Influence of Stabilizers on Hydrothermal Behavior of Zirconia Coatings by Aps

31 Pages Posted: 23 Oct 2022

See all articles by Runwu Zhu

Runwu Zhu

Wuhan University of Technology

Wenbo Chen

Wuhan University of Technology

Abstract

In recent years, the degradation of zirconia in a humid environment has attracted the attention of researching. In this work, Mg0.09Zr0.91O1.91 (MSZ), Y0.09Zr0.91O1.955 (YSZ) and Ce0.09Zr0.91O2 (CSZ) powders were prepared by co-precipitation method, the corresponding zirconia coatings were fabricated by atmospheric plasma spraying (APS). All coating samples were subjected to hydrothermal treatment to investigate their degradation process in moisture. The evolution of phase composition and microstructure were characterized. Results show that the content of monoclinic phase (m) in MSZ, YSZ and CSZ coating samples increased after hydrothermal treatment, the degradation of internal structure of coatings was more serious with the prolongation of hydrothermal treatment time. This is because different stabilizers will cause different oxygen vacancy concentration in the zirconia unit cell, which determines the hydrothermal stability of zirconia. Under the tested condition, CSZ coating with the lowest oxygen vacancy concentration exhibited better hydrothermal stability than MSZ and YSZ.

Keywords: Thermal barrier coatings, Zirconia, Hydrothermal treatment, Degradation, Oxygen vacancy.

Suggested Citation

Zhu, Runwu and Chen, Wenbo, Influence of Stabilizers on Hydrothermal Behavior of Zirconia Coatings by Aps. Available at SSRN: https://ssrn.com/abstract=4256230

Runwu Zhu

Wuhan University of Technology ( email )

Wuhan
China

Wenbo Chen (Contact Author)

Wuhan University of Technology ( email )

Wuhan
China

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