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Fracture of graphene: a review

机译:石墨烯断裂:综述

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Fracture is one of the most prominent concerns for large scale applications of graphene. In this paper, we review some of the recent progresses in experimental and theoretical studies on the fracture behaviors of graphene, with discussions touching theoretical strength, mode I fracture toughness, mixed mode fracture, chemical fracture, irradiation fracture, dynamic fracture, impact fracture, and sonication fracture. In spite of rapid developments in experiments and simulations, there are still significant yet unresolved issues related to the fracture of graphene, examples including: (1) Can one enhance the toughness of graphene with designed topological defects? (2) How does grain size affect the strength of polycrystalline graphene? (3) How do the out-of-plane effects (e.g., wrinkle caused by external loading or curvature induced by topological defects) influence the fracture of graphene? (4) Can one develop a continuum model with the ability to capture graphene fracture with complicated modes, such as shear fracture coupled with wrinkling deformation and tear fracture? (5) How does fracture occur when tearing a polycrystalline graphene sheet? (6) Can one control the fracture behavior of graphene by combing the chemical, irradiation and stress effect? (7) How fast can cracks propagate in graphene? (8) What is the behavior of interfacial cracks in graphene, i.e., cracks along the grain boundaries or interfaces of heterogeneous structures? (9) How does a multilayer graphene membrane break under high speed impact and why such structures can absorb a large amount of kinetic energy? (10) Can one tailor/design the graphene structures with controlled fracture? The intention here is not to provide complete answers to such questions, but to draw attention from the mechanics community to them as potential research topics.
机译:断裂是石墨烯大规模应用中最突出的问题之一。在本文中,我们回顾了有关石墨烯断裂行为的实验和理论研究的最新进展,并讨论了涉及理论强度,I型断裂韧性,混合模式断裂,化学断裂,辐照断裂,动态断裂,冲击断裂,和超声破碎。尽管实验和模拟的快速发展,仍然存在与石墨烯断裂有关的重大但尚未解决的问题,这些例子包括:(1)是否可以通过设计好的拓扑缺陷来增强石墨烯的韧性? (2)晶粒尺寸如何影响多晶石墨烯的强度? (3)平面外效应(例如,外部载荷引起的皱纹或拓扑缺陷引起的曲率)如何影响石墨烯的断裂? (4)是否可以开发一种能够捕获具有复杂模式的石墨烯断裂的连续模型,例如剪切断裂,起皱变形和撕裂断裂? (5)撕裂多晶石墨烯片时如何发生断裂? (6)是否可以通过结合化学,辐射和应力效应来控制石墨烯的断裂行为? (7)裂纹在石墨烯中传播的速度有多快? (8)石墨烯中的界面裂纹(即沿晶界或异质结构界面的裂纹)的行为是什么? (9)多层石墨烯膜在高速冲击下如何破裂?为什么这种结构可以吸收大量动能? (10)能否定制/设计具有受控断裂的石墨烯结构?这里的目的不是要提供对此类问题的完整答案,而是要引起力学界的关注,将其作为潜在的研究主题。

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