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Leakage and Groove Pressure of an Axial Piston Pump Slipper with Multiple Lands

机译:带有多个平台的轴向柱塞泵滑块的泄漏和沟槽压力

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This article presents a new analytical model, based on Reynolds equation of lubrication, to evaluate the leakage and pressure distribution for an axial piston pump slipper taking into account the effect of nonvented grooves. The equations consider slipper spin and tilt and are extended to be used for a generic slipper with any number of grooves. A test rig has been designed and used to check experimentally the applicability of the theoretical equations and comparisons between theoretical and experimental results show a good agreement. The new theory can predict slipper leakage and pressure inside the groove with a high level of accuracy, especially at the very low slipper tilts that exist in practice. Experimentally, it is demonstrated that although a groove maintains a constant pressure along its path, under abnormal conditions the pressure differential can exist inside the groove. The effect of tangential velocity on groove pressure and slipper leakage is then studied experimentally, showing that as the rotational speed increases, there is a small decrease in leakage and a small increase in the average pressure inside the groove.
机译:本文提出了一种基于雷诺兹润滑方程的新分析模型,该模型考虑了无通气孔的影响,评估了轴向柱塞泵滑阀的泄漏和压力分布。这些方程式考虑了拖鞋的旋转和倾斜,并被扩展为可用于具有任意数量凹槽的通用拖鞋。设计了一个试验台,并用它来实验检验理论方程的适用性,理论和实验结果之间的比较显示出很好的一致性。新的理论可以高度准确地预测滑块内的泄漏和凹槽内的压力,尤其是在实际存在的滑块倾斜非常低的情况下。实验证明,尽管凹槽沿其路径保持恒定压力,但在异常情况下,凹槽内部仍可能存在压差。然后,通过实验研究了切线速度对沟槽压力和滑靴泄漏的影响,结果表明,随着转速的增加,泄漏的减小很小,而沟槽内部的平均压力也很小。

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