Chemical and microstructural characterisation of HfO2-Y2O3 ceramics with high amount of Y2O3 (33, 40 and 50 mol. %) manufactured using spark plasma sintering

Author:

Audouard L.,Tsoutsouva M.G.,Horezan N.,Rimpot E.,Justin J.F.,Bertrand P.,Langlade C.,Garcia M.,Julian-Jankowiak A.

Publisher

Elsevier BV

Subject

Materials Chemistry,Ceramics and Composites

Reference57 articles.

1. Effect of high-content Yttria on the thermal expansion behaviour and ionic conductivity of a stabilised cubic Hafnia;Sévin;J. Eur. Ceram. Soc.,2020

2. A. Julian-Jankowiak, L. Sévin, V. Razafindramanana, L. Audouard, J. Justin, P. Bertrand, C. Langlade, M. Garcia, Manufacturing and characterisations of hafnia-based materials for aerospace applications, (2022). https://doi.org/10.13009/EUCASS2022–6082.

3. Advanced structural ceramics in aerospace propulsion;Padture;Nat. Mater.,2016

4. Development of YSZ thermal barrier coatings using axial suspension plasma spraying;Zhou;Coatings,2017

5. Ceramic top coats of plasma-sprayed thermal barrier coatings: materials, processes, and properties;Bakan;J. Therm. Spray. Technol.,2017

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