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Mechanical properties and toughening mechanisms of epoxy/graphene nanocomposites

机译:环氧/石墨烯纳米复合材料的力学性能和增韧机理

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摘要

Because of extraordinary physical, chemical and mechanical properties, graphene nanosheets (GNS) are suitable fillers for optimizing the properties of different polymers. In this research, the effect of GNS content (up to 1 wt.%) on tensile and flexural properties, morphology of fracture surface, and toughening mechanism of epoxy were investigated. Results of mechanical tests showed a peak for tensile and flexural strength of samples with 0.1 wt.% GNS such that the tensile and flexural strength improved by 13% and 3.3%, respectively. The Young's modulus and flexural modulus increased linearly with GNS content, although the behavior of the Young's modulus was more remarkable. Morphological investigations confirmed this behavior because the GNS dispersion in the epoxy matrix was uniform at lower contents and agglomerated at higher contents. Finally, microscopical observation showed that the major toughening mechanism of graphene-epoxy nano-composites was crack path deflection, which changed the mirror fracture surface of the pure epoxy to rough surface.
机译:由于非凡的物理,化学和机械性能,石墨烯纳米片(GNS)是用于优化不同聚合物性能的合适填料。在这项研究中,研究了GNS含量(最高1 wt。%)对拉伸和弯曲性能,断裂表面形态以及环氧树脂增韧机理的影响。力学测试结果显示,GNS为0.1 wt。%的样品的拉伸强度和弯曲强度达到峰值,因此拉伸强度和弯曲强度分别提高了13%和3.3%。杨氏模量和弯曲模量随GNS含量线性增加,尽管杨氏模量的行为更为显着。形态学研究证实了这种行为,因为在较低含量下,GNS在环氧基质中的分散是均匀的,而在较高含量下会聚结。最终,显微观察表明,石墨烯-环氧纳米复合材料的主要增韧机理是裂纹路径挠曲,其将纯环氧树脂的镜面断裂表面改变为粗糙表面。

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