Li Xinliang, Guo Jiangang
Tianjin Key Laboratory of Modern Engineering Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300072, China.
Materials (Basel). 2019 Jan 15;12(2):263. doi: 10.3390/ma12020263.
The fracture properties of pre-cracked monocrystalline/polycrystalline graphene were investigated via a finite element method based on molecular structure mechanics, and the mode I critical stress intensity factor (SIF) was calculated by the Griffith criterion in classical fracture mechanics. For monocrystalline graphene, the size effects of mode I fracture toughness and the influence of crack width on the mode I fracture toughness were investigated. Moreover, it was found that the ratio of crack length to graphene width has a significant influence on the mode I fracture toughness. For polycrystalline graphene, the strain energy per unit area at different positions was calculated, and the initial fracture site (near grain boundary) was deduced from the variation tendency of the strain energy per unit area. In addition, the effects of misorientation angle of the grain boundary (GB) and the distance between the crack tip and GB on mode I fracture toughness were also analyzed. It was found that the mode I fracture toughness increases with increasing misorientation angle. As the distance between the crack tip and GB increases, the mode I fracture toughness first decreases and then tends to stabilize.
基于分子结构力学,采用有限元方法研究了预裂纹单晶/多晶石墨烯的断裂性能,并根据经典断裂力学中的格里菲斯准则计算了Ⅰ型临界应力强度因子(SIF)。对于单晶石墨烯,研究了Ⅰ型断裂韧性的尺寸效应以及裂纹宽度对Ⅰ型断裂韧性的影响。此外,发现裂纹长度与石墨烯宽度之比对Ⅰ型断裂韧性有显著影响。对于多晶石墨烯,计算了不同位置的单位面积应变能,并根据单位面积应变能的变化趋势推导了初始断裂位置(靠近晶界)。此外,还分析了晶界(GB)的取向差角和裂纹尖端与GB之间的距离对Ⅰ型断裂韧性的影响。发现Ⅰ型断裂韧性随取向差角的增加而增加。随着裂纹尖端与GB之间距离的增加,Ⅰ型断裂韧性先降低后趋于稳定。