Dynamic mixed mode crack propagation behavior of structural bonded joints

被引:0
作者
Ouk Sub Lee
Jae Chul Park
Gyu Hyun Kim
机构
[1] InHa University,School of Mechanical, Aerospace and Automation Engineering
来源
KSME International Journal | 2000年 / 14卷
关键词
Dynamic Interface Crack; Propagating Velocity; Dynamic Stress Intensity Factors; Rayleigh Wave Speed; Mixed Mode Loading;
D O I
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学科分类号
摘要
The stress field around the dynamically propagating interface crack tip under a remote mixed mode loading condition has been studied with the aid of dynamic photoelastic method. The variation of stress field around the dynamic interface crack tip is photographed by using the Cranz-Shardin type camera having 106 fps rate. The dynamically propagating crack velocities and the shapes of isochromatic fringe loops are characterized for varying mixed load conditions in double cantilever beam (DCB) specimens. The dynamic interface crack tip complex stress intensity factors,K1 andK2, determined by a hybrid-experimental method are found to increase as the load mixture ratio of y/x (vertical/horizontal) values. Furthermore, it is found that the dynamically propagating interface crack velocities are highly dependent upon the varying mixed mode loading conditions and that the velocities are significantly small compared to those under the mode I impact loading conditions obtained by Shukla (Singh & Shukla, 1996a, b) and Rosakis (Rosakis et al., 1998) in the USA.
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页码:752 / 763
页数:11
相关论文
共 41 条
[1]  
Barber J. R.(1983)An Overview of Interface Cracks J. Appl. Mech. 50 770-776
[2]  
Comniou M.(1977)Complete Complex Series Expansions of Near-Tip Fields for Steadily Growing Interface Cracks in Dissimilar Isotropic Materials J. Appl. Mech. 44 631-636
[3]  
Comninou M.(1990)General Crack-Tip Fields for Stationary and Steadily Growing Interface Cracks in Anisotropic Bimaterials Engineering Fracture Mechanics 37 197-208
[4]  
Comninou M.(1992)Stress concentration factors under dynamic loading conditions Engineering Fracture Mechanics 42 237-242
[5]  
Deng X.(1993)Dynamic Fracture Toughness of Homalite-100 Journal of Applied Mechanics 60 183-189
[6]  
Deng X.(1975)Crack-Arrest Phenomenon of an Aluminum Alloy Journal of Mechanical Engineering Science 16 69-92
[7]  
Durelli A. J.(1991)Photoelastic Determination of Mixed Mode Stress intensity Factors for Sharp Reentrant Corners J. Appl. Mech. 58 931-168
[8]  
Dally j. W.(1965)Plane Problems of Cracks in a Dissimilar Media Experimental Mechanics 5 97-104
[9]  
Gao H.(1978)Intersonic Crack Propagation in Bimaterial System Experimental Mechanics 18 11-18
[10]  
Gurtman G. A.(1988)Application of the Least Square Method to the Photoelastic Analysis ASME Trans., J. of Appl. Mech. 55 767-772