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The electrical conductivity and EMI shielding properties of polyurethane foam/silicone rubber/carbon black/nanographite hybrid composites

机译:聚氨酯泡沫/硅橡胶/炭黑/纳米型混合复合材料的电导率和EMI屏蔽性能

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Electrically conductive nanocomposites based on an open cell polyurethane foam were fabricated by dip-coating of the PU foam in a cross-linkable doping solution. The doping solution was prepared by mixing of room temperature vulcanizing silicone rubber, and a hybrid of conductive filler systems consisted of carbon black and graphite nanoplates in n-hexane as a solvent. The influence of conductive filler types and GN: CB ratio at a constant concentration, on the electrical conduction, dielectric properties in the frequency range of 10(degrees)-10(5) Hz, and electromagnetic wave interference shielding effectiveness (SE) in the X-band frequency (8.2-12.4 GHz) were studied. SEM images showed the formation of continuous conductive networks by both CB and GNP particles within silicon rubber. The impedance analysis results revealed highest electrical resistance of nanocomposite based on GNP while by incorporation of CB, the electrical conductivity of hybrid systems increased. The EMI SE results indicated reflection loss as the dominant shielding mechanism in all samples. Higher absorption loss in the hybrid nanocomposites in compared with GNP based composite was observed. POLYM. COMPOS., 39:3452-3460, 2018. (c) 2017 Society of Plastics Engineers
机译:基于开放电池聚氨酯泡沫的导电纳米复合材料通过在可交联掺杂溶液中的PU泡沫的浸涂制备。通过混合室温硫化硅橡胶制备掺杂溶液,并且导电填料系统的杂种由N-己烷中的炭黑和石墨纳米板组成,作为溶剂。导电填料类型和GN:CB比在恒定浓度下的影响,在10(度)-10(5)Hz的频率范围内的导通,电介质特性,以及电磁波干扰屏蔽效果(SE)研究了X波段频率(8.2-12.4 GHz)。 SEM图像显示CB和GNP颗粒在硅橡胶中形成连续导电网络。阻抗分析结果揭示了基于GNP的纳米复合材料的最大电阻,同时通过掺入CB,杂化系统的电导率增加。 EMI SE结果表明反射损耗作为所有样品中的主要屏蔽机制。观察到与基于GNP基复合材料相比,杂化纳米复合材料中的较高吸收损失。聚合物。 Compos。,39:3452-3460,2018。(c)2017塑料工程师协会

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