Crack branching mechanism of rock-like quasi-brittle materials under dynamic stress

被引:0
作者
唐春安
杨岳峰
机构
[1] CenterforRockInstabilityandSeismicityResearch,DalianUniversityofTechnology
关键词
crack propagation; branching; heterogeneity; Weibull distribution; microcrack; rock;
D O I
暂无
中图分类号
TU452 [岩体力学性质及应力理论分析];
学科分类号
0801 ; 080104 ; 0815 ;
摘要
The cracking patterns of a thin sheet with a pre-existing crack subjected to dynamic loading are numerically simulated to investigate the mechanism of crack branching by using the FEM method.Six numerical models were set up to study the effects of load,tensile strength and heterogeneity on crack branching.The crack propagation is affected by the applied loads,tensile strength and heterogeneity.Before crack branching,the crack propagates by some distance along the direction of the pre-existing crack.For the materials with low heterogeneity,the higher the applied stress level is and the lower the tensile strength of the material is,the shorter the propagation distance is.Moreover,the branching angle becomes larger and the number of branching cracks increases.In the case of the materials with high heterogeneity,a lot of disordered voids and microcracks randomly occur along the main crack,so the former law is not obvious.The numerical results not only are in good agreement with the experimental observations in laboratory,but also can be extended to heterogeneity media.The work can provide a good approach to model the cracking and fracturing of heterogeneous quasi-brittle materials,such as rock,under dynamic loading.
引用
收藏
页码:3273 / 3284
页数:12
相关论文
共 7 条
[1]   裂纹和断层动力学的新进展 [J].
James R.Rice ;
郭高峰 .
力学进展, 2001, (03) :447-460
[2]  
The effect of asymmetric damage on dynamic shear rupture propagation I: No mismatch in bulk elasticity[J] . R.L. Biegel,H.S. Bhat,C.G. Sammis,A.J. Rosakis. Tectonophysics . 2010 (3)
[3]  
The effect of asymmetric damage on dynamic shear rupture propagation II: With mismatch in bulk elasticity[J] . H.S. Bhat,R.L. Biegel,A.J. Rosakis,C.G. Sammis. Tectonophysics . 2010 (3)
[4]   Measurement of energy release rate and energy flux of rapidly bifurcating crack in Homalite 100 and Araldite B by high-speed holographic microscopy [J].
Suzuki, Shinichi ;
Sakaue, Kenichi ;
Iwanaga, Kazuya .
JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2007, 55 (07) :1487-1512
[5]  
An experimental investigation into dynamic fracture: III. On steady-state crack propagation and crack branching[J] . K. Ravi-Chandar,W. G. Knauss. International Journal of Fracture . 1984 (2)
[6]  
An experimental investigation into dynamic fracture: II. Microstructural aspects[J] . K. Ravi-Chandar,W. G. Knauss. International Journal of Fracture . 1984 (1)
[7]  
Numerical simulation of Brazilian disk rock failure under static and dynamic loading .2 W. C. Zhu,C. A. Tang. International Journal of Rock Mechanics and Mining Sciences . 2006