Crack propagation in polycrystalline specimens is studied by means of a generalized finite element method with linear elastic isotropic grains and cohesive grain boundaries. The corresponding mode-I intergranular cracks are characterized using a grain boundary brittleness criterion that depends on cohesive law parameters and average grain boundary length. It is shown that load–displacement curves for specimens with the same microstructure and for various cohesive law parameters can be obtained from a master load–displacement curve by means of simple linear elastic fracture mechanics scaling relations. This property is a consequence of the independence of intergranular crack paths from cohesive law parameters. Perfect scaling is obtained for...
An integrated computer simulation employing the Embedded-atom method (EAM), Molecular dynamics (MD),...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in thr...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
We analyze intergranular brittle cracking of polycrystalline aggregates by means of a generalized fi...
A deeper understanding of the deformation and failure mechanisms in polycrystals is of utmost import...
ABSTRACT: Intergranular fracture in polycrystals is often simulated by finite elements coupled to a ...
International audienceFailure at grain boundaries has a critical effect on the overall fracture beha...
Understanding and controlling early damage initiation and evolution are amongst the most important i...
A new numerical method is proposed to simulate intergranular c eep fracture in large polycrystalline...
The thesis explores numerical approaches for the definition of crack paths in polycrystalline materi...
Two different approaches to intergranular crack propagation in brittle polycrystals are contrasted. ...
The structural reliability of many brittle materials such as structural ceramics relies on the occu...
A phase-field model based on a modified form of the regularized formulation of Griffith\u27s fractur...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
An integrated computer simulation employing the Embedded-atom method (EAM), Molecular dynamics (MD),...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in thr...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
We analyze intergranular brittle cracking of polycrystalline aggregates by means of a generalized fi...
A deeper understanding of the deformation and failure mechanisms in polycrystals is of utmost import...
ABSTRACT: Intergranular fracture in polycrystals is often simulated by finite elements coupled to a ...
International audienceFailure at grain boundaries has a critical effect on the overall fracture beha...
Understanding and controlling early damage initiation and evolution are amongst the most important i...
A new numerical method is proposed to simulate intergranular c eep fracture in large polycrystalline...
The thesis explores numerical approaches for the definition of crack paths in polycrystalline materi...
Two different approaches to intergranular crack propagation in brittle polycrystals are contrasted. ...
The structural reliability of many brittle materials such as structural ceramics relies on the occu...
A phase-field model based on a modified form of the regularized formulation of Griffith\u27s fractur...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
An integrated computer simulation employing the Embedded-atom method (EAM), Molecular dynamics (MD),...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in thr...