In the present work, a phase field damage model is developed to address the numerical simulation of brittle fracture. This model successfully captures some important aspects of crack propagation, including crack branching and bifurcation. In addition, the proposed phase field model has been developed in the general framework of anisotropic elasticity. It can thus be used for the simulation of brittle fracture in polycrystalline materials, for which crack propagation is impacted by crystallographic orientation because of the anisotropic character of stiffness properties
Polycrystalline materials are widely used in engineering and material science applications, e.g. aut...
In this work, a small-strain phase-field model is presented, which is able to predict crack propagat...
This thesis is concerned with a phase field model for brittle fracture. The high potential of phas...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
Within this contribution, we present a diffuse interface approach for the simulation of crack nuclea...
International audienceThe present paper aims at modeling complex fracture phenomena where different ...
International audienceAnisotropy is inherent to crystalline materials (among others) due to the symm...
Within this contribution, we present a diffuse interface approach for the simulation of crack nuclea...
Polycrystalline materials are widely used in engineering and material science applications, e.g. aut...
In this work, a small-strain phase-field model is presented, which is able to predict crack propagat...
This thesis is concerned with a phase field model for brittle fracture. The high potential of phas...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
International audienceIn several classes of ductile and brittle materials consisting of different cl...
Within this contribution, we present a diffuse interface approach for the simulation of crack nuclea...
International audienceThe present paper aims at modeling complex fracture phenomena where different ...
International audienceAnisotropy is inherent to crystalline materials (among others) due to the symm...
Within this contribution, we present a diffuse interface approach for the simulation of crack nuclea...
Polycrystalline materials are widely used in engineering and material science applications, e.g. aut...
In this work, a small-strain phase-field model is presented, which is able to predict crack propagat...
This thesis is concerned with a phase field model for brittle fracture. The high potential of phas...