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为了全面且深入地介绍高温环境下高速永磁电机系统综合设计的相关技术问题,围绕电机的结构和设计特点展开了系统分析。针对高温环境下电机材料的物理性能和电气性能变化的问题,测试并分析了电工钢和永磁材料与温度之间的关系特性,揭示了电工钢的磁导率、铁芯损耗随温度升高而逐渐减小的规律;以绝缘材料与润滑系统的类型和耐温等级作为切入点,对比分析了不同温度下定、转子拓扑结构类型特点,提出了一种用于宽温度范围的爪极定子拓扑结构、低谐波多层不等匝绕组拓扑结构以及一体式自冷却复合式转子结构;总结了高速永磁电机转子支撑技术、机械特性计算与动力学分析和提升驱动控制技术动态性、抗扰性等关键性问题;对包括高性能磁性材料、新型工艺加工方法、新型拓扑结构设计等在内的高温高速永磁电机的未来发展趋势与热点进行了展望。
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