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Effect of case drain pressure on slipper/swashplate pair within axial piston pump

机译:轴向活塞泵拖曳/斜盘对壳体漏极压力的影响

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This paper pertains to case drain pressure limitation for axial piston swashplate pumps used in open-loop circuits. The critical case drain pressure for pumps of this type is considered from the oil film perspective of the slipper/swashplate pair: (1) height of the lubricating oil film, (2) supporting stiffness, and (3) location of the centroid of the equivalent hydrodynamic lifting force. A dynamic lubricating oil film simulation model is established to determine the critical case drain pressure for which the slipper cannot remain in a stable state. Based on the simulation results, the worst condition occurs at the point when the height of the lubricating oil film is the maximum, the supporting stiffness is the minimum, and the distance between the centroid of the equivalent hydrodynamic lifting force and the bottom center of the slipper is the maximum. The slipper is stable only when the difference between the case drain pressure and the suction pressure is within a reasonable range. Subsequently, a design criterion is put forward to specify the reasonable case drain pressure, and this is validated by experimental results.
机译:本文涉及在开环电路中使用的轴向活塞斜盘泵的壳体漏极压力限制。从拖鞋/斜盘对的油膜透视图中考虑了这种类型的泵的临界壳体漏极压力:(1)润滑油膜的高度,(2)支撑刚度,(3)质心的位置等效的流体动力提升力。建立动态润滑油膜仿真模型,以确定拖鞋不能保持稳定状态的临界壳体漏极压力。基于模拟结果,最差条件发生在润滑油膜的高度是最大值的点处,支撑刚度是最小的,并且等效流体动力提升力和底部中心的质心之间的距离拖鞋是最大的。仅当壳体漏极压力和吸入压力之间的差异在合理的范围内时,拖鞋才稳定。随后,提出了一种设计标准来指定合理的案例漏极压力,并且通过实验结果验证。

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