International audienceThis article gives an overview of the strategy followed nowadays to model the evolution of metallic alloy microstructures under irradiation. For this purpose, multiscale approaches are very often used, which rely on modeling techniques appropriate to each time and space scale. The main methods used are ab-initio calculations, classical molecular dynamics (MD), kinetic Monte Carlo (KMC), mean field rate theory (MFRT), and dislocation dynamics (DD). These methods are briefly presented along with some of their typical uses and main drawbacks. Some examples are provided of the typical information obtained with each of the techniques
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceThis article gives an overview of the strategy followed nowadays to model the ...
The aim of this collaborative research work was to apply predictive, physically based multiscale mod...
Mise à jour de l'édition 2019International audienceThis article describes a family of Monte Carlo me...
The prospect of using computer simulations to calculate radiation-induced defect production and its ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
La prévision de l'évolution de la microstructure au cours du vieillissement par irradiation des maté...
This paper is the first of three that overview the main mechanisms that drive the microstructure evo...
Anticiper l’évolution de la microstructure d’un matériau en condition d’usage est d’une importance c...
The multiscale modeling scheme encompasses models from the atomistic to the continuum scale. Phenome...
Stainless steels based on Fe-Cr-Ni alloys are the most popular structural materials used in reactors...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceThis article gives an overview of the strategy followed nowadays to model the ...
The aim of this collaborative research work was to apply predictive, physically based multiscale mod...
Mise à jour de l'édition 2019International audienceThis article describes a family of Monte Carlo me...
The prospect of using computer simulations to calculate radiation-induced defect production and its ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
The ageing of pressure vessel steels under radiation has been correlated with the formation of more ...
La prévision de l'évolution de la microstructure au cours du vieillissement par irradiation des maté...
This paper is the first of three that overview the main mechanisms that drive the microstructure evo...
Anticiper l’évolution de la microstructure d’un matériau en condition d’usage est d’une importance c...
The multiscale modeling scheme encompasses models from the atomistic to the continuum scale. Phenome...
Stainless steels based on Fe-Cr-Ni alloys are the most popular structural materials used in reactors...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...
International audienceIn metallic alloys of fission or fusion reactors, microstructural evolution re...