Thermal Aging and Creep Rupture Behavior of STS 316

STS 316의 시효 열화 처리와 크리프 거동 특성

  • Published : 1999.08.01

Abstract

Although type 316 stainless steel is widely used such as in reactors of petrochemical plants and pipes of steam power plants and s attracting attention as potential basic material for the fast breeder reactor structure alloys in nuclear power plants and is attracting attention as potential basic material for the fast breeder reactor structure alloys in nuclear power plants the effect of precipitates which form during the long term exposure at service temperature on creep properties is not known sufficiently. In this study to investigate the creep properties and the influence of prior aging on the microstructure to form precipitates specimens were first solutionized at 113$0^{\circ}C$ for 20 minutes and then aged for different times of 0 hr, 100 hrs, 1000 hrs and 2200 hrs at 75$0^{\circ}C$ After heat treatments tensile tests both at room temperature and $650^{\circ}C$ and constant load creep ruptuere tests were carried out.

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References

  1. Scripta Metall. v.23 Effect of Prior austenite grain size on creep properties and on creep crack growth in 3.5Ni-Cr-Mo-V steel Hong, S. H.;Yu, j.
  2. JIM. v.41 no.3 A Study on the Effect of Helium Environment and the Grain Size on the Creep Behavior of Hastelloy X alloy Nakanishi, T.
  3. J. of the Korean Inst. of Met. & Mater. v.35 no.1 Effect of the Carbide Behavior on Creep Properties of HK-40 Heat Resistant Steel Choe, B. H.;Kang, S. H.;Lee, J. H.;Choi, J. H.;Hur, B. Y.
  4. ISIJ v.69 no.14 Creep Rupture Properties and Creep Fracture Mechanism Maps for Type 304 Stainless Steel Shinya, N.
  5. Metall. Trans. A. v.12A Metallographic Study of Type 304 Stainless Steel Long Term Creep-Rupture Specimen Biss, V. A.
  6. ISIJ v.71 no.1 Creep Fracture Mechanism Maps on Creep Rupture Test upto Steel Shiya, N.
  7. J. of the Korean Inst. of Met. & Mater. v.28 no.10 Effect of Heat Treatment and HIPing on the Creep Properties of a Nickel Base Superalloy IN 713LC Kim, Y. S.;Kim, S. E.;Park, N. K.;Kim, H. M.
  8. Tetsu-to-Hagane, S1260 Creep Rupture Property and Microstructure Change in Type 316 Stainless Steel Shinya, N.
  9. Defornation Mechanism Map. Frost, H. J.;Ashby, M. F.
  10. Mechanical Metallugy(3rd ed.) Dieter, G. E.