A structurally-based quasi-chemical viscosity model for fully liquid slags in the Al2O3 CaO-'FeO'-MgOSiO2 system has been developed. The focus of the work described in the present paper is the analysis of the experimental data and viscosity models in the quaternary system Al2O3 CaO-MgO-SiO2 and its subsystems. A review of the experimental data, viscometry methods used and viscosity models available in the Al2O3 CaO-MgO-SiO2 and its sub-systems is reported. The quasi-chemical viscosity model is shown to provide good agreement between experimental data and predictions over the whole compositional range
Slags are critical components in several iron and steelmaking processes. In steelmaking, different s...
The Al2O3-CaO-SiO2 ternary is a basic oxide system relevant for the Pedersen alumina production proc...
A model has been developed which enables the viscosities of coal ash slags to be predicted as a func...
A structurally-based quasi-chemical viscosity model for fully liquid slags in the Al2O3 CaO-'FeO'-Mg...
A structurally-based quasi-chemical viscosity model has been developed for the AlO-CaO-'FeO'-MgO-SiO...
A model has been developed that enables the viscosities of the fully liquid slag in the multi-compon...
A general model based on the Urbain formalism has been developed, which enables the viscosities of l...
A structurally based viscosity model for fully liquid silicate slags has been proposed and applied t...
Slag viscosity as a function of temperature and composition is a very important factor in determinin...
Knowledge on viscosity of molten oxide slag has been of a significant importance in various kinds of...
Metallurgical properties of slag are determined to a great extent by its viscosity. High-temperature...
The viscosities of high alumina blast furnace slags were experimentally determined by the rotating c...
The viscosity model recently developed for fully liquid pure oxides and binary systems is extended t...
A new method, combining KTH model with geometrical model (General solution model by Chou) to estimat...
The primary aim of the present investigation is to develop a model which permits to calculate/predic...
Slags are critical components in several iron and steelmaking processes. In steelmaking, different s...
The Al2O3-CaO-SiO2 ternary is a basic oxide system relevant for the Pedersen alumina production proc...
A model has been developed which enables the viscosities of coal ash slags to be predicted as a func...
A structurally-based quasi-chemical viscosity model for fully liquid slags in the Al2O3 CaO-'FeO'-Mg...
A structurally-based quasi-chemical viscosity model has been developed for the AlO-CaO-'FeO'-MgO-SiO...
A model has been developed that enables the viscosities of the fully liquid slag in the multi-compon...
A general model based on the Urbain formalism has been developed, which enables the viscosities of l...
A structurally based viscosity model for fully liquid silicate slags has been proposed and applied t...
Slag viscosity as a function of temperature and composition is a very important factor in determinin...
Knowledge on viscosity of molten oxide slag has been of a significant importance in various kinds of...
Metallurgical properties of slag are determined to a great extent by its viscosity. High-temperature...
The viscosities of high alumina blast furnace slags were experimentally determined by the rotating c...
The viscosity model recently developed for fully liquid pure oxides and binary systems is extended t...
A new method, combining KTH model with geometrical model (General solution model by Chou) to estimat...
The primary aim of the present investigation is to develop a model which permits to calculate/predic...
Slags are critical components in several iron and steelmaking processes. In steelmaking, different s...
The Al2O3-CaO-SiO2 ternary is a basic oxide system relevant for the Pedersen alumina production proc...
A model has been developed which enables the viscosities of coal ash slags to be predicted as a func...