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Computational Analysis of the Lubricated-Sliding Contact with Artificial Slip Boundary

机译:人工滑动边界润滑滑动接触的计算分析

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摘要

The hydrodynamic lubrication performance (load support, friction force, friction coefficient, and volume flow) at lubricated sliding contact is influenced by boundary condition. In the present paper, the effect of artificial slip boundary on the sliding surfaces is explored based on modified Reynolds equation using computational analysis. A design idea for an infinite sliding contact with the optimized artificial slip area is proposed. It is found that the generation of the artificial slip at the leading edge on the stationary surface of the contact gives the highest load support, which is helpful to improve the operation stability of the system. Optimization of the size of the slip area on the stationary surface can give many advanced properties compared with the classical no-slip surface, i.e., a reduction of friction and an increase of load support. It is also shown that if the artificial slip is employed on the moving surface, the system is in an unsteady state and no great importance exists in engineering applications.
机译:润滑滑动接触处的流体动力润滑性能(负载支撑,摩擦力,摩擦系数和体积流量)受边界条件的影响。本文基于修正的雷诺方程,通过计算分析,探讨了人工滑移边界对滑动面的影响。提出了一种具有最佳人工滑移面积的无限滑动接触的设计思路。发现在触点的固定表面上的前缘处产生的人工滑移提供了最高的负载支持,这有助于改善系统的操作稳定性。与经典的无防滑表面相比,固定表面上的滑动区域尺寸的优化可以提供许多先进的性能,即,减少摩擦并增加载荷支撑。还显示出,如果在运动表面上使用人造滑移,则系统处于不稳定状态,并且在工程应用中不存在很大的重要性。

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