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The effect of milled carbon fibre filler on electrical conductivity in highly conductive polymer composites

机译:研磨的碳纤维填料对高导电聚合物复合材料电导率的影响

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Carbon based composites are extensively used in applications such as in polymer composite bipolar plates. This study was conducted to investigate the potential of both the use of milled carbon fibre as a conductive filler in a composite and the adaption of the General Effective Media (GEM) model to predict the electrical conductivity of the polymer composite produced. Polymer composites with various loading concentrations of the conductive filler with epoxy (EP) resin were developed using the compression moulding technique. Incorporating carbon nano tube (CNT) and carbon black (CB) as secondary fillers on carbon fibre (CF) reinforces epoxy composites aided in increasing the electrical conductivity of the composites. The addition of small amounts of CNT and CB as secondary fillers in hybrid systems increased the through-plane conductivity to 40.3 S/cm and 19.9 S/cm, respectively. The high aspect ratio and small size of the CNT filled the gaps between CF as primary filler so that there was a more conductive path. These phenomena increased the electrical conductivity of the CNT/CF/EP composites to a level higher than that of the CB/CF/EP composites. The flexural strength of CF/EP also improved from 64.37 MPa to 80 MPa and 70 MPa by adding CNT and CB, respectively. The dispersion and conductive paths mechanism were also investigated using scanning electron microscopy (SEM). (C) 2016 Published by Elsevier Ltd.
机译:碳基复合材料广泛用于聚合物复合双极板等应用中。进行这项研究的目的是研究在复合材料中使用磨碎的碳纤维作为导电填料的潜力以及通用有效介质(GEM)模型的适应性,以预测所生产的聚合物复合材料的电导率。使用压缩成型技术开发了具有不同负载浓度的导电填料与环氧树脂(EP)的聚合物复合材料。将碳纳米管(CNT)和炭黑(CB)作为辅助填料掺入碳纤维(CF)可以增强环氧复合材料,从而有助于提高复合材料的电导率。在混合体系中添加少量的CNT和CB作为次要填充剂,可将整个平面的电导率分别提高到40.3 S / cm和19.9 S / cm。 CNT的高长宽比和小尺寸填补了CF作为主要填充剂之间的间隙,因此存在更多的导电路径。这些现象将CNT / CF / EP复合材料的电导率提高到比CB / CF / EP复合材料更高的电导率。通过添加CNT和CB,CF / EP的抗弯强度也从64.37 MPa分别提高到80 MPa和70 MPa。还使用扫描电子显微镜(SEM)研究了色散和导电路径机理。 (C)2016由Elsevier Ltd.出版

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