基于部分屏蔽的直流或交流磁场防护

Teodora Spasić, D. Kljajić, K. Kasas-Lazetic, G. Mijatović, M. Milutinov, M. Prsa
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引用次数: 0

摘要

随着技术的进步,保护电气设备免受电磁场的影响变得越来越必要。因此,分析如何减小电磁场是很重要的。本文探讨了屏蔽作为减少磁场的一种方法。减少可以通过各种屏蔽几何形状来实现,与长载电流导线同轴放置,以减少屏蔽外的磁场。研究了直流和低频交流磁场(50hz)的屏蔽作用。在直流磁场中,采用高磁导率铁磁材料作为屏蔽层;在交流磁场中,在铁磁材料中加入不同厚度的铜层,利用铜层中的感应电流更有效地减小磁场。计算了遮阳材料厚度和弧长不同组合下的遮阳效果。屏蔽效能的最显著增加发生在最厚的铜层,在屏蔽角180和270度之间。在距离系统轴565 mm处,当角度增加时,屏蔽效能提高2.4倍。研究结果表明,在许多实际情况下,部分屏蔽可以提供良好的保护,并且可以减少材料的使用量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protection Against Exposure to DC or AC Magnetic Field Based on Partial Shielding
With the advancement of technology, it is becoming increasingly necessary to protect electrical devices from electromagnetic fields. For this reason, it is important to analyze how an electromagnetic field can be reduced. This paper examines shielding as a way of reducing magnetic fields. The reduction can be achieved by various shield geometry, placed coaxially with a long current carrying wire, in order to decrease the magnetic field outside the shield. DC and low-frequency AC fields (50 Hz) shielding are investigated. For the DC fields, a shield made of a high permeability ferromagnetic material was applied, while for the AC fields, a copper layer of different thicknesses was added to the ferromagnetic material to reduce the magnetic field more effectively by the currents induced in it. Shielding effectiveness as a parameter applied to quantify the shielding quality was calculated for different combinations of shading material thickness and arc length. The most significant increase in shielding effectiveness occurs at the thickest copper layer, between the shield angles 180 and 270 degrees. At the distance of 565 mm from the system axis, the shielding effectiveness will increase 2.4 times for the specified angle increase. The obtained results show that partial shielding can provide good protection in many practical cases and additionally reduce the amount of used material.
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