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核级不锈钢高温水腐蚀疲劳机制及环境疲劳设计模型 |
吴欣强1, 2), 徐松1, 2), 韩恩厚1, 2), 柯伟1, 2) |
1) 中国科学院金属研究所金属腐蚀与防护国家重点实验室, 沈阳 110016
2) 中国科学院金属研究所辽宁省核电材料安全与评价技术重点实验室, 沈阳 110016 |
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CORROSION FATIGUE OF NUCLEAR--GRADE STAINLESS STEEL IN
HIGH TEMPERATURE WATER AND ITS ENVIRONMENTAL FATIGUE DESIGN MODEL |
WU Xinqiang1, 2), XU Song1, 2), HAN En-Hou1, 2), KE Wei1, 2) |
1) State Key Laboratory for Corrosion and Protection, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016
2) Liaoning Key Laboratory for Safety and Assessment Technique of Nuclear Material, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016 |
引用本文:
吴欣强 徐松 韩恩厚 柯伟. 核级不锈钢高温水腐蚀疲劳机制及环境疲劳设计模型[J]. 金属学报, 2011, 47(7): 790-796.
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CORROSION FATIGUE OF NUCLEAR--GRADE STAINLESS STEEL IN
HIGH TEMPERATURE WATER AND ITS ENVIRONMENTAL FATIGUE DESIGN MODEL[J]. Acta Metall Sin, 2011, 47(7): 790-796.
[1] Cahn R W, Haasen P, Kramer E J. Mater Sci Technol, 1994: 10B: 38[2] Wu X Q, Han E H, Ke W, Katada Y. Nucl Eng Des, 2007; 237: 1452[3] Wu X Q, Kataday Y. Corros Sci, 2005; 47: 1415[4] Raman S G S, Kitsunai Y. Eng Fail Anal, 2004; 11: 293[5] Chopra O K, Shack W J. ASME PVP, 2003; 453: 71[6] Chopra O K, Shack W J. Nucl Eng Des, 1998; 184: 49[7] Higuchi M, Iida K, Asada Y. In: Van Der Sluys WA, Piascik R S, Zauierucha R, eds., Effects of Strain Rate Change on Fatigue Life of Carbon Steel in High–Temperature Water, ASTM STP 1298, Philadelphia: American Society for Testing and Materials, 1997: 216[8] H¨anninen H, Cullen W, Kemppainen M. Corrosion, 1990; 46: 563[9] Kuniya J, Anzai H, Masaoka I. Corrosion, 1992; 48: 419[10] Atkinson J D, Yu J. Fatigue Fract Eng Mater Struct, 1997; 20: 1[11] Chopra O K, Shack W J. J Pressure Vessel Technol Trans ASME, 1999; 121: 49[12] Ford F P. Corrosion, 1996; 52: 375[13] Maiya P S. J Pressure Vessel Technol Trans ASME, 1987; 109: 116[14] Xu S, Wu X Q, Han E H, Ke W, Katada Y. Mater Sci Eng, 2008; A49: 16[15] Laird C, Smith G C. Philo Mag, 1962; 8: 847[16] Laird C, Finney J M, Wilsdorf D K. Mater Sci Eng, 1981; 50: 127[17] Langer B F. ASME J Basic Eng, 1962; 84: 389 |
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