The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converged density-functional-theory (DFT) calculations for the three prototype face-centered cubic metals Al, Cu, and Ni. All relevant temperature-dependent contributions are considered including electronic, vibrational, magnetic, and explicit anharmonic Gibbs energy contributions as well as coupling terms employing state-of-the-art statistical sampling techniques. Particular emphasis is put on a careful comparison of different theoretical concepts to derive the stacking fault energy such as the axial-next-nearest-neighbor-Ising (ANNNI) model or the vacuum-slab approach. Our theoretical results are compared with an extensive set of previous theoretic...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
The Nickel-based Cantor-type concentrated alloys have drawn tremendous research interest as they exh...
Phase interface and stacking fault are two common planar defects in metallic materials. In the prese...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
We present comparative analysis of microscopic mechanisms relevant to plastic deformation of the fac...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
International audienceThe generalized stacking fault energy profile is fundamental to models of meta...
Generalized stacking fault energies of aluminum alloys were calculated using density functional theo...
The generalized stacking fault energy is a key ingredient to mesoscale models of dislocations. Here ...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
The linking of atomistic simulations of stress-driven processes to experimentally observed mechanica...
The formation energy of the interface between face-centered cubic (fcc) and hexagonal close packed (...
Quantum-mechanical calculations are used to determine the temperature dependence of the Gibbs energy...
A systematic study of the stacking fault energy (γSF) for the dilute Al-based alloys (Al23X, Al47X a...
The volume versus temperature relations for Ni 3 Si and Ni 3 Ge are obtained by using ...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
The Nickel-based Cantor-type concentrated alloys have drawn tremendous research interest as they exh...
Phase interface and stacking fault are two common planar defects in metallic materials. In the prese...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
We present comparative analysis of microscopic mechanisms relevant to plastic deformation of the fac...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
International audienceThe generalized stacking fault energy profile is fundamental to models of meta...
Generalized stacking fault energies of aluminum alloys were calculated using density functional theo...
The generalized stacking fault energy is a key ingredient to mesoscale models of dislocations. Here ...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
The linking of atomistic simulations of stress-driven processes to experimentally observed mechanica...
The formation energy of the interface between face-centered cubic (fcc) and hexagonal close packed (...
Quantum-mechanical calculations are used to determine the temperature dependence of the Gibbs energy...
A systematic study of the stacking fault energy (γSF) for the dilute Al-based alloys (Al23X, Al47X a...
The volume versus temperature relations for Ni 3 Si and Ni 3 Ge are obtained by using ...
Medium and high entropy alloys (MEAs and HEAs) based on 3d transition metals, such as face-centered ...
The Nickel-based Cantor-type concentrated alloys have drawn tremendous research interest as they exh...
Phase interface and stacking fault are two common planar defects in metallic materials. In the prese...