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The effects of fabric lamination angle and ply number on electromagnetic shielding effectiveness of weft knitted fabric-reinforced polypropylene composites

机译:织物层压角度和层数对纬编织物增强聚丙烯复合材料电磁屏蔽效能的影响

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In this study, it was aimed to investigate the effects of fabric lamination angle and fabric ply number on electromagnetic shielding effectiveness (EMSE) of weft knitted fabric-reinforced polypropylene composites. Knitted fabric-reinforced composites are composed of aramid yarn, polypropylene yarn, and copper wire. Polypropylene is the matrix phase and the aramid yarn and copper wires are the reinforcement phase of the composite materials. It was achieved to form 1.5 to 3 mm thickness composites. The composites have nearly 20–50 dB electromagnetic shielding values. To form the knitted fabrics, 7G semiautomatic flat knitting machine was used. The composites were formed by a laboratory-type hot press. EMSE of composites were tested by using ASTM D 4935 coaxial test fixture in 27–3000 MHz frequency band. Lamination angle and ply number parameters were examined related to EMSE of structures. For this study, three different structures were knitted and named as plain knit, 1×1 rib knit, and half cardigan knit. To determine the effect of lamination angle of composites on electromagnetic shielding performance, the composites were produced in two different lamination angles as 0°/90°/0°/90° and 0°/45°/0°/45°. To determine the effect of fabric ply number of composites on electromagnetic shielding performance, the composites were produced in two and four plies. It was observed that the fabric ply number and lamination angle does not affect the EMSE of composite materials very much. It was determined that weft knitted reinforced composite structures have appropriate and high EMSE values for electromagnetic applications. This knitted fabric-reinforced polypropylene composites are flexible and suitable for other industrial applications as civil engineering, aerospace, etc.
机译:在这项研究中,目的是研究织物层压角度和织物层数对纬编针织物增强聚丙烯复合材料的电磁屏蔽效能(EMSE)的影响。针织物增强复合材料由芳纶纱,聚丙烯纱和铜线组成。聚丙烯是基体相,芳纶纱和铜线是复合材料的增强相。实现了形成1.5至3mm厚度的复合材料。复合材料具有近20–50 dB的电磁屏蔽值。为了形成针织物,使用了7G半自动横机。通过实验室型热压机形成复合材料。复合材料的EMSE通过使用ASTM D 4935同轴测试夹具在27–3000 MHz频段内进行测试。检验了与结构的EMSE相关的层压角和层数参数。在本研究中,编织了三种不同的结构,分别命名为平纹针织,1×1罗纹针织和半开衫针织。为了确定复合材料的层压角度对电磁屏蔽性能的影响,以两种不同的层压角度生产复合材料,分别为0°/ 90°/ 0°/ 90°和0°/ 45°/ 0°/ 45°。为了确定复合材料的织物层数对电磁屏蔽性能的影响,将复合材料分为两层和四层。观察到织物层数和层压角度对复合材料的EMSE影响不大。已确定纬编增强复合材料结构在电磁应用中具有适当且较高的EMSE值。这种针织物增强的聚丙烯复合材料具有柔韧性,适用于土木工程,航空航天等其他工业应用。

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