Materials characterization and geometry of a high temperature induction machine

D. Cozonac, J. Lecointe, S. Duchesne, G. Vélu
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引用次数: 18

Abstract

The goal of this paper is to describe the materials and building technique to design a high-temperature induction machine which temperature winding is about 500°C. First, the candidate materials are identified and because of the constraints imposed by these materials, a special geometry is proposed. The authors show that inorganic insulation has to be preferred for the conductors and the slot insulation. Tests are done to select the materials by measuring the turn to turn voltage, insulation resistances or the parallel capacities. It is shown that Grain Oriented (GO) Fe-Si magnetic steel sheets can be used for high temperature because of their insulation and their magnetic properties. The authors describe a technique using shifted GO steel sheets and they characterize up to 500°C. A particular geometry of the machine is described as well as the method to assemble the different parts of the machine.
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高温感应电机的材料特性和几何结构
本文的目标是描述设计温度约为500°C的高温感应电机的材料和制造技术。首先,确定候选材料,并由于这些材料施加的约束,提出了一种特殊的几何形状。作者认为无机绝缘是导体和槽绝缘的首选材料。测试是通过测量匝间电压、绝缘电阻或并联容量来选择材料的。结果表明,晶粒取向(GO)铁硅磁性钢板具有良好的绝缘性和磁性,可用于高温材料。作者描述了一种使用移位氧化石墨烯钢板的技术,其表征温度高达500°C。描述了机器的特定几何形状以及组装机器不同部分的方法。
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