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A Thermo-Mechanical Formulation Describing the Frictional Behaviour of Rubber

机译:描述橡胶摩擦行为的热机械配方

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In this paper a numerical model for the analysis of coupled thermo-mechanical frictional contact problems of rubber blocks on rough surfaces is presented. The formulations for the interface shear stresses and the heat fluxes are motivated by a theoretical examination of the process of rubber friction. In general, these quantities depend explicitly on contact pressure, the sliding velocity, and the surface temperature. Several parameters in the model allow for consideration of the influence of different rubber compounds, rubber block geometries and road surfaces. The experimental setup used for the identification of these parameters and the validation of the contact model are briefly explained. The obtained results demonstrate the experimentally observed sensitivity of the system to changes in contact pressure, sliding velocity, and rubber compound. The numerical model was implemented in the commercial finite element code ABAQUS. The simulation of a sliding rectangular rubber tread block demonstrates how the contact model performs. The comparison of numerical and experimental results shows good agreement. rubber friction; thermo-mechanical formulation; finite elements
机译:本文提出了一个数值模型,用于分析粗糙表面上橡胶块的热机械摩擦接触耦合问题。界面剪切应力和热通量的公式是通过对橡胶摩擦过程的理论研究来激发的。通常,这些量明确取决于接触压力,滑动速度和表面温度。该模型中的几个参数考虑了不同的橡胶混合物,橡胶块的几何形状和路面的影响。简要说明了用于识别这些参数和验证接触模型的实验装置。获得的结果证明了实验观察到的系统对接触压力,滑动速度和橡胶混合物变化的敏感性。数值模型是在商业有限元代码ABAQUS中实现的。滑动矩形橡胶胎面花纹块的仿真演示了接触模型的性能。数值与实验结果的比较表明吻合良好。橡胶摩擦热机械配方;有限元

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