов в захваты печатного цилиндра
ink vibrating cylinder — раскатной цилиндр, имеющий осевое перемещение
jaw cylinder — клапанный цилиндр ; цилиндр с захватами
locomotive printing cylinder — печатный цилиндр, прокатывающийся по неподвижной форме
hydraulic cylinder — гидроцилиндр; гидравлический цилиндр
5. формный цилиндр офсетной множительной машины; цилиндр с офсетной бумажной формой6. цилиндр с эталонной формойnonvibrating cylinder — цилиндр, не имеющий осевого перемещения
paneled cylinder — цилиндр с плоскими гранями ; призматический барабан
perfecting cylinder — цилиндр, используемый для запечатывания оборотной стороны
7. пресс-цилиндр, давящий цилиндр8. уст. печатное устройство9. прессовый валикprinting film cylinder — цилиндр с гибкой печатной формой; формный цилиндр
punch cylinder — перфорирующий барабан, цилиндр, несущий пуансон
registering cylinder — регистровый цилиндр, цилиндр с упорами для выравнивания
10. вращающийся цилиндр11. цилиндр ротационного устройстваrubber cloth cylinder — офсетный цилиндр; цилиндр с резиновым полотном
scanning cylinder — развёртывающий цилиндр, цилиндр развёртки
second printing cylinder — цилиндр для печатания второй краской, цилиндр второй печатной секции
sectional cylinder — цилиндр с плоскими гранями ; призматический барабан
single-sized impression cylinder — печатный цилиндр, по окружности которого размещается лист одинарного формата
skeleton cylinder — передаточный барабан с опорными дисками ; барабан с рядом направляющих дисков
staggered cylinder — цилиндр, смещаемый в продольном и поперечном направлениях
stereotype-bearing cylinder — формный цилиндр, несущий стереотипы; цилиндр со стереотипной формой
traveling cylinder — цилиндр, прокатывающийся по форме
vibrating cylinder — цилиндр, имеющий осевое перемещение
12. формный цилиндрhigh pressure cylinder — цилиндр высокого давления; ЦВД
13. уст. формный цилиндр с пазами для установки клинообразных литерvacuum-operated printing cylinder — вакуумный формный цилиндр; цилиндр, на котором форма закрепляется с помощью вакуума
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124 нарезной
1. rifled2. threaded -
125 Glenck, Karl Christian Friedrich
SUBJECT AREA: Mining and extraction technology[br]b. 13 April 1779 Schwäbisch Hall, Germanyd. 21 November 1845 Gotha, Germany[br]German salt-mining expert who introduced large-scale salt explorations.[br]Having studied law at the University of Erlangen, he became Confidential Secretary to the Prince of Hohenlohe-Ingelfingen, in whose territory his father had been in charge of a saltworks. When this small country fell to Württemberg in 1806, Glenck continued his mineralogical and geological studies in order to develop methods of finding deposits of salt. He was the first to carry out systematic large-scale salt explorations in Germany, mostly in southern and central parts, and achieved remarkable results that far exceeded former non-systematic findings. He worked either on behalf of governments or companies or at his own risk, and in the early 1820s he settled in Gotha to live in the centre of the regions of greatest interest to him.His career began in 1819 with the discovery of the deposits of Ludwigshall near Wimpfen, Neckar, and prospecting salt near Basel in 1836 was his greatest success: Schweizerhall, opened one year later, made Switzerland self-sufficient in salt production. For fifteen years he had invested large sums into this project, which became the fifth salt-works to come into existence due to his drilling. Glenck worked with stir rods and he developed several new technical devices, such as casing the bore holes with iron pipes instead of wood (1830), and using wooden instead of iron rods to reduce the weight (1834). A flexible connection between rod and drill was to be introduced later by Karl von Oeynhausen. One of Glenck's most important followers in the field of deep-drilling was K.G. Kind.[br]Further ReadingW.Carlé, 1969, "Die Salinistenfamilie Glenck", Lebensbilder aus Schwaben und Franken 11: 118–49 (with substantial biographical information).D.Hoffmann, 1959, 150 Jahre Tiefbobrungen in Deutschland, Vienna and Hamburg, (provides an evaluation of his technological developments).WKBiographical history of technology > Glenck, Karl Christian Friedrich
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126 Kind, Karl Gotthelf
SUBJECT AREA: Mining and extraction technology[br]b. 6 June 1801 Linda, near Freiberg, Germanyd. 9 March 1873 Saarbrücken, Germany[br]German engineer, pioneer in deep drilling.[br]The son of an ore miner in Saxony, Kind was engaged in his father's profession for some years before he joined Glenck's drillings for salt at Stotternheim, Thuringia. There in 1835, after trying for five years, he self-reliantly put down a 340 m (1,100 ft) deep well; his success lay in his use of fish joints of a similar construction to those used shortly before by von Oeynhausen in Westphalia. In order to improve their operational possibilities in aquiferous wells, in 1842 he developed his own free-fall device between the rod and the drill, which enabled the chisel to reach the bottom of the hole without hindrance. His invention was patented in France. Four years later, at Mondorf, Luxembourg, he put down a 736 m (2,415 ft) deep borehole, the deepest in the world at that time.Kind contributed further considerable improvements to deep drilling and was the first successfully to replace iron rods with wooden ones, on account of their buoyancy in water. The main reasons for his international reputation were his attempts to bore out shafts, which he carried out for the first time in the region of Forbach, France, in 1848. Three years later he was engaged in the Ruhr area by a Belgian-and English-financed mining company, later the Dahlbusch mining company in Gelsenkirchen, to drill a hole that was later enlarged to 4.4 m (14 1/2 ft) and made watertight by lining. Although he had already taken out a patent for boring and lining shafts in 1849 in Belgium, his wooden support did not qualify. It was the Belgian engineer Joseph Chaudron, in charge of the mining company, who overcame the difficulty of making the bottom of the borehole watertight. In 1854 they jointly founded a shaft-sinking company in Brussels which specialized in aquiferous formations and operated internationally.[br]Principal Honours and DistinctionsChevalier de la Légion d'honneur 1849.Bibliography1842, Anleitung zum Abteufen von Bohrlöchern, Luxembourg.Further ReadingH.G.Conrad, "Carl Gotthelf Kind", Neue deutsche Biographie 10:613–14.D.Hoffmann, 1959, 150 Jahre Tiefbohrungen in Deutschland, Vienna and Hamburg, pp. 20–5 (assesses his technological achievements).T.Tecklenburg, 1914, Handbuch der Tiefbohrkunde, 2nd end, Vol. VI, Berlin, pp. 36–9 (provides a detailed description of his equipment).J.Chaudron, 1862, "Über die nach dem Kindschen Erdbohrverfahren in Belgien ausgeführten Schachtbohrarbeiten", Berg-und Hüttenmännische Zeitung 21:402–4, (describes his contribution to making Kind's shafts watertight).WK -
127 boring
бурение; сверление; расточка; отверстие; буровая скважина; шпур; обуривание•
- earth boring machine
- exploratory boring
- line boring
- mud-flush boring
- off-shore boring
- percussion boring
- percussion hand boring
- probe boring
- rod boring
- roller boring
- rope boring
- rotary boring
- sample boring
- shot boring
- test boring
- thermic boring
- trial boring
- underground boring
- wash boring
- water-flush boring
- well boring
- wet boring -
128 антенна
антенна сущ1. aerial2. antenna азимутальная антенна захода на посадкуapproach azimuth antennaантенна кругового обзораall-around looking antennaантенна курсового маякаlocalizer antennaантенна маркерного приемникаmarker antennaантенна обратного азимутаback azimuth antennaантенна переднего обзораforward looking aerialантенна с концевым излучателемend-fire antennaантенна, состоящая из скрещенных рамокcrossed-loop antennaантенна с широким раскрывомwide aperture antennaантенна, укрепленная растяжкамиguyed antennaантенна широкой зоны действияbroad sector antennaантенны противоположного направленияback-to-back antennasбортовая антеннаairborne antennaввод антенны1. antenna lead2. aerial lead всенаправленная антеннаomnidirectional antennaвыпускная антеннаtrailing antennaглиссадная антеннаglide slope antennaдиаграмма направленности антенны1. antenna directivity diagram2. antenna pattern дипольная антеннаdipole antennaдублирующая антеннаdummy aerialклиренсная антеннаclearance antennaлепесток диаграммы направленности антенныantenna beamмаяк с рамочной антеннойloop beaconнаправленная антенна1. directional aerial2. directional antenna ненаправленная антеннаsense antennaнеподвижная рамочная антеннаfixed loopнеподвижная секторная антеннаfixed sector antennaнесогласованная антеннаmismatched antennaоднополюсная антеннаmonopole antennaостронаправленная антенна1. highly directional antenna2. narrow-beam antenna параболическая антеннаdishпараболическая радиолокационная антеннаradar dishповоротная рамочная антеннаrotatable loopподавление антенныantenna rejectionприемная антеннаreceiving antennaпроволочная антеннаwire antennaрадиолокационная антеннаradar antennaразнос антеннantenna diversityрамочная антенна1. frame antenna2. loop antenna рамочная антенна контроля курсаheading control loopрупорная антеннаhorn antennaсвязная антеннаcommunication antennaсекторная антеннаsector antennaсекционная антеннаsplit antennaсистема антенны курсового посадочного радиомаякаlocalizer antenna systemсистема направленных антеннantenna arrayсогласование антеннantennas arrangementсогласованная антеннаmatched antennaстабилизация антенныantenna stabilizationугломестная антеннаelevation antennaугломестная антенна захода на посадкуapproach elevation antennaузколучевая антеннаspot-beam antennaуровень положения глаз над антеннойeye-to-aerial heightусиление антенныantenna gainутопленная антеннаflush-mounted antennaформирование диаграммы направленности антенныantenna pattern shapingхолодная пристрелка антенныantenna bore sightingштыревая антеннаrod antennaщелевая антеннаslot antenna
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