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Electrical and Magnetodielectric Properties of Magneto-Active Fabrics for Electromagnetic Shielding and Health Monitoring

机译:用于电磁屏蔽和健康监测的磁活性织物的电和磁介电性能

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摘要

An efficient, low-cost and environmental-friendly method to fabricate magneto-active fabrics (MAFs) based on cotton fibers soaked with silicone oil and iron oxide microfibers (mFe) at mass fractions 2 wt.%, 4 wt.% and 8 wt.% is presented. It is shown that mFe induce good magnetic properties in MAFs, which are subsequently used as dielectric materials for capacitor fabrication. The electrical properties of MAFs are investigated in a static magnetic field with intensities of 0 kA/m, 160 kA/m and 320 kA/m, superimposed on a medium-frequency electric field. The influence of mFe on the electrical capacitance and dielectric loss tangent is determined, and it can be observed that the electrical conductivity, dielectric relaxation times and magnetodielectric effects are sensibly influenced by the applied magnetic and electric fields. The results indicate that the MAFs have electrical properties which could be useful for protection against electromagnetic pollution or for health monitoring.
机译:一种有效,低成本和环保的方法,以浸有质量分数为2 wt%,4 wt%和8 wt%的硅油和氧化铁微纤维(mFe)的棉纤维为基础,制造磁活性织物(MAF) 。% 被表达。结果表明,mFe在MAF中感应出良好的磁性能,随后将其用作电容器制造的介电材料。在强度为0 kA / m,160 kA / m和320 kA / m的静磁场中,叠加在中频电场上,研究MAF的电性能。确定了mFe对电容和介电损耗角正切的影响,可以观察到,所施加的磁场和电场会明显影响电导率,介电弛豫时间和磁介电效应。结果表明,MAF具有电气特性,可用于防止电磁污染或健康监测。

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