Phase equilibria and liquidus temperatures in the CaO-SiO-AlO-MgO system with CaO/SiO weight ratio of 1.30 have been experimentally determined by means of high temperature equilibration and quenching technique followed by electron probe X-ray microanalysis. Isotherms between 1 723 and 1 773 K were determined in the primary phase fields of melilite, dicalcium silicate, spinel, merwinite and periclase that are relevant to ironmaking slags. Effects of AlO, MgO and CaO/SiO ratio on the liquidus temperatures have been discussed. Compositions of the solid phases corresponding to the liquidus have been accurately measured that will be used for development of the thermodynamic database
The blast furnace process continues to be the principal technique used for ironmaking in the world. ...
The phase equilibria and liquidus temperatures in the system ZnO-"FeO"-AlO-CaO-SiO in equilibrium wi...
The phase equilibria in the ZnO-"FeO"-AlO -CaO-SiO-MgO system have been determined experimentally in...
Phase equilibria and liquidus temperatures in the CaO-SiO-AlO-MgO system with CaO/SiO2 weight ratio ...
Slags play an important role in blast furnace operation, and their compositions are based on the CaO...
A series of FeO-containing slags are present in iron blast furnace. Phase equilibria play an importa...
The "FeO"-containing slags in the low part of blast furnace (BF) are of great importance to the oper...
The “FeO”-containing slags play an important role in the operation of an ironmaking blast furnace (B...
© 1997 Dr. Rachel RaitNew iron and steel making processes are usually highly intensified and therefo...
Phase equilibria studies have been experimentally carried out in the ZnO-'FeO'-Al2O3-CaOSiO2-MgO sys...
Phase equilibria of silicate slags relevant to the copper smelting/converting operations have been ...
The blast furnace process (BF) continues to be the principal technique used for ironmaking in the wo...
The phase equilibria and liquidus temperatures in the ZnO-"FeO"- AlO-CaO-SiO system in equilibrium w...
The phase equilibria and the liquidus temperatures in the system ZnO-"FeO"-AlO-CaO-SiO have been det...
Ferrous calcium silicate slags are used in primary and secondary metallurgical processes (described ...
The blast furnace process continues to be the principal technique used for ironmaking in the world. ...
The phase equilibria and liquidus temperatures in the system ZnO-"FeO"-AlO-CaO-SiO in equilibrium wi...
The phase equilibria in the ZnO-"FeO"-AlO -CaO-SiO-MgO system have been determined experimentally in...
Phase equilibria and liquidus temperatures in the CaO-SiO-AlO-MgO system with CaO/SiO2 weight ratio ...
Slags play an important role in blast furnace operation, and their compositions are based on the CaO...
A series of FeO-containing slags are present in iron blast furnace. Phase equilibria play an importa...
The "FeO"-containing slags in the low part of blast furnace (BF) are of great importance to the oper...
The “FeO”-containing slags play an important role in the operation of an ironmaking blast furnace (B...
© 1997 Dr. Rachel RaitNew iron and steel making processes are usually highly intensified and therefo...
Phase equilibria studies have been experimentally carried out in the ZnO-'FeO'-Al2O3-CaOSiO2-MgO sys...
Phase equilibria of silicate slags relevant to the copper smelting/converting operations have been ...
The blast furnace process (BF) continues to be the principal technique used for ironmaking in the wo...
The phase equilibria and liquidus temperatures in the ZnO-"FeO"- AlO-CaO-SiO system in equilibrium w...
The phase equilibria and the liquidus temperatures in the system ZnO-"FeO"-AlO-CaO-SiO have been det...
Ferrous calcium silicate slags are used in primary and secondary metallurgical processes (described ...
The blast furnace process continues to be the principal technique used for ironmaking in the world. ...
The phase equilibria and liquidus temperatures in the system ZnO-"FeO"-AlO-CaO-SiO in equilibrium wi...
The phase equilibria in the ZnO-"FeO"-AlO -CaO-SiO-MgO system have been determined experimentally in...