International audienceIn situ straining experiments were performed in a TEM on an equimolar CoCrFeMnNi (Cantor) high entropy alloy at room and cryogenic temperature. Perfect and partial dislocation activity were recorded in both cases. Twinning directly follows the development of partial dislocation shearing that has various origins (perfect dislocation splitting, anchoring). It is shown that, although twinning is more frequently observed at liquid nitrogen temperature, its prevalence depends mainly on crystal orientation. As a result, twinning and perfect dislocation plasticity are likely to occur jointly in random oriented polycrystals, even at early stages of deformation
Mechanical twinning in polycrystalline quartz was investigated in situ with time-of-flight neutron d...
The kinetics of precipitation hardening at 1073 K of the (CoCrFeNi)94Ti2Al4 high-entropy alloy (HEA)...
The deformation responses at 77 and 293 K of a FeCoNiCr high-entropy alloy, produced by a powder met...
International audienceIn situ straining experiments were performed in a TEM on an equimolar CoCrFeMn...
In situ straining experiments were performed in a TEM on an equimolar CoCrFeMnNi (Cantor) high entro...
Cantor’s single-phase equiatomic FeNiCoCrMn alloy is a “high-entropy” alloy (or HEA) which crystalli...
AbstractAt low homologous temperatures (down to cryogenic temperatures), the CrMnFeCoNi high-entropy...
High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the ...
Temperature is known to affect deformation mechanisms in metallic alloys. As temperature decreases, ...
In the present study, equiatomic CoCrFeMnNi high entropy alloy (HEA) was subjected to thickness redu...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
International audienceThe influence of the physical mechanisms activated during deformation and anne...
The effect of alloying with Mo atoms 4 at.% on the twinning deformation, critical resolved shear str...
© 2018 Acta Materialia Inc. To enhance strain hardening of alloys beyond levels accessible by forest...
International audienceCrystal lattice rotations induced by twinning and shear banding developed in a...
Mechanical twinning in polycrystalline quartz was investigated in situ with time-of-flight neutron d...
The kinetics of precipitation hardening at 1073 K of the (CoCrFeNi)94Ti2Al4 high-entropy alloy (HEA)...
The deformation responses at 77 and 293 K of a FeCoNiCr high-entropy alloy, produced by a powder met...
International audienceIn situ straining experiments were performed in a TEM on an equimolar CoCrFeMn...
In situ straining experiments were performed in a TEM on an equimolar CoCrFeMnNi (Cantor) high entro...
Cantor’s single-phase equiatomic FeNiCoCrMn alloy is a “high-entropy” alloy (or HEA) which crystalli...
AbstractAt low homologous temperatures (down to cryogenic temperatures), the CrMnFeCoNi high-entropy...
High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the ...
Temperature is known to affect deformation mechanisms in metallic alloys. As temperature decreases, ...
In the present study, equiatomic CoCrFeMnNi high entropy alloy (HEA) was subjected to thickness redu...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
International audienceThe influence of the physical mechanisms activated during deformation and anne...
The effect of alloying with Mo atoms 4 at.% on the twinning deformation, critical resolved shear str...
© 2018 Acta Materialia Inc. To enhance strain hardening of alloys beyond levels accessible by forest...
International audienceCrystal lattice rotations induced by twinning and shear banding developed in a...
Mechanical twinning in polycrystalline quartz was investigated in situ with time-of-flight neutron d...
The kinetics of precipitation hardening at 1073 K of the (CoCrFeNi)94Ti2Al4 high-entropy alloy (HEA)...
The deformation responses at 77 and 293 K of a FeCoNiCr high-entropy alloy, produced by a powder met...