A 3D grain-level formulation for the study of brittle failure in polycrystalline microstructures is presented. The microstructure is represented as a Voronoi tessellation and the boundary element method is used to model each crystal of the aggregate. The continuity of the aggregate is enforced through suitable conditions at the intergranular interfaces. The grain-boundary model takes into account the onset and evolution of damage by means of an irreversible linear cohesive law, able to address mixed-mode failure conditions. Upon interface failure, a non-linear frictional contact analysis is introduced for addressing the contact between micro-crack surfaces. An incremental-iterative algorithm is used for tracking the micro-degradation...
Computational modeling techniques are now widely employed in material science, mainly due to recent ...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
A 3D grain-level formulation for the study of brittle failure in polycrystalline microstructures is ...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycr...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycry...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this study, a novel three-dimensional micro-mechanical crystal-level model for the analysis of in...
Polycrystalline materials are commonly employed in engineering structures. For modern applica- tion...
In this study, a novel three-dimensional micro-mechanical crystal-level model for the analysis of in...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
Polycrystalline materials are commonly employed in engineering structures. For modern applica- tion...
In this paper a cohesive formulation is proposed for modelling intergranular and transgranular damag...
Computational modeling techniques are now widely employed in material science, mainly due to recent ...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
A 3D grain-level formulation for the study of brittle failure in polycrystalline microstructures is ...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycr...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycry...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this study, a novel three-dimensional micro-mechanical crystal-level model for the analysis of in...
Polycrystalline materials are commonly employed in engineering structures. For modern applica- tion...
In this study, a novel three-dimensional micro-mechanical crystal-level model for the analysis of in...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
Polycrystalline materials are commonly employed in engineering structures. For modern applica- tion...
In this paper a cohesive formulation is proposed for modelling intergranular and transgranular damag...
Computational modeling techniques are now widely employed in material science, mainly due to recent ...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...