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RESEARCH ON TEMPERATURE RISE OF WET CLUTCH BASED ON MULTI-FIELD COUPLING

机译:基于多场耦合的湿式离合器温升研究

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摘要

Wet clutch is widely used in vehicle power transmission, especially in dual clutch automatic transmission. However, due to the unclear understanding of clutch temperature distribution and its influencing factors, the clutch is prone to excessive temperature rise or even wear under severe working conditions or continuous starting conditions. In this paper, the finite element model of stress field distribution of friction pair is established by considering the non-uniform fixed constraint of clamping spring and the non-uniform contact of hydraulic cylinder. Based on the inclined groove structure of the friction plate, the numerical calculation model of the flow field in the groove is established by the finite volume method. On this basis, considering the time-varying characteristics of stress distribution and cooling flow field distribution of clutch friction pairs, a numerical calculation model of clutch temperature field is established, and a multi-field coupling calculation method of clutch is proposed. The distribution of temperature field under different working conditions during clutch engagement is obtained by numerical calculation. The results show that the temperature rise of clutch depends on the target speed of the clutch driving end and the load on the driven end. The research results can provide guidance for the design and control of the clutch.
机译:湿式离合器广泛用于车辆动力传动系统,特别是在双离合器自动变速箱中。但是,由于对离合器温度分布及其影响因素的了解不清,在严酷的工作条件或连续起动条件下,离合器容易出现过度的温度升高甚至磨损。本文通过考虑夹紧弹簧的不均匀固定约束和液压缸的不均匀接触,建立了摩擦副应力场分布的有限元模型。基于摩擦片的斜槽结构,利用有限体积法建立了槽内流场的数值计算模型。在此基础上,考虑离合器摩擦副的应力分布和冷却流场分布的时变特性,建立离合器温度场的数值计算模型,提出了离合器的多场耦合计算方法。通过数值计算获得了离合器接合过程中不同工况下温度场的分布。结果表明,离合器的温升取决于离合器驱动端的目标速度和从动端的负载。研究结果可为离合器的设计和控制提供指导。

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