The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been applied for Al–Mg alloys with high accuracy (∼1 meV/atom). The atomistic simulations are used to model the Al–Mg phase diagram, phase boundaries and the initial solute clustering at different compositions and temperatures. The obtained free energies of formation for the FCC, HCP and γ-phase are in accordance with the experimental phase diagram. The calculations demonstrate the formation of Guinier-Preston (GP) zones of Al3Mg (L12 phase) within the Al matrix under varying conditions. The computed transition temperatures where the ordered structures dissolve are approximately 50K higher than experimental data. The free energy barriers associated ...
Bonding energies and volume misfits for alloying elements and vacancies in multicomponent Al–Mg–Si a...
Solute clusters affect the physical properties of alloys. Knowledge of the atomic structure of solut...
Scanning transmission electron microscopy imaging of Al–Zn–Mg alloys has provided new information on...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The early stages of clustering in Al-14.8 Mg alloy have been studied using atomistic modelling and 3...
The early stages of clustering in Al-14.8 Mg alloy have been studied using atomistic modelling and 3...
Phase transformations such as precipitation are used to control the strength of many technologically...
Phase transformations such as precipitation are used to control the strength of many technologically...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
A class of proposed coherent precipitate structures (Guinier-Preston zones) in the Al-Mg-Si alloy ar...
A class of proposed coherent precipitate structures (Guinier-Preston zones) in the Al-Mg-Si alloy ar...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
Bonding energies and volume misfits for alloying elements and vacancies in multicomponent Al–Mg–Si a...
Solute clusters affect the physical properties of alloys. Knowledge of the atomic structure of solut...
Scanning transmission electron microscopy imaging of Al–Zn–Mg alloys has provided new information on...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
The early stages of clustering in Al-14.8 Mg alloy have been studied using atomistic modelling and 3...
The early stages of clustering in Al-14.8 Mg alloy have been studied using atomistic modelling and 3...
Phase transformations such as precipitation are used to control the strength of many technologically...
Phase transformations such as precipitation are used to control the strength of many technologically...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
A class of proposed coherent precipitate structures (Guinier-Preston zones) in the Al-Mg-Si alloy ar...
A class of proposed coherent precipitate structures (Guinier-Preston zones) in the Al-Mg-Si alloy ar...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
Bonding energies and volume misfits for alloying elements and vacancies in multicomponent Al–Mg–Si a...
Solute clusters affect the physical properties of alloys. Knowledge of the atomic structure of solut...
Scanning transmission electron microscopy imaging of Al–Zn–Mg alloys has provided new information on...