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Temperature Dependence of the Conductivity Behavior of Graphite Nanoplatelet-Filled Epoxy Resin Composites

机译:石墨纳米薄板填充环氧树脂复合材料电导行为的温度依赖性

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摘要

In this article, epoxy/graphite nanoplatelet (GNP) conductive composites with the low percolation threshold of similar to 0.5 vol % were prepared. The effect of microstructure, particularly the spatial distribution of fillers in the matrix on the resistivity and its dependence on temperature, also was investigated. It is suggested that the high aspect ratio and good distribution of GNPs in the matrix contribute to the low threshold of the composite. The thermal-electrical behavior of the composite is also significantly influenced by the GNP content and microstructure of the composite. When the GNP content is greater than percolation threshold, a noticeable positive temperature coefficient of resistivity disappears. It is explained by the unique conductive network formed by plane contact between GNPs, which is hardly affected by the expansion of matrix during heating.
机译:在本文中,制备了低渗透阈值接近0.5%(体积)的环氧/石墨纳米片(GNP)导电复合材料。还研究了微观结构,特别是基体中填料的空间分布对电阻率及其对温度的依赖性的影响。建议高纵横比和GNP在基质中的良好分布有助于降低复合材料的阈值。复合材料的热电行为也受到复合材料GNP含量和微观结构的显着影响。当GNP含量大于渗滤阈值时,电阻率的正温度系数会消失。这是由GNP之间的平面接触形成的独特导电网络所解释的,该导电网络几乎不受加热过程中基质膨胀的影响。

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