Novel design topology for low leakage field and vibration motor

Novel design topology for low leakage field and vibration motor
复制标题

低漏磁场和振动电机的新颖设计拓扑

DOI:
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发表时间:
2017
期刊:
影响因子:
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通讯作者:
L. T. Ergene
L. T. Ergene
中科院分区:
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文献类型:
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作者:
S. Salon;L. T. Ergene

文献摘要

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目的: 本文的目的是介绍一种新颖的电动机设计拓扑,该电动机基本上没有任何正常的交变磁力源。 设计/方法论/方法: 使用二维(2D)和三维(3D)有限元方法来分析所提出的机器的电磁性能。 3D 积分方程用于计算标量势。给出了详细的制造过程和测试结果。 研究结果 新设计将消除核心振动、槽通过频率振动和扭矩脉动。该电机还具有建成后外部磁场可控可调的特性。 社会影响 这种方法提高了电机效率。 原创性/价值: 所提出的机器具有低磁场和低振动,因此可以在需要低外部磁场的地方使用。
Purpose: The purpose of the paper is to introduce a novel design topology for an electric motor, which has essentially none of the normal sources of magnetic alternating force. Design/methodology/approach: Two-dimensional (2D) and three-dimensional (3D) finite element methods are used to analyze the electromagnetic performance of the proposed machine. 3D integral equations are used to calculate the scalar potentials. Detailed manufacturing process and the results of the testing are presented. Findings The new design will eliminate core vibrations, slot passing frequency vibrations and torque pulsations. The motor also has the property that the external magnetic field is controllable and tunable after the construction. Social implications This approach increases the motor efficiency. Originality/value: The proposed machine has low field and vibration, so it can be used where low exterior fields are required.