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Modeling and Parametric Study on Drag Torque of Wet Clutch

机译:湿式离合器阻力力矩的建模与参数研究

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In order to analyze the power torque characteristics of wet clutch produced under the disengaging state and reduce the drag torque of wet clutch, a flow rate equation under full film state was deduced based on the Navier-Stokes equations and a new equation calculated oil film equivalent radius was derived according to the relationship of oil flow rate and volume between import and export, whereafter the drag torque model considering the friction gap non-uniform was established based on the Newton internal friction theorem with front formula. The performance of simulation shows that the drag torque increased monotonically with the rise of speed in low speed. But when the speed increased to a certain value, the drag torque began to decrease. Then, two evaluation indexes for drag torque were presented which were peak value of drag torque and the corresponding critical speed. Subsequently, the sensitivity for the effect of clutch parameters on drag torque was calculated. The conclusion of research have some reference value to the design of wet clutch.
机译:为了分析在分离状态下产生的湿式离合器的动力转矩特性并减少湿式离合器的拖曳转矩,基于Navier-Stokes方程推导了全膜状态下的流量方程,并通过新的方程计算了油膜当量根据油料流量与进出口量之间的关系推导半径,然后基于牛顿内摩擦定理和前式建立了考虑摩擦间隙不均匀的拖曳转矩模型。仿真结果表明,低速时,拖动转矩随速度的增加而单调增加。但是,当速度增加到一定值时,阻力转矩开始减小。然后,提出了两个阻力转矩的评价指标,分别是阻力转矩的峰值和相应的临界速度。随后,计算了离合器参数对拖曳扭矩影响的灵敏度。研究结论对湿式离合器的设计具有一定的参考价值。

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