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Evaluation on manufacturing technique and electromagnetic shielding effectiveness of functional complex fabrics

机译:功能性复合面料的生产工艺及电磁屏蔽效能评价

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摘要

Modern technology has advanced swiftly, and thus, people have higher and higher demands for functional textiles. In order to have textiles with electromagnetic shielding effectiveness (EMSE) and far infrared emissivity, in this research, we fabricated three types of bamboo charcoal/metal (BC/M) complex yarns with metal wires as the core yarn and bamboo charcoal textured yarn as the wrapped yarns, with a rotor twister machine. Two manufacture parameters for the complex yarns were rotor speed (8000 rpm) and wrapped number of the BC/M complex yarns (4 turns/cm). BC/M complex woven fabrics were made of cotton yarn (warp yarn) and BC/M complex yarns (weft yarns), using a loom machine. The surface resistivities of BC/M complex woven fabrics were first measured. Then, EMSE evaluation was performed to test BC/M complex woven fabrics with different lamination angles. The BC/M complex woven fabrics exhibited higher surface resistivity than other woven fabrics by 1.71 × 10~(10)Ω/Sq; and the EMSE was 50–60 dB when the lamination number was 6 at incident frequencies between 1.83 and 3 GHz, which was satisfactory.
机译:现代技术飞速发展,因此人们对功能性纺织品的要求越来越高。为了使纺织品具有电磁屏蔽效能(EMSE)和远红外发射率,在本研究中,我们制造了三种类型的竹炭/金属(BC / M)复合纱线,其中金属丝为芯线,而竹炭变性纱线为用转杯加捻机将包裹的纱线包起来。复合纱线的两个制造参数是转杯转速(8000 rpm)和BC / M复合纱线的卷绕数(4转/厘米)。使用织机,由棉纱(经纱)和BC / M复合纱(纬纱)制成BC / M复合机织物。首先测量BC / M复合机织织物的表面电阻率。然后,进行EMSE评估以测试具有不同层压角度的BC / M复合机织物。 BC / M复合机织织物的表面电阻率比其他机织织物高1.71×10〜(10)Ω/ Sq。当入射频率在1.83至3 GHz之间时,层压数为6时,EMSE为50–60 dB,这是令人满意的。

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