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首页> 外文期刊>Journal of Engineered Fibers and Fabrics >The effects of metal type, number of layers, and hybrid yarn placement on the absorption and reflection properties in electromagnetic shielding of woven fabrics
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The effects of metal type, number of layers, and hybrid yarn placement on the absorption and reflection properties in electromagnetic shielding of woven fabrics

机译:金属类型,层数和混合纱线的放置对机织物电磁屏蔽吸收和反射性能的影响

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摘要

In this study, stainless steel, copper, and silver wires were intermingled with two polyamide 6.6 filaments through the commingling technique to produce three-component hybrid yarns. The produced hybrid yarns were used as weft in the structure of plain woven fabric samples. The electromagnetic shielding effectiveness parameters of samples were measured in the frequency range of 0.8–5.2?GHz by the free space technique. The effects of metal hybrid yarn placement, number of fabric layers, metal types, and wave polarization on the electromagnetic shielding effectiveness and absorption and reflection properties of the woven fabrics were analyzed statistically at low and high frequencies separately. As a result, the samples have no shielding property in the warp direction. Metal types show no statistically significant effect on electromagnetic shielding effectiveness. However, fabrics containing stainless steel have a higher absorption power ratio than copper and silver samples. Double-layer samples have higher electromagnetic shielding effectiveness values than single-layer fabrics in both frequency ranges. However, the number of layers does not have a significant effect on the absorbed and reflected power in the range of 0.8–2.6?GHz. There was a significant difference above 2.6?GHz frequency for absorbed power ratio. An increase in the density of hybrid yarns in the fabric structure leads to an increase in the electromagnetic shielding effectiveness values. Two-metal placement has a higher absorbed power than the full and one-metal placements, respectively. The samples which have double layers and including metal wire were in their all wefts reached the maximum electromagnetic shielding effectiveness values for stainless steel (78.70?dB), copper (72.69?dB), and silver composite (57.50?dB) fabrics.
机译:在这项研究中,通过混合技术将不锈钢,铜和银线与两条聚酰胺6.6细丝混合在一起,以生产三组分混合纱。产生的混合纱线在平纹织物样品的结构中用作纬纱。使用自由空间技术在0.8–5.2?GHz的频率范围内测量了样品的电磁屏蔽效率参数。分别在低频和高频下统计分析了金属混合纱线的放置,织物层数,金属类型和波极化对机织织物的电磁屏蔽效果以及吸收和反射性能的影响。结果,样品在翘曲方向上没有屏蔽性能。金属类型对电磁屏蔽效果没有统计学上的显着影响。但是,包含不锈钢的织物比铜和银样品具有更高的吸收功率比。在两个频率范围内,双层样品均具有比单层织物更高的电磁屏蔽效率值。但是,在0.8-2.6?GHz范围内,层数对吸收和反射功率没有显着影响。在2.6?GHz以上的频率上,吸收功率比存在显着差异。织物结构中混合纱线密度的增加导致电磁屏蔽效率值的增加。两金属放置的吸收功率分别高于全金属放置和单金属放置。具有双层且包括金属丝的样品的所有纬线均达到不锈钢(78.70?dB),铜(72.69?dB)和银复合材料(57.50?dB)织物的最大电磁屏蔽效率值。

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