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Fractography Analysis with Topographical Features of Multi-Layer Graphene Reinforced Epoxy Nanocomposites

机译:多层石墨烯增强环氧树脂纳米复合材料形貌的形貌分析

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The stiff and fragile structure of thermosetting polymers, such as epoxy, accomplices the innate cracks to cause fracture and therefore the applications of monolithic epoxy are not ubiquitous. However, it is well established that when reinforced especially by nano-fillers, its ability to withstand crack propagation is propitiously improved. The crack is either deflected or bifurcated when interacting with strong nano-filler such as Multi-Layer Graphene (MLG). Due to the deflection and bifurcation of cracks, specific fracture patterns are observed. Although these fracture patterns seem aesthetically appealing, however, if delved deeper, they can further be used to estimate the influence of nano-filler on the mechanical properties. Here we show that, by a meticulous examination of topographical features of fractured patterns, various important aspects related to fillers can be approximated such as dispersion state, interfacial interactions, presence of agglomerates, and overall influence of the incorporation of filler on the mechanical properties of nanocomposites.
机译:热固性聚合物(例如环氧树脂)的刚性和易碎结构会与先天裂缝相伴而导致破裂,因此单片环氧树脂的应用并非无处不在。然而,众所周知,当特别是用纳米填料增强时,其抵抗裂纹扩展的能力得到了适当的提高。与强力纳米填料(例如多层石墨烯(MLG))相互作用时,裂纹会偏转或分叉。由于裂纹的偏转和分叉,观察到了特定的断裂模式。尽管这些断裂模式在美学上似乎很吸引人,但是,如果深入研究,它们可以进一步用于评估纳米填料对机械性能的影响。在这里,我们表明,通过仔细检查断裂图案的地形特征,可以大致了解与填料相关的各个重要方面,例如分散状态,界面相互作用,附聚物的存在以及填料掺入对填料力学性能的总体影响。纳米复合材料。

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