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Pressure Distribution of a Multidisc Clutch Suffering Frictionally Induced Thermal Load

机译:摩擦感应热负荷的多片离合器的压力分布

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摘要

The transient thermal and thermoelastic analysis of an automotive multidisc clutch is performed to investigate the thermal deformation and the contact pressure distribution of the friction surfaces. An alternating finite volume method (FVM) and finite element method (FEM) for temperature distribution and contact pressure distribution, including the coupling between temperature, displacement, and contact pressure, is employed in MATLAB. A penalty function method is used to impose the constraints on the contact boundary. The computational results indicate that the contact pressure distributions on the surfaces near the pressure plate are more uniform than those near the opposite plate, and the nonuniformity is enlarged with the temperature rise. The contact pressure and temperature distributions on the two friction surfaces of the separate plate are dissimilar and asymmetric, which is in good agreement with the test results. The results further show that the contact pressure peaks diminish and the noncontact regions reduce due to the heat conduction and convection when the engagement ends.
机译:进行了汽车多片离合器的瞬态热和热弹性分析,以研究摩擦表面的热变形和接触压力分布。 MATLAB中采用了交替有限体积法(FVM)和有限元法(FEM)进行温度分布和接触压力分布,包括温度,位移和接触压力之间的耦合。使用惩罚函数方法将约束强加于接触边界。计算结果表明,压力板附近表面上的接触压力分布比相对板附近表面上的接触压力分布更均匀,并且随着温度升高,不均匀性增大。分离板的两个摩擦面上的接触压力和温度分布是不相似且不对称的,这与测试结果非常吻合。结果进一步表明,当接合结束时,由于导热和对流,接触压力峰值减小,非接触区域减小。

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