Since CaO-Al2O3-based mold fluxes are one of the most important mold flux systems in metallurgic processes, it is important to explore their structure characteristics and viscosity. Molecular dynamics simulation is performed to study the effect of w(CaO)/w(Al2O3) ratio on both the structural and viscosity properties of CaO-Al2O3-based mold fluxes. A systematic analysis of the structure and thermodynamics on CaO-Al2O3-based mold fluxes is carried out, and it is well known that the viscosity of mold fluxes is related to the structure. The results show that the formation of stable structures of Si-O in the mold fluxes was beneficial to reduce the probability of structural interconnection, degree of polymerization, and viscosity of the molten s...
DoctorDuring a continuous casting process, high Al content in the liquid steel causes rapid reaction...
BO has the advantages of reducing the liquidus temperature and enhancing the fluidity of slag, while...
The effects of BaO and NaO on the viscosity and structure of CaO–SiO–MgO–AlO-based blast furnace sla...
The high content of aluminum in the steel reacts with the CaO-Si2O-based mold fluxes, resulting in d...
The effect of substituting CaO with BaO and CaO/Al2O3 ratio on the viscosity of CaO⁻BaO⁻...
Molten compositions in the CaO-K2O-SiO2 system relevant to woody biomass ash slags were simulated wi...
Molten compositions in the CaO-K2O-SiO2 system relevant to woody biomass ash slags were simulated wi...
SiO-AlO-CaO-MgO is the most significant slag system in the blast furnace ironmaking process and it i...
The SiO-AlO-CaO-MgO is the basic structural system of blast furnace slag and the composition directl...
This article elucidates the quantitative relationship between viscosity and structure in a basic sla...
The effect of CaO and MgO on the structure and properties of aluminosilicate systems were simulated ...
The effect of NaO on the structure and properties of SiO-AlO-CaO-MgO-NaO slag system was studied by ...
An in-depth understanding about the transformation of molten coke ash is significant to uncover the ...
An in-depth understanding about the transformation of molten coke ash is significant to uncover the ...
Abstract The effect of CaO/Al₂O₃ ratio on the structure of CaO–Al₂O₃–B₂O₃ based glassy mould fluxes...
DoctorDuring a continuous casting process, high Al content in the liquid steel causes rapid reaction...
BO has the advantages of reducing the liquidus temperature and enhancing the fluidity of slag, while...
The effects of BaO and NaO on the viscosity and structure of CaO–SiO–MgO–AlO-based blast furnace sla...
The high content of aluminum in the steel reacts with the CaO-Si2O-based mold fluxes, resulting in d...
The effect of substituting CaO with BaO and CaO/Al2O3 ratio on the viscosity of CaO⁻BaO⁻...
Molten compositions in the CaO-K2O-SiO2 system relevant to woody biomass ash slags were simulated wi...
Molten compositions in the CaO-K2O-SiO2 system relevant to woody biomass ash slags were simulated wi...
SiO-AlO-CaO-MgO is the most significant slag system in the blast furnace ironmaking process and it i...
The SiO-AlO-CaO-MgO is the basic structural system of blast furnace slag and the composition directl...
This article elucidates the quantitative relationship between viscosity and structure in a basic sla...
The effect of CaO and MgO on the structure and properties of aluminosilicate systems were simulated ...
The effect of NaO on the structure and properties of SiO-AlO-CaO-MgO-NaO slag system was studied by ...
An in-depth understanding about the transformation of molten coke ash is significant to uncover the ...
An in-depth understanding about the transformation of molten coke ash is significant to uncover the ...
Abstract The effect of CaO/Al₂O₃ ratio on the structure of CaO–Al₂O₃–B₂O₃ based glassy mould fluxes...
DoctorDuring a continuous casting process, high Al content in the liquid steel causes rapid reaction...
BO has the advantages of reducing the liquidus temperature and enhancing the fluidity of slag, while...
The effects of BaO and NaO on the viscosity and structure of CaO–SiO–MgO–AlO-based blast furnace sla...