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A Ferrite PM In-Wheel Motor Without Rare Earth Materials for Electric City Commuters

机译:用于城市通勤者的不含稀土材料的铁氧体永磁轮毂电动机

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摘要

Electric city commuters are vehicles used for commuting from suburbs to inner cities and for movement within cities. Because of the short distances that they cover and their small battery size, such vehicles are beginning to attract attention. Generally, a high-performance permanent magnet (PM) composed of rare earth elements, such as neodymium and dysprosium, is used in the in-wheel PM synchronous motor (PMSM) of an electric city commuter. However, rising prices of rare earth elements and export restrictions on them are serious problems. Development of an in-wheel PMSM that does not utilize rare earth PMs is therefore highly desirable for electric city commuter vehicles. Accordingly, our research group has focused on a surface PM type axial gap structure that can achieve a high torque density and a short motor length in the axial direction. The designed motor structure with ferrite PMs replacing the rare earth PMs and the results of a 3-D finite element analysis are introduced in detail in this paper. Moreover, to examine the fundamental characteristics of the designed motor, a prototype is produced and tested.
机译:电动城市通勤者是用于从郊区到内城区通勤以及在城市内移动的车辆。由于它们所覆盖的距离短且电池尺寸小,这种车辆开始引起人们的注意。通常,在城市通勤者的轮内PM同步电动机(PMSM)中使用由稀土元素(例如钕和)组成的高性能永磁体(PM)。但是,稀土元素的价格上涨和对其的出口限制是严重的问题。因此,对于城市通勤车辆,非常需要开发一种不使用稀土PM的轮内PMSM。因此,我们的研究小组专注于表面PM型轴向间隙结构,该结构可实现高转矩密度和较短的轴向电机长度。本文详细介绍了用铁氧体永磁体代替稀土永磁体的设计电动机结构以及3D有限元分析的结果。此外,为了检查设计的电动机的基本特性,生产并测试了原型。

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