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首页> 外文期刊>IEEE Transactions on Magnetics >Magnetoelastic Deformation of Soft and Hard Magnetic Materials Using Virtual Air-Gap Scheme Generating the Magnetic Body Force
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Magnetoelastic Deformation of Soft and Hard Magnetic Materials Using Virtual Air-Gap Scheme Generating the Magnetic Body Force

机译:软和硬磁性材料的磁弹性变形,利用虚拟气隙方案产生磁力

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The magnetoelastic deformations of soft and hard magnetic materials are evaluated by employing the body force calculating methods incorporating the virtual air-gap concept along with the finite-element method. By introducing the virtual air-gap scheme, we have recently developed generalized methods for calculating body force field such as the generalized magnetic charge force density method, the generalized magnetizing current force density method, and the generalized Kelvin force density method. Unlike the conventional methods resulting in a surface force density, these generalized methods are novel methods of evaluating body force density. These generalized methods yield the actual total force, but their distributions have an irregularity, which seems to be random distributions of body force density. Here, we tested the magnetoelastic deformation in soft and hard magnetic materials by adopting the irregular force density itself. To verify the proposed method, a circular soft magnetic material subjected to an externally applied magnetic field and two squared permanent magnets facing each other were tested
机译:通过采用将虚拟气隙概念与有限元方法结合在一起的体力计算方法,可以评估软磁材料和硬磁材料的磁弹性变形。通过引入虚拟气隙方案,我们最近开发了用于计算体力场的通用方法,例如通用磁荷力密度法,通用磁化电流力密度法和通用开尔文力密度法。与导致表面力密度的常规方法不同,这些通用方法是评估体力密度的新方法。这些通用方法产生实际的总力,但是它们的分布具有不规则性,这似乎是体力密度的随机分布。在这里,我们通过采用不规则的力密度本身来测试软磁性和硬磁性材料中的磁弹性变形。为了验证所提出的方法,测试了圆形软磁材料在外部施加磁场的作用下以及两个彼此面对的方形永磁体的作用。

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