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A transient hydrodynamic lubrication model for piston/cylinder interface of variable length

机译:可变长度活塞/圆柱界面的瞬态流体动力润滑模型

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摘要

AbstractHydraulic machinery transfers energy between a fluid and a mechanical system. The swash plate pump is one of the most widely used pumps because of its simple and compact structure. The piston/cylinder system is the core of the swash plate pump, and its lubrication characteristics greatly affect the overall pumping performance. This study is aimed at the development of a transient hydrodynamic lubrication model for the pumps with varying length of the piston-cylinder interface and the investigation of the influences of cylinder length, clearance, as well as other design parameters, on the pump piston forces and friction. The changing domain and moving boundaries of the varying piston-cylinder interface impose a challenge to the modeling, and a novel equal-displacement-step method is developed to tackle this issue. The pressure, film thickness, and friction performances of varying and constant interface-length systems are studied, and the former is further analyzed in detail. The results indicate that increasing the cylinder length reduces the misalignment angle and raises the minimum film thickness, but it increases the maximum friction force at and slightly off the location for the maximum velocity because friction is related to velocity and the interfacial area. A longer piston is preferred, and the optimal length for stability should beL0/Lmin?=?1.71 for the system analyzed in this study.Highlights?This paper is aimed at the development of a transient hydrodynamic lubrication model for the pumps with varying length of the piston-cylinder interface and the investigation of the influences of cylinder length, clearance, as well as other design parameters, on the pump piston forces and friction.?The changing domain and moving boundaries of the varying piston-cylinder interface impose a challenge to the modeling, and a novel equal-displacement-step method is developed to tackle this issue.]]>
机译:<![CDATA [ 抽象 液压机械在流体和机械系统之间传输能量。由于其简单且紧凑的结构,旋转斜盘泵是最广泛使用的泵之一。活塞/气缸系统是斜盘泵的芯,其润滑特性极大地影响了整体泵送性能。本研究旨在开发具有变化长度的泵的瞬态流体动力润滑模型,其变化的活塞缸界面和汽缸长度,间隙以及其他设计参数的影响,泵活塞力和摩擦。变化的活塞缸接口的变化域和移动边界对建模施加了挑战,并且开发了一种新颖的等位移步骤方法来解决这个问题。研究了不同且恒定的界面长度系统的压力,膜厚度和摩擦性能,并进一步详细分析前者。结果表明,增加汽缸长度降低了未对准角度并提高了最小膜厚度,但是由于摩擦与速度和界面区域有关,因此增加了最大摩擦力和略微脱离的最大摩擦力,因为摩擦与速度和界面区域有关。优选较长的活塞,并且稳定性的​​最佳长度应该 l 0 / l min ?=?1.71用于本研究分析的系统。 亮点 本文旨在开发A.活塞缸接口变化长度的泵泵的瞬态流体动力润滑模型及汽缸长度,间隙以及其他设计参数的影响,对泵P的影响伊顿部队和摩擦。 改变域和变化的活塞缸接口的移动边界对建模施加挑战,并且开发了一种新的等位步骤方法来解决这个问题。 ]]>

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