The composition dependence of glass forming ability in the ternary Al-Cu-Y system is predicted by thermodynamic calculations based on the Miedema’s model and Alonso’s method. By comparing the relative energetic status of the amorphous phase versus the solid solution phase, a hexagonal composition region that energetically favoring the metallic glass formation is predicted. The glass formation driving force and crystallization resistance are further calculated and the composition of Al72Cu10Y18 is pinpointed with the largest glass forming ability in the Al-Cu-Y system. The calculation results are well supported by the experimental observations reported in the literature
From the earlier works on the prediction of Amorphous Forming Composition Range (AFCR) using Miedema...
This study investigates glass formation, phase equilibria, and thermodynamic descriptions of the Al-...
Phase relationships of the ternary Al-Cu-Yb system have been assessed using a combination of CALP...
A simple thermodynamic calculation scheme has been proposed to predict the composition dependency of...
A thermodynamic approach to predict bulk glass-forming compositions in binary metallic systems was r...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
Compositions with high glass forming ability have been identified in Zr-Cu-Al system with the help o...
Prediction of bulk metallic glass (BMG) forming compositions has always been a challenge due to ther...
We have calculated the T0 curves for several Al-rare-earth binary alloys to assess the importance of...
A combination of an extension of the topological instability ""lambda criterion"" and a thermodynami...
A combination of an extension of the topological instability ""lambda criterion"" and a thermodynami...
The glass-forming composition ranges in Al-La-Ni and Mg-TM (Cu, Zn)-Y alloys were predicted using Mi...
In the present study, the role of zinc, silver and nickel on the glass forming ability of a series o...
Topological factors such as mismatch entropy and configurational entropy, along with thermodynamic e...
From the earlier works on the prediction of Amorphous Forming Composition Range (AFCR) using Miedema...
This study investigates glass formation, phase equilibria, and thermodynamic descriptions of the Al-...
Phase relationships of the ternary Al-Cu-Yb system have been assessed using a combination of CALP...
A simple thermodynamic calculation scheme has been proposed to predict the composition dependency of...
A thermodynamic approach to predict bulk glass-forming compositions in binary metallic systems was r...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
Compositions with high glass forming ability have been identified in Zr-Cu-Al system with the help o...
Prediction of bulk metallic glass (BMG) forming compositions has always been a challenge due to ther...
We have calculated the T0 curves for several Al-rare-earth binary alloys to assess the importance of...
A combination of an extension of the topological instability ""lambda criterion"" and a thermodynami...
A combination of an extension of the topological instability ""lambda criterion"" and a thermodynami...
The glass-forming composition ranges in Al-La-Ni and Mg-TM (Cu, Zn)-Y alloys were predicted using Mi...
In the present study, the role of zinc, silver and nickel on the glass forming ability of a series o...
Topological factors such as mismatch entropy and configurational entropy, along with thermodynamic e...
From the earlier works on the prediction of Amorphous Forming Composition Range (AFCR) using Miedema...
This study investigates glass formation, phase equilibria, and thermodynamic descriptions of the Al-...
Phase relationships of the ternary Al-Cu-Yb system have been assessed using a combination of CALP...