Ceramics-Silikáty 55, (4) 312 - 318 (2011) |
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PHYSICAL PROPERTIES AND CHEMICAL DURABILITY OF SELECTED ZIRCONIA CONTAINING SILICATE GLASSES |
Gašpáreková Eleonóra, Chromčíková Mária, Karell Radovan,
Vlčková Patrícia,
Liška Marek |
Vitrum Laugaricio – Joint Glass Center of the Institute of Inorganic Chemistry, Slovak Academy of Sciences, Alexander Dubček University of Trenčín, Faculty of Chemical and Food Technology, Slovak Technical University, and RONA, j.s.c., Študentská 2, 911 01 Trenčín, Slovak Republic
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Keywords: Zirconia-silicate glasses, Physical properties, Chemical durability |
Density, thermal expansion, glass transition temperature, refractive index, molar refractivity and chemical durability
of five- and six-component glasses with as weighted composition xNa₂O·(15-x)K₂O·yCaO∙(10-y)ZnO∙zZrO₂∙(75-z)SiO₂
(x = 0, 7.5, 15; y = 0, 5, 10; z = 5, 7) were measured. The obtained experimental data were merged together with the
previous results obtained for analogous glasses with lower zirconia content. The full set of glasses enabled the quantitative
statistical estimation of possible mixed-oxide effects. The results of the multilinear regression analysis pointed out the ideal
behavior of molar volume and molar refractivity. The strongest influence of mutual oxide interactions was found for chemical
durability and glass transition temperature. The regression analysis of compositional dependence of metastable melt thermal
expansion coefficient practically failed. The need of property-composition study based on the thermodynamic model was
pointed out. Qualitatively the obtained results confirmed those previously obtained for the analogous glasses with zirconia
content reaching up to 3 mol. %. |
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