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1 compressing spring
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2 compressing spring
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3 compressing spring
n.Druckfeder f. -
4 machine
1) машина
2) машинный
3) обрабатывать резанием
4) станочный
5) механизм
6) устройство
7) обрабатывать механически
8) печатать
9) машинка
10) станок
– accounting machine
– adding machine
– addressing machine
– agitator machine
– air refrigerating machine
– boring machine
– braiding machine
– brazing machine
– breading machine
– break-down machine
– duplicating machine
– machine tool
– machine translation
– machine variable
– machine welding
– mathematical machine
– measuring machine
– mercerizing machine
– pipe-welding machine
– pitching machine
– pitting machine
– single-impeller machine
– single-scutcher machine
– sintering machine
– sizing machine
– skidding machine
– skinning machine
– wood-peeling machine
– wood-working machine
– wool-scouring machine
– wrapping machine
– wringing machine
absorption refrigerating machine — абсорбционная холодильная машина
ammonia refrigerating machine — аммиачная холодильная машина
automatic answering machine — < radio> автономность самолета, автоответчик
centrifugal spinning machine — центрифугальная прядильная машина
character recognition machine — устройство распознавания знаков
circular warp-knitting machine — круглая основовязальная машина
circulating dyeing machine — рециркуляционная красильная машина
coil winding machine — станок намоточный, станок обмоточный
compound-table milling machine — бесконсольный фрезерный станок
concentrate charging machine — завалочная машина для концентрата
continous roll-forming machine — непрерывная роликогибочная машина
continuously operating machine — автомат непрерывного действия
crane and pipe-stringing machine — <energ.> кран-трубокладчик
double-cutter shearing machine — двухцилиндровая стригальная машина
double-faced winding machine — двусторонная мотальная машина
duplex calculating machine — сдвоенная вычислительная машина
hydraulic riveting machine — клепальная гидравлическая машина
in-line transfer machine — прямолинейная автоматическая линия
ladder-type trenching machine — цепной многоковшовый экскаватор
mechanical interlock machine — < railways> аппарат централизационный механический
medium-range sprinkling machine — среднеструйная дождевальная машина
multiple-arc welding machine — многодуговая сварочная машина
multiple-spot welding machine — многоточечная сварочная машина
multiroll straightening machine — многороликовая правильная машина
opening and lap-forming machine — разрыхлительно-трепальный агрегат
overhead charging machine — завалочная машина кранового типа
pattern recognition machine — устройство распознавания образов
penetrating-type dyeing machine — красильная пропиточная машина
plunger-type leveling machine — правильная машина плунжерного типа
resonant vibration machine — резонансная вибрационная машина
semi-automatic casing-in machine — книговставочный полуавтомат
shock-free vibration machine — безударная вибрационная машина
single-operator welding machine — однопостовая сварочная машина
step-by-step action machine — автомат последовательного действия
storage-battery welding machine — конденсаторная сварочная машина
switch machine lever — рукоятка управления стрелочным приводом
tunnelling loading machine — погрузочная проходческая машина
ultrasonic welding machine — устройство ультразвуковой сварки
wheel-type trenching machine — траншейный роторный экскаватор
wire-stiching box-making machine — коробочная проволокошвейная машина
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5 machine
1) машина; механизм; станок; агрегат2) машинка; устройство; аппарат3) машинный; станочный4) обрабатывать механически; обрабатывать резанием•- absorption refrigerating machine - approved shot-firing machine - automatic arc-welding machine - automatic assembly machine - automatic bar-stock machine - automatic cam-controlled machine - automatic casting machine - automatic chain-bending machine - automatic checking machine - automatic chucking machine - automatic cocoon-reading machine - automatic drawing-in machine - automatic half-hose machine - automatic hopper-feed machine - automatic hosiery machine - automatic multistation machine - automatic single-spindle machine - automatic single-station machine - automatic sorting machine - automatic tracer machine - automatic weighing machine - automatic welding machine - automatic winding machine - autonomous sequential machine - carton feeding machine - case assembling machine - case making machine - cask windlassing machine - casting cleaning machine - chain testing machine - cigarette making machine - cigarette packing machine - circular warp-knitting machine - claw trussing machine - cloth mellowing machine - cocoon winding machine - coil winding machine - compound-table milling machine - concentrate charging machine - conditional probability machine - continuous dyeing machine - continuously operating machine - core roll-over machine - cylinder sizing machine - cylinder warping machine - double-cutter shearing machine - double-faced winding machine - double-knife cutting machine - dough dividing machine - dough forming machine - dough molding machine - dough rolling machine - dough rounding machine - drop roller machine - dropwire cleaning machine - drum winding machine - duplex calculating machine - elevator washing machine - fish dressing machine - fish packing machine - flame-shape cutting machine - flat-and-back stripping machine - flax scutching machine - flax spreading machine - gang drilling machine - gantry cutting machine - machine with input - meat tenderizing machine - mechanical interlock machine - medium-range sprinkling machine - multiple-spot welding machine - multiroll straightening machine - network access machine - overhead charging machine - paddle wool-washing machine - pattern recognition machine - penetrating-type dyeing machine - reversed torsion machine - roller printing machine - roof ripping machine - rotary cutting machine - rotary filling machine - saddle stitch machine - section warping machine - shot blasting machine - shot welding machine - soap milling machine - stitch welding machine - syrup filling machine - tablet compressing machine - tape sizing machine - tobacco ripping machine - tobacco stringing machine - vacuum kneading machine - vacuum packing machine - vacuum refrigerating machine - vacuum seaming machine - yeast extruding machine -
6 Maxim, Sir Hiram Stevens
[br]b. 5 February 1840 Brockway's Mills, Maine, USAd. 24 November 1916 Streatham, London, England[br]American (naturalized British) inventor; designer of the first fully automatic machine gun and of an experimental steam-powered aircraft.[br]Maxim was born the son of a pioneer farmer who later became a wood turner. Young Maxim was first apprenticed to a carriage maker and then embarked on a succession of jobs before joining his uncle in his engineering firm in Massachusetts in 1864. As a young man he gained a reputation as a boxer, but it was his uncle who first identified and encouraged Hiram's latent talent for invention.It was not, however, until 1878, when Maxim joined the first electric-light company to be established in the USA, as its Chief Engineer, that he began to make a name for himself. He developed an improved light filament and his electric pressure regulator not only won a prize at the first International Electrical Exhibition, held in Paris in 1881, but also resulted in his being made a Chevalier de la Légion d'honneur. While in Europe he was advised that weapons development was a more lucrative field than electricity; consequently, he moved to England and established a small laboratory at Hatton Garden, London. He began by investigating improvements to the Gatling gun in order to produce a weapon with a faster rate of fire and which was more accurate. In 1883, by adapting a Winchester carbine, he successfully produced a semi-automatic weapon, which used the recoil to cock the gun automatically after firing. The following year he took this concept a stage further and produced a fully automatic belt-fed weapon. The recoil drove barrel and breechblock to the vent. The barrel then halted, while the breechblock, now unlocked from the former, continued rearwards, extracting the spent case and recocking the firing mechanism. The return spring, which it had been compressing, then drove the breechblock forward again, chambering the next round, which had been fed from the belt, as it did so. Keeping the trigger pressed enabled the gun to continue firing until the belt was expended. The Maxim gun, as it became known, was adopted by almost every army within the decade, and was to remain in service for nearly fifty years. Maxim himself joined forces with the large British armaments firm of Vickers, and the Vickers machine gun, which served the British Army during two world wars, was merely a refined version of the Maxim gun.Maxim's interests continued to occupy several fields of technology, including flight. In 1891 he took out a patent for a steam-powered aeroplane fitted with a pendulous gyroscopic stabilizer which would maintain the pitch of the aeroplane at any desired inclination (basically, a simple autopilot). Maxim decided to test the relationship between power, thrust and lift before moving on to stability and control. He designed a lightweight steam-engine which developed 180 hp (135 kW) and drove a propeller measuring 17 ft 10 in. (5.44 m) in diameter. He fitted two of these engines into his huge flying machine testrig, which needed a wing span of 104 ft (31.7 m) to generate enough lift to overcome a total weight of 4 tons. The machine was not designed for free flight, but ran on one set of rails with a second set to prevent it rising more than about 2 ft (61 cm). At Baldwyn's Park in Kent on 31 July 1894 the huge machine, carrying Maxim and his crew, reached a speed of 42 mph (67.6 km/h) and lifted off its rails. Unfortunately, one of the restraining axles broke and the machine was extensively damaged. Although it was subsequently repaired and further trials carried out, these experiments were very expensive. Maxim eventually abandoned the flying machine and did not develop his idea for a stabilizer, turning instead to other projects. At the age of almost 70 he returned to the problems of flight and designed a biplane with a petrol engine: it was built in 1910 but never left the ground.In all, Maxim registered 122 US and 149 British patents on objects ranging from mousetraps to automatic spindles. Included among them was a 1901 patent for a foot-operated suction cleaner. In 1900 he became a British subject and he was knighted the following year. He remained a larger-than-life figure, both physically and in character, until the end of his life.[br]Principal Honours and DistinctionsChevalier de la Légion d'Honneur 1881. Knighted 1901.Bibliography1908, Natural and Artificial Flight, London. 1915, My Life, London: Methuen (autobiography).Further ReadingObituary, 1916, Engineer (1 December).Obituary, 1916, Engineering (1 December).P.F.Mottelay, 1920, The Life and Work of Sir Hiram Maxim, London and New York: John Lane.Dictionary of National Biography, 1912–1921, 1927, Oxford: Oxford University Press.See also: Pilcher, Percy SinclairCM / JDSBiographical history of technology > Maxim, Sir Hiram Stevens
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