|
|
氢在2.25Cr-1Mo耐热钢中的扩散规律 |
余刚 张学元 柯克 杜元龙 |
中国科学院金属腐蚀与防护研究所金属腐蚀与防护国家重点实验室;沈阳 110015 |
|
引用本文:
余刚; 张学元; 柯克; 杜元龙 . 氢在2.25Cr-1Mo耐热钢中的扩散规律[J]. 金属学报, 1999, 35(7): 755-758 .
[1] Ji R D Fushun Petrochem Ind,1991(1-2):26 (吉瑞德、抚顺石化, 1991;(1-2): 26) [2] Du Y L. Chin Invention Patent 95111971.0, 1995 (杜元龙.中国发明专利95111971.0, 1995) [3]McBreen J,Nams L,Beck W.J Electrochem Soc,1996; 113: 1218 [4] Chu W Y.Hydrogn Damage and Hysteretic Fracture.Bei jing:Metallurgical Industry Press,1988:73 (褚武扬氢损伤和滞后断裂北京:冶金工业出版社,1988:73) [5]Smialowski M.Hydrogen in Steel. Oxford: Pergamon Press, 1962:452 [6]Wack S,Micdownick A D.Corros Sci,1968; 8:271 [7]Kumnick A J,Johson H H.Metall Trans,1974;5:1199 [8]Louthan M R.In:Thompson A W,Bernstein I M eds.,Sffect of Hydrogen on Behavior of Materials,New York: AIME, 1978:337 [9]Riecke E.In:Bernstein I M,Thompson A W eds.,Hydrogen Effects in Metals, New York: AIME. 1981:97 [10]Ando S,Yamakawa K.Proc 11th Int Corrosion Congress, Vol.4,Milano,Italy:Associazione Italiana Di Metallurgia, 1990:241 [11]Sakai T.In:Interrante C G,Pressouyer C M eds.,Current Solution to Hydrogen Problems in Steels,Metals Park,Ohio: ASM,1982:340 [12]Brouwer R C.Scr Metall Mater,1992 27:353 [13] Hakkarainen T J, Wanagel J,Li C Y Metall Trans, 1980; 11A:2035 [14]Pishko R,McKimpson M,Shewmon P G.Metall Trans,1979: 10A:887 [15] Shewmon P G Metall Trans, 1976 7A: 509 [16] Parthasarathy T A Shewmon P G Metall Trans,1984: 15A: 2021 [17]Hakkararinen T J,Wanagel J,Li C Y.Metall Trans,1980; 11A:2035v |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|