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  4. Development and characterisation of a Y2Ti2O7-based glass-ceramic as a potential oxidation protective coating for titanium suboxide (TiOx)
 
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2021
Journal Article
Title

Development and characterisation of a Y2Ti2O7-based glass-ceramic as a potential oxidation protective coating for titanium suboxide (TiOx)

Abstract
A silica-based glass-ceramic, with Y2Ti2O7 as the major crystalline phase, is designed, characterised and tested as an oxidation-protective coating for a tA silica-based glass-ceramic, with Y2Ti2O7 as the major crystalline phase, is ditanium suboxide (TiOx) thermoelectric material at temperatures of up to 600 °C. The optimised sinter-crystallisation treatment temperatures are found to be 1300 °C and 855 °C for a duration of 30 min, and this treatment leads to a glass-ceramic with cubic Y2Ti2O7 and CaAl2Si2O8 as crystalline phases. An increase of ~270 °C in the dilatometric softening temperature is observed after devitrification of the parent glass, thus further extending its working temperature range. Excellent adhesion of the glass-ceramic coating to the thermoelectric material is maintained after exposure to a temperature of 600 °C for 120 h under oxidising conditions, thus confirming the effectiveness of the T1 glass-ceramic in protecting the TiOx material.
Author(s)
D'Isanto, Fabiana
Polytechnikum Turin
Smeacetto, Frederico
Polytechnikum Turin
Martin, Hans-Peter
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Sedlák, Richard
Slowakische Akademie der Wissenschaft
Lisnichuk, Maksym
Slowakische Akademie der Wissenschaften / Pavol-Jozef-Safarik-Universität
Chrysanthou, Andreas
University of Hertfordshire
Salvo, Milena
Polytechnikum Turin
Journal
Ceramics international : CI  
DOI
10.1016/j.ceramint.2021.03.316
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • glass-ceramic

  • oxidation protective coating

  • titanium suboxide

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