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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >The Experimental Analyses of the Effects of the Geometric and Working Parameters on the Circular Hydrostatic Thrust Bearings
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The Experimental Analyses of the Effects of the Geometric and Working Parameters on the Circular Hydrostatic Thrust Bearings

机译:几何和工作参数对圆形静压推力轴承影响的实验分析

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摘要

In this paper, the characteristics of disk-type hydrostatic thrust bearings supporting concentric loads; simulating the major bearing/seal parts of axial piston pumps and motors were investigated. An experimental setup was designed to determine the performance of slippers, which are capable of increasing the efficiency of axial piston pumps and motors, for different conditions. The working parameters and the slipper geometry causing the minimum fric-tional power loss and leakage oil loss were determined. Since slippers affect the performance of the system considerably, the effects of surface roughnesses on lubrication were studied in slippers with varying hydrostatic bearing areas and surface roughness. The results of the study suggest that the frictional power loss and leakage oil loss were caused by the surface roughness, the relative velocity, the size of the hydrostatic bearing area, supply pressure and capillary tube diameter.
机译:本文介绍了承受同心载荷的盘式静压推力轴承的特性。模拟了轴向柱塞泵和电动机的主要轴承/密封件。设计了一个实验装置来确定拖鞋的性能,该拖鞋能够在不同条件下提高轴向柱塞泵和电机的效率。确定了导致最小摩擦损失和漏油损失的工作参数和滑模几何形状。由于拖鞋会严重影响系统的性能,因此在静压轴承面积和表面粗糙度不同的拖鞋中研究了表面粗糙度对润滑的影响。研究结果表明,摩擦力损失和漏油损失是由表面粗糙度,相对速度,静压轴承区域的大小,供应压力和毛细管直径引起的。

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