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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Analysis of adhesion under wet conditions for three-dimensional contact considering surface roughness
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Analysis of adhesion under wet conditions for three-dimensional contact considering surface roughness

机译:考虑表面粗糙度的湿式三维接触附着力分析

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摘要

This paper describes a numerical model to estimate the adhesion coefficient between rail and wheel under wet conditions, by applying the partial elasto-hydrodynamic lubrication (EHL) theory at three-dimensional (3D) contact considering surface roughness. The effect of the characteristics of surface roughness on the adhesion coefficient is particularly focused on in this study. Based upon numerical solutions obtained by the 3D numerical model, the effects of rolling speed, water temperature, surface roughness amplitude (i.e., standard deviation of roughness height) and parameter of roughness orientation on asperity contact pressure, which has important influence on the adhesion coefficient, are investigated under wet conditions. Furthermore, to verify the adequacy of the 3D numerical model adapted to estimate the adhesion coefficient between rail and wheel, the numerical solutions are compared with the experimental values that were obtained by a twin-disc rolling contact machine.
机译:本文描述了一种数值模型,通过在考虑表面粗糙度的三维(3D)接触下应用局部弹性流体动力润滑(EHL)理论来估计在潮湿条件下轨道与车轮之间的附着系数。本研究特别关注表面粗糙度特性对附着系数的影响。根据3D数值模型获得的数值解,轧制速度,水温,表面粗糙度振幅(即粗糙度高度的标准偏差)和粗糙度方向参数对粗糙接触压力的影响,这对附着系数有重要影响在潮湿条件下进行研究。此外,为了验证适用于估算轨道和车轮之间的附着系数的3D数值模型的准确性,将数值解与双盘滚动接触机获得的实验值进行了比较。

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