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Effect of χ Phase on the Impact Toughness of 25Cr-7Ni-4Mo Super Duplex Stainless Steel

25Cr-7Ni-4Mo 수퍼 2상 스테인리스강의 충격인성에 미치는 χ의 영향

  • Kang, C.Y. (Dept. of Metallurgical Engineering, Pukyong National University) ;
  • Han, H.S. (Busan Campus of Korea Polytechnic VII) ;
  • Lee, S.H. (Dong Busan Campus of Korea Polytechnic VII) ;
  • Han, T.S. (Korea Lift College)
  • 강창룡 (부경대학교 금속공학과) ;
  • 한현성 (한국 폴리텍 대학 부산 캠퍼스) ;
  • 이상희 (한국 폴리텍 대학 동부산 캠퍼스) ;
  • 한태수 (한국 승강기 대학)
  • Received : 2012.01.05
  • Accepted : 2012.02.13
  • Published : 2012.03.30

Abstract

This study has been carried out to investigate the precipitation behavior of ${\chi}$ phase and effect of ${\chi}$ phase precipitation on the impact toughness of 25%Cr-7%Ni-4%Mo super duplex stainless steel. It was proved that the ${\chi}$ phase was a intermetallic compound, which represented the higher chromium and molybdenum concentration than the matrix phases, and also showed the higher molybdenum concentration than the ${\sigma}$ phase. The ${\chi}$ phase was precipitated at the interface between ferrite and austenite or inside the ferrite matrix in the early stage of aging. The number of ${\chi}$ phase precipitates increased with increasing aging time, however, after showing the maximum value, the number was decreased due to the gradual transformation of ${\chi}$ phase into ${\sigma}$-phase. Aging ferrite phase was decomposed by the $r^2$ phase and ${\sigma}$-phase. Impact toughness rapidly decreased with time in the initial stage of aging at ${\chi}$ phase start to precipitate. Thus, the impact toughness was greatly influence for the precipitation of ${\chi}$ phase.

Keywords

References

  1. B. Soylu and R. W. K. Honeycombe : Mat. Scie. Tech., 7, 2 (1991) 137. https://doi.org/10.1179/026708391790182980
  2. D .K Yoo, J. H. Kong, H. J. Lee, J. H. Sung and H. W. Lee : J. Kor. Inst. Met. & Mater. 46, 11 (2008) 708.
  3. C. F. G. Baxter and G. R. Warburton : 4th Int. Conf. Duplex Stainless Steel, Glasgow, Scotland, 2 (1994)
  4. J. Charles : Paper K1, Pro. Conf. Duplex Stainless Steel, 94, Glasgow, Scotland, 1 (1994).
  5. S. C. Kim, Z. Zang, Y. Furuya, C. Y. Kang, J. H. Sung, Q. Q. Ni, Y. Watanabe, and I. S. Kim : Mater. Transaction, 46, 7 (2005) 1056.
  6. J. M. Nicholls : Paper K, 4th Int. Conf. Duplex Stainless Steel, Glasgow, Scotland, 1 (1994).
  7. J. O. Nilsson : Super duplex stainless steels, MST, 8 (1992) 685.
  8. K. Kondo, M. Ueda, K. Ogawa, and M. Igarashi : Proc. Conf. Innovation of Stainless Steel, Florence, Italy, 191 (1993) 2.
  9. C. Y. Kang and J, W. Kim : J. Met. Mater., 49, 3 (2011) 197.
  10. J. Cui, I. S. Park, C. Y. Kang, and K. Miyahara : ISIJ International, 41, 2 (2001) 192. https://doi.org/10.2355/isijinternational.41.192
  11. Y. H. Kim, K. T. Kim, Y. D. Lee and K. Y. Kim : Materials Scie. and Tech., 18 (1997) 388.

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