首页> 外文会议>ASME international mechanical engineering congress and exposition >DESIGN OF A HIGH SPEED INTERNAL GEAR PUMP TO INCREASE THE POWER DENSITY OF ELECTRO HYDRAULIC ACTUATORS (EHA) IN MOBILE APPLICATIONS
【24h】

DESIGN OF A HIGH SPEED INTERNAL GEAR PUMP TO INCREASE THE POWER DENSITY OF ELECTRO HYDRAULIC ACTUATORS (EHA) IN MOBILE APPLICATIONS

机译:高速内齿轮泵的设计,以提高电动液压执行器(EHA)的功率密度

获取原文

摘要

Increasing the rotational speed of the internal gear pump entails addressing topics such as cavitation, overheating and filling problems of the tooth spaces. Besides the development of a tooth geometry and flow optimization, using CFD simulation is necessary. This paper discusses the design of the newly developed high speed internal gear pump. This includes a detailed description of the different parts as well as the dimensioning of the pump by using CFD simulations. The geometry of the pressure build-up groove has a significant effect of pressure build up inside the pump. Therefore, three different geometries are investigated. The calculation of the journal bearings for the internal gear as well as for the driving shaft is shown. To avoid cavitation problems, the suction pressure of the pump will be increased up to 25 bar. This paper will show the technical arrangements to reach this high suction pressure level whilst still using a radial shaft seal ring. In order to determine the efficiency of the newly developed high speed pump, a test rig was built up. The test rig allows the measurement of the volumetric efficiency as well as the hydraulic-mechanical efficiency at different operation points up to 10 000 rpm and 250 bar.
机译:增大内齿轮泵的转速需要解决诸如气穴,过热和齿腔填充问题之类的问题。除了开发牙齿的几何形状和优化流量外,还需要使用CFD仿真。本文讨论了新开发的高速内啮合齿轮泵的设计。这包括使用CFD仿真对不同零件以及泵的尺寸进行详细描述。压力累积槽的几何形状对泵内部的压力累积具有显着影响。因此,研究了三种不同的几何形状。显示了用于内齿轮以及驱动轴的轴颈轴承的计算。为避免气蚀问题,泵的吸入压力将增加到25 bar。本文将说明在仍使用径向轴密封环的情况下达到此高吸入压力水平的技术安排。为了确定新开发的高速泵的效率,建立了一个试验台。该试验台可在高达10000 rpm和250 bar的不同操作点下测量体积效率以及液压机械效率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号