液压系统外文翻译
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1、 1 Hydraulic System 液压系统 Hydraulic presser drive and air pressure drive hydraulic fluid as the transmission is made according to the 17th century, Pascals principle of hydrostatic pressure to drive the development of an emerging technology, the United Kingdom in 1795 Braman Joseph (Joseph Braman ,17
2、49-1814), in London water as a medium to form hydraulic press used in industry, the birth of the worlds first hydraulic press. Media work in 1905 will be replaced by oil-water and further improved. 液压传动和气压传动称为流体 传动,是根据 17 世纪帕斯卡提出的液体静压力传动原理而发展起来的一门新兴技术, 1795 年英国约瑟夫布拉曼 (Joseph Braman,1749-1814),在伦敦用水作
3、为工作介质,以水压机的形式将其应用于工业上,诞生了世界上第一台水压机。 1905 年将工作介质水改为油,又进一步得到改善。 After the World War I (1914-1918) ,because of the extensive application of hydraulic transmission, espec- ially after 1920, more rapid development. Hydraulic components in the late 19th century about the early 20th century, 20 years, only
4、 started to enter the formal phase of industrial production. 1925 Vickers (F. Vikers) the invention of the pressure balanced vane pump, hydraulic components for the modern industrial or hydraulic transmission of the gradual establishment of the foundation. The early 20th century G Constantimscofluct
5、- uations of the energy carried out by passing theoretical and practical research; in 1910 on the hydraulic trans- mission (hydraulic coupling, hydraulic torque converter, etc.) contributions, so that these two areas of develo- pment. 第一次世界大战 (1914-1918)后液压传动广泛应用,特别是 1920 年以后,发展更为迅速。液压元件大约在 19 世纪末 2
6、0 世纪初的 20 年间,才开始进入正规的工业生产阶段。 1925 年维克斯 (F.Vikers)发明了压力平衡式叶片泵 ,为近代液压元件工业或液压传动的逐步建立奠定了基础。 20 世纪初康斯坦丁尼斯克 (GConstantimsco)对能量波动传递所进行的理论及实际研究 ;1910 年对液力传动 (液力联轴节、液力变矩器等 )方面的贡献,使这两方面领域得到了发展。 The Second World War (1941-1945) period, in the United States 30% of machine tool applications in the hydraulic tra
7、nsmission. It should be noted that the development of hydraulic transmission in Japan than Europe and the United States and other countries for nearly 20 years later. Before and after in 1955, the rapid development of Japans hydraulic drive, set up in 1956, Hydraulic Industry. Nearly 20 to 30 years,
8、 the development of Japans fast hydraulic transmission, a world leader. 第二次世界大战 (1941-1945)期间 ,在美国机床中有 30%应用了液压传动。应该指出 ,日本液压传动的发展较欧美等国家晚了近 20 多年。在 1955 年前后 , 日本迅速发展液压传动 ,1956 年成立了“液压工业会”。近 2030 年间,日本液压传动发展之快,居世界领先地位。 Hydraulic transmission There are many outstanding advantages, it is widely used, su
9、ch as general industr- ial use of plastics processing machinery, the pressure of machinery, machine 2 tools, etc.; operating machinery engineering machinery, construction machinery, agricultural machinery, automobiles, etc.; iron and steel indu- stry metallurgical machinery, lifting equipment, such
10、as roller adjustment device; civil water projects with flo- od control and dam gate devices, bed lifts installations, bridges and other manipulation of institutions; speed turbine power plant installations, nuclear power plants, etc.; ship from the deck heavy machinery (winch), the bow doors, bulkhe
11、ad valve, stern thruster, etc.; special antenna technology giant with control devices, measu- rement buoys, movements such as rotating stage; military-industrial control devices used in artillery, ship anti- rolling devices, aircraft simulation, aircraft retractable landing gear and rudder control d
12、evices and other devi- ces. 液压传动有许多突出的优点,因此它的应用非常广泛,如一般工业用的塑料加工机械、压力机械、机床等;行走机械中的工程机械、建筑机械、农业机械、汽车等;钢铁工业用的冶金机械、提升装置、轧辊调整装置等;土木水利工程用的防洪闸门及堤坝装置、河床升降装置、桥梁操纵机构等;发电厂涡轮机调速装置、核发电厂等等;船舶用的甲板起重机械(绞车)、船头门、舱壁阀、船尾推进器等;特殊技术用的巨型天线控制装置、测量浮标、升降旋转舞台等;军事工业用的火炮操纵装置、船舶减摇装置、飞行器仿真、飞机起落架的收放装置和方向舵控制装置等。 A complete hydraulic
13、 system consists of five parts, namely, power components, the implementation of co- mponents, control components, auxiliary components and hydraulic oil. 一个完整的液压系统由五个部分组成,即动力元件、执行元件、控制元件、辅助元件和液压油。 The role of dynamic components of the original motive fluid into mechanical energy to the pressure that
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