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金属学报  2013 

核电站主管道Z3CN20.09M不锈钢中金属间相的析出行为

DOI: 10.3724/SP.J.1037.2012.00730, PP. 415-420

Keywords: Z3CN20.09M,不锈钢,M23C6,σ相,析出行为

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Abstract:

研究了压水堆核电站一回路主管道用Z3CN20.09M铸造奥氏体不锈钢中金属间相的析出行为.利用Image-proPlus6.0软件统计了时效处理后不锈钢中析出金属间相的数量,获得了金属间相的时间-温度-转变(TTT)曲线.结果显示,Z3CN20.09M中析出的金属间相为M23C6和σ相,析出温度范围分别为600-900℃和600-840℃,其中750℃时析出最快.研究表明,M23C6首先在α/γ相界析出,然后σ相在铁素体相内形成.M23C6和σ相在Z3CN20.09M中固溶化的温度分别为900和850℃.850℃时,M23C6相的析出量随时间延长先增多后减少.

References

[1]  Wu J. Duplex Stainless Steel. Beijing: Metallurgy Industry Press, 1999: 22(吴玖. 双相不锈钢. 北京: 冶金工业出版社, 1999: 22)
[2]  He Y L, Zhu N Q, Lu X G, Li L. Mater Sci Eng, 2010; A528: 721
[3]  Nilsson J O. Mater Sci Technol, 1992; 8: 685
[4]  Sedriks A J. Corrosion of Stainless Steels. New York: Wiley, 1979: 9
[5]  Gunn R N. Duplex Stainless Steels: Microstructure, Properties and Applications. Cambridge:Abington Publishing, 1997: 175
[6]  Beddoes J, Parr J G. Introduction to Stainless Steel. Ohio: ASM International, 1999: 239
[7]  Xue F, Wang Z X, Shu G G, Yu W W, Shi H J, Ti W X. Nucl Eng Des, 2009; 239: 2217
[8]  Chung H M. Int J Pressure Vessels Piping, 1992; 50: 179
[9]  Yamada T, Okano S, Kuwano H. J Nucl Mater, 2006; 350: 47
[10]  Kawaguchi S, Sakamoto N, Takano G, Matsuda F, Kikuchi Y, Mraz L.Nucl Eng Des, 1997; 174: 273
[11]  Li S L, Wang X T, Wang Y L, Li S X. Acta Metall Sin, 2011; 47: 751(李时磊, 王西涛, 王艳丽, 李树肖. 金属学报, 2011; 47: 751)
[12]  Mathew M D, Lietzan L M, Murty K L, Shah V N. Mater Sci Eng, 1999; A269: 186
[13]  Pohl M, Storz O, Glogowski T. Int J Mater Res, 2008; 99: 1163
[14]  Lopez N, Cid M, Puiggali M. Corros Sci, 1999; 41: 1615
[15]  Ezuber H M, El--Houd A, El--Shawesh F. Desalination, 2007; 207: 268
[16]  Sieurin H, Sandstrom R. Mater Sci Eng, 2007; A444: 271
[17]  Hsieh C C, Wu W. ISRN Metall, 2012; 2012: 1
[18]  Elmer J W, Palmer T A, Specht E D. Metall Mater Trans, 2007; 38A: 464
[19]  Wong K W, Shek C H, Zhang W, Lai J K L. Mater Lett, 2008; 62: 3991
[20]  Magnabosco R. Mater Res, 2009; 12: 321
[21]  Souza Jr C, Abreu H, Tavares S, Rebello J. Mater Charact, 2008; 59: 1301
[22]  Gill T P S, Shankar V, Pujar M G, Rodriguez P. Scr Metall Mater, 1995; 32: 1595
[23]  Sasikala G, Ray S K, Mannan S L. Mater Sci Eng, 2003; A359: 86
[24]  Badji R, Bouabdallah M, Bacroix B, Kahloun C, Belkessa B, Maza H. Mater Charact, 2008; 59: 447
[25]  Redjaimia A, Metauer G, Gantois M. In: Charles J, Bernhardsson S eds., Proc ThirdInt Conf Duplex Stainless Steels, Beaune: Les Editions de Physique, 1991: 119
[26]  Wasnik D N, Dey G K, Kain V, Samajdar I. Scr Mater, 2003; 49: 135
[27]  Deng B. PhD Dissertation, Fudan University, Shanghai, 2010(邓博. 复旦大学博士学位论文, 上海, 2010)
[28]  Sourmail T. Mater Sci Technol, 2001; 17: 1
[29]  Shek C H, Wong K W, Lai J K L. Mater Sci Eng, 1997; R19: 153
[30]  Yong Q L. Secondary Phase in Steels. Beijing: Metallurgical Industry Press, 2006: 14(雍岐龙. 钢铁材料中的第二相, 北京: 冶金工业出版社, 2006: 14)
[31]  Lee K M, Cho H S, Choi D C. J Alloys Compd, 1999; 285: 156
[32]  Lai J K L, Wong K W, Li D J. Mater Sci Eng, 1995; A203: 356

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