Creep-fatigue interaction properties of nickel-based superalloy 617

  • KAZUO
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  • National Institute for Materials Science (NIMS), Materials Reliability Center, 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan

Received date: 2010-12-01

  Revised date: 2011-02-24

  Online published: 2011-04-20

Abstract

High-temperature fatigue properties were investigated for a nickel-based superalloy 617 as a typical candidate material for high-temperature components using an advanced ultra super critical (A-USC) power plant. Creep-fatigue data obtained by strain-controlled tests at 700℃ was analyzed for the superalloy 617 focused on position of hold at peak strain in comparison with continuously cycled tests. The fatigue life was the shortest with the hold tensile strain wave, which showed mainly intergranular fracture appearance. The life was the longest with symmetrical triangular wave which fractured from the specimen surface, while the wave with the hold compressive strain showed partially intergranular fracture appearance and the life was middle in the both waves. In this study, it is discussed with the creep-fatigue interaction for the superalloy 617.

Cite this article

KAZUO . Creep-fatigue interaction properties of nickel-based superalloy 617[J]. Acta Metallurgica Sinica (English Letters), 2011 , 24(2) : 125 -131 . DOI: 10.11890/1006-7191-112-125

References

[1] T. Satoh, K. Tamura, H. Yamanouchi and T. Fujita,  JSPS Report of the 123rd Committee on Heat-Resisting Materials and Alloys  44  (2003) 225.

[2] Y. Noguchi, M. Miyahara, H. Okada, M., Igarashi and K. Ogawa,  Proc 8th Int Conf on Creep and Fatigue at Elevated Temperature,  CREEP2007-26471.

[3] K. Kubushiro, H. Yoshizawa, T. Itou and H. Nakagawa,  Proc 8th Int Conf on Creep and Fatigue at Elevated Temperature,  CREEP2007-26568.

[4] NIMS, Fatigue Data Sheet No.109. ``Data Sheet on Long-Term, High Temperature Low-Cycle Fatigue Properties of NCF800H", Tsukuba: National Institute for Materials Science, 2010.

[5] NIMS, Fatigue Data Sheet No.100. ``Data Sheet on Long-Term, High Temperature Low-Cycle Fatigue Properties of SUS310S", Tsukuba: National Institute for Materials Science, 2006.

[6] NRIM, Fatigue Data Sheet No.86. ``Data Sheet on Long-Term, High Temperature Low-Cycle Fatigue Properties of Ferritic Heat-Resisting Steel (12C-2W)", Tsukuba: National Research Institute for Metals, 2000.

[7] NIMS, Fatigue Data Sheet No.88. ``Data Sheet on Long-Term, High Temperature Low-Cycle Fatigue Properties of Ferritic Heat-Resisting Steel (9C-2W)", Tsukuba: National Institute for Materials Science, 2002.

[8] NRIM, Fatigue Data Sheet No.49. ``Data Sheet on Elevated Temperature, Time-Dependent Low-Cycle Fatigue Properties of SUS304-HP", Tokyo: National Research Institute for Metals, 1985.

[9] NRIM, Fatigue Data Sheet No.15. ``Data Sheet on Elevated Temperature, High-Cycle and Low-Cycle Fatigue Properties of SUS316-HP", Tokyo: National Research Institute for Metals, 1979.

[10] K. Kobayashi, M. Hayakawa, M. Kimura and K. Yamaguchi,  Strength, Fracture and Complexity  5  (2009) 89.
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