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MODELING OF NORMAL AND TANGENTIAL CONTACT STIFFNESS OF ROUGH SURFACES

机译:粗糙表面的正切和切向接触刚度建模

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It is well recognized that the contact stiffness is one of the key features in the study of friction system behavior. The stiffness of a rough surface influences the contact state as well as the behavior of the surrounding system. It is the goal of this work to investigate the elastic deformation of surface asperities and propose mathematical model in treating its influence. The mathematical model of contact is utilized to develop formulae for normal and tangential contact stiffness. Stiffness values for the sample are derived from the surface profile data taken from a 1.0-mm by 10-mm test area. The profile is measured using a Mahr profilometer. A computer program is developed and used to analyze the profile data to yield the asperity density, average asperity radius, and the standard deviation for each test area. Examining the results show that both normal and tangential contact stiffness decrease exponentially with normalized separation. As the normalized separation increases both normal and tangential stiffness become very small and insensitive for the high normalized separation.
机译:众所周知,接触刚度是研究摩擦系统行为的关键特征之一。粗糙表面的刚度会影响接触状态以及周围系统的行为。这项工作的目的是研究表面粗糙的弹性变形,并提出处理其影响的数学模型。接触的数学模型用于开发法向和切向接触刚度的公式。样品的刚度值是从1.0毫米乘10毫米的测试区域获得的表面轮廓数据得出的。轮廓是使用Mahr轮廓仪测量的。开发了计算机程序并用于分析轮廓数据,以得出每个测试区域的粗糙密度,平均粗糙半径和标准偏差。检查结果表明,法向和切向接触刚度均随着归一化分离而呈指数下降。随着归一化间隔的增加,法向和切向刚度都变得非常小,并且对高归一化间隔不敏感。

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