In the earlier work, a dynamic model for the BOF process based on the multi-zone reaction kinetics has been developed. In the preceding part, the mechanism of manganese transfer in three reactive zones of the converter has been analyzed. This study identifies that temperature at the slag-metal reaction interface plays a major role in the Mn reaction kinetics and thus a mathematical treatment to evaluate temperature at each reaction interface has been successfully employed in the rate calculation. The Mn removal rate obtained from different zones of the converter predicts that the first stage of the blow is dominated by the oxidation of Mn at the jet impact zone, albeit some additional Mn refining has been observed as a result of the oxidati...
The kinetics of MnO reduction from high carbon ferromanganese slag was investigated using a sessile ...
The oxidation and reduction kinetics of a 1.7 wt.% Mn steel alloy with 0.1 wt.% C was studied in dif...
The development of a global model for oxygen steelmaking and its validation against industrial data ...
A multi-zone kinetic model coupled with a dynamic slag generation model was developed for the simula...
In a top blowing steel making process (BOF), the refining reactions of C, Si, Mn and P are related t...
Manganese serves as an important alloying element in commercial grades of steel and high levels of M...
In a previous study by the authors (Rout et al.[1]) a dynamic model for the BOF, employing the conce...
Slag-metal emulsion plays an important role in the oxidation kinetics of metalloids in oxygen steelm...
One of the main goals in oxygen steelmaking process is to reduce the carbon concentration of the liq...
Oxygen steelmaking is complex because of the presence of multiple phases, many components, and the n...
A comprehensive model of oxygen steelmaking that includes the kinetics of scrap melting, flux dissol...
A numerical model based on reaction the rmodynamics has been developed to simulate basic oxygen stee...
The traditional way of making manganese alloys are by reduction of different manganese oxides, iron ...
Previous work showed that manganese ore reduction rates are strongly influenced by the extent of sl...
A new approach has been adopted to predict the contribution of the impact and slag-metal bulk zones ...
The kinetics of MnO reduction from high carbon ferromanganese slag was investigated using a sessile ...
The oxidation and reduction kinetics of a 1.7 wt.% Mn steel alloy with 0.1 wt.% C was studied in dif...
The development of a global model for oxygen steelmaking and its validation against industrial data ...
A multi-zone kinetic model coupled with a dynamic slag generation model was developed for the simula...
In a top blowing steel making process (BOF), the refining reactions of C, Si, Mn and P are related t...
Manganese serves as an important alloying element in commercial grades of steel and high levels of M...
In a previous study by the authors (Rout et al.[1]) a dynamic model for the BOF, employing the conce...
Slag-metal emulsion plays an important role in the oxidation kinetics of metalloids in oxygen steelm...
One of the main goals in oxygen steelmaking process is to reduce the carbon concentration of the liq...
Oxygen steelmaking is complex because of the presence of multiple phases, many components, and the n...
A comprehensive model of oxygen steelmaking that includes the kinetics of scrap melting, flux dissol...
A numerical model based on reaction the rmodynamics has been developed to simulate basic oxygen stee...
The traditional way of making manganese alloys are by reduction of different manganese oxides, iron ...
Previous work showed that manganese ore reduction rates are strongly influenced by the extent of sl...
A new approach has been adopted to predict the contribution of the impact and slag-metal bulk zones ...
The kinetics of MnO reduction from high carbon ferromanganese slag was investigated using a sessile ...
The oxidation and reduction kinetics of a 1.7 wt.% Mn steel alloy with 0.1 wt.% C was studied in dif...
The development of a global model for oxygen steelmaking and its validation against industrial data ...