首页> 外文会议>Leeds-Lyon Symposium on Tribology; 20040907-10; Leeds(GB) >Roughness Amplitude Reduction under Non-Newtonian EHD Lubrication Conditions
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Roughness Amplitude Reduction under Non-Newtonian EHD Lubrication Conditions

机译:非牛顿EHD润滑条件下的粗糙度降低

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The influence of surface roughness on the performance of bearings and gears operating under Elasto-Hydrodynamic Lubrication (EHL) conditions has become increasingly important over the last decade, as the average film thickness decreased due to various influences. In order to describe the roughness geometry inside an EHL contact, the amplitude reduction of harmonic waviness has been studied over the last ten years. This theory currently allows a quantitative prediction of the waviness amplitude, including wavelength and contact operating conditions. Theoretical analysis has complemented the numerical results indicating the paramount role of the inlet boundary layer. The model has been extended to include general rolling-sliding conditions, general roughness orientation and general contact geometry. However, the current model depends heavily on the characteristic features of Newtonian behaviour in the solution. For line contacts Jacod has shown that for zero slip the non-Newtonian behaviour coincides with the Newtonian behaviour and Hooke and has presented results based on a perturbation approach. The current paper makes a first contribution to the extension of the roughness amplitude reduction for EHL point contacts to include non-Newtonian effects.
机译:在过去的十年中,由于平均膜厚度由于各种影响而降低,表面粗糙度对在弹性流体动力润滑(EHL)条件下运行的轴承和齿轮性能的影响变得越来越重要。为了描述EHL触点内部的粗糙度几何形状,在最近十年中研究了谐波波动的幅度减小。目前,该理论允许对波峰幅度进行定量预测,包括波长和触点工作条件。理论分析补充了表明入口边界层至关重要的数值结果。该模型已扩展到包括一般的滚动滑动条件,一般的粗糙度方向和一般的接触几何形状。但是,当前模型在很大程度上取决于解决方案中牛顿行为的特征。对于线接触,Jacod已经证明,对于零滑移,非牛顿行为与牛顿行为和胡克行为重合,并基于扰动方法给出了结果。本文为扩展EHL点接触的粗糙度幅度减小以包括非牛顿效应做出了第一贡献。

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