电工技术学报  2018, Vol. 33 Issue (2): 245-254    DOI: 10.19595/j.cnki.1000-6753.tces.L70696
电机与电器 |
双端励磁内置转子磁分路混合励磁电机设计与转子强度分析
张晓祥, 张卓然, 刘业, 李进才, 陈志辉
南京航空航天大学多电飞机电气系统工信部重点实验室 南京 211106
Design and Rotor Strength Analysis of a Hybrid Excitation Synchronous Machine with Dual-Direction Built-in Field Windings
Zhang Xiaoxiang, Zhang Zhuoran, Liu Ye, Li Jincai, Chen Zhihui
Center for More Electrical Aircraft Power System Nanjing University of Aeronautics and Astronautics Nanjing 211106 China
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摘要 讨论一种新型双端励磁内置转子磁分路混合励磁电机的结构与原理。针对实心转子磁极存在转子涡流损耗严重的问题,提出转子磁极表面粘贴软磁复合材料(SMC)的组合转子结构,为进一步改善电机转子三维结构加工工艺,采用转子导磁体模块化方法。考虑软磁复合材料抗拉强度的局限性,研究碳纤维保护套下转子损耗特性,并进行转子结构强度分析,为该类新型混合励磁电机结构优化奠定了基础。
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关键词 转子强度混合励磁电机软磁复合材料转子磁分路碳纤维    
Abstract:This paper introduces the topology and principle of a new hybrid excitation synchronous machine with dual-direction built-in field windings. In view of the serious problem of solid rotor eddy current loss, the combined rotor is presented and the soft magnetic composite (SMC) material is utilized on the surface of solid rotor. Furthermore, the modular method is applied to improve the processing technology of the three-dimensional rotor structure. Considering the tensile strength limitations of SMC material, carbon fiber is used to strengthen the rotor, and the rotor structure strength is analyzed. This paper lays a foundation for the optimization of the new hybrid excitation synchronous machine structure.
Key wordsRotor strength    hybrid excitation synchronous machine    soft magnetic composite material    magnetic shunting rotor    carbon fiber   
收稿日期: 2016-08-20      出版日期: 2018-01-31
PACS: TM351  
作者简介: 张晓祥 男,1990年生,硕士研究生,研究方向为新型永磁电机及其混合励磁技术。E-mail: zhxiaoxiang_nuaa@126.com;张卓然 男,1978年生,教授,博士生导师,研究方向为航空电源、新能源发电与驱动系统、特种电机设计与控制技术。E-mail: apsc-zzr@nuaa.edu.cn(通信作者)
引用本文:   
张晓祥, 张卓然, 刘业, 李进才, 陈志辉. 双端励磁内置转子磁分路混合励磁电机设计与转子强度分析[J]. 电工技术学报, 2018, 33(2): 245-254. Zhang Xiaoxiang, Zhang Zhuoran, Liu Ye, Li Jincai, Chen Zhihui. Design and Rotor Strength Analysis of a Hybrid Excitation Synchronous Machine with Dual-Direction Built-in Field Windings. Transactions of China Electrotechnical Society, 2018, 33(2): 245-254.
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