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Prediction of torque response during the engagement of wet friction clutch

机译:湿摩擦离合器啮合期间扭矩响应预测

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The approximate torque response model for the engagement of a wet friction clutch, developed by Berger, was modified and enhanced. The modified Reynolds equation for the film thickness and force balance for the wet clutch pack are solved numerically. The Reynolds equation relates the film hydrodynamic pressure to the film thickness, physical properties of friction materials, and operating parameters. The torque is calculated from the film and asperity pressure distribution at the friction interface. The applied pressure and the interface temperature as a function of time during engagement are considered in the model. The correct average flow factors of Patir and Cheng for ATF flow between rough surfaces are incorporated into the model. The permeability of friction materials and the temperature gradient inside the friction material are considered. The key input parameter for predicting the torque response is the friction coefficient as a function of sliding speed, temperature, and pressure, which can be measured by the Low Velocity Friction Apparatus (LVFA). The effects of physical and operating parameters on the torque response are demonstrated. Finally, the model predictions of the torque response are compared favorably with the experimental measurements under various operating conditions.
机译:用沥处开发的湿摩擦离合器接合的近似扭矩响应模型进行了修改和增强。数值求解用于湿离合器组的膜厚度和力平衡的改进的雷诺方程。雷诺等式将薄膜流体动力学压力与膜厚度,摩擦材料的物理性质和操作参数相关联。从摩擦界面处的薄膜和粗糙度的压力分布计算扭矩。在模型中考虑了施加的压力和接口温度作为接合期间的时间的函数。粗糙表面之间的Patir和Cheng的正确平均流量因子纳入模型中。考虑摩擦材料的渗透性和摩擦材料内的温度梯度。用于预测扭矩响应的键输入参数是作为滑动速度,温度和压力的函数的摩擦系数,其可以通过低速摩擦装置(LVFA)来测量。物理和操作参数对扭矩响应的影响。最后,在各种操作条件下,在实验测量中有利地比较扭矩响应的模型预测。

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