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首页> 外文期刊>Journal of Vibration and Acoustics >A Semi-Active, High-Torque, Magnetorheological Fluid Limited Slip Differential Clutch
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A Semi-Active, High-Torque, Magnetorheological Fluid Limited Slip Differential Clutch

机译:半主动,高扭矩,磁流变液限制滑差速离合器

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摘要

The design, development, and performance characterization of a magnetorheological (MR) fluid clutch for automotive limited slip differential (LSD) applications is presented in this study. The controllability of MR fluids provides an adjustable torque transmission and slippage for the LSD application. Three-dimensional electromagnetic finite element analysis (FEA) is performed to optimize the magnetic circuit and clutch design. Based on the results obtained from the FEA, the theoretical torque transfer capacity of the clutch is predicted utilizing Bingham-Plastic constitutive model. The clutch is characterized at different velocities and electromagnet electric input currents. Both the torque transfer capacity and the response time of the clutch were examined. It was demonstrated that the proposed MR fluid LSD clutch is capable of transferring controllable high torques with a fast response time.
机译:本研究介绍了用于汽车有限滑差速器(LSD)应用的磁流变(MR)液力离合器的设计,开发和性能表征。 MR流体的可控性为LSD应用提供了可调节的扭矩传递和滑动。进行三维电磁有限元分析(FEA)以优化磁路和离合器设计。根据从有限元分析获得的结果,利用宾厄姆-塑性本构模型预测离合器的理论扭矩传递能力。离合器具有不同的速度和电磁输入电流。检查了离合器的扭矩传递能力和响应时间。事实证明,提出的MR流体LSD离合器能够以快速的响应时间传递可控制的高扭矩。

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