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Slip torque investigation and magnetic redesign of motor integrated permanent magnet gear

机译:电机集成永磁齿轮的滑差扭矩研究和磁重新设计

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This paper presents an investigation of 20% difference between the measured and calculated slip torque of a Motor Integrated Permanent Magnet Gear (MIPMG) prototype. The High Speed (HS) side of the Magnetic Gear (MG) was fixed by loading the motor when conducting the slip torque measurement. Suspicion of the motor saturating before the MG reached peek torque and thus measuring the maximum torque of the motor instead, made the method questionable. The MIPMG has been modified to lock the HS side of the MG mechanically and new measurements have been conducted but with the same low slip torque as result. It was realized that some magnets most likely are partly demagnetized due to an inappropriate magnetic design which can explain the measured slip torque to be lower than the results from static 2 and 3D FEA. With the discovered demagnetization and several years of experience with the technology, the MIPMG is theoretical redesigned and semi optimized regarding the use of magnet material while maintaining a reasonable torque density and high efficiency.
机译:本文介绍了电动机集成永磁齿轮(MIPMG)原型的测量值与计算值之间的20%差异。进行滑差扭矩测量时,通过加载电机来固定电磁齿轮(MG)的高速(HS)侧。由于怀疑电动机在MG达到峰值转矩之前就已经饱和,因此测量了电动机的最大转矩,这使该方法产生了疑问。对MIPMG进行了修改,以机械锁定MG的HS侧,并进行了新的测量,但结果是具有相同的低滑差扭矩。已经意识到,由于不适当的磁性设计,一些磁体很可能被部分消磁,这可以解释为测得的滑差扭矩低于静态2和3D FEA的结果。借助发现的消磁技术和多年的技术经验,对MIPMG进行了理论上的重新设计和半优化,以优化磁铁材料的使用,同时保持合理的扭矩密度和高效率。

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