Interstitial alloying in CrMnFeCoNi-based high-entropy alloys is known to modify their mechanical properties. Specifically, strength can be increased due to interstitial solid-solution hardening, while simultaneously affecting ductility. In this paper, first-principles calculations are carried out to analyze the impact of interstitial C atoms on CrMnFeCoNi in the fcc and the hcp phases. Our results show that C solution energies are widely spread and sensitively depend on the specific local environments. Using the computed solution-energy distributions together with statistical mechanics concepts, we determine the impact of C on the phase stability. C atoms are found to stabilize the fcc phase as compared to the hcp phase, indicating that th...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
International audienceUsing atomic-scale first-principles energy calculations, we describe a methodo...
Interstitial alloying in CrMnFeCoNi-based high-entropy alloys is known to modify their mechanical pr...
Interstitial alloying in CrMnFeCoNi-based high-entropy alloys is known to modify their mechanical pr...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
High-entropy alloys (HEAs) are an intriguing new class of metallic materials due to their unique mec...
We investigated the effects of interstitial N and C on the stacking fault energy (SFE) of an equiato...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
This Master’s thesis is focused on theoretical study of the high entropy alloy CoCrNi using ab initi...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
International audienceUsing atomic-scale first-principles energy calculations, we describe a methodo...
Interstitial alloying in CrMnFeCoNi-based high-entropy alloys is known to modify their mechanical pr...
Interstitial alloying in CrMnFeCoNi-based high-entropy alloys is known to modify their mechanical pr...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
Interstitial alloying has become an important pillar in tuning and improving the materials propertie...
High-entropy alloys (HEAs) are an intriguing new class of metallic materials due to their unique mec...
We investigated the effects of interstitial N and C on the stacking fault energy (SFE) of an equiato...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
This Master’s thesis is focused on theoretical study of the high entropy alloy CoCrNi using ab initi...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
International audienceUsing atomic-scale first-principles energy calculations, we describe a methodo...