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首页> 外文期刊>International Journal of Fluid Power >POWER LOSS IN THE LUBRICATING GAP BETWEEN CYLINDER BLOCK AND VALVE PLATE OF SWASH PLATE TYPE AXIAL PISTON MACHINES
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POWER LOSS IN THE LUBRICATING GAP BETWEEN CYLINDER BLOCK AND VALVE PLATE OF SWASH PLATE TYPE AXIAL PISTON MACHINES

机译:斜盘式轴向柱塞机的缸体与阀板之间的润滑间隙中的动力损失

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摘要

The lubricating gaps are the primary source of energy dissipation in piston machines. The paper presents results of a simulation study that investigates the effect that a wave-like micro surface shape variation applied to the valve plate gap surface has on power loss in the cylinder block-valve plate interface. Special attention is given to the relation between gap height, operating parameters, surface design and power loss. The effect of waved surface amplitude and frequency is also studied. Results indicate that power loss in the cylinder block-valve plate interface can be reduced by over 50% on account of the waved surface compared to the standard cylinder block-valve plate interface design. The effect of the waved surface is most significant at low operating pressures. A special in-house code has been used for this research study. The simulation model covers fluid-structure interaction and micro motion of the cylinder block resulting from oscillating piston forces. Details of the model are explained. The model predicts the pressure and velocity fields generated in the lubricating film and calculates leakage, viscous friction and power loss.
机译:润滑间隙是活塞机中耗能的主要来源。本文提供了一个仿真研究的结果,该研究研究了施加到阀板间隙表面的波浪形微表面形状变化对气缸体-阀板界面中的功率损耗的影响。特别要注意间隙高度,工作参数,表面设计和功率损耗之间的关系。还研究了波动的表面幅度和频率的影响。结果表明,与标准的气缸体-气门板接口设计相比,由于波浪形的表面,气缸体-气门板接口的功率损耗可减少50%以上。在低工作压力下,波浪形表面的影响最为明显。特殊的内部代码已用于此研究。该仿真模型涵盖了由于活塞力振荡而引起的流体-结构相互作用以及气缸体的微动。该模型的详细说明。该模型预测润滑膜中产生的压力和速度场,并计算泄漏,粘滞摩擦和功率损耗。

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