We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging from brittle to ductile ones. Ductile fracture surfaces, obtained when the system breaks once the strain is completely localized, are shown to correspond to minimum energy surfaces. The similarity of the resulting fracture paths to the limits of brittle fracture or minimum energy surfaces is quantified. The model exhibits a smooth transition from brittleness to ductility. The dynamics of yielding exhibits avalanches with a power-law distribution.Peer reviewe
International audienceWe analyze the intermittent dynamics of cracks in heterogeneous brittle materi...
Lacking the energy dissipative mechanics such as plastic deformation to rebalance localized stresses...
Abstract. Stress enhancement in the vicinity of brittle cracks makes the macro-scale failure propert...
We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging...
Invited review articleInternational audienceStress enhancement in the vicinity of brittle cracks mak...
Widespread processes in nature and technology are governed by the dynamical transition whereby a mat...
We use atomistic computer simulations to provide a microscopic description of the brittle failure of...
A set of heterogeneous and homogeneous materials differing in their brittle and ductile characterist...
We study the sample-size dependence of the strength of disordered materials with a flaw, by numerica...
We study theoretically the yielding of sheared amorphous materials as a function of increasing level...
We study the plastic yielding of disordered media using the perfectly plastic random fuse model. The...
Breakdown of two-dimensional disordered systems is studied with a time-dependent network model. The ...
The roughness properties of two-dimensional fracture surfaces as created by the slow failure of rand...
A simple mechanical model of planar fibrous materials with mesoscopic disorder is introduced and ana...
Continuum approaches are reviewed which can properly model localised deformations that act as a prec...
International audienceWe analyze the intermittent dynamics of cracks in heterogeneous brittle materi...
Lacking the energy dissipative mechanics such as plastic deformation to rebalance localized stresses...
Abstract. Stress enhancement in the vicinity of brittle cracks makes the macro-scale failure propert...
We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging...
Invited review articleInternational audienceStress enhancement in the vicinity of brittle cracks mak...
Widespread processes in nature and technology are governed by the dynamical transition whereby a mat...
We use atomistic computer simulations to provide a microscopic description of the brittle failure of...
A set of heterogeneous and homogeneous materials differing in their brittle and ductile characterist...
We study the sample-size dependence of the strength of disordered materials with a flaw, by numerica...
We study theoretically the yielding of sheared amorphous materials as a function of increasing level...
We study the plastic yielding of disordered media using the perfectly plastic random fuse model. The...
Breakdown of two-dimensional disordered systems is studied with a time-dependent network model. The ...
The roughness properties of two-dimensional fracture surfaces as created by the slow failure of rand...
A simple mechanical model of planar fibrous materials with mesoscopic disorder is introduced and ana...
Continuum approaches are reviewed which can properly model localised deformations that act as a prec...
International audienceWe analyze the intermittent dynamics of cracks in heterogeneous brittle materi...
Lacking the energy dissipative mechanics such as plastic deformation to rebalance localized stresses...
Abstract. Stress enhancement in the vicinity of brittle cracks makes the macro-scale failure propert...