The deformation behavior of CrMnFeCoNi high entropy alloy was investigated by in situ neutron diffraction at an ultralow temperature of 15 K. Analysis of the diffraction peak widths showed an extremely high dislocation density at 15 K, reaching ~1016 m−2. In addition, the dislocation density was found to closely follow the development of texture caused by deformation. In contrast to deformation by dislocation slip at room temperature, the ultralow-temperature deformation also involved stacking faults, twinning and serrations. The deformation pathway at ultralow temperature is outlined which is responsible for the extraordinary strength–ductility combination
The equiatomic face-centered cubic high-entropy alloy CrMnFeCoNi was severely deformed at room and l...
The formation of single phase solid solutions from combinations of multiple principal elements, with...
International audienceSurface hardening by mechanical attrition at room and cryogenic temperatures h...
The deformation behavior of CrMnFeCoNi high entropy alloy was investigated by in situ neutron diffra...
The deformation responses at 77 and 293 K of a FeCoNiCr high-entropy alloy, produced by a powder met...
High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the ...
The deformation behavior of an equi-atomic face-centered-cubic CoCrFeNi high entropy alloy was inves...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
Temperature is known to affect deformation mechanisms in metallic alloys. As temperature decreases, ...
AbstractAt low homologous temperatures (down to cryogenic temperatures), the CrMnFeCoNi high-entropy...
In this study, we investigate the influence of dislocation strengthening in the metastable parent ph...
Deformation mechanisms of a high-entropy alloy with a single face-centered-cubic phase, Al0.3CoCrFeN...
AbstractThe formation of single phase solid solutions from combinations of multiple principal elemen...
Strategies involving metastable phases have been the basis of the design of numerous alloys, yet res...
Metallic materials can be strengthened by various kinds of plastic deformation strategies. However, ...
The equiatomic face-centered cubic high-entropy alloy CrMnFeCoNi was severely deformed at room and l...
The formation of single phase solid solutions from combinations of multiple principal elements, with...
International audienceSurface hardening by mechanical attrition at room and cryogenic temperatures h...
The deformation behavior of CrMnFeCoNi high entropy alloy was investigated by in situ neutron diffra...
The deformation responses at 77 and 293 K of a FeCoNiCr high-entropy alloy, produced by a powder met...
High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the ...
The deformation behavior of an equi-atomic face-centered-cubic CoCrFeNi high entropy alloy was inves...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
Temperature is known to affect deformation mechanisms in metallic alloys. As temperature decreases, ...
AbstractAt low homologous temperatures (down to cryogenic temperatures), the CrMnFeCoNi high-entropy...
In this study, we investigate the influence of dislocation strengthening in the metastable parent ph...
Deformation mechanisms of a high-entropy alloy with a single face-centered-cubic phase, Al0.3CoCrFeN...
AbstractThe formation of single phase solid solutions from combinations of multiple principal elemen...
Strategies involving metastable phases have been the basis of the design of numerous alloys, yet res...
Metallic materials can be strengthened by various kinds of plastic deformation strategies. However, ...
The equiatomic face-centered cubic high-entropy alloy CrMnFeCoNi was severely deformed at room and l...
The formation of single phase solid solutions from combinations of multiple principal elements, with...
International audienceSurface hardening by mechanical attrition at room and cryogenic temperatures h...