AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion model is developed and applied to carbon-supersaturated ferrite, as experimentally observed in severely deformed pearlitic steel. We employ the embedded atom method and the nudged elastic band technique to determine the energetic profile of a carbon atom around a screw dislocation in bcc iron. The results clearly indicate a special region in the proximity of the dislocation core where C atoms are strongly bound, but where they can nevertheless diffuse easily due to low barriers. Our analysis suggests that the previously proposed pipe mechanism for the case of a screw dislocation is unlikely. Instead, our atomistic as well as the diffusion model...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
The high dislocation density (ρd) in Fe-C and/or Fe-N martensite is known to be one of the main caus...
AbstractSteel wires, under severe cold drawing deformation, develop high strength. High carbon steel...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
Wire drawing is an efficient material processing technique for metals. Pearlitic steel is recognized...
Atom-probe tomography (APT) and synchrotron X-ray diffraction (XRD) were combined to study the carbo...
International audienceThe interaction of C atoms with a screw and an edge dislocation is modelled at...
International audienceIn steels, the interaction between screw dislocations and carbon solutes has a...
Ferritic steels, made of a body-centered cubic (bcc) iron matrix with interstitial carbon solutes, a...
Static strain aging is an important concept in metalurgy that refers to the hardening of a material ...
International audienceWe report on both experimental and modeling of carbon and nitrogen segregation...
In order to improve our understanding of alloy plasticity, it is important to describe at the atomic...
Les aciers de structures sont sujets aux phénomène de vieillissement sous déformation qui se traduit...
High-resolution transmission electron microscopy and three-dimensional atom probe observations show ...
2018 Summer.Includes bibliographical references.While the behavior of carbon steel has been studied ...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
The high dislocation density (ρd) in Fe-C and/or Fe-N martensite is known to be one of the main caus...
AbstractSteel wires, under severe cold drawing deformation, develop high strength. High carbon steel...
AbstractA multiscale simulation approach based on atomistic calculations and a discrete diffusion mo...
Wire drawing is an efficient material processing technique for metals. Pearlitic steel is recognized...
Atom-probe tomography (APT) and synchrotron X-ray diffraction (XRD) were combined to study the carbo...
International audienceThe interaction of C atoms with a screw and an edge dislocation is modelled at...
International audienceIn steels, the interaction between screw dislocations and carbon solutes has a...
Ferritic steels, made of a body-centered cubic (bcc) iron matrix with interstitial carbon solutes, a...
Static strain aging is an important concept in metalurgy that refers to the hardening of a material ...
International audienceWe report on both experimental and modeling of carbon and nitrogen segregation...
In order to improve our understanding of alloy plasticity, it is important to describe at the atomic...
Les aciers de structures sont sujets aux phénomène de vieillissement sous déformation qui se traduit...
High-resolution transmission electron microscopy and three-dimensional atom probe observations show ...
2018 Summer.Includes bibliographical references.While the behavior of carbon steel has been studied ...
Dislocation-solute interaction plays fundamental roles in mechanical properties of alloys. Here, we ...
The high dislocation density (ρd) in Fe-C and/or Fe-N martensite is known to be one of the main caus...
AbstractSteel wires, under severe cold drawing deformation, develop high strength. High carbon steel...