AbstractThe present work deals with an evaluation of stress intensity factors (SIFs) along straight crack fronts and edges in three-dimensional isotropic elastic solids. A new numerical approach is developed for extraction, from a solution obtained by the boundary element method (BEM), of those SIFs, which are relevant for a failure assessment of mechanical components. In particular, the generalized SIFs associated to eigensolutions characterized by unbounded stresses at a neighbourhood of the crack front or a reentrant edge and also that associated to T-stress at the crack front can be extracted. The method introduced is based on a conservation integral, called H-integral, which leads to a new domain-independent integral represented by a s...
AbstractA strain energy approach (SEA) is developed to compute the general stress intensity factors ...
We introduce a novel enriched Boundary Element Method (BEM) and Dual Boundary Element Method (DBEM) ...
International audienceThe solution to elastic isotropic problems in three-dimensional (3-D) polyhedr...
This thesis introduces an alternative method to evaluate Stress Intensity Factors (SIFs) in computat...
The analysis of cracked brittle mechanical components considering linear elastic fracture mechanics ...
We introduce an alternative method in computational fracture mechanics to evaluate Stress Intensity ...
The local smoothing scheme in conjunction with the modified crack closure integral technique has bee...
This paper deals with the boundary element method based evaluation of stress intensity factors for m...
AbstractA numerical method using a path-independent H-integral based on the conservation integral wa...
This paper presents the boundary integral equation method (BIEM) for the stress intensity factors an...
Various boundary element method (BEM) based approaches to solve crack problems are discussed. The di...
Abstract The analysis of cracked brittle mechanical components considering linear elastic fracture m...
Various boundary element method (BEM) based approaches to solve crack problems are discussed. The di...
AbstractIn this paper, a numerical procedure, incorporated with the finite element method, is develo...
A general numerical tool for the analysis of three–dimensional bimaterial interface cracks is presen...
AbstractA strain energy approach (SEA) is developed to compute the general stress intensity factors ...
We introduce a novel enriched Boundary Element Method (BEM) and Dual Boundary Element Method (DBEM) ...
International audienceThe solution to elastic isotropic problems in three-dimensional (3-D) polyhedr...
This thesis introduces an alternative method to evaluate Stress Intensity Factors (SIFs) in computat...
The analysis of cracked brittle mechanical components considering linear elastic fracture mechanics ...
We introduce an alternative method in computational fracture mechanics to evaluate Stress Intensity ...
The local smoothing scheme in conjunction with the modified crack closure integral technique has bee...
This paper deals with the boundary element method based evaluation of stress intensity factors for m...
AbstractA numerical method using a path-independent H-integral based on the conservation integral wa...
This paper presents the boundary integral equation method (BIEM) for the stress intensity factors an...
Various boundary element method (BEM) based approaches to solve crack problems are discussed. The di...
Abstract The analysis of cracked brittle mechanical components considering linear elastic fracture m...
Various boundary element method (BEM) based approaches to solve crack problems are discussed. The di...
AbstractIn this paper, a numerical procedure, incorporated with the finite element method, is develo...
A general numerical tool for the analysis of three–dimensional bimaterial interface cracks is presen...
AbstractA strain energy approach (SEA) is developed to compute the general stress intensity factors ...
We introduce a novel enriched Boundary Element Method (BEM) and Dual Boundary Element Method (DBEM) ...
International audienceThe solution to elastic isotropic problems in three-dimensional (3-D) polyhedr...