Yb 2 O 3 -Doped YSZ coatings: Phase stability and thermal performance

Ytterbium(III) oxide (Yb 2 O 3 )-doped yttria-stabilized zirconia (YbYSZ) thermal barrier coatings were prepared via EB-PVD. Elemental analysis showed that the contents of Yb, Y, and O decreased from ingot to coatings and the total amount of stabilizer in 4.5Yb4YSZ coating was higher than that in 6.5Yb2YSZ coating. The total content of tetragonal and tetragonal-prime phases in as-deposited 6.5Yb2YSZ and 4.5Yb4YSZ coatings and coatings after 6000 thermal cycles at 1150°C were 95, 97 mol.%, and 61, 72 mol.%, respectively. The failure of coatings was attributed to the generation of vertical and horizontal cracks in ceramic layer caused by thermally-grown oxide (TGO) fluctuation and ceramic sintering, followed by delamination of the coatings. Finally, 4.5Yb4YSZ coatings exhibited a better sintering resistance that delayed the generation of Cr 2 O 3 and NiO and the growth of TGO. After 4000 thermal cycles, the thickness of TGO on 6.5Yb2YSZ and 4.5Yb4YSZ coatings was 10–14 and 8–10 μm, respectively.

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Publication Details

Journal
Surface Engineering
Published
2026-10-08
DOI
https://doi.org/10.1177/02670844261490341
Primary Topic
High-Temperature Coating Behaviors
Type
article
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article

Yb 2 O 3 -Doped YSZ coatings: Phase stability and thermal performance

Jianwei Dai, Rende Mu, Ming Li, He Tian
Surface Engineering
High-Temperature Coating Behaviors
article

Yb 2 O 3 -Doped YSZ coatings: Phase stability and thermal performance

Jianwei Dai, Rende Mu, Ming Li, He Tian
article en

Abstract

Ytterbium(III) oxide (Yb 2 O 3 )-doped yttria-stabilized zirconia (YbYSZ) thermal barrier coatings were prepared via EB-PVD. Elemental analysis showed that the contents of Yb, Y, and O decreased from ingot to coatings and the total amount of stabilizer in 4.5Yb4YSZ coating was higher than that in 6.5Yb2YSZ coating. The total content of tetragonal and tetragonal-prime phases in as-deposited 6.5Yb2YSZ and 4.5Yb4YSZ coatings and coatings after 6000 thermal cycles at 1150°C were 95, 97 mol.%, and 61, 72 mol.%, respectively. The failure of coatings was attributed to the generation of vertical and horizontal cracks in ceramic layer caused by thermally-grown oxide (TGO) fluctuation and ceramic sintering, followed by delamination of the coatings. Finally, 4.5Yb4YSZ coatings exhibited a better sintering resistance that delayed the generation of Cr 2 O 3 and NiO and the growth of TGO. After 4000 thermal cycles, the thickness of TGO on 6.5Yb2YSZ and 4.5Yb4YSZ coatings was 10–14 and 8–10 μm, respectively.

Surface Engineering
Beijing Institute of Aeronautical Materials (CN)
Openalex Percentile: Top 17%
High-Temperature Coating Behaviors
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