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Influence of sigma phase on corrosion and mechanical properties of 2707 hyper-duplex stainless steel aged for short periods

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Abstract

2707 hyper-duplex stainless steels (HDSSs) contain high contents of alloying elements (Cr, Ni, Mo and N), which may shorten the incubation period and promote both nucleation and growth of sigma (σ) phase. 2707 HDSS was first aged at different temperatures and periods of time for drawing the time–temperature–transformation profiles. The results identified the main precipitates as σ phase, with nose temperature of about 950 °C. Also, 2707 specimen was aged at 950 °C for a short time, and the morphology, distribution and amount of σ phase were examined through the scanning electron microscope and X-ray diffraction. σ phase was initially formed at the boundaries of ferrite and austenite and then transformed through the eutectoid reaction (α → σ + γ2). Finally, the precipitation and growth of σ phase in 2707 steels aged at nose temperature for a short period reduced the corrosion resistance and deteriorated the mechanical properties, and the corresponding reason was further analyzed.

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References

  1. J. Verma, R.V. Taiwade, J. Manuf. Processes 25 (2017) 134–152.

    Article  Google Scholar 

  2. D.K. Xu, J. Xia, E.Z. Zhou, D.W. Zhang, H.B. Li, C.G. Yang, Q. Li, H. Lin, X.G. Li, K. Yang, Bioelectrochemistry 113 (2017) 1–8.

    Article  Google Scholar 

  3. H.B. Li, W.C. Jiao, H. Feng, X.X. Li, Z.H. Jiang, G.P. Li, L.X. Wang, G.W. Fan, P. Han, Metals 6 (2016) 223.

    Article  Google Scholar 

  4. H.B. Li, E.Z. Zhou, D.W. Zhang, D.K. Xu, J. Xia, C.G. Yang, H. Feng, Z.H. Jiang, X.G. Li, T.Y. Gu, K. Yang, Sci. Rep. 6 (2016) 20190.

    Article  Google Scholar 

  5. S.H. Byun, N. Kang, T.H. Lee, S.K. Ahn, H.W. Lee, W.S. Chang, K.M. Cho, Met. Mater. Int. 18 (2012) 201–207.

    Article  Google Scholar 

  6. J. Du, F. Mompiou, W.Z. Zhang, J. Mater. Sci. 52 (2017) 11688–11700.

    Article  Google Scholar 

  7. D. Qiu, W.Z. Zhang, Acta Mater. 56 (2008) 2003–2014.

    Article  Google Scholar 

  8. V. Shamanth, K.S. Ravishankar, Results Phy. 5 (2015) 297–303.

    Article  Google Scholar 

  9. S.H. Jeon, G.D. Song, D.H. Hur, Y.S. Park, Mater. Trans. 56 (2015) 1287–1293.

    Article  Google Scholar 

  10. S.M. Kim, J.S. Kim, K.T. Kim, K.T. Park, Y.S. Park, C.S. Lee, Corrosion 71 (2015) 470–482.

    Article  Google Scholar 

  11. K.H. Kong, S.H. Jeon, S.T. Kim, D.H. Kim, B.J. Kim, H.U. Guim, M.B. Moon, Y.S. Park, Mater. Trans. 56 (2015) 749–754.

    Article  Google Scholar 

  12. G. Argandona, J.F. Palacio, C. Berlanga, M.V. Biezma, P.J. Rivero, J. Pena, R. Rodriguez, Metals 7 (2017) 219.

    Article  Google Scholar 

  13. J.L. del Abra-Arzola, M.A. Garcia-Renteria, V.L. Cruz-Hernandez, J. Garcia-Guerra, V.H. Martinez-Landeros, L.A. Falcon-Franco, F.F. Curiel-Lopez, Wear 400–401 (2018) 43–51.

    Article  Google Scholar 

  14. M.A.E. Jepson, M. Rowlett, R.L. Higginson, Metall. Mater. Trans. A 48 (2017) 1491–1500.

    Article  Google Scholar 

  15. Y.H. Yang, B. Yan, J. Wang, J.L. Yin, J. Alloy. Compd. 509 (2011) 8870–8879.

    Article  Google Scholar 

  16. G. Fargas, M. Anglada, A. Mateo, J. Mater. Process. Technol. 209 (2009) 1770–1782.

    Article  Google Scholar 

  17. R. Magnabosco, N. Alonso-Falleiros, Corrosion 61 (2005) 130–136.

    Article  Google Scholar 

  18. H. Zhao, Z.Y. Zhang, H.Z. Zhang, J. Hu, J. Li, J. Alloy. Compd. 672 (2016) 147–154.

    Article  Google Scholar 

  19. S.H. Jeon, S.T. Kim, I.S. Lee, J.S. Kim, K.T. Kim, Y.S. Park, Corros. Sci. 66 (2013) 217–224.

    Article  Google Scholar 

  20. S.K. Kim, K.Y. Kang, M.S. Kim, J.M. Lee, Metals 5 (2015) 1732–1745.

    Article  Google Scholar 

  21. T. Liang, X.Q. Hu, X.H. Kang, D.Z. Li, Adv. Mater. Res. 684 (2013) 325–329.

    Article  Google Scholar 

  22. H.C. Wu, B. Yang, Y.Q. Wang, Mater. Corros. 66 (2015) 663–669.

    Article  Google Scholar 

  23. H. Sieurin, R. Sandstrom, Mater. Sci. Eng. A 444 (2007) 271–276.

    Article  Google Scholar 

  24. G. Chail, P. Kangas, in: F. Iacoviello, L. Susmel, D. Firrao, G. Ferro (Eds.), 21st European Conference on Fracture, Catania, Italy, 2016, pp. 1755–1762.

  25. K.W. Chan, S.C. Tjong, Materials 7 (2014) 5268–5304.

    Article  Google Scholar 

  26. I. Zucato, M.C. Moreira, I.F. Machado, S.M.G. Lebrão, Mater. Res. 5 (2002) 385–389.

    Article  Google Scholar 

  27. D. Villalobos, A. Albiter, C. Maldonado, Matéria 14 (2009) 1061–1069.

    Google Scholar 

  28. J.L. Lv, T.X. Liang, L.M. Dong, C. Wang, Corros. Sci. 104 (2016) 144–151.

    Article  Google Scholar 

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Acknowledgements

This research was supported by the National Natural Science Foundation of China (Grant No. 51371123) and Shanxi Province Science Foundation for Youths (201601D202033).

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Correspondence to Jian Wang or Pei-de Han.

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Wang, J., Chen, Wl., Meng, Hj. et al. Influence of sigma phase on corrosion and mechanical properties of 2707 hyper-duplex stainless steel aged for short periods. J. Iron Steel Res. Int. 26, 452–461 (2019). https://doi.org/10.1007/s42243-018-0175-3

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  • DOI: https://doi.org/10.1007/s42243-018-0175-3

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