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A combination of graphene and graphene nanoplatelets: An effective way to improve thermal conductivity for polymers

机译:石墨烯和石墨烯纳米片的组合:提高聚合物导热性的有效方法

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Graphene has emerged as an efficient filler in polymer matrices due to its unique properties. What is not entirely clear, however, is how to transfer the unique attributes exhibited at the nanoscale to the macroscale. The primary focus of this study was on understanding the main causes that lead to the improvement of thermal conductivity for polymers with a hybrid reinforcement material consisting of graphene and graphene nanoplatelets. The thermal properties of epoxy matrix composites filled with the hybrid reinforcement material were studied experimentally in order to provide an effective way to improve thermal conductivity for polymers. Comparisons with other existing reinforcement materials were made in terms of thermal properties. A mathematical model was developed to evaluate the effectiveness of the hybrid reinforcement material in improving thermal conductivity. The results indicated that a twenty-fold increase in thermal conductivity can be achieved for epoxy resins when the content of the hybrid reinforcement material is 8% by weight. The main cause is that the hybrid reinforcement material can significantly reduce interfacial thermal resistance. The hybrid reinforcement material is quite effective compared to other existing reinforcement materials. The thermal performance of the resultant composite materials has no significant degradation at high temperatures.
机译:石墨烯由于其独特的性能已成为聚合物基质中的有效填料。然而,还不完全清楚的是如何将纳米尺度上展现的独特属性转移到宏观尺度上。这项研究的主要重点是了解导致使用由石墨烯和石墨烯纳米片组成的混合增强材料的聚合物提高导热性的主要原因。实验研究了填充杂化增强材料的环氧树脂基复合材料的热性能,以提供一种提高聚合物导热性的有效方法。在热性能方面与其他现有的增强材料进行了比较。建立了数学模型以评估混合增强材料在改善导热性方面的有效性。结果表明,当杂化增强材料的含量为8重量%时,环氧树脂的导热率可提高二十倍。主要原因是混合增强材料可以显着降低界面热阻。与其他现有的增强材料相比,混合增强材料非常有效。所得复合材料的热性能在高温下没有明显的降解。

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