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Magnetic circuit design by topology optimization for Lorentz force maximization in a microspeaker

机译:通过拓扑优化设计磁路,以使微型扬声器中的洛仑兹力最大化

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摘要

Bipolar magnets are common in most magnetic circuits, but circuit efficiency can be enhanced if multipolar magnets are used instead. However, the use of multipolar magnets is rare. In this investigation, the possibility of using multipolar magnets for maximizing the Lorentz force in a microspeaker is considered. The design problem of a multipolar magnetic circuit is formulated as a topology optimization problem. The circuit design region is discretized by finite elements, and a material state among a multipolar magnet, a yoke and air for every element is so determined as to maximize a desired Lorentz force component. Numerical results show that multipolar magnetic circuits obtained by the topology optimization outperform a conventional bipolar circuit.
机译:双极磁体在大多数磁路中很常见,但是如果改用多极磁体,则可以提高电路效率。但是,很少使用多极磁体。在这项研究中,考虑了使用多极磁体来最大化微型扬声器中的洛伦兹力的可能性。将多极磁路的设计问题表述为拓扑优化问题。电路设计区域由有限元离散化,并且确定每个元素的多极磁体,磁轭和空气之间的材料状态,以使所需的洛伦兹力分量最大化。数值结果表明,通过拓扑优化获得的多极磁路优于传统的双极电路。

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  • 来源
    《Journal of Mechanical Science and Technology》 |2008年第9期|1699-1706|共8页
  • 作者

    Woochul Kim; Yoon Young Kim;

  • 作者单位

    CAE/TMR Group Storage System Division Semiconductor Business Samsung Electronics Co. Ltd 416 Maetan-3Dong Yeongtong-Gu Suwon City Gyeonggi-Do Republic of Korea 443-742;

    National Creative Research Initiatives Center for Multiscale Design Institute of the Advanced Machinery Design and School of Mechanical and Aerospace Engineering Seoul National University Slim-dong San 56-1 Kwanak-gu Seoul 151-742 Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetic circuit; Lorentz force; Topology optimization; Microspeaker;

    机译:磁路;洛仑兹力;拓扑优化;微型扬声器;

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