Discussion on the Reynolds equation for the slipper bearing modeling in axial piston pumps
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Discussion on the Reynolds equation for the slipper bearing modeling in axial piston pumps

机译:轴向活塞泵拖曳轴承建模雷诺等式的探讨

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AbstractThis work presents a new Reynolds equation for the slipper bearing in axial piston pumps which considers the slipper spin. As an extension of this new Reynolds equation, some typical cases are derived for different velocity boundary conditions. It is found that the present Reynolds equation is identical in form to that in the previous literature, but they are entirely different from each other in the velocity boundary condition. The reasons for the incorrect velocity boundary condition in the previous studies are analyzed, followed by a calculation of the relative velocity error. It is concluded that the Reynolds equation in the present work is more capable of representing the lubrication model for the slipper bearing.Highlights?This work presents Reynolds equations for slipper bearing with and without slipper spin.?Reynolds equations for slipper bearing are compared between this work and previous studies.?Boundary velocity of Reynolds equations for slipper bearing is examined.]]>
机译:<![CDATA [ 抽象 这项工作提出了一种新的雷诺等式,用于轴向活塞泵中的拖鞋轴承,其认为拖鞋旋转。作为这种新雷诺方程的延伸,导出了一些典型的情况用于不同的速度边界条件。发现本雷诺等式的形式与先前文献中的形式相同,但它们在速度边界条件下彼此完全不同。分析了先前研究中不正确的速度边界条件的原因,然后计算了相对速度误差的计算。结论是,本作工作中的雷诺方程更能代表拖鞋轴承的润滑模型。 突出显示 这项工作介绍了拖鞋轴承的雷诺方程,带有拖鞋,没有拖鞋。 拖鞋轴承的reynolds方程在这项工作和以前的研究之间进行了比较。 研究了拖拉轴承雷诺方程的边界速度。 ]]>

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