The paper examines the effects of a series of heat treatments on the appearance and microstructure of Li2O-ZnO-Al2O2-SiO2 glasses with varying ZnO/Li2O. The base glasses coloured yellowish, become violet at temperatures between 700-800 degrees C. The glass remains transparent and the obtained colour is stable during cooling. When heated at temperatures >800 degrees C the samples become opaque violet and finally opaque white at 900 degrees C. The effect of the heat treatment on the physical and chemical properties of these materials is explained on the basis of changes in composition and morphology of the residual amorphous and crystalline phases. Electron microscopic observations individuated an initial glass nucleation induced by phase sep...
This paper reports results that show the effect of microwave absorption on the bulk crystallization ...
Results of adequately heat-treated Li2O-ZrO2-SiO 2 (LZS) glass-ceramic that consider the identificat...
Glass materials based on lithium zinc silicate system of the composition 24Li2O–20ZnO–56SiO2 LZS (mo...
The paper examines the effects of a series of heat treatments on the appearance and microstructure o...
This paper examines the microstructure of glass-ceramics obtained during cooling melts of different ...
We investigated the nucleation and crystallization behavior of multi-phase glass-ceramic materials (...
To develop a lithium disilicate glass-ceramic with high translucency, the effects of the single-stag...
The potential for microwave processing of a single phase material is often limited due to the depend...
Glass-ceramics were prepared from local raw materials in the Li2O–MgO–Al2O3–SiO2 system and its crys...
The influences of adding ZnO and the use of specific heat-treatment schedules on MgO-Al2O3-SiO2 (MAS...
The preparation and characterization of transparent glass-ceramics in the composition of 30Li(2)O:5Z...
Lithiumalumosilicate glasses are of great importance for industrial applications, because they enabl...
The effect of alkaline and alkaline-earth metal oxides addition to the ZnO-Al2O3-SiO2 system on the ...
Glass-ceramics derived from Li2O-Al2O3-TiO2-P2O5 vitreous system were obtained by isothermal heat tr...
beta-quartz solid solution phase in the Li2O-Al2O3-SiO2-P2O5 (LAS) glass system has been precipitate...
This paper reports results that show the effect of microwave absorption on the bulk crystallization ...
Results of adequately heat-treated Li2O-ZrO2-SiO 2 (LZS) glass-ceramic that consider the identificat...
Glass materials based on lithium zinc silicate system of the composition 24Li2O–20ZnO–56SiO2 LZS (mo...
The paper examines the effects of a series of heat treatments on the appearance and microstructure o...
This paper examines the microstructure of glass-ceramics obtained during cooling melts of different ...
We investigated the nucleation and crystallization behavior of multi-phase glass-ceramic materials (...
To develop a lithium disilicate glass-ceramic with high translucency, the effects of the single-stag...
The potential for microwave processing of a single phase material is often limited due to the depend...
Glass-ceramics were prepared from local raw materials in the Li2O–MgO–Al2O3–SiO2 system and its crys...
The influences of adding ZnO and the use of specific heat-treatment schedules on MgO-Al2O3-SiO2 (MAS...
The preparation and characterization of transparent glass-ceramics in the composition of 30Li(2)O:5Z...
Lithiumalumosilicate glasses are of great importance for industrial applications, because they enabl...
The effect of alkaline and alkaline-earth metal oxides addition to the ZnO-Al2O3-SiO2 system on the ...
Glass-ceramics derived from Li2O-Al2O3-TiO2-P2O5 vitreous system were obtained by isothermal heat tr...
beta-quartz solid solution phase in the Li2O-Al2O3-SiO2-P2O5 (LAS) glass system has been precipitate...
This paper reports results that show the effect of microwave absorption on the bulk crystallization ...
Results of adequately heat-treated Li2O-ZrO2-SiO 2 (LZS) glass-ceramic that consider the identificat...
Glass materials based on lithium zinc silicate system of the composition 24Li2O–20ZnO–56SiO2 LZS (mo...