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| Oxidation Behavior of Valve Materials Used in Steam Turbine in Supercritical Water Environment |
WANG Fenling1, SHANG Limei1, ZHANG Naiqiang2, ZHU Zhongliang2( ) |
1 State Key Laboratory of Clean & Efficient Turbomachinery Power Equipment-High Temperature Materials Research Institute, Dongfang Electric Corporation, Dongfang Turbing Corporation Limited, Deyang 618000, China 2 Key Laboratory of Power Station Energy Transfer, Conversion and System, Ministry of Education, North China Electric Power University, Beijing 102206, China |
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Cite this article:
WANG Fenling, SHANG Limei, ZHANG Naiqiang, ZHU Zhongliang. Oxidation Behavior of Valve Materials Used in Steam Turbine in Supercritical Water Environment. Journal of Chinese Society for Corrosion and protection, 2025, 45(5): 1219-1232.
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Abstract The oxidation behavior of F91, nitrided F91 and F92 steels were performed in supercritical water (SCW) at 600-620 ℃/25 MPa. The oxidation kinetics, microstructure and phase composition of the oxide scale were analyzed using an electronic balance, SEM, XRD and XPS. The results show that the oxidation kinetics of F91, nitrided F91 and F92 steels deviate from the parabolic law. The oxide scale formed on the steels were a typical double-layer structure, consisting of an Fe-rich outer layer Fe3O4, Fe2O3, and a Cr-rich inner layer. Furthermore, MoO3, Ni(OH)2 and Cr2O3 were also detected on the surface of the oxide scale. In addition, with the increase of oxidation time and temperature, the oxide scale undergoes severe warping-type peeling. The oxidation and peeling mechanisms of F91, nitrided F91 and F92 steels in supercritical water were also discussed.
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Received: 10 December 2024
32134.14.1005.4537.2024.393
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| Fund: National Key Research and Development Project of China(2022YFB4100403) |
Corresponding Authors:
ZHU Zhongliang, E-mail: zhzl@ncepu.edu.cn
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