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Magnetic Shielding Performance of Thin Metal Sheets Near Power Cables

机译:电力电缆附近的薄金属板的磁屏蔽性能

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摘要

In this study, wrapping conductors with thin magnetic materials is proposed as a magnetic shielding method. The 0.1-mm-thick metal sheets of mu-metal, grain-oriented electrical steel, and nonoriented electrical steel were prepared from commercial alloy sheets through cold rolling and followed high temperature annealing. For magnetic fields generated by three-phase electric currents, mu-metal was the best in shielding performance when magnetic field at the shield point is about 90 $mu$ T, yielding an excellent shielding factor lower than 0.1 in the vicinity of the shield. Above 490 $mu$ T, however, silicon steels were better than mu-metal. Double-layer shielding with grain-oriented silicon steel (inner) and mu-metal (outer) resulted in an excellent shielding factor up to 490 $mu$T. These results are due to change in hierarchy of magnetic permeabilities of the materials with increasing magnetic field strength. For magnetic fields by single-phase electric current, on the other hand, a magnetic shield rather increased magnetic field or had no practical effect on shielding performance. This result is explained by superposition of original field vectors and secondary field vectors created by eddy currents within the materials.
机译:在这项研究中,提出了用薄磁性材料包裹导体作为磁屏蔽方法。由市售合金薄板经冷轧和高温退火制成厚度为0.1毫米的mu-metal,方向性电工钢和无方向性电工钢。对于由三相电流产生的磁场,当屏蔽点处的磁场约为90μT时,μ-金属的屏蔽性能最佳,在屏蔽附近产生的屏蔽系数低于0.1。然而,在490μM以上时,硅钢比μ-金属更好。用晶粒取向硅钢(内部)和mu-metal(外部)进行双层屏蔽可产生高达490μmu$ T的优异屏蔽系数。这些结果归因于材料的磁导率等级随磁场强度的增加而变化。另一方面,对于单相电流产生的磁场,磁屏蔽会增加磁场,或者对屏蔽性能没有实际影响。通过叠加材料中涡流产生的原始场矢量和次级场矢量来解释此结果。

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