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首页> 外文期刊>IEEE Transactions on Industry Applications >A Feasibility Study of Additively Manufactured Heat Guides for Enhanced Heat Transfer in Electrical Machines
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A Feasibility Study of Additively Manufactured Heat Guides for Enhanced Heat Transfer in Electrical Machines

机译:增材制造的热导在电机中增强传热的可行性研究

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摘要

This article investigates a new heat extraction approach for application to high-specific-output electrical machines. The proposed technique employs thermally conductive heat guides (HGs) to provide supplementary heat evacuation paths for the machine regions, which are particularly susceptible to high power loss. Here, the research focus has been placed on the stator-winding assembly. The HGs investigated in this article rely solely on conductive heat transfer, in contrast to the solutions involving working fluid phase change, e.g., heat pipes. It is intended for the HGs to be an integral part of the stator-winding assembly, for e.g., HGs incorporated in the winding active and/or end region. Such arrangement, however, imposes several design challenges. These are related to the HGs being a source of additional power loss due to the machine's magnetic flux leakage. The objective of this study is to evaluate a concept of HGs, which are immune to the external magnetic field with good heat transfer capability. To facilitate that, a combination of detailed multiphysic design optimization and modern additive manufacturing (i.e., selective laser melting method) has been employed here. The theoretical analysis has been supplemented with an experimental work. A number of stator-winding hardware exemplars (motorettes) incorporating alternative HG designs have been fabricated and tested. This article provides a new set of experimental data in support of the authors' initial work on HGs' thermal behavior. The new research findings show that the optimized HGs allow for up to 85% improvement in dissipative heat transfer from the winding body and insignificant additional power loss, for the analyzed stator-winding assembly.
机译:本文研究了一种应用于高比输出电机的新型排热方法。所提出的技术采用导热热导(HGs)为机器区域提供补充的热量排出路径,这些路径特别容易受到高功率损耗的影响。在这里,研究重点放在定子绕组组件上。与涉及工作流体相变的解决方案(例如热管)相比,本文研究的HG仅依靠传导热传递。 HG旨在成为定子-绕组组件的组成部分,例如,结合在绕组有效和/或端部区域中的HG。然而,这种布置带来了一些设计挑战。这些与HG由于机器的磁通泄漏而导致额外的功率损耗有关。这项研究的目的是评估HG的概念,它们具有良好的传热能力,不受外界磁场的影响。为了促进这一点,这里采用了详细的多物理场设计优化和现代增材制造(即,选择性激光熔化方法)的组合。理论分析得到了实验工作的补充。已经制造并测试了许多采用替代HG设计的定子绕组硬件示例(电动机)。本文提供了一组新的实验数据,以支持作者关于HGs热行为的初步工作。新的研究结果表明,对于所分析的定子-绕组组件,优化的HG可将绕组主体的耗散热传递提高多达85%,并且附加的功率损耗也很小。

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