AbstractIn this paper, we present a general method for the calculation of the various stress intensity factors in a material whose constitutive law is elastic, linear and varies continuously in space. The approach used to predict the stress intensity factors is an extension of the interaction integral method. For this type of material, we also develop a systematic method to derive the asymptotic displacement fields and use it to achieve better-quality results. A new analytical asymptotic field is given for two special cases of graded materials. Numerical examples focus on materials with space-dependent Young modulus
The authors have developed an influence function method (IFM) to analyze effectively the stress inte...
This paper presents the mode I stress intensity factors for functionally graded solid cylinders with...
An alternating method, in conjunction with the finite element method and an analytical solution for ...
AbstractIn this paper, we present a general method for the calculation of the various stress intensi...
AbstractAn interaction (energy) integral is derived for the computation of mixed-mode stress intensi...
Abstract. This paper revisits the interaction integral method to evaluate both the mixed-mode stress...
We consider coupled structures consisting of two different linear elastic materials bonded along an ...
We consider coupled structures consisting of two different linear elastic materials bonded along an...
In this work, we present and prove results underlying a method which uses functionals derived from t...
Finite element evaluation of mixed mode stress intensity factors in functionally graded material
Stress intensity factors are calculated for long plane cracks with one tip interacting with a region...
Quasi-static stress fields for a crack inclined to the direction of property gradation in functional...
AbstractA simplified strategy based on the interaction energy integral is implemented in the finite ...
International audienceThe main objective of this work is to present a numerical modeling of mixed-mo...
AbstractThis work derives an interaction integral for the computation of mixed-mode stress intensity...
The authors have developed an influence function method (IFM) to analyze effectively the stress inte...
This paper presents the mode I stress intensity factors for functionally graded solid cylinders with...
An alternating method, in conjunction with the finite element method and an analytical solution for ...
AbstractIn this paper, we present a general method for the calculation of the various stress intensi...
AbstractAn interaction (energy) integral is derived for the computation of mixed-mode stress intensi...
Abstract. This paper revisits the interaction integral method to evaluate both the mixed-mode stress...
We consider coupled structures consisting of two different linear elastic materials bonded along an ...
We consider coupled structures consisting of two different linear elastic materials bonded along an...
In this work, we present and prove results underlying a method which uses functionals derived from t...
Finite element evaluation of mixed mode stress intensity factors in functionally graded material
Stress intensity factors are calculated for long plane cracks with one tip interacting with a region...
Quasi-static stress fields for a crack inclined to the direction of property gradation in functional...
AbstractA simplified strategy based on the interaction energy integral is implemented in the finite ...
International audienceThe main objective of this work is to present a numerical modeling of mixed-mo...
AbstractThis work derives an interaction integral for the computation of mixed-mode stress intensity...
The authors have developed an influence function method (IFM) to analyze effectively the stress inte...
This paper presents the mode I stress intensity factors for functionally graded solid cylinders with...
An alternating method, in conjunction with the finite element method and an analytical solution for ...