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Finite Element Analysis of Temperature Field in Automotive Dry Friction Clutch

机译:汽车干式摩擦离合器温度场的有限元分析

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The friction clutch design is strongly dependent upon the frictional heat generated between contact surfaces during the slipping at beginning of engagement. Because of that the frictional heat generated firstly will reduce the performance of clutch system and then will lead to premature failure in some cases. Finite element method was used to investigate aneffect of thermal load type on the temperature field of the clutch system. Two-dimensional axisymmetric model was used to study the temperature distribution for the clutch system (pressure plate, clutch disc and flywheel) during heating phase (slipping period) and in the cooling phase (full engagement period). Depending on basic friction clutch design two types of thermal loads were applied; load type A (uniform pressure) and load type B (uniform wear). Repeated engagements made at regular interval wereconsidered in this work. ANSYS13 has been used to perform the numerical calculation in this paper.
机译:摩擦离合器的设计在很大程度上取决于在接合开始时打滑期间接触表面之间产生的摩擦热。因此,产生的摩擦热首先会降低离合器系统的性能,然后在某些情况下会导致过早失效。用有限元方法研究了热负荷类型对离合器系统温度场的影响。二维轴对称模型用于研究离合器系统(压盘,离合器盘和飞轮)在加热阶段(打滑期)和冷却阶段(完全接合期)的温度分布。根据基本的摩擦离合器设计,应用了两种类型的热负荷。负载类型A(均匀压力)和负载类型B(均匀磨损)。在这项工作中考虑了定期进行重复的订婚。本文使用ANSYS13进行数值计算。

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