On the plastic zone size and CTOD study for a Zener–Stroh crack interacting with a circular inclusion

被引:0
作者
H. J. Hoh
Z. M. Xiao
J. Luo
机构
[1] Nanyang Technological University,School of Mechanical and Aerospace Engineering
[2] Huazhong University of Science and Technology,Department of Mechanics
来源
Acta Mechanica | 2011年 / 220卷
关键词
Stress Intensity Factor; Plastic Zone; Edge Dislocation; Singular Integral Equation; Plastic Zone Size;
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学科分类号
摘要
An analytical solution is given for plastic yielding of a Zener–Stroh crack near a circular inclusion embedded in an infinite matrix. The crack is orientated along the radial direction of the inclusion. In the solution procedure, the crack is simulated as a continuous distribution of edge dislocations. Using the Dugdale model of small-scale yielding, plastic zones are introduced at both crack tips. Using the solution of a circular inclusion, interacting with a single dislocation as the Green’s function, the physical problem is formulated into a set of singular integral equations. With the aid of Erdogan’s method and iterative numerical procedures, the singular integral equations are solved numerically for the plastic zone sizes and crack tip opening displacement. The results obtained in the current work are verified by reduction to simpler cases of the Dugdale model. Various parameters such as the distance, shear modulus ratio, Poisson’s ratio, and loading condition are studied.
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页码:155 / 165
页数:10
相关论文
共 25 条
[1]  
Tamate O.(1968)Effect of circular inclusion on stresses around line crack in sheet under tension Int. J. Fract. Mech. 4 257-266
[2]  
Dundurs J.(1964)Interaction between an edge dislocation and a circular inclusion J. Mech. Phys. Solid. 12 177-189
[3]  
Mura T.(2001)Stress intensity factor for a Griffith crack interacting with a coated inclusion Int. J. Fract 108 193-205
[4]  
Xiao Z.M.(1991)Matrix cracking in fiber-reinforced composite materials J. Appl. Mech. 58 846-848
[5]  
Chen B.J.(1977)The interface crack Trans. ASME Ser. J. Appl. Mech. 44 631-636
[6]  
Luo H.A.(1954)The formation of cracks as a result of plastic flow Proc. Royal Soc. Lond. Seri. Math. Phys. Sci. 223 404-414
[7]  
Chen Y.(1955)The formation of cracks in plastic flow. II Proc. Royal Soc. Lond. Seri. Math. Phys. Sci. 232 548-560
[8]  
Comninou M.(1998)Contact zone in an interfacial Zener-Stroh crack Mech. Mat. 30 151-159
[9]  
Stroh A.N.(2005)A continuously distributed dislocation model of Zener-Stroh-Koehler cracks in anisotropic materials Int. J. Solid Struct. 42 1909-1921
[10]  
Stroh A.N.(1994)Interface microcrack nucleation J. Mech. Phys. Solid. 42 665-680