Thermal analysis evolution of MgO-ZrO yNiCrAlY coatings on Ni metal and AlSi alloy (LM13) substrates was studied. 2 MgO-ZrO yNiCrAlY coatings were deposited on metallic substrates using an atmospheric plasma spray technique. The coatings 2 were characterized by optical microscope and scanning elect
Effects of oxide thickness, Al2O3 interlayer and interface asperity on residual stresses in thermal barrier coatings
✍ Scribed by X.C. Zhang; B.S. Xu; H.D. Wang; Y.X. Wu
- Publisher
- Elsevier Science
- Year
- 2006
- Weight
- 500 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0261-3069
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✦ Synopsis
During high temperature operation, the thermally grown oxide (TGO) usually forms along the bondcoat/topcoat interface in thermal barrier coating (TBC) and was characterized as a driving force for the failure of the coating system. The effects of TGO thickness and Al 2 O 3 interlayer applied as an oxygen barrier layer between the bondcoat and topcoat on the magnitude of residual stresses in TBC during cooling process were interpreted using concentric-circle model. The results were coupled with finite element method. The influences of interface asperity and interface topography on the distribution of residual stresses normal to interfaces in TBC were also discussed.
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## Abstract Pre‐oxidation was introduced to improve the resistance of electroplated pure, 5 µm CeO~2~‐dispersed, and 9–15 nm CeO~2~‐dispersed Ni~3~Al coatings to coke formation and metal dusting in 24.4%CO–73.3%H~2~–2.3%H~2~O at 650 °C. Coke formation and metal dusting of pre‐oxidized Ni~3~Al‐based