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Mechanical, Thermal, and Electrical Properties of Graphene-Epoxy Nanocomposites—A Review

机译:石墨烯-环氧纳米复合材料的机械,热和电性能—综述

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摘要

Monolithic epoxy, because of its brittleness, cannot prevent crack propagation and is vulnerable to fracture. However, it is well established that when reinforced—especially by nano-fillers, such as metallic oxides, clays, carbon nanotubes, and other carbonaceous materials—its ability to withstand crack propagation is propitiously improved. Among various nano-fillers, graphene has recently been employed as reinforcement in epoxy to enhance the fracture related properties of the produced epoxy–graphene nanocomposites. In this review, mechanical, thermal, and electrical properties of graphene reinforced epoxy nanocomposites will be correlated with the topographical features, morphology, weight fraction, dispersion state, and surface functionalization of graphene. The factors in which contrasting results were reported in the literature are highlighted, such as the influence of graphene on the mechanical properties of epoxy nanocomposites. Furthermore, the challenges to achieving the desired performance of polymer nanocomposites are also suggested throughout the article.
机译:整体环氧树脂由于其脆性而不能防止裂纹扩展,并且容易断裂。但是,众所周知,特别是通过纳米填料(例如金属氧化物,粘土,碳纳米管和其他碳质材料)进行增强时,其抵抗裂纹扩展的能力得到了明显改善。在各种纳米填料中,石墨烯最近已被用作环氧树脂的增强剂,以增强所生产的环氧-石墨烯纳米复合材料的断裂相关性能。在这篇综述中,石墨烯增强的环氧纳米复合材料的机械,热和电性能将与石墨烯的形貌特征,形态,重量分数,分散状态和表面功能化相关。突出了在文献中报道对比结果的因素,例如石墨烯对环氧纳米复合材料力学性能的影响。此外,在整个文章中还提出了实现聚合物纳米复合材料所需性能的挑战。

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