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1 hydromechanical press
Пластмассы: гидромеханический пресс -
2 hydromechanical press
English-russian plastics terminology dictionary > hydromechanical press
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3 press
пресс m* * *•
- arbor press
- automatic press
- block-press
- bottom ram press
- briquette press
- cam press
- chamber filter press
- clicker press
- cold press
- column press
- cooling press
- crank press
- daylight press
- die press
- double ram press
- down stroke press
- eccentric press
- extruding press
- floating platen press
- frame filter press
- fully automatic press
- hand press
- hand operated press
- hand screw press
- hobbing press
- hot press
- hydraulic press
- hydromechanical press
- injection press
- injection moulding press
- knock-out press
- laminating press
- long-stroke press
- mechanical press
- moulding press
- multi-bank press
- multi-daylight press
- multi-platen press
- multiple deck press
- multiple stage press
- multi-stage press
- packing press
- pelleting press
- platen press
- plunger moulding press
- prefilling press
- preforming press
- punch press
- rodless angle press
- rodless angle moulding press
- roller press
- rotary compression moulding press
- rotary preforming press
- screw press
- self-press
- self-contained press
- semi-automatic press
- short-stroke press
- sideram press
- single column press
- steam platen press
- straightening press
- table press
- tablet press
- tableting press
- tilting head press
- toggle press
- toggle lever press
- top action hydraulic press
- top ram press
- tube extruding press
- two-daylight press
- up-stroke press
- veneering press
- vulcanizing press -
4 гидромеханический пресс
Plastics: hydromechanical pressУниверсальный русско-английский словарь > гидромеханический пресс
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5 brake
1) тормоз, тормозное устройство; мн. ч. тормозная система || тормозить3) вальцевание ( теста)5) мялка для лубяных культур || мять, трепать ( лубяные культуры)•-
adjustment-free brake
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aerodynamic brake
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air-actuated brake
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air-cooled brake
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aircraft brake
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air-over-oil actuated brake
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arm brake
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articulated shoe brake
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automatic vacuum brake
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automotive brake
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auxiliary brake
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axle-mounted disk brake
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band brake
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belt brake
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block brake
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boosted brake
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cable brakes
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calliper brake
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calliper disk brake
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calliper-type disk brake
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cam-actuated brake
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cam brake
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cam-operated brake
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cam-operating brake
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centrifugal brake
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clasp brake
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clip brake
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clutch brake
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clutch-type disk brake
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compressed-air brake
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cone brake
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constantly pumped cooled oil brake
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contracting brake
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deadweight brake
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differential band brake
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differential brake
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direct-acting brake
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direct-release brake
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disk brake
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drive line parking brake
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drum brake
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dry-type band brake
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dual primary brake
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duo-servo brake
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dynamometer brake
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eddy current brake
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eddy-current rail brake
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electromagnetic brake
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electromagnetic track brake
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electromechanical brake
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electronic-controlled brake
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electro-pneumatic brake
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emergency brake
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engine exhaust brake
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exhaust brake
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expander tube brake
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expansion-type brake
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external brake
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external expanding drum brake
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fade-resistant brake
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final rail brake
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fixed calliper disk brake
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fixing brake
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floating calliper disk brake
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fluid brake
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foot brake
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four piston calliper disk brake
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friction brake
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front wheel brake
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full energizing brake
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gripper brake
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guide brake
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hand brake
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heavy duty brake
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high-speed brake
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hoisting gear brake
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hump rail brake
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hydraulic boost brake
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hydraulic brake
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hydrokinetic brake
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hydromatic brake
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hydromechanical brakes
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hydrostatic brake
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inner brake
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internal expanding drum brake
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internal shoe brake
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leading-trailing shoe brake
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lever brake
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lever-type self-adjusting brake
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liquid-cooled disk brake
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lubricated brake
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magnetic brake
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magnetic-rail brake
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main brake
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main rotor brake
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manual shift clutch brake
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mechanical brake
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multidisk brake
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multishoe brake
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nitrogen pressurized service brake
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ordinary brake
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overrunning brake
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parking brake
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pedal brake
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pivoted shoe brake
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plate brake
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pneumatic brake
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power brake
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press brake
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pressure brake
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prop shaft brake
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quick-acting brake
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radar brakes
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rail brake
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railroad brake
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rear wheel brake
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reel surface brake
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regenerative brake
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reversible band brake
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rheostatic brake
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rim brake
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rope brake
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rudder brake
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safety brake
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screw brake
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self-adjusting brake
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self-energizing parking brake
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semienergizing brake
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service brake
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servo brake
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servo-actuated brake
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shoe brake
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shooting brake
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single-block brake
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single-piston disk brake
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single-side swinging calliper brake
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skate brake
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slewing gear brake
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sliding calliper brake
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sliding cylinder brake
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solenoid brake
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speed brake
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spot-type disk brake
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spring-applied brake
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spring brake
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steering brake
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strap brake
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supplementary brake
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swinging calliper brake
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thrust brake
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track brake
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transmission parking brake
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tread brake
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twin-disk brake
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two-leading shoe brake
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two-shoe drum brake
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two-trailing shoe brake
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vacuum brakes
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vacuum release parking brake
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ventilated disk brake
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water cooled brake
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wedge brake
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wedge-actuated brake
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wedge-type shoe brake
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Westinghause brake -
6 Zhang Sixun (Chang Ssu-Hsun)
SUBJECT AREA: Horology[br]b. fl. late 10th century[br]Chinese astronomer and clockmaker who built the earliest recorded astronomical clock tower with a hydromechanical escapement.[br]Most clepsydra clocks, such as that of al-Jarazi, measured time continuously by the constant flow of a liquid and most mechanical clocks measure time discontinuously by means of an escapement. The clepsydra clock devised by Zhang Sixun in 976 and completed in 979 was unusual as it incorporated an escapement. It consisted of a large wheel with buckets around its periphery. A constant stream of water was directed into one of the buckets until it reached a predetermined weight, this released the wheel, allowing it to rotate to a new position where the process was repeated (this mechanism may have been introduced by the Chinese astronomer and mathematician Zhang Heng in the second century). The water was later replaced by mercury to prevent freezing in winter. With suitable gearing the movement of the wheel was used to drive a celestial globe, a carousel for written time announcements and jacks for audible time signals. This clock has not survived and is known only from the work Hsin I Hsiang Fa Yao (New Armillary Sphere and Celestial Globe System Essentials), which was printed in 1172 and is ascribed to Su Song. This work also describes two similar but later astronomical clock towers with water-wheel escape-ments. Several models of the water-wheel escapement have been constructed from the description in this work.[br]Further ReadingJ.Needham (ed.), 1965, Science and Civilisation in China Vol. IV.2, Cambridge: Cambridge University Press: 38, 111, 165, 463, 469–71, 490, 524, 527–8, 533, 540.J.H.Combridge, 1975, "The astronomical clocktowers of Chang Ssu-Hsun and his successors, A.D. 976 to 1126", Antiquarian Horology 9: 288–301.J.Needham, Wang Ling and J.de Solla Price, 1986, Heavenly Clockwork. The Great Astronomical Clocks of Medieval China (2nd edn with supplement by J.H.Combridge), London (for a broader view of Chinese horology).J.H.Combridge, 1979, "Clockmaking in China", in The Country Life International Dictionary of Clocks, ed. Alan Smith, London.DVBiographical history of technology > Zhang Sixun (Chang Ssu-Hsun)
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