The Effect of a Ferromagnetic Steel Enclosure on Magnetic Shielding Systems: Analysis, Modeling, and Experimental Validation

Machines Pub Date : 2024-05-05 DOI:10.3390/machines12050317
Yuan Cheng, Jiang Huang, Yaozhi Luo, Feng Lu
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Abstract

The magnetic shielding device, made of high-permeability soft magnetic material, is sensitive to external influences and requires a protective steel enclosure. A steel enclosure, being strongly ferrimagnetic, can alter the surrounding magnetic field distribution, thus impacting the shielding effectiveness. This study proposes a novel analytical approach to quantify this effect, which has not been previously researched. The method develops a simplified finite element simulation model based on the structural symmetry of the steel enclosure. By using this model, this study analyzes the impact of steel structures with varying heights, widths, and remanent magnetization values. The validity of the method is confirmed through experimental tests on steel buildings. The findings offer insights into the optimal placement of magnetic shielding systems and provide theoretical guidance for designing large-scale magnetic shielding devices.
铁磁钢外壳对磁屏蔽系统的影响:分析、建模和实验验证
磁屏蔽装置由高渗透性软磁材料制成,对外部影响非常敏感,需要一个保护性钢外壳。钢外壳具有强铁磁性,会改变周围的磁场分布,从而影响屏蔽效果。本研究提出了一种新颖的分析方法来量化这种以前从未研究过的影响。该方法基于钢外壳的结构对称性,建立了一个简化的有限元模拟模型。通过使用该模型,本研究分析了不同高度、宽度和剩磁值的钢结构的影响。通过对钢结构建筑的实验测试,证实了该方法的有效性。研究结果为磁屏蔽系统的最佳布置提供了见解,并为设计大型磁屏蔽装置提供了理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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