Experimental verification of analytical calculation approaches and FEM material models with the aim of determining friction of thermoplastics

Niels Dallinger, A. Bergmann, M. Golder, Timo Bensing, M. Moneke
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Abstract

The paper presents analytical approaches for calculating the effective contact area of the sphere-plane contact, which allow conclusions to be drawn about the coefficient of friction of thermoplastics with manageable effort. These approaches are verified experimentally utilizing friction and wear tests using the example of a steel sphere against PE-UHMW. The friction area of the sphere was varied using a self-constructed adjustment unit and a spherical wedge. With the help of parametric experiments regarding the angular position of the spherical wedge, a limiting contact angle was detected. This limiting angle allows the calculation of the deformative and adhesive friction. FE models are being developed for the simulative verification of the analytical approaches and further investigations of structures for friction reduction. These require specific material models as a basis for the representation of the stress-strain behavior in contact. The different FEM material models are calibrated and compared against each other based on experimental tests. The materials POM, PP, PMMA, and PE-UHMW were considered.
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以确定热塑性塑料摩擦为目的的分析计算方法和有限元材料模型的实验验证
本文提出了计算球-面接触有效接触面积的解析方法,使热塑性塑料的摩擦系数得到易于计算的结论。以钢球与PE-UHMW的摩擦磨损试验为例,对这些方法进行了验证。采用自制的调节装置和球楔来改变球的摩擦面积。通过对球楔角位置的参数化实验,得到了一个极限接触角。这个极限角度允许计算变形摩擦和粘着摩擦。正在开发有限元模型,以模拟验证分析方法和进一步研究减少摩擦的结构。这需要特定的材料模型作为表示接触中应力-应变行为的基础。在实验的基础上,对不同的有限元材料模型进行了标定和比较。考虑了POM、PP、PMMA、PE-UHMW等材料。
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