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A novel high-torque magnetorheological brake with a water cooling method for heat dissipation

机译:新型水冷却冷却方式的高转矩磁流变制动器

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摘要

The extremely severe heating of magnetorheological (MR) brakes restricts their application in high-power situations. This study aims to develop a novel MR brake with a high-torque capacity. To achieve this goal, a water cooling method is adopted to assist in heat dissipation. In the study, a structural model design of the high-torque MR brake is first developed according to the transmission properties of the MR fluid between the rotating plates. Then, the operating principle of the MR brake is illustrated, which is followed by a detailed design of the water channel. Moreover, theoretical analysis, including the transmitted torque, magnetic field and thermal analysis, is performed as well. After this, an experimental prototype of the proposed MR brake is fabricated and assembled. Then the torque transmission and heat dissipation of the prototype are experimentally investigated to evaluate the torque transmission properties and water cooling efficiency. Results indicate that the proposed MR brake is capable of producing a highly controllable brake torque, and the water cooling method can effectively assist in heat dissipation from the MR brake.
机译:磁流变(MR)制动器的极度发热限制了它们在大功率情况下的应用。这项研究旨在开发一种具有高扭矩能力的新型MR制动器。为了达到这个目的,采用水冷却方法来帮助散热。在研究中,首先根据旋转盘之间MR流体的传递特性,开发了高扭矩MR制动器的结构模型设计。然后,说明了MR制动器的工作原理,随后是水通道的详细设计。此外,还进行了理论分析,包括传递的扭矩,磁场和热分析。此后,制造并组装了所提出的MR制动器的实验原型。然后,通过实验研究原型的扭矩传递和散热,以评估扭矩传递特性和水冷却效率。结果表明,提出的MR制动器能够产生高度可控的制动扭矩,并且水冷却方法可以有效地帮助MR制动器散热。

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