Zhang Y F. Study of oxide scale mechanical stability at elevated temperatures[D]. Doctor Thesis,Crookston, University of Minnesota, 1996.
[2]
Evans H E. Cavity formation and metallurgical changes induced by growth of oxide scale[J]. Mater. Sci. Technol., 1988, 4: 1089.
[3]
Schutze M. Mechanical properties of oxide scales[J]. Oxid. Met., 1995, 44(1/2): 29.
[4]
Schutze M. Deformation and cracking behavior of protective oxide scales on heat-resistant steels under tensile strain[J]. Oxid.Met., 1985, 24(3/4): 199.
[5]
Hancock P, Nicholis J R, Mahmood K. The influence of imposed strain rate on fracture of surface oxides[J]. Corros.Sci., 1993, 35(5-8): 979.
[6]
李铁藩.金属高温氧化和热腐蚀[M]. 北京: 化学工业出版社, 2003.
[7]
Birks N, Meier G H, Pettit F S. Introduction to theHigh-Temperature Oxidation of Metals[M]. UK: Cambridge Press,2006.
Caplan D, Sproule G I. Effect of oxide grain structure on the high-temperature oxidation of Cr[J].Oxid. Met., 1975, 9(5): 459.
[13]
Benabderrazik G, Moulin G, et al. Influence of impurities, such as carbon and sulphur, on the high temperature oxidation behavior of Fe72Cr23Al5 alloys[J]. J. Mater. Sci., 1984, 19: 3173.
[14]
Douglass D L, Kofstad P, et al. International workshop on high-temperature corrosion[J]. Oxid. Met., 1996, 45(5/6): 529.
[15]
Giggins C S, Pettit F S. Oxidation of Ni-Cr alloys between 800℃ and 1200℃[J]. Trans. AIME, 1969, 245: 2495
[16]
Hiroyuki Kawaura, Hiroshi Kawahara. New surface treatment using shot blast for improving oxidation resistance of TiAl-base alloys[J]. Mater.Sci. Eng., 2002, A329-331: 589.
[17]
Leistikow S, Wolf I, Grabke H J.Effect of cold work on the oxidation behavior and carburization resistance of alloy 800[J]. Werkst. Korros., 1987,38: 556.
[18]
Kim J M, Jeong Y H .Influence of thermomechanical treatment on the corrosion behavior of Zr-1Nb-0.2Cu alloys[J]. J. Nucl. Mater., 1999, 275: 74.
[19]
Chen R Y, Yuen W Y D. Review of the high-temperature oxidation of iron and carbon steels in air or oxygen[J]. Oxid. Met., 2003, 59(5/6): 433.
Ryoung Sohn, Toshio Narata. Corrosion behavior of Fe-25Cr in a N2-0.1%SO2 atmosphere at 973K under mechanical loading[J]. Oxid. Met., 2003, 59(3/4): 353.
[23]
Kusabiraki K, Sakuradani K, Saji S. Effects of tensile stress on grain boundary selective oxidation in an Fe-36%Ni alloy[J]. Tetsu-to-hagane, 1998, 84(4): 291.
[24]
Gibbs G B, Hales R. Society point defect behavior and diffusional processes conference[A]. Proceeding of the Conference on Vacancies[C]. London: The Metals Society, 1977: 201-207
[25]
Stroosnijder M F, Guttmann V, Gommans R J N, et al. Influence of creep deformation on the corrosion behaviour of a CeO2 surface-modified alloy 800H in a sulphidising-oxidising-carburising environment[J]. Mater. Sci. Eng.,1989, A121: 581.
Kusabiraki K, Tsujino H, Saji S.Effects of tensile stress on the high-temperature oxidation of an Fe-38 Ni-13 Co-4.7 Nb-1.5 Ti-0.4Si superalloy in air[J]. ISIJ Int.,1998, 38 (9): 1015.
[29]
Pieraggi B. Effect of creep or low cycle fatigue on the oxidation or hot corrosion behavior of nickel-base superalloys[J]. Mater. Sci. Eng., 1987, 88: 199.
[30]
Ward G, Hockenhull B S, Hancock P. The effect of cyclic stressing on the oxidation of a low-carbon steel[J]. Metall. Mater.Trans. B, 1974, 5(6): 1451.
[31]
Evans H E. Spallation of oxide from stainless steel AGR nuclear fuel cladding: mechanisms and consequences[J]. Mater. Sci. Technol., 1988, 4(5): 415.
[32]
Gaillet L, Viennot M, Berger P,et al. Effect of NiO scales on the creep behavior of Ni single crystals at 550℃[J]. Mater. Sci.Eng. A, 2002, 332:382.
[33]
Schutze M. Plasticity of protective oxide scales[J]. Mater. Sci. Technol., 1990, 6: 32.
[34]
Evans A G, Cannon R M. Stresses in oxide films and relationships with cracking and spalling[J].Mater. Sci. Forum, 1989,43: 243.
[35]
Takei A, Nii K. Effect of tensile stress on the high temperature oxidation of Ni-20Cr-4Al alloy[J]. Trans. Japan Inst. Met., 1984, 25(8): 561.
[36]
Grabke H J, Dennert R, Wagemann B. The effect of S, N, and C on the oxidation of Ni-20%Cr and Fe-20%Cr[J]. Oxid. Met., 1997,47(5/6): 495.
[37]
Schutze M. The healing behavior of protective oxide scales on heat-resistant steels after cracking under tensile strain[J]. Oxid. Met., 1986, 25(5/6):409.