A path‐independent integral is introduced for calculating stress intensity factors. The derivation of the integral is based on the application of the known Bueckner's fundamental field solution for a crack in an infinite body and on the reciprocal theorem. The method was applied to two‐dimensional linear elastic mixed‐mode crack problems. The key advantage of the present path‐independent integral is that the stress intensity factor components for any irregular cracked geometry under any kind of loading can be easily obtained by a contour integral around the crack tip. The method is simple to implement and only the far field displacements and tractions along the contour must be known. The required stress analysis can be made by using any ana...
In this work, we present and prove results underlying a method which uses functionals derived from t...
In this work, we present and prove results underlying a method which uses functionals derived from t...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
A path‐independent integral is introduced for calculating stress intensity factors. The derivation o...
Abstract-A path-independent integral is introduced for calculating stress intensity factors. The der...
Stress intensity factors have been determine directly for certain special crack problems with the he...
Stress intensity factors have been determine directly for certain special crack problems with the he...
Stress intensity factors have been determine directly for certain special crack problems with the he...
AbstractIn this paper, a numerical procedure, incorporated with the finite element method, is develo...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
In this work, we present and prove results underlying a method which uses functionals derived from t...
In this work, we present and prove results underlying a method which uses functionals derived from t...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...
A path‐independent integral is introduced for calculating stress intensity factors. The derivation o...
Abstract-A path-independent integral is introduced for calculating stress intensity factors. The der...
Stress intensity factors have been determine directly for certain special crack problems with the he...
Stress intensity factors have been determine directly for certain special crack problems with the he...
Stress intensity factors have been determine directly for certain special crack problems with the he...
AbstractIn this paper, a numerical procedure, incorporated with the finite element method, is develo...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
A new method of computing stress intensity factors for self-similar cracks in the plane is discussed...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
Fracture mechanics studies the propagation of cracks in materials. In the framework of linear elasti...
In this work, we present and prove results underlying a method which uses functionals derived from t...
In this work, we present and prove results underlying a method which uses functionals derived from t...
International audienceThe 2D stress intensity factor at the tip of a crack plays an essential role i...