The design of advanced materials requires a deep understanding of degradation and failure pro- cesses. It is widely recognized that the macroscopic material properties depend on the features of the microstructure. The knowledge of this link, which is the main subject of Micromechanics [1], is of relevant technological interest, as it may enable the design of materials with specific requirements by means of suitable manipulations of the microstructure. Polycrystalline materials are used in many technological applications. Their microstructure is characterized by the grains morphology, size distribution, anisotropy, crystallographic orientation, stiffness and toughness mismatch and by the physical-chemical properties of the intergranular inte...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
A 3D grain boundary formulation is presented for the analysis of polycrystalline microstructures. Th...
The design of advanced materials requires a deep understanding of degradation and failure pro- cess...
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...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycr...
It is widely recognized that the macroscopic material properties depend on the features of the micro...
A survey of recent contributions on three-dimensional grain-scale mechanical modelling of polycryst...
A 3D grain-level formulation for the study of brittle failure in polycrystalline microstructures is ...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
A recently developed novel three-dimensional (3D) computational framework for the analysis of polycr...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in thr...
A fully three-dimensional two-scale boundary element approach to degradation and failure in polycrys...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
A 3D grain boundary formulation is presented for the analysis of polycrystalline microstructures. Th...
The design of advanced materials requires a deep understanding of degradation and failure pro- cess...
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...
A new three-dimensional grain-level formulation for intergranular degradation and failure in polycr...
It is widely recognized that the macroscopic material properties depend on the features of the micro...
A survey of recent contributions on three-dimensional grain-scale mechanical modelling of polycryst...
A 3D grain-level formulation for the study of brittle failure in polycrystalline microstructures is ...
The development of a 3D microstructural model for the analysis of degradation and failure in polycry...
A recently developed novel three-dimensional (3D) computational framework for the analysis of polycr...
In this paper, the effect of pre-existing damage on brittle micro-cracking of polycrystalline materi...
In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in thr...
A fully three-dimensional two-scale boundary element approach to degradation and failure in polycrys...
In this work, a two-scale approach to degradation and failure in polycrystalline materials is propos...
In this paper, the phenomenon of intergranular fracture in polycrystalline materials is investigated...
A 3D grain boundary formulation is presented for the analysis of polycrystalline microstructures. Th...