Al-Co-Cr-Fe-Ni alloys have been modeled by computational thermodynamics according to the CALPHAD approach using literature data and results of a few key experiments performed in this work. As a result, an Al-Co-Cr-Fe-Ni thermodynamic database has been developed, based on the thermodynamic assessments of all the binary and ternary subsystems and the addition of a few quaternary interaction parameters. The assessment was supported by ESPEI (Extensible Self-optimizing Phase Equilibria Infrastructure), a tool for thermodynamic database development within the CALPHAD method. Computed phase equilibria in the quinary system are in good agreement with experimental data from the literature and the present experiments
A thermodynamic description of the Al-Cu-Fe-Mn quaternary system has been developed for the design o...
This study examines one of the limitations of CALPHAD databases when applied to high entropy alloys ...
Thermodynamic databases are essential prerequisites for developing advanced materials, such as Ni-ba...
An understanding of the thermodynamic and phase diagram data for the Al-Co-Fe system is essential fo...
A thermodynamic reassessment of the entire Al-Cr-Ni system has been made, according to the CALPHAD m...
To increase the strength of representative equiatomic CoCrFeMnNi HEAs (high entropy alloys), many re...
High entropy alloys (HEAs) are a recent area of research in materials science. Their namesake is bec...
Co-based alloys are key materials for several high temperature applications where high corrosion and...
In order to establish a self-consistent thermodynamic database for Al-Si-Mg-Ce quaternary system, al...
A new face-centered cubic (fcc) high entropy alloy system with non-equiatomic compositions has been ...
CALPHAD (CALculation of PHAse Diagrams) denotes the methodology used to assess thermodynamic data ba...
CALPHAD (CALculation of PHAse Diagrams) denotes the methodology used to assess thermodynamic data ba...
XRD raw data of the milled and heat-treated Co,Fe,Mn,Ni,Zn-containing high-entropy alloys (HEAs) is ...
The development of Ni-based alloys proved the importance of dedicated Gibbs energies databases const...
The development of Ni-based alloys proved the importance of dedicated Gibbs energies databases const...
A thermodynamic description of the Al-Cu-Fe-Mn quaternary system has been developed for the design o...
This study examines one of the limitations of CALPHAD databases when applied to high entropy alloys ...
Thermodynamic databases are essential prerequisites for developing advanced materials, such as Ni-ba...
An understanding of the thermodynamic and phase diagram data for the Al-Co-Fe system is essential fo...
A thermodynamic reassessment of the entire Al-Cr-Ni system has been made, according to the CALPHAD m...
To increase the strength of representative equiatomic CoCrFeMnNi HEAs (high entropy alloys), many re...
High entropy alloys (HEAs) are a recent area of research in materials science. Their namesake is bec...
Co-based alloys are key materials for several high temperature applications where high corrosion and...
In order to establish a self-consistent thermodynamic database for Al-Si-Mg-Ce quaternary system, al...
A new face-centered cubic (fcc) high entropy alloy system with non-equiatomic compositions has been ...
CALPHAD (CALculation of PHAse Diagrams) denotes the methodology used to assess thermodynamic data ba...
CALPHAD (CALculation of PHAse Diagrams) denotes the methodology used to assess thermodynamic data ba...
XRD raw data of the milled and heat-treated Co,Fe,Mn,Ni,Zn-containing high-entropy alloys (HEAs) is ...
The development of Ni-based alloys proved the importance of dedicated Gibbs energies databases const...
The development of Ni-based alloys proved the importance of dedicated Gibbs energies databases const...
A thermodynamic description of the Al-Cu-Fe-Mn quaternary system has been developed for the design o...
This study examines one of the limitations of CALPHAD databases when applied to high entropy alloys ...
Thermodynamic databases are essential prerequisites for developing advanced materials, such as Ni-ba...