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A Layered-Rheology Model for Thin Film Elastohydrodynamic Lubrication of Circular Contacts

机译:圆形膜弹性流体动力学润滑圆形触头的分层流变模型

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The modified Reynolds equation for power-law fluid is derived from the viscous adsorption theory for thin film elastohydrodynamic lubrication (TFEHL) of circular contacts. The lubricating film between solid surfaces is modeled as three fixed layers, which are two adsorption layers on each surface and a middle layer. The differences between classical EHL and TFEHL with non-Newtonian lubricants are discussed. Results show that the TFEHL power law model can reasonably calculate the pressure distribution, the film thickness, and the velocity distribution. The thickness and viscosity of the adsorption layer and the flow index influence significantly the lubrication characteristics of the contact conjunction.
机译:用于电力法流体的改进的雷诺方程源自圆形膜弹性流体动力学润滑(TFEH1)的粘性吸附理论。固体表面之间的润滑膜被建模为三个固定层,在每个表面和中间层上是两个吸附层。讨论了具有非牛顿润滑剂的经典EHL和TFEH1之间的差异。结果表明,TFEHL电力法模型可以合理地计算压力分布,膜厚度和速度分布。吸附层的厚度和粘度和流量指数显着影响接触结合的润滑特性。

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