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Lateral traction of laminar flow between sliding pair with heterogeneous slip/no-slip surface

机译:滑动对与非均相滑移/无滑动表面之间的层流的横向牵引

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The problem of shaft axial motion which significantly affects the lubrication performance has been a common phenomenon in journal bearing systems. The existing work involved in the solution of shaft axial motion is also very rare. In this study, we choose to examine the flow between sliding pair in which regard we present a unique heterogeneous surface consisting of a slip zone and a no-slip zone. The results reveal the following points: 1) By appropriately arranging the slip zone to change the angle between the borderline and the moving direction of the upper plate, it is possible to control the direction of the lateral traction in which the liquid film acts on the upper plate. 2) Exponent of the power function of the borderline and aspect ratio of the computational domain are large or small are not conducive to increasing the effect of lateral traction. For the object of this study, the final results of the optimization are shown that the lateral traction can account for 20% of the resistance.
机译:显着影响润滑性能的轴轴向运动的问题是轴颈轴承系统中的常见现象。轴轴向运动求解的现有工作也非常罕见。在这项研究中,我们选择检查滑动对之间的流动,在这方面呈现由滑动区和无滑槽组成的独特的异构表面。结果揭示了以下几点:1)通过适当地布置滑动区以改变上板的边界线和移动方向之间的角度,可以控制侧向牵引的方向,其中液体膜作用在上板。 2)计算结构域的边界和纵横比的功率函数的指数大或小型不利于增加横向牵引的效果。对于本研究的目的,优化的最终结果表明横向牵引可以占阻力的20%。

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