Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1463178 | Ceramics International | 2011 | 7 Pages |
Abstract
Glass compositions in the system 40SiO2-30BaO-20ZnO-(x)Mn2O3-(10 â x)B2O3 glasses have been synthesized and the thermal, structural and crystallization kinetic properties characterized. The lower concentration of Mn2O3 in place of B2O3 acts as a network former and suppressed the tendency of phase separation in glasses. On the other hand, concentration of Mn2O3 > 7.5 mol% induce phase separation in the glass matrix. The highest activation energy for crystallization is observed in the composition without B2O3 (INM4) (355 kJ/mol). The values of thermal expansion coefficient (TEC) and viscosity of this glass is 8 Ã 10â6 Kâ1 and 104.2dPa s (850 °C), respectively. After long heat treatment (800 °C for 100 h), thermodynamically stable hexacelsian and monoclinic phases are formed. These phases are not detrimental to SOFC application.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Anu Arora, Vishal Kumar, K. Singh, O.P. Pandey,