Oxidation behavior and oxidation kinetics of film cooling holes at different inclination angles of a Ni-based single-crystal blade
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference76 articles.
1. Fatigue crack growth mechanisms in powder metallurgy Ni-based superalloys—a review;Jiang;Int J Fatig,2020
2. Solving recent challenges for wrought Ni-base superalloys;Hardy;Metall Mater Trans A,2020
3. Coating-assisted deterioration mechanism of creep resistance at a nickel-based single-crystal superalloy;Liu;Surf Coat Technol,2021
4. The mechanism of thermal corrosion fatigue (tcf) on nickel-based single crystal superalloy and the corresponding structure shape effect;Chen;Corrosion Sci,2021
5. High temperature durability of a bond-coatless plasma-sprayed thermal barrier coating system with laser textured Ni-based single crystal substrate;Kromer;Surf Coat Technol,2018
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