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Transport properties of graphite/epoxy composites: Thermal, permeability and dielectric characterization

机译:石墨/环氧树脂复合材料的传输性能:热,磁导率和介电特性

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摘要

In this study nanocomposites were prepared by dispersing three different grades of graphite particles, expanded graphite, commercial graphene nanoplatelets and natural graphite, in a commercial epoxy matrix. Dielectric properties, thermal conductivity and permeability to oxygen of the composites were studied and compared to those of the unfilled epoxy matrix. An increase of all properties is obtained using expanded graphite, suggesting the presence of a good dispersion of the filler in the matrix and a strong polar interactions of the filler with the matrix, attributed to the partially oxidised surfaces of the expanded graphite. All the measured transport properties were fitted with simple mathematical models obtaining good agreement between the experimental results and theoretical predictions. The model parameters were related to the aspect ratio of the filler, defined as the ratio between the in-plane average dimension and the thickness of the reinforcement. An aspect ratio between 1250 and 1550 indicates that graphite thin platelets (or graphene stacks), characterized by a thickness of the order of a few tens of nanometers, were dispersed in the epoxy matrix.
机译:在这项研究中,通过将三种不同等级的石墨颗粒,膨胀石墨,商用石墨烯纳米片和天然石墨分散在商用环氧树脂基质中来制备纳米复合材料。研究了复合材料的介电性能,导热性和氧渗透性,并将其与未填充的环氧基质的介电性能,导热性和氧渗透性进行了比较。使用膨胀石墨可以获得所有性能的提高,这表明填料在基体中存在良好的分散性,以及填料与基体的强极性相互作用,这归因于膨胀石墨的部分氧化表面。所有测得的传输特性都用简单的数学模型拟合,从而在实验结果和理论预测之间取得了良好的一致性。模型参数与填料的长径比相关,填料的长径比定义为面内平均尺寸与钢筋厚度之间的比率。长径比在1250和1550之间表示将特征为几十纳米量级的石墨薄片(或石墨烯叠层)分散在环氧基质中。

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