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Three parameters optimization of acting force of DC electromagnet

机译:直流电磁铁作用力的三参数优化

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The paper proposes an optimized geometry for a DC electromagnet combining the experimental design (DOE) and FEM. The optimization problem takes into account three geometrical parameters (coil shape ratio, support thickness ratio and support height ratio) and consists in maximization of the acting force related to the largest air-gap, preserving the global dimensions of the device (external radius, height of carcass, height of plunger with support) and the cross-section of the coil. The method by zooms without computation of models was applied to increase with 3.17% the acting force related to the airgap of 41 mm. The determination of the electromagnetic force was made by the Maxwell Stress Tensor technique implemented in FEMM software.
机译:本文结合实验设计(DOE)和FEM提出了一种优化的直流电磁铁几何形状。优化问题考虑了三个几何参数(线圈形状比,支座厚度比和支座高度比),并且涉及与最大气隙相关的作用力的最大化,同时保留了设备的整体尺寸(外部半径,高度胎体,带支撑的柱塞的高度)和线圈的横截面。无需模型计算即可使用缩放方法将与41 mm气隙相关的作用力提高3.17%。电磁力的确定是通过在FEMM软件中实施的Maxwell应力张量技术进行的。

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