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Design and Performance of a Water-cooled Permanent Magnet Retarder for Heavy Vehicles

机译:重型车辆水冷式永磁缓速器的设计与性能

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摘要

This paper proposes a novel permanent magnet retarder (PMR) structure that uses water cooling to improve the braking performance of conventional PMR for heavy vehicles. A finite element model for a water-cooled PMR was developed by considering the temperature dependence of magnetic characteristics and heat conductivity. The eddy current and temperature distribution were analyzed using the magneto-thermal coupled method. Retarder performance was tested at a test bench. The test results show that the calculated temperature and braking torque agreed fairly well with the measured results. PMRs can maintain a low working temperature by using water cooling. Compared with air-cooled retarder, this retarder''s braking torque does not decrease much under continuous working conditions.
机译:本文提出了一种新颖的永磁减速器(PMR)结构,该结构使用水冷技术来改善传统的重型车辆PMR的制动性能。考虑到磁特性和热导率的温度依赖性,建立了水冷PMR的有限元模型。采用磁热耦合方法分析了涡流和温度分布。缓速器性能在测试台上进行了测试。测试结果表明,计算出的温度和制动扭矩与测量结果吻合得很好。通过使用水冷,PMR可以保持较低的工作温度。与风冷式缓速器相比,该缓速器的制动扭矩在连续工作条件下不会降低很多。

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