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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Development of a Yokeless and Segmented Armature Axial Flux Machine
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Development of a Yokeless and Segmented Armature Axial Flux Machine

机译:无轭分段电枢轴向磁通机的开发

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摘要

This paper is about the mechanical design and analysis of a yokeless and segmented armature axial flux permanent-magnet (PM) synchronous machine, which consists of two external rotors and an inner stator. Although this new electrical machine has many advantages such as high torque density, shorter axial length, and high efficiency, its mechanical construction is yet challenging. This is mostly due to the high axial force between the stator and the two rotors, which can be further increased by the inevitable manufacturing and assembly tolerances. Based on the determined geometric dimensions of the electromagnetically relevant components, a reliable mechanical construction is developed in this paper. Subsequently, stress, deformation, thermal, and modal analyses are performed based on finite-element method (FEM). Finally, the first prototype is successfully manufactured and measured. It can be concluded that the proposed construction is reliable and the measured data match well with the results of the electromagnetic analysis.
机译:本文介绍了一种无轭分段电枢轴向磁通永磁同步电动机的机械设计和分析,该电动机由两个外转子和一个内定子组成。尽管这种新型电机具有许多优点,例如高扭矩密度,较短的轴向长度和高效率,但其机械结构仍具有挑战性。这主要归因于定子和两个转子之间的高轴向力,不可避免的制造和装配公差会进一步增加轴向力。基于确定的电磁相关部件的几何尺寸,本文开发了一种可靠的机械结构。随后,基于有限元方法(FEM)进行应力,变形,热和模态分析。最终,第一个原型被成功制造和测量。可以得出结论,所提出的构造是可靠的,并且测量数据与电磁分析的结果很好地匹配。

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