The potential for microwave processing of a single phase material is often limited due to the dependence of dielectric losses upon the chemical bonding and temperature of the material. We will present results showing the effect of microwave absorption on bulk crystallization of glasses belonging to M2O-CaO-SiO2-ZrO2 system (where M = Li, Na, K). The glass samples were devitrified using both microwave and conventional heating. The effect of Li+, Na+, K+ on crystallization is quite remarkable and is a function of ion size. This is true especially in the microwave heating where the important dielectric losses observed in silicate glasses are related to the motion of alkali cations throughout the glass matrix. X-ray diffraction analysis was performed on the powdered samples to determine crystalline phases. Results of microstructure and microanalysis on these glass-ceramic samples will also be presented.
Modifications on bulk crystallization of glasses belonging to M2O-CaO-SiO2-ZrO2 system in a 2.45 GHz microwave field / Siligardi, C.; Leonelli, C.; Fang, Y.; Agrawal, D.. - In: MATERIALS RESEARCH SOCIETY SYMPOSIA PROCEEDINGS. - ISSN 0272-9172. - 430:(1996), pp. 429-434. (Intervento presentato al convegno Proceedings of the 1996 MRS Spring Symposium tenutosi a San Francisco, CA, USA, nel 1996) [10.1557/proc-430-429].
Modifications on bulk crystallization of glasses belonging to M2O-CaO-SiO2-ZrO2 system in a 2.45 GHz microwave field
Siligardi C.;Leonelli C.;
1996
Abstract
The potential for microwave processing of a single phase material is often limited due to the dependence of dielectric losses upon the chemical bonding and temperature of the material. We will present results showing the effect of microwave absorption on bulk crystallization of glasses belonging to M2O-CaO-SiO2-ZrO2 system (where M = Li, Na, K). The glass samples were devitrified using both microwave and conventional heating. The effect of Li+, Na+, K+ on crystallization is quite remarkable and is a function of ion size. This is true especially in the microwave heating where the important dielectric losses observed in silicate glasses are related to the motion of alkali cations throughout the glass matrix. X-ray diffraction analysis was performed on the powdered samples to determine crystalline phases. Results of microstructure and microanalysis on these glass-ceramic samples will also be presented.File | Dimensione | Formato | |
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