none4The effect of nepheline syenite on porosity–soaking time relationship of porcelain stoneware bodies has been studied using the experimentally measured total porosity. A new kinetic model was applied to quantify porosity as function of temperature and soaking time. In the first part of work, the effect of nepheline syenite was evaluated on the kinetic parameters and the porosity variations were found to be related to surface tension/viscosity ratio of melted phase which influences the minimum porosity of ceramic body. The kinetic analysis of data indicated that the optimum soaking time to achieve minimum porosity in ceramic body is controlled by amount of nepheline syenite and milling time. The validity of presented theory to predict th...
Porcelain stoneware is sintered by partial vitrification through viscous flow of a liquid phase form...
A mathematical model for the sintering of ceramics with bimodal pore size distributions at intermedi...
Pressed compacts of an industrial spray-dried porcelain stoneware powder, consisting mainly of albit...
none4The effect of nepheline syenite on porosity–soaking time relationship of porcelain stoneware bo...
The aim of this work is to develop a mathematical model to study the mechanism of elimination of tot...
Porcelain stoneware tiles, as porcelain items, are sintered by vitrification through viscous flow of...
The shrinkage of porcelain stoneware body containing different values of nepheline syenite was inves...
Five porcelain and porcelain stoneware bodies were investigated to compare sintering mechanisms and ...
Porcelain stoneware tile is a non-equilibrium porcelain material produced by a fast firing process o...
The sintering of porcelain stoneware tiles - a low porosity products with excellent technical perfor...
Investigations correlating the pore size distribution-cumulative pore volume to the microstructure a...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
By monitoring the thermal conductivity of ceramic materials during sintering, direct insight into th...
Semi-vitreous bodies, with flexural strength of ~78 MPa and water absorption of ~0.4 % for the optim...
Porcelain stoneware is sintered by partial vitrification through viscous flow of a liquid phase form...
A mathematical model for the sintering of ceramics with bimodal pore size distributions at intermedi...
Pressed compacts of an industrial spray-dried porcelain stoneware powder, consisting mainly of albit...
none4The effect of nepheline syenite on porosity–soaking time relationship of porcelain stoneware bo...
The aim of this work is to develop a mathematical model to study the mechanism of elimination of tot...
Porcelain stoneware tiles, as porcelain items, are sintered by vitrification through viscous flow of...
The shrinkage of porcelain stoneware body containing different values of nepheline syenite was inves...
Five porcelain and porcelain stoneware bodies were investigated to compare sintering mechanisms and ...
Porcelain stoneware tile is a non-equilibrium porcelain material produced by a fast firing process o...
The sintering of porcelain stoneware tiles - a low porosity products with excellent technical perfor...
Investigations correlating the pore size distribution-cumulative pore volume to the microstructure a...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
By monitoring the thermal conductivity of ceramic materials during sintering, direct insight into th...
Semi-vitreous bodies, with flexural strength of ~78 MPa and water absorption of ~0.4 % for the optim...
Porcelain stoneware is sintered by partial vitrification through viscous flow of a liquid phase form...
A mathematical model for the sintering of ceramics with bimodal pore size distributions at intermedi...
Pressed compacts of an industrial spray-dried porcelain stoneware powder, consisting mainly of albit...