AbstractBased upon linear fracture mechanics, it is well known that the singular order of stresses near the crack tip in homogeneous materials is a constant value −1/2, which is nothing to do with the material properties. For the interface cracks between two dissimilar materials, the near tip stresses are oscillatory due to the order of singularity being −1/2±iε and −1/2. The oscillation index ε is a constant related to the elastic properties of both materials. While for the general interface corners, their singular orders depend on the corner angle as well as the elastic properties of the materials. Owing to the difference of the singular orders of homogeneous cracks, interface cracks and interface corners, their associated stress intensit...
A numerical method for evaluating the stress intensity factors (SIFs) of a three-dimensional interfa...
Normalized mixed-mode stress intensity factor equations are presented for deflected and inclined cir...
A simple technique was developed using conventional finite element analysis to determine stress inte...
AbstractBased upon linear fracture mechanics, it is well known that the singular order of stresses n...
AbstractTo have a definition covering all the possible situations of singular orders (real or comple...
In this study, a simple method to determine the complex stress intensity factor of interface crack p...
AbstractAlthough a lot of interface crack problems were previously treated, few solutions are availa...
In this paper, the numerical solution of singular integral equations is discussed in the analysis of...
In this paper, a new solution is discussed for the stress intensity factor of an edge interface crac...
In bi-material joints cracks can propagate along the interface or kink into one of the two materials...
AbstractA numerical method using a path-independent H-integral based on the conservation integral wa...
A comparison of mode I and II stress intensity factors at the interfacial crack tip arising from dif...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
In this paper, a mixed mode interfacial crack in three dimensional bimaterials is analyzed by singul...
In this paper interfacial edge crack problems are considered by the application of the finite elemen...
A numerical method for evaluating the stress intensity factors (SIFs) of a three-dimensional interfa...
Normalized mixed-mode stress intensity factor equations are presented for deflected and inclined cir...
A simple technique was developed using conventional finite element analysis to determine stress inte...
AbstractBased upon linear fracture mechanics, it is well known that the singular order of stresses n...
AbstractTo have a definition covering all the possible situations of singular orders (real or comple...
In this study, a simple method to determine the complex stress intensity factor of interface crack p...
AbstractAlthough a lot of interface crack problems were previously treated, few solutions are availa...
In this paper, the numerical solution of singular integral equations is discussed in the analysis of...
In this paper, a new solution is discussed for the stress intensity factor of an edge interface crac...
In bi-material joints cracks can propagate along the interface or kink into one of the two materials...
AbstractA numerical method using a path-independent H-integral based on the conservation integral wa...
A comparison of mode I and II stress intensity factors at the interfacial crack tip arising from dif...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
In this paper, a mixed mode interfacial crack in three dimensional bimaterials is analyzed by singul...
In this paper interfacial edge crack problems are considered by the application of the finite elemen...
A numerical method for evaluating the stress intensity factors (SIFs) of a three-dimensional interfa...
Normalized mixed-mode stress intensity factor equations are presented for deflected and inclined cir...
A simple technique was developed using conventional finite element analysis to determine stress inte...