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On the Simulation of the Micro-Contact of Rough Surfaces Using the Example of Wet Friction Clutch Materials

机译:用湿摩擦离合器材料的例子模拟粗糙表面的微接触

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摘要

Friction behavior in a sliding contact is strongly influenced by the surface topography of the bodies in contact. This also applies to friction clutches. Even small differences in surface topography may cause significant differences in friction behavior. Thus, it is important to be able to characterize the micro-contact of the rough sliding surfaces, which are, in the case of a clutch, steel plate and friction material. One important measure for the characterization of the micro-contact is the real area of contact. Another important aspect is the contact pattern. The article introduces a method to implement a FEM (Finite Element Method) model from real surface measurements. Real surface topography of the friction pairing is considered. The simulation method is applied to different friction pairings and operating conditions. Computational results with rough and smooth steel plates, new and run-in friction linings, and different nominal surface pressure verify the model. In addition, the results on real area of contact between a steel and a friction plate are compared with published values.
机译:滑动触点中的摩擦行为受到接触的表面的表面形貌的强烈影响。这也适用于摩擦离合器。即使表面形貌的小差异也可能导致摩擦行为的显着差异。因此,重要的是能够表征粗滑动表面的微接触,即在离合器,钢板和摩擦材料的情况下。微触点表征表征的一个重要措施是真正的接触区域。另一个重要方面是接触模式。该文章介绍了一种从真实表面测量实现FEM(有限元方法)模型的方法。考虑了摩擦配对的真实表面形貌。仿真方法应用于不同的摩擦配对和操作条件。计算结果粗钢板,新型摩擦衬里,不同的标称表面压力验证了模型。另外,将钢和摩擦板之间的真实接触区域的结果与公开的值进行比较。

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