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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 44, 2017 - Issue 2
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Original Articles

Effect of alloy addition on inclusion evolution in stainless steels

, , , , &
Pages 152-158 | Received 27 Apr 2016, Accepted 28 Apr 2016, Published online: 26 May 2016

References

  • L. Zhang and B. G. Thomas: ‘State of the art in evaluation and control of steel cleanliness', ISIJ Int., 2003, 43, (3), 271–291. doi: 10.2355/isijinternational.43.271
  • P. Kaushik, J. Lehmann and M. Nadif: ‘State of the art in control of inclusions, their characterization, and future requirements', Metall. Mater. Trans. B, 2012, 43, (4), 710–725. doi: 10.1007/s11663-012-9646-2
  • P. Kaushik, H. Pielet and H. Yin: ‘Inclusion characterization–tool for measurement of steel cleanliness and process control: part 1’, Ironmak Steelmak, 2009, 36, (8), 561–571. doi: 10.1179/030192309X12492910938131
  • M. E. Fine: ‘Fatigue resistance of metals', Metall. Trans. A, 1980, 11, (3), 365–379. doi: 10.1007/BF02654560
  • S. B. Lee, J. H. Choi, H. G. Lee, P. H. Rhee and S. M. Jung: ‘Aluminum deoxidation equilibrium in liquid Fe-16 Pct. Cr alloy’, Metall. Mater. Trans. B, 2005, 36, (3), 414–416. doi: 10.1007/s11663-005-0071-7
  • M. Vanende, M. Guo, J. Proost, B. Blanpain and P. Wollants: ‘Formation and morphology of Al2O3 inclusions at the onset of liquid Fe deoxidation by Al addition’, ISIJ Int., 2011, 51, (1), 27–34. doi: 10.2355/isijinternational.51.27
  • S. Chen, M. Jiang, X. He, and X. Wang: ‘Top slag refining for inclusion composition transform control in tire cord steel’, Int. J. Miner. Metall. Mater., 2012, 19, (6), 490–498. doi: 10.1007/s12613-012-0585-3
  • X. Cai, Y. Bao, L. Lin and C. Gu: ‘Effect of Al content on the evolution of non-metallic inclusions in Si–Mn deoxidized steel’, Steel Res. Int., 2015, 86, 1–11. doi: 10.1002/srin.201570001
  • M. B. Leban and R. Tisu: ‘The effect of TiN inclusions and deformation-induced martensite on the corrosion properties of AISI 321 stainless Steel’, Eng. Fail. Anal., 2013, 33, 430–438. doi: 10.1016/j.engfailanal.2013.06.021
  • M. Prikryl, A. Kroupa, G. C. Weatherly and S. V. Subramanian: ‘Precipitation behavior in a medium carbon, Ti–V–N microalloyed Steel’, Metall. Mater. Trans. B, 1996, 27, (5), 1149–1165. doi: 10.1007/BF02649854
  • Z. Chen, M. H. Loretto and R. C. Cochrane: ‘Nature of large precipitates in titanium-containing HSLA steels', Mater. Sci. Technol., 1987, 3, (10), 836–844. doi: 10.1179/mst.1987.3.10.836
  • J. Du, M. Strangwood and C. L. Davis: ‘Effect of TiN particles and grain size on the charpy impact transition temperature in steels', J. Mater. Sci. Technol., 2012, 28, (10), 878–888. doi: 10.1016/S1005-0302(12)60146-7
  • W. Yan, Y. Y. Shan and K. Yang: ‘Effect of TiN inclusions on the impact toughness of Low-carbon microalloyed Steels', Metall. Mater. Trans. A, 2006, 37, (7), 2147–2158. doi: 10.1007/BF02586135
  • M. A. Linaza, J. L. Romero, J. M. Rodríguez-Ibabe and J. J. Urcola: ‘Influence of the microstructure on the fracture toughness and fracture mechanisms of forging steels microalloyed with titanium with ferrite-pearlite structures', Scr. Metall. Mater., 1993, 29, (4), 451–456. doi: 10.1016/0956-716X(93)90146-J
  • T. Uesugi: ‘Production of high-carbon chromium bearing steel in vertical type continuous caster’, Trans. ISIJ, 1986, 26, (7), 614–620. doi: 10.2355/isijinternational1966.26.614
  • K. Kunishige and N. Nagao: ‘Strengthening and toughening of Hot-direct-rolled steels by addition of a small amount of titanium’, ISIJ Int., 1989, 29, (11), 940–946. doi: 10.2355/isijinternational.29.940
  • M. W. Zhou and H. Yu: ‘Effects of precipitates and inclusions on the fracture toughness of hot rolling X70 pipeline steel plates', Int. J. Miner. Metall. Mater., 2012, 19, (9), 805–811. doi: 10.1007/s12613-012-0632-0
  • Y. Cogne, B. Heritier and J. Monnot: ‘Relationship of melting practice, inclusion type, and size with fatigue resistance of bearing steels', Proceedings of the Third International Conference on Clean Steel, The Institute of Metals, Balatonfüred, Hungary, 1987, 26–31.
  • A. Echeverría and J. M. Rodriguez-Ibabe: ‘Brittle fracture micromechanisms in bainitic and martensitic microstructures in a C-Mn-B steel’, Scr. Mater., 1999, 41, (2), 131–136. doi: 10.1016/S1359-6462(99)00124-4
  • L. P. Zhang, C. L. Davis and M. Strangwood: ‘Effect of TiN particles and microstructure on fracture toughness in simulated heat-affected zones of a structural steel’, Metall. Mater. Trans. A, 1999, 30, (8), 2089–2096. doi: 10.1007/s11661-999-0019-7
  • D. P. Fairchild, D. G. Howden and W. A. T. Clark: ‘The mechanism of brittle fracture in a microalloyed steel: part I. inclusion-induced cleavage’, Metall. Mater. Trans. A, 2000, 31, (3), 641–652. doi: 10.1007/s11661-000-0007-4
  • M. J. Balart, C. L. Davis and M. Strangwood: ‘Cleavage initiation in Ti–V–N and V–N microalloyed ferritic–pearlitic forging steels', Mater. Sci. Eng. A, 2000, 284, (1–2), 1–13. doi: 10.1016/S0921-5093(00)00803-0
  • M. Hasegawa, S. Maruhashi, Y. Kamidate, Y. Muranaka and F. Hoshi: ‘Tundish nozzle constriction in continuous casting of titanium bearing stainless steel slabs', Tetsu-to-Hagané, 1984, 70, (14), 1704–1711.
  • R. Maddalena, R. Rastogi, S. Bassem and A. W. Cramb: ‘Nozzle deposits in titanium treated stainless steels', Iron Steelmaker, 2000, 27, (12), 71–79.
  • Y. Gao and K. Sorimachi: ‘Formation of clogging materials in an immersed nozzle during continuous casting of titanium stabilized stainless steel’, ISIJ Int., 1993, 33, (2), 291–297. doi: 10.2355/isijinternational.33.291
  • Y. Bi, A. V. Karasev and P. G. Jönsson: ‘Evolution of different inclusions during ladle treatment and continuous casting of stainless Steel’, ISIJ Int., 2013, 53, (12), 2099–2109. doi: 10.2355/isijinternational.53.2099
  • H. S. Kim, H. G. Lee and K. S. OH: ‘Precipitation behavior of MnS on oxide inclusions in Si/Mn deoxidized steel’, Metall. Mater. Int., 2000, 6, (4), 305–310.
  • M. Wakoh, T. Sawai and S. Mizoguchi: ‘Effect of oxide particles on MnS precipitation in low S steels', Tetsu-to-Hagané, 1992, 78, (11), 1697–1704.
  • M. Wakoh, T. Sawai and S. Mizoguchi: ‘Effect of S content on the MnS precipitation in steel with oxide nuclei’, ISIJ Int., 1996, 36, (8), 1014–1021. doi: 10.2355/isijinternational.36.1014
  • H. S. Kim, H. G. Lee and K. S. OH: ‘Mns precipitation in association with manganese silicate inclusions in Si/Mn deoxidized steel’, Metall. Mater. Trans. A, 2001, 32A, (6), 1519–1525. doi: 10.1007/s11661-001-0239-y
  • S. S. Babu, S. A. David, J. M. Vitek, K. Mundra and T. DebRoy: ‘Development of macro- and microstructures of carbon-manganese low alloy steel welds: inclusion formation’, Mater. Sci. Technol., 1995, 11, (2), 186–199. doi: 10.1179/mst.1995.11.2.186
  • D. G. Zhou, J. Fu, X. C. Chen and J. Li: ‘Precipitation behavior of TiN in bearing steel’, J. Mater. Sci. Technol., 2003, 19, (2), 184–186. doi: 10.1016/S0924-0136(02)00850-6
  • F. Meng, J. Wang, E. H. and K. W. Han: ‘The role of TiN inclusions in stress corrosion crack initiation for alloy 690TT in high-temperature and high pressure Water’, Corros. Sci., 2010, 52, (3), 927–932. doi: 10.1016/j.corsci.2009.11.015
  • Y. Xu, Z. Chen, M. Gong, D. Shu, Y. Tian and X. Yuan: ‘Effects of Mg addition on inclusions formation and resultant solidification structure changes of Ti-stabilized ultra-pure ferritic stainless steel’, J. Iron Steel Res. Int., 2014, 21, (6), 583–588. doi: 10.1016/S1006-706X(14)60090-X
  • A. S. Nick and H. Fredriksson: ‘On the relationship between inclusions and pores, part I: Precipitation’, Trans. Indian Inst. Met., 2012, 65, (6), 791–794. doi: 10.1007/s12666-012-0224-8
  • J. H. Park: ‘Effect of inclusions on the solidification structures of ferritic stainless steel: computational and experimental study of inclusion evolution’, Calphad, 2011, 35, (4), 455–462. doi: 10.1016/j.calphad.2011.08.004
  • W. Yan, Y. Y. Shan and K. Yang: ‘Influence of TiN inclusions on the cleavage fracture behavior of low-carbon microalloyed steels', Metall. Mater. Trans. A, 2007, 38, (6), 1211–1222. doi: 10.1007/s11661-007-9161-2
  • M. Söder, P. G. Jönsson and L. Jonsson: ‘Inclusion growth and removal in gas-stirred ladles', Steel Res. Int., 2004, 75, (2), 128–138.
  • S. Taniguchi and A. Kikuchi: ‘Mechanisms of collision and coagulation between fine particles in fluid’, Tetsu-to-Hagané, 1992, 78, (4), 527–535.
  • U. Lindborg and K. Torssell: ‘A collision model for the growth and separation of deoxidation products', Trans. Met. Soc. AIME, 1968, 242, 94–102.

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