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首页> 外文期刊>Applied Computational Electromagnetics Society journal >nm Coulombian Model for 3D Analytical Calculation of the Torque Exerted on Cuboidal Permanent Magnets with Arbitrary Oriented Polarizations
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nm Coulombian Model for 3D Analytical Calculation of the Torque Exerted on Cuboidal Permanent Magnets with Arbitrary Oriented Polarizations

机译:nm库仑模型,用于对具有任意定向极化的立方形永磁体施加的扭矩进行3D分析计算

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摘要

This paper proposes improved analytical expressions of the torque on cuboidal permanent magnets. Expressions are valid for any relative magnet position and for any polarization direction. The analytical calculation is made by replacing polarizations by distributions of magnetic charges on the magnet poles (coulombian approach). The torque exerted on the second magnet is calculated by Lorentz force formulas for any arbitrary position. The three components of the torque are written with functions based on logarithm and arc-tangent. Results have been verified and validated by comparison with finite-element calculation. Further, the torque can be obtained with respect to any reference point. Although these equations seem rather complicated, they enable an extremely fast and accurate calculation of the torque exerted between two permanent magnets.
机译:本文提出了改进的立方永磁体转矩分析表达式。该表达式对于任何相对磁体位置和任何极化方向均有效。通过用磁极上的电荷分布替换极化来进行分析计算(库仑方法)。洛伦兹力公式可针对任何任意位置计算施加在第二磁体上的扭矩。扭矩的三个分量用基于对数和反正切的函数编写。通过与有限元计算进行比较,对结果进行了验证和验证。此外,可以相对于任何参考点获得扭矩。尽管这些方程式看起来相当复杂,但它们可以对两个永磁体之间施加的扭矩进行极其快速而准确的计算。

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