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Study on Film Characteristics of Piston-Cylinder Interface of High-Pressure Common Rail Radial Piston Pump with Micro Motion

机译:高压共轨径向活塞泵与微观运动的活塞 - 圆柱界面薄膜特性研究

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When the high-pressure common rail radial piston pump works, the piston is subjected to film pressure and cam driving force, resulting in some micro-motion such as offset and inclination. A large number of theoretical studies have shown that the micro-motion of piston has an important effect on the film characteristics of piston-cylinder interface. In this paper, according to the theory of hydrodynamic lubrication, Reynolds equation and film thickness equation of piston micro-motion are established, and solve the problem of the lubricant film of the piston-cylinder interface under different working conditions. The results show that the working pressure and cam speed have great influence on the film characteristics of piston-cylinder interface with micro -motion. The research results provide theoretical support for the optimization of the film parameters of the piston-cylinder interface.
机译:当高压共轨径向活塞泵工作时,活塞经受薄膜压力和凸轮驱动力,导致一些微观运动,例如偏移和倾斜。大量的理论研究表明,活塞的微观运动对活塞缸界面的膜特性具有重要作用。本文根据流体动力学润滑理论,建立了活塞微观运动的雷诺方程和膜厚度方程,并解决了不同工作条件下活塞缸界面的润滑膜的问题。结果表明,工作压力和凸轮速度对带有微观季度的活塞缸界面的薄膜特性有很大影响。研究结果为优化活塞缸界面的薄膜参数提供了理论支持。

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