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首页> 外文期刊>IEEE Transactions on Magnetics >Magnetostatic Stress: Insightful Analysis and Manipulation of Maxwell's Stress Equation for Magnetostatics
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Magnetostatic Stress: Insightful Analysis and Manipulation of Maxwell's Stress Equation for Magnetostatics

机译:静磁应力:静磁麦克斯韦应力方程的深入分析和处理

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摘要

Maxwell's stress equation for magnetostatics identifies a tensile stress in the direction of the magnetic field and a pressure normal to this direction. For an isolated, differential current element, Maxwell's stress equation is recast using a variant of Stokes' Theorem. The recast stress equation eliminates the tensile stress in the direction of the magnetic field and establishes a stress that is normal to the magnetic field, directed inward toward the differential current element. For two separated current elements, Maxwell's stress equation is also recast, identifying a constant line stress directionally aligned between the two current elements. The magnitude of the line stress is equivalent to the two current element Neumann force. The analysis and manipulation of Maxwell's stress equation provides some insight into magnetostatic stresses and establishes additional tools for the electrical engineer when analyzing magnetostatic system stresses.
机译:麦克斯韦的静磁应力方程式确定了磁场方向的拉应力和垂直于该方向的压力。对于隔离的差分电流元件,使用斯托克斯定理的变体来重铸麦克斯韦应力方程。重铸应力方程式消除了在磁场方向上的拉应力,并建立了一个垂直于磁场的应力,该应力向内指向差动电流元件。对于两个分离的电流元件,还将重绘麦克斯韦的应力方程式,确定在两个电流元件之间定向对齐的恒定线应力。线应力的大小等于两个电流单元的诺伊曼力。麦克斯韦应力方程的分析和处理为静磁应力提供了一些见识,并为电气工程师在分析静磁系统应力时建立了其他工具。

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