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首页> 外文期刊>ISRN Mechanical Engineering >Mathematical Model and Experimental Evaluation of Drag Torque in Disengaged Wet Clutches
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Mathematical Model and Experimental Evaluation of Drag Torque in Disengaged Wet Clutches

机译:分离式湿式离合器中阻力力矩的数学模型和实验评估

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When the clutch is in disengaged condition, ideally no torque should be transmitted. However, in reality, the relative motion between the disks causes viscous shearing of fluids in the gap. This results in a drag torque which is considered as a loss. The objective of the present study is to formulate a drag torque model as well as to experimentally evaluate the effect of several parameters on the drag torque. A model based on continuity and Navier-Stokes equations, considering laminar flow, is deduced. The drag torque estimated by the model is the sum of drag torque due to shearing of the automatic transmission fluid (ATF) and mist (suspension of ATF in air) film. In order to validate the model and characterize the drag torque, experiments are performed using an SAE no. 2 test setup under real conditions of variable ATF flow rate and disks' rotational states for higher clutch speed range. The drag torque predicted by the model is in good agreement with the experimental results obtained by varying the flow properties and disks' rotational states. By analyzing the experimental results, a factor by which, the variation in parameters such as ATF flow rate, ATF temperature, disk size, and disk rotational state influencing the drag torque is determined.
机译:当离合器处于分离状态时,理想情况下不应传递扭矩。然而,实际上,盘之间的相对运动导致间隙中的流体的粘性剪切。这导致被认为是损失的拖曳扭矩。本研究的目的是建立一个阻力力矩模型,并通过实验评估几个参数对阻力力矩的影响。推导了基于连续性和Navier-Stokes方程的考虑层流的模型。该模型估算的阻力转矩是由于自动变速箱油(ATF)和雾气(空气中ATF的悬浮液)的剪切而引起的阻力转矩的总和。为了验证模型并表征拖曳扭矩,使用SAE No.2进行了实验。 2个测试设置是在可变ATF流量和磁盘旋转状态的实际条件下实现的,以实现更高的离合器转速范围。该模型预测的阻力转矩与通过改变流动特性和圆盘的旋转状态获得的实验结果非常吻合。通过对实验结果进行分析,可以确定影响阻力转矩的ATF流量,ATF温度,磁盘尺寸和磁盘旋转状态等参数变化的因素。

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