Five porcelain and porcelain stoneware bodies were investigated to compare sintering mechanisms and kinetics, phase and microstructure evolution, and high temperature stability. All batches were designed with the same raw materials and processing conditions, and characterized by optical dilatometry, XRF, XRPD-Rietveld, FEG-SEM and technological properties. Porcelain and porcelain stoneware behave distinctly during sintering, with the convolution of completely different phase evolution and melt composition/structure. The firing behavior of porcelain is essentially controlled by microstructural features. Changes in mullitization create conditions for a relatively fast densification rate at lower temperature (depolymerized melt, lower solid lo...
The porcelain tile is a ceramic product with high technical and aesthetic performance, whose composi...
This work examines the effect of microstructure (aspect ratio of mullite crystals and proportion of ...
A porcelain powder was sintered using different rapid sintering techniques including direct sinterin...
Five porcelain and porcelain stoneware bodies were investigated to compare sintering mechanisms and ...
Porcelain stoneware tiles, as porcelain items, are sintered by vitrification through viscous flow of...
The sintering of porcelain stoneware tiles - a low porosity products with excellent technical perfor...
Porcelain stoneware tile is a non-equilibrium porcelain material produced by a fast firing process o...
Porcelain stoneware is sintered by partial vitrification through viscous flow of a liquid phase form...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
The viscosity of porcelain stoneware at high temperatures is crucial to understanding the vitrificat...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
Semi-vitreous bodies, with flexural strength of ~78 MPa and water absorption of ~0.4 % for the optim...
A vitreous porcelain body was fabricated by a conventional sintering and spark plasma sintering (SPS...
The effect of alkali-silicate glassy matrix as replacement for feldspar in soft and hard porcelain c...
The effect of alkali-silicate glassy matrix as replacement for feldspar in soft and hard porcelain c...
The porcelain tile is a ceramic product with high technical and aesthetic performance, whose composi...
This work examines the effect of microstructure (aspect ratio of mullite crystals and proportion of ...
A porcelain powder was sintered using different rapid sintering techniques including direct sinterin...
Five porcelain and porcelain stoneware bodies were investigated to compare sintering mechanisms and ...
Porcelain stoneware tiles, as porcelain items, are sintered by vitrification through viscous flow of...
The sintering of porcelain stoneware tiles - a low porosity products with excellent technical perfor...
Porcelain stoneware tile is a non-equilibrium porcelain material produced by a fast firing process o...
Porcelain stoneware is sintered by partial vitrification through viscous flow of a liquid phase form...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
The viscosity of porcelain stoneware at high temperatures is crucial to understanding the vitrificat...
The shear viscosity and the glass-vapor surface tension at high temperature are crucial to understan...
Semi-vitreous bodies, with flexural strength of ~78 MPa and water absorption of ~0.4 % for the optim...
A vitreous porcelain body was fabricated by a conventional sintering and spark plasma sintering (SPS...
The effect of alkali-silicate glassy matrix as replacement for feldspar in soft and hard porcelain c...
The effect of alkali-silicate glassy matrix as replacement for feldspar in soft and hard porcelain c...
The porcelain tile is a ceramic product with high technical and aesthetic performance, whose composi...
This work examines the effect of microstructure (aspect ratio of mullite crystals and proportion of ...
A porcelain powder was sintered using different rapid sintering techniques including direct sinterin...