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Stainless steel/polyester woven fabrics and copper/polyester woven fabrics: Manufacturing techniques and electromagnetic shielding effectiveness

机译:不锈钢/聚酯机织织物和铜/聚酯机织织物:制造技术和电磁屏蔽效能

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摘要

This study uses metallic wires, stainless steel (SS) wires, and copper (Cu) wires as the core and 75 denier polyester (PET) fibers as the wrap material to form the metal/PET wrapped yarns. The optimal SS/PET and Cu/PET wrapped yarns are then made into different woven fabrics. The test results of the metallic wrapped yarns show that the optimal tenacity occurs with the wrapping count being 12 turns/cm, while the metal/PET woven fabrics have a low surface resistivity due to the conductive metal/PET wrapped yarns along the weft direction. An increasing number of laminating layers increases the electromagnetic shielding effectiveness (EMSE) while decreasing the air permeability of the woven fabrics. The laminating angle is also proportional to the EMSE of the woven fabrics. In sum, the combination of metal wires and PET fibers provides the resulting woven fabrics with good EMSE.
机译:这项研究使用金属线,不锈钢(SS)线和铜(Cu)线作为芯线,并使用75旦尼尔聚酯(PET)纤维作为包裹材料来形成金属/ PET包裹的纱线。然后将最佳的SS / PET和Cu / PET包裹纱线制成不同的机织织物。金属包覆纱的测试结果表明,当缠绕数为12转/ cm时,出现了最佳的韧性,而金属/ PET织造织物由于沿纬线方向的导电金属/ PET包覆纱具有低的表面电阻率。越来越多的层压层增加了电磁屏蔽效率(EMSE),同时降低了机织织物的透气性。层压角度也与机织织物的EMSE成正比。总之,金属丝和PET纤维的组合为所得的机织织物提供了良好的EMSE。

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