Traditional fracture theories infer damage at cracks (local field) by surveying loading conditions away from cracks (far field). This approach has been successful in predicting ductile fracture, but it normally assumes isotropic and homogeneous materials. However, myriads of manufacturing procedures induce heterogeneous microstructural gradients that can affect the accuracy of traditional fracture models. This work presents a microstructure-sensitive finite element approach to explore the shielding effects of grain size and crystallographic orientation gradients on crack tip microplasticity and blunting. A dislocation density-based crystal plasticity model conveys texture evolution, grain size effects, and directional hardening by computing...
International audienceThree-dimensional dislocation dynamics simulations are used to study micro-cra...
The flow-theory version of couple stress plasticity is employed to investigate the asymptotic fields...
Fracture is largely a microstructure-based phenomenon, but for experimentalists, computational mecha...
A stored energy based methodology for calculating the driving force for crack growth is introduced w...
The asymptotic fields near the tip of a crack steadily propagating in a ductile material under Mode ...
peer reviewedStrain gradient plasticity theories are being widely used for fracture assessment, as t...
In this study, the influence of a material’s plastic properties on the crack tip fields and dislocat...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
A mechanistic methodology for simulating microstructurally-sensitive (tortuosity and propagation rat...
The crack tip mechanics of strain gradient plasticity solids is investigated analytically and numeri...
Several efforts that are aimed at understanding the plastic deformation mechanisms related to crack ...
Tesis con mención internacionalExperiments have consistently shown that metallic materials display s...
Damage from small manufacturing defects often go unnoticed until fatigue cracks have grown beyond re...
International audienceFinite element computations of the stresses ahead of a tortuous microcrack in ...
International audienceThree-dimensional dislocation dynamics simulations are used to study micro-cra...
The flow-theory version of couple stress plasticity is employed to investigate the asymptotic fields...
Fracture is largely a microstructure-based phenomenon, but for experimentalists, computational mecha...
A stored energy based methodology for calculating the driving force for crack growth is introduced w...
The asymptotic fields near the tip of a crack steadily propagating in a ductile material under Mode ...
peer reviewedStrain gradient plasticity theories are being widely used for fracture assessment, as t...
In this study, the influence of a material’s plastic properties on the crack tip fields and dislocat...
Small scale yielding around a mode I crack is analysed using polycrystalline discrete dislocation pl...
A mechanistic methodology for simulating microstructurally-sensitive (tortuosity and propagation rat...
The crack tip mechanics of strain gradient plasticity solids is investigated analytically and numeri...
Several efforts that are aimed at understanding the plastic deformation mechanisms related to crack ...
Tesis con mención internacionalExperiments have consistently shown that metallic materials display s...
Damage from small manufacturing defects often go unnoticed until fatigue cracks have grown beyond re...
International audienceFinite element computations of the stresses ahead of a tortuous microcrack in ...
International audienceThree-dimensional dislocation dynamics simulations are used to study micro-cra...
The flow-theory version of couple stress plasticity is employed to investigate the asymptotic fields...
Fracture is largely a microstructure-based phenomenon, but for experimentalists, computational mecha...