A new thermodynamic parameter PHSS (PHSS = ΔHC(ΔSσ/kB)(ΔSC/R)) is proposed, to describe and predict the Glass Forming Ability (GFA) of Fe based alloys. Here ΔHC is the chemical enthalpy of mixing, ΔSσ is the mismatch entropy and ΔSC is the configurational entropy. The PHSS parameter incorporates enthalpy of mixing, size mismatch and the number of elements in the systems which influence GFA significantly. It was observed from Rapid Solidification Processing (RSP) and Mechanical Alloying (MA) studies that, all alloys with PHSS in between −0.55 kJ/mol to −6.00 kJ/mol would form glass in the Fe–Zr–B system. MA and RSP experiments on multi-component Fe–Cr–Ni–Zr–B alloys indicated that PHSS is a better para...
The present design rules for metallic glasses with respect to glass formation, thermal stability (re...
Compositions with easy bulk metallic glass formation have been identified in quinary systems with th...
Mechanical alloying (MA) of blended elemental powder mixtures of Fe42Zr10X28B20 (X=Al, Co, Ge, Mn, N...
Topological factors such as mismatch entropy and configurational entropy, along with thermodynamic e...
Prediction of bulk metallic glass (BMG) forming compositions has always been a challenge due to ther...
A thermodynamic model parameter PH-S, which is a product of enthalpy of chemical mixing and mismatch...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
Compositions with high glass forming ability have been identified in Zr-Cu-Al system with the help o...
In the present thermodynamic model, the optimization of bulk metallic glass forming compositions in ...
A new and simple criterion with which to quantitatively predict the glass forming ability (GFA) of m...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
A theoretical approach for predicting glass forming ability of transition metal alloys is proposed. ...
Accurate values needed for the most commonly used indicators of good Glass Forming Ability (GFA) in ...
Zr based bulk metallic glasses with unusual combination of properties are deemed to be potential mat...
This work underlines the easy use of thermodynamics-based approach in identifying the glass forming ...
The present design rules for metallic glasses with respect to glass formation, thermal stability (re...
Compositions with easy bulk metallic glass formation have been identified in quinary systems with th...
Mechanical alloying (MA) of blended elemental powder mixtures of Fe42Zr10X28B20 (X=Al, Co, Ge, Mn, N...
Topological factors such as mismatch entropy and configurational entropy, along with thermodynamic e...
Prediction of bulk metallic glass (BMG) forming compositions has always been a challenge due to ther...
A thermodynamic model parameter PH-S, which is a product of enthalpy of chemical mixing and mismatch...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
Compositions with high glass forming ability have been identified in Zr-Cu-Al system with the help o...
In the present thermodynamic model, the optimization of bulk metallic glass forming compositions in ...
A new and simple criterion with which to quantitatively predict the glass forming ability (GFA) of m...
A new thermodynamic calculation scheme has been proposed to estimate the composition dependency of g...
A theoretical approach for predicting glass forming ability of transition metal alloys is proposed. ...
Accurate values needed for the most commonly used indicators of good Glass Forming Ability (GFA) in ...
Zr based bulk metallic glasses with unusual combination of properties are deemed to be potential mat...
This work underlines the easy use of thermodynamics-based approach in identifying the glass forming ...
The present design rules for metallic glasses with respect to glass formation, thermal stability (re...
Compositions with easy bulk metallic glass formation have been identified in quinary systems with th...
Mechanical alloying (MA) of blended elemental powder mixtures of Fe42Zr10X28B20 (X=Al, Co, Ge, Mn, N...