In order to improve our understanding of alloy plasticity, it is important to describe at the atomic scale the dislocation-solute interactions and their effect on the dislocation mobility. This work focuses on the body-centered cubic (BCC) transition metals, in particular Fe, in presence of interstitial solute atoms. Using Density Functional Theory (DFT) calculations, the core structure of the screw dislocation of Burgers vector b=½ was investigated in iron in presence of boron, carbon, nitrogen and oxygen solute atoms, and in BCC metals from group 5 (V, Nb, Ta) and 6 (Mo, W) in presence of carbon solutes. A core reconstruction was evidenced in iron and group 6 metals, along with a strong attractive dislocation-solute interaction energy. A ...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
International audienceThe dislocation core field, which comes in addition to the Volterra elastic fi...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
Afin de mieux appréhender la plasticité des alliages métalliques, il est important de pouvoir décrir...
Using ab initio density functional theory calculations, we investigate the effect of interstitial ca...
International audienceThe relative stability of dislocation core configurations in body-centered-cub...
Ferritic steels, made of a body-centered cubic (bcc) iron matrix with interstitial carbon solutes, a...
International audienceIn steels, the interaction between screw dislocations and carbon solutes has a...
Les aciers de structures sont sujets aux phénomène de vieillissement sous déformation qui se traduit...
International audienceThe interaction of C atoms with a screw and an edge dislocation is modelled at...
The plastic flow behavior of bcc transition metals up to moderate temperatures is dominated by the t...
Nous avons réalisé des calculs de structure électronique ab initio, basés sur la théorie de lafoncti...
Les aciers ferritiques, constitués d'une matrice de fer cubique centré (CC) avec des solutés de carb...
Static strain aging is an important concept in metalurgy that refers to the hardening of a material ...
Interactions among dislocations and solute atoms are the basis of several important processes in met...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
International audienceThe dislocation core field, which comes in addition to the Volterra elastic fi...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
Afin de mieux appréhender la plasticité des alliages métalliques, il est important de pouvoir décrir...
Using ab initio density functional theory calculations, we investigate the effect of interstitial ca...
International audienceThe relative stability of dislocation core configurations in body-centered-cub...
Ferritic steels, made of a body-centered cubic (bcc) iron matrix with interstitial carbon solutes, a...
International audienceIn steels, the interaction between screw dislocations and carbon solutes has a...
Les aciers de structures sont sujets aux phénomène de vieillissement sous déformation qui se traduit...
International audienceThe interaction of C atoms with a screw and an edge dislocation is modelled at...
The plastic flow behavior of bcc transition metals up to moderate temperatures is dominated by the t...
Nous avons réalisé des calculs de structure électronique ab initio, basés sur la théorie de lafoncti...
Les aciers ferritiques, constitués d'une matrice de fer cubique centré (CC) avec des solutés de carb...
Static strain aging is an important concept in metalurgy that refers to the hardening of a material ...
Interactions among dislocations and solute atoms are the basis of several important processes in met...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
International audienceThe dislocation core field, which comes in addition to the Volterra elastic fi...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...