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Development of metallic core-spun yarns and hybrid conductive fabrics for electromagnetic shielding applications

机译:用于电磁屏蔽应用的金属芯纺纱纱线和混合导电织物的研制

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摘要

Various metallic core-sheath yarns have been prepared and conductive fabrics are woven using sample loom for electromagnetic shielding applications. The core-sheath yarn is prepared using stainless steel and polyester slivers with different proportions of SS fibre content. The conductive fabrics are produced with different warp and weft patterns. The shielding effectiveness (SE) of fabric has been tested in the frequency range from 50 MHz to 1.5 GHz according to ASTM D4935. The test results reveal that the fabric with cell type structures shows better shielding effectiveness (SE) than the plain weave structures. The increase in metal content does not influence the SE of fabric having conductive fibres in one direction. However, fabric having conductive fibres in warp and weft directions shows improved shielding effectiveness. When the grid size is increased, the shielding effectiveness is decreased. It is concluded that the fabric with small grid size and cell type weave structures could provide effective shielding as compared to plain woven fabric in low frequency range.
机译:已经制备了各种金属芯鞘纱线,并且使用用于电磁屏蔽应用的样品织机对导电织物编织。芯鞘纱线采用不锈钢和聚酯纤维制备,具有不同比例的SS纤维含量。用不同的经线和纬纱图案生产导电织物。根据ASTM D4935,织物的屏蔽效能(SE)已经在50MHz至1.5GHz的频率范围内进行了测试。测试结果表明,具有细胞型结构的织物显示出比平原编织结构更好的屏蔽效果(SE)。金属含量的增加不会影响在一个方向上具有导电纤维的织物的SE。然而,具有经纱和纬纱方向上具有导电纤维的织物显示出改善的屏蔽效果。当网格尺寸增加时,屏蔽效果降低。结论是,与低频范围内的普通织物相比,具有小电网尺寸和细胞型编织结构的织物可以提供有效的屏蔽。

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