The principal objective of this work was to elucidate the effect of microstructural features on the intrinsic dislocation mechanisms in two FCC alloys. First alloy Al0.1CoCrFeNi was from a new class of material known as complex concentrated alloys, particularly high entropy alloys (HEA). The second was a conventional Al-Mg-Sc alloy in ultrafine-grained (UFG) condition. In the case of HEA, the lattice possess significant lattice strain due to the atomic size variation and cohesive energy differences. Moreover, both the lattice friction stress and the Peierls barrier height are significantly larger than the conventional FCC metals and alloys. The experimental evidences, so far, provide a distinctive identity to the nature and motion of disloc...
This study focuses on a quantitative analysis of dislocation accumulation after cold plastic deforma...
Gradient dislocation cell structured Al0.1CoCrFeNi high-entropy alloys exhibited exceptional strengt...
Plastic deformation and rate-controlling mechanism during tensile deformation of various body-center...
Deformation mechanisms of a high-entropy alloy with a single face-centered-cubic phase, Al0.3CoCrFeN...
There is an ongoing need for the design and development of metal alloys with improved properties for...
The nature of obstacles to dislocation motion in CoCrFeMnNi alloy was analyzed using the thermally a...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
The effect of severe plastic deformation on microstructure and phase evolution was investigated in a...
High-entropy alloys are multicomponent metallic materials currently attracting high research interes...
High-entropy alloys (HEAs) with a heterogeneous grain structure have been revealed to possess excell...
Dynamic behavior of the single phase (fcc) Al0.3CoCrFeNi and CoCrFeMnNi high-entropy alloys (HEAs) w...
This study probes on the deformation mechanisms present in nano crystalline AlCoCrFeNi high-entropy ...
High temperature deformation behavior of Al0.2CoCrFeNiMo0.5 high entropy alloy was investigated in f...
The high-temperature deformation behaviour of Al0.7CoCrFeNi alloy was studied at 800-1100 degrees C ...
International audienceThe evolution of microstructure, texture, and mechanical properties of an indu...
This study focuses on a quantitative analysis of dislocation accumulation after cold plastic deforma...
Gradient dislocation cell structured Al0.1CoCrFeNi high-entropy alloys exhibited exceptional strengt...
Plastic deformation and rate-controlling mechanism during tensile deformation of various body-center...
Deformation mechanisms of a high-entropy alloy with a single face-centered-cubic phase, Al0.3CoCrFeN...
There is an ongoing need for the design and development of metal alloys with improved properties for...
The nature of obstacles to dislocation motion in CoCrFeMnNi alloy was analyzed using the thermally a...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
The effect of severe plastic deformation on microstructure and phase evolution was investigated in a...
High-entropy alloys are multicomponent metallic materials currently attracting high research interes...
High-entropy alloys (HEAs) with a heterogeneous grain structure have been revealed to possess excell...
Dynamic behavior of the single phase (fcc) Al0.3CoCrFeNi and CoCrFeMnNi high-entropy alloys (HEAs) w...
This study probes on the deformation mechanisms present in nano crystalline AlCoCrFeNi high-entropy ...
High temperature deformation behavior of Al0.2CoCrFeNiMo0.5 high entropy alloy was investigated in f...
The high-temperature deformation behaviour of Al0.7CoCrFeNi alloy was studied at 800-1100 degrees C ...
International audienceThe evolution of microstructure, texture, and mechanical properties of an indu...
This study focuses on a quantitative analysis of dislocation accumulation after cold plastic deforma...
Gradient dislocation cell structured Al0.1CoCrFeNi high-entropy alloys exhibited exceptional strengt...
Plastic deformation and rate-controlling mechanism during tensile deformation of various body-center...