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A Numerical Study on Influence of Temperature on Lubricant Film Characteristics of the Piston/Cylinder Interface in Axial Piston Pumps

机译:温度对轴向活塞泵活塞/圆柱界面润滑膜特性影响的数值研究

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摘要

The loss of kinetic energy of moving parts due to viscous friction of lubricant causes the reduction of piston pump efficiency. The viscosity of lubricant film is mainly affected by the thermal effect. In order to improve energy efficiency of piston pump, this research presents a numerical method to analyze the lubricant film characteristics in axial piston pumps, considering the thermal effect by the coupled multi-disciplinary model, which includes the fluid flow field expressed by Reynolds equation, temperature field expressed by energy equation and heat transfer equation, kinematics expressed by the motion equation. The velocity and temperature distributions of the gap flow of piston/cylinder interface in steady state are firstly numerically computed. Then the distributions are validated by the experiment. Finally, by changing the thermal boundary condition, the influence of thermal effect on the lubricant film, the eccentricity and the contact time between the piston and cylinder are analyzed. Results show that with the increase of temperature, the contact time increases in the form of a hyperbolic tangent function, which will reduce the efficiency of the axial piston pump. There is a critical temperature beyond which the contact time will increase rapidly, thus this temperature is the considered as a key point for the temperature design.
机译:由于润滑剂的粘性摩擦导致运动部件的动能失去导致活塞泵效率降低。润滑膜的粘度主要受到热效应的影响。为了提高活塞泵的能量效率,本研究提出了一种分析轴向活塞泵中的润滑膜特性的数值方法,考虑到耦合多学科模型的热效果,包括雷诺等式表达的流体流场,由能量方程和传热方程表示的温度场,运动方程表示的运动学。首先计算稳定状态活塞/气缸接口的间隙流的速度和温度分布。然后通过实验验证分布。最后,通过改变热边界条件,分析了热效应对润滑膜,偏心度和活塞和圆柱之间的接触时间的影响。结果表明,随着温度的增加,接触时间以双曲线切线功能的形式增加,这将降低轴向活塞泵的效率。存在临界温度,超出该温度,接触时间将迅速增加,因此该温度是被认为是温度设计的关键点。

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