4.6 Review

Advanced Manufacturability of Electrical Machine Architecture through 3D Printing Technology

期刊

MACHINES
卷 11, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/machines11090900

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additive manufacturing; electrical machines; 3D-printed windings; magnetic materials

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The emergence of Additive Manufacturing (AM) has revolutionized the electric machine industry by optimizing magnetic flux dynamics, reducing AC conduction effects, and improving thermal management. AM has the potential to reshape the landscape of electric machine components and usher in an era of unprecedented innovation.
The rapid evolution of electric machines requires innovative approaches to boost performance, efficiency, and sustainability. Additive Manufacturing (AM) has emerged as a transformative technique, reshaping the landscape of electric machine components, ranging from magnetic materials to windings and extending to thermal management. In the area of magnetic materials, AM's capacity to fabricate intricate structures optimizes magnetic flux dynamics, yielding advanced shape-profile cores and self-coating laminations for superior performance. In windings, AM's prowess is evident through innovative concepts, effectively mitigating AC conduction effects while reducing weight. Furthermore, AM revolutionizes thermal management, as exemplified by 3D-printed ceramic heat exchangers, intricate cooling channels, and novel housing designs, all contributing to enhanced thermal efficiency and power density. The integration of AM not only transcends conventional manufacturing constraints but also promises to usher in an era of unprecedented electric machine innovation, addressing the intricate interplay of magnetic, winding, and thermal dynamics.

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