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Proposed methodology to combine design concept and manufacturing process selection for distributed wound stator cores

机译:提出的方法,以将分布式卷绕定子核心的设计概念和制造过程选择组合

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Current induction motor designs account for the majority of the motors used in the world today. However, their designs have not evolved to the extent to which permanent magnet machines have within the automotive and industrial sectors. Current methods of assembling distributed wound stator cores have the known issues of high process scrap, low slot fill and winding quality issues caused by assembly tooling. Design for Manufacturing and Assembly (DFMA) can remove these manufacturing issues but there is a conflict between DFMA and motor performance. By quantitatively assessing conventional and novel stator core design features and the available manufacturing technologies, this paper proposes a method of motor component design and process selection which enables multiple novel component design features to be effectively combined and assessed for their manufacturability and their electromagnetic performance. Using this methodology, this paper also shows that there are clear limitations to the current manufacturing technology used for stator core production.
机译:目前的感应电机设计占今天世界上使用的大部分电机的账户。然而,他们的设计并未演变为永久磁铁机在汽车和工业领域的程度上。分布式卷绕定子核心组装的目前的方法具有高工艺废料,低槽填充和装配工具引起的绕组质量问题的已知问题。制造和组装(DFMA)的设计可以消除这些制造问题,但DFMA和电机性能之间存在冲突。通过定量评估常规和新型定子核心设计特征和可用的制造技术,本文提出了一种电动机部件设计和工艺选择的方法,其能够有效地结合和评估它们的可制造性及其电磁性能的多种新型组件设计特征。使用这种方法,本文还表明,目前用于定子核心生产的现有制造技术存在明显的限制。

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