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Response Characteristics of Dynamic Torque for Wet Clutch Engagement: A Numerical and Experimental Study

机译:湿离合器接合动态扭矩的响应特性:数值和实验研究

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To determine the factors affecting the dynamic transmitted torque response characteristics of the wet clutch, the oil film pressure, the asperity contact pressure, the applied pressure, and the dynamic transmitted torque model were established, using the fourth-order Runge–Kutta numerical method to couple the oil film thickness and the speed difference to obtain the change curve of the joint pressure and the transmitted torque. The established model was used to study the influence of the pressure hysteresis time, lubricant viscosity, friction lining permeability, friction pair equivalent elastic modulus, and surface combined roughness RMS on the dynamic transmitted torque response during the wet clutch engagement. The results indicate that the longer the pressure hysteresis time, the smaller the permeability of the friction lining, the smaller the equivalent elastic modulus, the greater surface combined roughness RMS, the more delayed the response of the transmitted torque, and the smaller the level of jerk of the wet clutch engagement. Also, the lower the lubricant viscosity, the greater the permeability of the friction lining, and the smaller the equivalent elastic modulus is and the greater surface combined roughness RMS is, the more sensitive the transmitted torque response is to pressure response changes.
机译:为了确定影响湿离合器的动态透射扭矩响应特性的因素,建立了油膜压力,油膜压力,锐度接触压力,施加的压力和动态传递扭矩模型,使用了第四阶runge-Kutta数值方法耦合油膜厚度和速度差以获得接合压力的变化曲线和透射扭矩。建立的模型用于研究压力滞后时间,润滑剂粘度,摩擦局部渗透率,摩擦对等效弹性模量,以及表面组合粗糙度RMS在湿离合器接合期间动态传递扭矩响应的影响。结果表明,压力滞后时间越长,摩擦衬里的渗透率越小,等效弹性模量越小,较大的表面组合粗糙度RMS,透射扭矩的响应越延迟,较小的水平湿离合器啮合的混蛋。而且,润滑剂粘度越低,摩擦衬里的渗透率越大,等效弹性模量越小,并且更大的表面组合粗糙度RMS是,透射扭矩响应是压力响应变化的越敏感。

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