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Effect of temperature on the transmission characteristics of high-torque magnetorheological brakes

机译:温度对高扭矩磁体制动器传动特性的影响

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This paper aims to investigate the effect of temperature on the transmission characteristics of high-torque magnetorheological (MR) brakes by theoretically analyzing a disc brake, the pressure characteristics of the magnetorheological fluid (MRF) in axial, and the heat dissipation of an MR brake. A high-torque squeezing MRF brake with a water cooling method for heat dissipation is designed and a temperature-torque performance experimental system is established to conduct the experiments. The experimental results indicate that the high-torque squeezing MRF brake exhibits workable pressure characteristics. Meanwhile, the braking torque presents a variation trend that is initially increasing then decreasing when the temperature increases from 25 degrees C to 150 degrees C. The magnitude of decrease is approximately 210 N m, which decreases from 1800 to 1590 N m. Moreover, the temperature of the MRF presents an almost linear increase at different slip powers and the rate of temperature rise increases with an increase in slip power. The findings of this study prove that an effective cooling method can be vital to the stable operation of the high-torque MR brakes.
机译:本文旨在通过理论上分析盘式制动器,轴向磁流变流体(MRF)的压力特性和MR制动器的散热来研究温度对高扭矩磁流变学(MR)制动器的传动特性的影响。 。设计了具有用于散热法的高扭矩挤压MRF制动器,并建立温度 - 扭矩性能实验系统进行实验。实验结果表明,高扭矩挤压MRF制动表现出可行的压力特性。同时,制动扭矩呈现出最初增加的变化趋势,然后在温度从25摄氏度从25℃升高到150℃时,减小的变化趋势。减小的幅度约为210 n m,从1800到1590 n m减小。此外,MRF的温度呈现不同滑动功率的几乎线性升高,并且温度升高速率随着滑动功率的增加而增加。该研究的发现证明了有效的冷却方法对于高扭矩MR制动器的稳定运行至关重要。

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