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Analyses on Electromagnetic and Temperature Fields of Superhigh-Speed Permanent-Magnet Generator With Different Sleeve Materials

机译:不同套筒材料的超高速永磁发电机的电磁场和温度场分析

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摘要

In this paper, a superhigh-speed permanent-magnet generator (SHSPMG) which has an alloy sleeve on the rotor outer surface is investigated. The purpose of the sleeve is to fix the permanent magnets and protect them from being destroyed by the large centrifugal force. However, the sleeve material characteristics have much influence on the superhigh-speed machine, and therewith, most of rotor eddy-current losses are generated in the alloy rotor sleeve, which could increase the device temperature. Taking a 117-kW 60 000-r/min SHSPMG as an example, the influence of the sleeve on the generator output performance is analyzed when the generator sleeve is made of stainless steel, carbon fiber, copper–iron alloy, and copper. In addition, the eddy-current loss distributions could be gotten, and therewith, the variations of the eddy-current losses in different kinds of sleeves are analyzed. Based on the 3-D coupling field between the fluid and temperature, the temperature distributions were obtained when the sleeve adopts different materials. Moreover, the temperature variations of the permanent magnets are further analyzed. The obtained conclusions may provide some references for the design and analyses of the SHSPMG.
机译:本文研究了一种超高速永磁发电机(SHSPMG),该发电机的转子外表面带有合金套。套筒的目的是固定永磁体,并防止永磁体被大的离心力破坏。但是,套筒的材料特性对超高速电机有很大的影响,并且,大多数转子涡流损耗在合金转子套筒中产生,这可能会增加装置温度。以117kW 60 000r / min SHSPMG为例,分析了当发电机套管由不锈钢,碳纤维,铜铁合金和铜制成时,套管对发电机输出性能的影响。另外,可以获得涡流损耗的分布,并据此分析了不同种类的套管中的涡流损耗的变化。根据流体与温度之间的3-D耦合场,获得了当套筒采用不同材料时的温度分布。此外,进一步分析了永磁体的温度变化。所获得的结论可以为SHSPMG的设计和分析提供参考。

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