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The Effect of Surface Roughness to Elastohydrodynamic Lubrication in Spur Gear with non-Newtonian Lubricant

机译:具有非牛顿润滑剂的浇口齿轮中表面粗糙度对弹性流体动力学润滑的影响

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This paper presents the effect of surface roughness to performance characteristics of transientisothermal elastohydrodynamic lubrication in line contact of spur gear with non-Newtonian fluids. The timedependent Reynolds equation, elastic equation and viscosity equation were formulated for compressible fluid.Newton-Raphson method and multigrid method were implemented to obtain the film pressure profiles, filmthickness profiles and traction coefficient in the contact region at various loads and speeds. The simulationresults show that roughness amplitude has a significant effect on the film pressure in the contact region. Thefilm thickness decrease but traction coefficient increases when surface of gear teeth was rough surface. Thefilm thickness reaches its minimum at approach point when the line of action increase film thickness wasincrease. The minimum traction coefficient was occurrence at pitch point. The increasing loads, film pressureand traction coefficient increase but film thickness decrease. The film thickness and traction coefficientincrease when the speeds increase.
机译:本文介绍了非牛顿流体线触头线接触的外虫弹性流体动力学润滑性能特征的影响。为可压缩流体配制了定时依赖性雷诺方程,弹性方程和粘度方程。实施了纳维顿 - 拉申方法和多重资源方法,以在各种负载和速度下获得接触区域中的薄膜压力曲线,电影曲线和牵引系数。模拟结果表明,粗糙度幅度对接触区域中的膜压力具有显着影响。当齿轮齿的表面粗糙表面时,菲尔姆厚度降低但牵引系数增加。当动作线增加薄膜厚度时,菲尔姆厚度在接近点处达到其最小值。最小牵引系数在俯仰点发生。载荷增加,薄膜压力牵引系数增加,但膜厚度降低。当速度增加时,膜厚度和牵引系数增加。

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