首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Investigation of the Power Losses from Hydrostatic Piston Shoe Bearings for Swash Plate Type Axial Piston Pumps under Mixed Friction Conditions
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Investigation of the Power Losses from Hydrostatic Piston Shoe Bearings for Swash Plate Type Axial Piston Pumps under Mixed Friction Conditions

机译:混合摩擦条件下斜盘式轴向柱塞泵静液压活塞瓦轴承的功率损失研究。

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摘要

Swash plate type piston pumps, when applied to electro-hydrostatic actuators, operate mostly in the mixed lubrication speed range, compensating for position control errors of actuator parts. Therefore, their hydrostatic piston shoe bearings should be designed to minimize frictional and leakage losses as well as the wear rate, which could be increased by insufficient hydrodynamic lubrication in the low speed range. In this study the influence of the balance and recess ratios of piston shoe bearings on their power losses were investigated under mixed friction conditions. The fundamental properties of piston shoe bearings tilted on a swash plate, such as the lift force, righting moment and leakage flow rate, were computed using a simplified Navier-Stoke's equation, to obtain an insight into methods of minimizing the power losses of piston shoes exposed to mixed friction. Six test models were designed with these two parameters decoupled and tested on apparatus which was developed to measure the friction force and leakage flow rate of a piston shoe in the motor speed range below 100 rpm. The tilting motion of the piston shoes could be observed in the mixed friction speed range and power losses could be reduced by increasing their resistance to external tilting moments.
机译:斜盘式活塞泵应用于电动静液压执行机构时,主要在混合润滑速度范围内运行,以补偿执行机构零件的位置控制误差。因此,其静液压活塞靴轴承的设计应尽量减少摩擦和泄漏损失以及磨损率,而低速范围内的流体动力润滑不足可能会增加磨损和磨损率。在这项研究中,研究了在混合摩擦条件下活塞瓦轴承的平衡和凹进比对其功率损耗的影响。使用简化的Navier-Stoke方程计算了斜盘上倾斜的活塞瓦轴承的基本特性,例如升力,扶正力矩和泄漏流量,从而获得了使活塞瓦的功率损失最小化的方法的见解。受到混合摩擦。设计了六个测试模型,将这两个参数解耦并在设备上进行了测试,该设备用于测量低于100 rpm的电动机转速范围内的活塞瓦的摩擦力和泄漏流量。可以在混合摩擦速度范围内观察到活塞瓦的倾斜运动,并且可以通过增加其对外部倾斜力矩的抵抗力来减少动力损失。

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