6.02 – Hydrogen-assisted Cracking

作者: R.P. Gangloff

DOI: 10.1016/B0-08-043749-4/06134-6

关键词:

摘要:

参考文章(211)
N.R. Moody, M.I. Baskes, S.L. Robinson, M.W. Perra, Temperature effects on hydrogen-induced crack growth susceptibility of iron-based superalloys Engineering Fracture Mechanics. ,vol. 68, pp. 731- 750 ,(2001) , 10.1016/S0013-7944(00)00122-3
N.R. Moody, S.L. Robinson, S.M. Myers, F.A. Greulich, Deuterium concentration profiles in FeNiCo alloys electrochemically charged at room temperature Acta Metallurgica. ,vol. 37, pp. 281- 290 ,(1989) , 10.1016/0001-6160(89)90286-1
C. D. Beachem, A new model for hydrogen-assisted cracking (hydrogen “embrittlement”) Metallurgical and Materials Transactions B-process Metallurgy and Materials Processing Science. ,vol. 3, pp. 441- 455 ,(1972) , 10.1007/BF02642048
Douglas M. Symons, The effect of hydrogen on the fracture toughness of alloy X-750 at elevated temperatures Journal of Nuclear Materials. ,vol. 265, pp. 225- 231 ,(1999) , 10.1016/S0022-3115(98)00888-5
R. E. Stoltz, N. R. Moody, M. W. Perra, Microfracture model for hydrogen embrittlement of austenitic steels Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science. ,vol. 14, pp. 1528- 1531 ,(1983) , 10.1007/BF02664843
Seong-Min Lee, Su-Il Pyun, Young-Gab Chun, A CRITICAL-EVALUATION OF THE STRESS-CORROSION CRACKING MECHANISM IN HIGH-STRENGTH ALUMINUM-ALLOYS Metallurgical transactions. A, Physical metallurgy and materials science. ,vol. 22, pp. 2407- 2414 ,(1991) , 10.1007/BF02665007
H.K. Birnbaum, P. Sofronis, Hydrogen-enhanced localized plasticity—a mechanism for hydrogen-related fracture Materials Science and Engineering A-structural Materials Properties Microstructure and Processing. ,vol. 176, pp. 191- 202 ,(1994) , 10.1016/0921-5093(94)90975-X