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Sliding behaviour of simplified tire tread patterns investigated by means of FEM

机译:有限元法研究简化轮胎胎面花纹的滑动行为

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In this paper, a simulation procedure for sliding tread blocks under consideration of thermal effects and abrasion is introduced. It is intended as a powerful tool in tire design and development complementary to experimental investigations. A contact model specially suited for the contact pairing rubber and rough road is developed. Subsequent changes of the model geometry in the course of the simulation allow for the reproduction of abrasion effects. The simulations are carried out by means of the Finite Element Method in a thermo-mechanically coupled manner. Exemplary simulation results are presented for 2D as well as 3D models of rubber tread blocks. By incorporation of sipes and by consideration of parallelogram-shaped bases, a close approach to realistic tread patterns is achieved.
机译:在本文中,介绍了一种在考虑热效应和磨损的情况下对滑动胎面花纹块进行仿真的过程。它旨在作为轮胎设计和开发的有力工具,是对实验研究的补充。开发了一种特别适用于橡胶和崎road路面的接触模型。在仿真过程中,模型几何形状的后续变化允许磨损效果的再现。通过有限元方法以热机械耦合的方式进行模拟。给出了橡胶胎面花纹块的2D和3D模型的示例性仿真结果。通过合并刀槽花纹并考虑平行四边形形状的基部,可以实现逼真的胎面花纹。

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