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Published in: Journal of Materials Science 13/2007

01-07-2007

Formation and properties of SnO–MgO–P2O5 glasses

Authors: Jiin-Jyh Shyu, Chih-Hsien Yeh

Published in: Journal of Materials Science | Issue 13/2007

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Abstract

A new glass system SnO–MgO–P2O5 with low viscosity has been developed by a melt-quenching method. Formation, thermal properties, and chemical durability of these glasses have been investigated. For a constant P2O5 concentration, the glass formation ability is enhanced with the increasing Sn/(Sn + Mg) ratio. The glasses exhibit low glass transition temperature (T g = 270–400 °C), low dilatometric softening temperature (T DS = 290–420 °C), and high thermal expansion coefficient (CTE = 110–160 × 10−7 K−1). With the increasing Sn/(Sn + Mg) ratio, T g and T DS decrease, and CTE increases. When Sn/(Sn + Mg) ratio is varied, the relationship between chemical durability and thermal properties of the present glasses is not consistent with what expected in general cases. It is noted that the glasses with 32–32.5 mol% P2O5 exhibit excellent chemical durability and tunable T g, T DS, and CTE (by varying Sn/(Sn + Mg) ratio).

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Metadata
Title
Formation and properties of SnO–MgO–P2O5 glasses
Authors
Jiin-Jyh Shyu
Chih-Hsien Yeh
Publication date
01-07-2007
Published in
Journal of Materials Science / Issue 13/2007
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-006-0766-4

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