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铁素体--马氏体钢K1和K2在超临界水中的腐蚀行为 |
魏懿1,尹开锯2,刘锦云1,邱绍宇2 |
1. 西华大学材料科学与工程学院 成都 610039
2. 中国核动力研究设计院 成都 610041 |
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CORROSION OXIDATION OF FERRITIC-MARTENSITIC STEEL K1, K2 IN SUPERCRITICAL WATER |
WEI Yi1, YIN Kaiju2, LIU Jinyun1, QIU Shaoyu2 |
1. College of Materials Science and Engineering,Xihua University, Chengdu 610039;
2. Nuclear Power Institute of China, Chengdu 610041 |
[1] Was G. S, Ampornrat P, Gupta G, et al. Corrosion and stress corrosion cracking in supercritical water [J].Nucl. Mater., 2007, 371(15): 176-201[2] Squarer D, Schulenberg T, Struwe D, et al.High performance light water reactor [J]. Nucl.Eng. Des., 2003, 221: 167-180[3] Hultquist G, Chuah G K, Tan K L, et al.A SIMS study of reactions in the metal oxygen hydrogen water system [J]. Corros. Sci., 1990, 31(18): 149-154[4] Allen T R. Workshop on Higher Temperature Materials for Advanced Nuclear Energy Systems [C]. CA : DOE Office of Nuclear Energy, Science and Technology, 2002[5] Schutzea M, Schorra M, Renuscha D P, et al. The role of alloy composition environment and stresses for the oxidation resistance of modern 9% Cr steels for fossil power stations [J].Mater. Res., 2004, 7(1): 111[6] Allen T R, Crawford D C. Fuel and materials needs for generation IV nuclear energy systems [A].Proceedings of ICAPP03 [C]. Cordoba, Spain,American Nuclear Society, 2003, paper No. 3237[7] Armanet F, Vejux A, Beranger G. High temperature corrosion of pure nickel and Ni-Cr, Fe-Ni-Cr or Co-Cr-W-Ni alloys: influence of water vapour contents [A]. I. Kirmanetal. (Eds.), Behaviour of High Temperature Alloys in Aggressive Environments, EUR-6814 [C].London: The Metals Society, 1980: 423[8] Yin K J, Qiu S Y, Tang R, et al. Characterizationof the porosity of the oxide scale on ferritic-martensitic steel P91 and P92 exposed in supercritical water [J].J. Chin. Soc. Corros. Prot., 2010, 30(1): 1-5 (尹开锯, 邱绍宇, 唐睿等. 铁素体-马氏体钢P91和P92在超临界水中腐蚀后氧化膜多孔性分析 [J]. 中国腐蚀与防护学报, 2010, 30(1): 1-5) |
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