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Fracture mechanics of monolayer molybdenum disulfide

机译:单层二硫化钼的断裂力学

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摘要

Molecular dynamics (MD) modeling is used to study the fracture toughness and crack propagation path of monolayer molybdenum disulfide (MoS2) sheets under mixed modes I and II loading. Sheets with both initial armchair and zigzag cracks are studied. The MD simulations predict that crack edge chirality, tip configuration and the loading phase angle influence the fracture toughness and crack propagation path of monolayer MoS2 sheets. Furthermore, under all loading conditions, both armchair and zigzag cracks prefer to extend along a zigzag path, which is in agreement with the crack propagation path in graphene. A remarkable out-of-plane buckling can occur during mixed mode loading which can lead to the development of buckling cracks in addition to the propagation of the initial cracks.
机译:分子动力学(MD)建模用于研究混合模式I和II加载下单层二硫化钼(MoS2)薄板的断裂韧性和裂纹扩展路径。研究具有初始扶手椅和锯齿形裂纹的板材。 MD模拟预测裂纹边缘的手性,尖端构造和加载相角会影响单层MoS2薄板的断裂韧性和裂纹扩展路径。此外,在所有载荷条件下,扶手椅形裂纹和锯齿形裂纹均倾向于沿锯齿形路径延伸,这与石墨烯中的裂纹扩展路径一致。在混合模式加载过程中,可能会出现明显的面外屈曲,除了初始裂纹的扩展之外,这还会导致屈曲裂纹的发展。

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