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Research on the Influence of Piston Constraint on the Temperature Field of Multi-disc Clutch

机译:活塞约束对多片离合器温度场影响的研究

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The two-dimensional finite element model of multi-disc clutch friction pair was established by Abaqus simulation software, and the contact pressure of the friction surface under different piston constraints was calculated and analyzed. Considering contact pressure as the main heat-generating factor, the two-dimensional heat conduction process was numerically discretized by the implicit difference method. Then the temperature model of the multi-disc clutch friction pair was programmed in Matlab. The bench test verified the correctness of the temperature model. It is found that the temperature field between components is different and shows uneven distribution under the actual constraint. The local temperature of the component near the concentrated load is the highest, in which the radial temperature difference is the largest. The arrangement in which the piston pressure is concentrated in middle diameter produces the lowest temperature and the smallest radial temperature difference, which can effectively avoid thermal deformation of the component due to uneven temperature distribution.
机译:利用Abaqus仿真软件建立了多片离合器摩擦副的二维有限元模型,计算并分析了不同活塞约束下摩擦面的接触压力。以接触压力为主要发热因子,采用隐式差分法对二维导热过程进行了数值离散。然后在Matlab中对多片离合器摩擦副的温度模型进行编程。台架试验验证了温度模型的正确性。发现在实际约束条件下,各部件之间的温度场不同,分布不均。集中负载附近组件的局部温度最高,其中径向温差最大。活塞压力集中在中径的布置产生最低的温度和最小的径向温度差,这可以有效地避免由于温度分布不均匀引起的部件的热变形。

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