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Characterizing the in situ Thermal Behavior of Selected Electrical Machine Insulation and Impregnation Materials

机译:表征所选电机绝缘和浸渍材料的原位热行为

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This paper presents results from an analysis of thermal behavior for alternative slot liner insulation and varnish impregnation materials used in the construction of electrical machines. These materials are typically characterized by the individual material properties altered to suit a particular application. However, the manufacturer provided material data are usually inadequate when comparing the complete insulation systems. This research is focused on the conductive heat transfer from the winding body into the machine periphery in context of the complete insulation system. An experimental approach using the stator-winding segment subassembly has been adopted here, for the representative in situ heat transfer measurements. The effects of impregnation “goodness,” in volume manufacture repeatability, and individual versus in situ material physical properties on the stator-winding thermal behavior are discussed in detail. The results suggest that the use of a particular slot liner insulation and varnish impregnation has a prominent impact on the winding heat transfer, as well as appropriate manufacture and assembly processes used. The experimental work has been supplemented with theoretical analysis to provide a more comprehensive insight into the winding heat transfer phenomena; in particular the winding-to-slot contact thermal resistance.
机译:本文介绍了对用于电机构造的替代缝隙衬里绝缘材料和清漆浸渍材料的热性能进行分析的结果。这些材料的典型特征是,为适应特定应用而更改的各个材料属性。但是,制造商提供的材料数据在比较完整的绝缘系统时通常不足。这项研究集中在完整绝缘系统的背景下,从绕组体到电机外围的传导热传递。在此,采用了使用定子绕组段组件的实验方法,以进行代表性的原位传热测量。详细讨论了浸渍“良好”,批量生产可重复性以及单个与原位材料物理特性对定子绕组热行为的影响。结果表明,使用特殊的槽衬绝缘和清漆浸渍对绕组的传热以及所使用的适当制造和组装工艺具有显着影响。对实验工作进行了理论分析,以更全面地了解绕组的传热现象。特别是绕组与槽之间的接触热阻。

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