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Magnetic force distributions in saturated magnetic system using magnetic charge method and other methods

机译:使用磁荷法和其他方法的饱和磁系统中的磁力分布

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This paper emphasizes on the magnetic charge method to determine the magnetic force density due to mechanical deformation for nonlinear magnetic materials. For incompressible and nonlinear magnetic materials, theoretical expression for magnetic force density due to mechanical deformation generating from Korteweg-Helmholtz force density (KH), Kelvin force density (KV), and magnetic charge force density (MC) methods have been proven to be equivalent. The Maxwell stress tensor method (MX) and MC have been employed to calculate magnetic force density due to mechanical deformation. Numerical implementation of the equivalent magnetic charge method is quite simple, so the local force density for nonlinear material can be readily obtained. To exhibit validity and usefulness of the proposed method, an axisymmetric actuator and an electromagnet with highly saturated cantilever plate have been examined.
机译:本文着重介绍了利用磁力法确定非线性磁性材料由于机械变形而产生的磁力密度的方法。对于不可压缩的和非线性的磁性材料,已经证明了由Korteweg-Helmholtz力密度(KH),Kelvin力密度(KV)和磁荷力密度(MC)方法产生的机械变形引起的磁力密度的理论表达式是等效的。麦克斯韦应力张量法(MX)和MC已用于计算由于机械变形而产生的磁力密度。等效磁化方法的数值实现非常简单,因此可以轻松获得非线性材料的局部力密度。为了展示所提出方法的有效性和实用性,已经研究了轴对称致动器和具有高度饱和悬臂板的电磁体。

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