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Study on friction performance and mechanism of slipper pair under different paired materials in high-pressure axial piston pump

机译:高压轴向活塞泵不同配对材料下拖曳对摩擦性能及机理研究

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High-pressure axial piston pumps operate in high-speed and high-pressure environments. The contact state of the slipper against the swashplate can easily change from an oil film lubrication to a mixed oil film/asperity contact, or even dry friction. To improve the dry friction performance of slipper pairs and to avoid their potentially rapid failure, this study examined the effects of material matching on the dry friction performance of the slipper pair for high-pressure axial piston pumps. A FAIAX6 friction and wear tester was developed, and the dry friction coefficients of the slipper pairs matched with different materials were studied using this tester. Based on the thermo-mechanical coupling of the slipper pair with the working process, the contact surface temperatures of the slipper pairs matched with different materials were calculated and analyzed for the same working conditions. Following this, the effects of the material properties on the temperature increase at the slipper sliding contact surfaces were revealed. The reliabilities of the temperature calculations and analysis results were verified through orthogonal tests of slipper pairs matched with different materials. The results indicate that the influence of the material density on the friction coefficient is greater than that of the Poisson’s ratio or the elastic modulus, and that the slipper material chosen should have a high thermal conductivity, low density, and low specific heat, whereas the swashplate material should be high in specific heat, density, and thermal conductivity; in addition, the slipper pair should be a type of hard material to match the type of soft material applied; that is, the hardness of the swashplate material should be greater than that of the slipper material.
机译:高压轴向活塞泵在高速和高压环境下运行。拖鞋的接触状态可以容易地从油膜润滑到混合油膜/粗糙接触,甚至干燥摩擦。为了提高拖鞋对的干摩擦性能并避免其潜在的快速失效,本研究检测了材料匹配对高压轴向活塞泵的拖鞋对的干摩擦性能的影响。开发了FAIAX6摩擦和磨损测试仪,使用该测试仪研究了与不同材料匹配的拖鞋对的干摩擦系数。基于与工作过程的拖鞋对的热机械耦合,计算并分析与不同材料匹配的拖鞋对的接触表面温度以进行相同的工作条件。在此之后,揭示了材料特性对拖车滑动接触表面处的温度升高的影响。通过与不同材料匹配的拖鞋对的正交试验来验证温度计算和分析结果的可靠性。结果表明,材料密度对摩擦系数的影响大于泊松比或弹性模量的影响,并且所选择的拖鞋材料应具有高导热率,低密度和低比热量,而是斜纹板材料应高度热,密度和导热系数高;此外,拖鞋对应是一种硬质材料,以匹配所施加的软材料的类型;也就是说,斜盘材料的硬度应该大于拖衣材料的硬度。

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