Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomistic and mesoscale models and uses theoretically determined parameters. First, a cluster expansion model for total energy has been trained for atomistic configurations (FCC lattice) based on the data from density functional simulations of electronic structure. Free energy curves as a function of solute (Mg, Si) concentrations and disorder have been obtained by using this parameterisation together with meta-dynamics Monte Carlo sampling. In addition, free energy data, surface tensions as well as strain energy using the linear elasticity theory have been collected to be combined for a mesoscale phase-field model. The application of this approach ...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
We extend a first principles based hierarchical multi-scale model scheme for describing a fully cohe...
We extend a first principles based hierarchical multi-scale model scheme for describing a fully cohe...
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...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
The β′′ precipitate is the main hardening phase in age hardenable Al-Mg-Si alloys, and it is therefo...
The β′′ precipitate is the main hardening phase in age hardenable Al-Mg-Si alloys, and it is therefo...
Heat treatable aluminium alloys of the 6xxx series are important for many industrial applications in...
In this work, we seek to elucidate a common stabilization principle for the metastable and equilibri...
Multiscale modelling of hardening precipitate interfaces in alloy design This project will develop a...
In this work, we seek to elucidate a common stabilization principle for the metastable and equilibri...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Ternary Al–Mg–Si alloys have been modelled based on a multi-scale approach that spans across atomist...
We extend a first principles based hierarchical multi-scale model scheme for describing a fully cohe...
We extend a first principles based hierarchical multi-scale model scheme for describing a fully cohe...
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...
Solute atom nanoscale precipitates are responsible for the favourable mechanical properties of heat ...
The β′′ precipitate is the main hardening phase in age hardenable Al-Mg-Si alloys, and it is therefo...
The β′′ precipitate is the main hardening phase in age hardenable Al-Mg-Si alloys, and it is therefo...
Heat treatable aluminium alloys of the 6xxx series are important for many industrial applications in...
In this work, we seek to elucidate a common stabilization principle for the metastable and equilibri...
Multiscale modelling of hardening precipitate interfaces in alloy design This project will develop a...
In this work, we seek to elucidate a common stabilization principle for the metastable and equilibri...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...
Precipitation strengthening is a highly complex phenomenon on the nanoscale, responsible for providi...
The Cluster Expansion formalism based on Density Functional Theory (DFT) simulation data has been ap...