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Alternating-current electrical properties of graphite, carbon-black and carbon-fiber polymeric composites

机译:石墨,炭黑和碳纤维聚合物复合材料的交流电性能

摘要

Electrical conductivity measurements of graphite, carbon-black and carbon-fiber polymeric composites reported over a broad frequency range covering from d.c. to 109 Hz are comparatively discussed. The d.c. electrical conductivity data from carbon-black and graphite composites exhibit a conducting additive concentration dependence which can be explained on the basis of percolation theory. In both systems, tunneling conduction among particles appears as the predominant mechanism in the concentration range investigated. A frequency-dependent conductivity is observed which is stronger the lower the additive concentration. A modification of the percolation theory which includes the contribution of finite-size clusters is invoked to explain the frequency dependence of the conductivity. In carbon-fiber composites, the high fiber orientation gives rise to materials with higher electrical conductivity levels than those found for particulate composites. The high anisotropic conductivity additionally exhibits an almost absence of frequency dependence. This is explained by assuming the occurrence of a highly interconnected fiber network with almost an absence of electrical barriers. © 2001 Elsevier Science Ltd. All rights reserved.
机译:据报道,在覆盖直流电的较宽频率范围内,石墨,炭黑和碳纤维聚合物复合材料的电导率测量结果。至109 Hz至109 Hz进行了比较讨论。直流电炭黑和石墨复合材料的电导率数据显示出导电添加剂浓度依赖性,这可以根据渗流理论进行解释。在这两个系统中,颗粒之间的隧道传导似乎是所研究浓度范围内的主要机理。观察到随频率变化的电导率,添加剂浓度越低,电导率越强。渗流理论的一种修改,包括有限大小簇的贡献,被用来解释电导率的频率依赖性。在碳纤维复合材料中,高纤维取向导致材料的电导率水平高于颗粒复合材料。另外,高的各向异性电导率几乎没有频率依赖性。这是通过假设高度互连的光纤网络的出现而几乎没有电气障碍来解释的。 ©2001 Elsevier ScienceLtd。保留所有权利。

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