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Research Papers

Phase transformation mechanism of low-carbon high strength low alloy steel upon continuous cooling

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Pages S8-416-S8-422 | Received 03 May 2014, Accepted 23 Jun 2014, Published online: 18 Nov 2015

References

  • S. H. M. Anijdan and S. Yue: ‘The effect of cooling rate, and cool deformation through strain-induced transformation, on microstructural evolution and mechanical properties of microalloyed steels’, Metall. Mater. Trans., 2012, 43A, (4), 1140–1162.
  • D. Zhang, Y. Shintaku, S. Suzuki, and Y. Komizo: ‘Effect of cooling rate on phase transformation in the low carbon boron-treated steel’, J. Mater. Sci., 2012, 47, (14), 5524–5528.
  • R. Priestner and P. D. Hodgson: ‘Ferrite grain coarsening during transformation of thermomechanically processed C–Mn–Nb austenite’, Mater. Sci. Technol., 1992, 8, (10), 849–854.
  • I. A. Yakubtsov and J. D. Boyd: ‘Bainite transformation during continuous cooling of low carbon microalloyed steel’, Mater. Sci. Technol., 2001, 17, (3), 296–301.
  • Q. Z. Gao, Y. C. Liu, X. J. Di, Z. Z. Dong, and Z. S. Yan: ‘The isochronal δ → γ transformation of high Cr ferritic heat-resistant steel during cooling’, J. Mater. Sci., 2011, 46, (21), 6910–6915.
  • M. Avrami: ‘Kinetics of phase change I: general theory’, J. Chem. Phys., 1939, 7, (12), 1103–1112.
  • X. S. Zhou, C. X. Liu, L. M. Yu, Y. C. Liu and H. J. Li: ‘Phase transformation behavior and microstructural control of high-Cr martensitic/ferritic heat-resistant steels for power and nuclear plants: A review’, J. Mater. Sci. Technol., 2015, 31, 235–242.
  • M. Avrami: ‘Kinetics of phase change III: granulation, phase change, and microstructure’, J. Chem. Phys., 1941, 9, (2), 177–184.
  • W. A. Johnson and R. F. Mehl: ‘Reaction kinetics in processes of nucleation and growth’, Trans. AIME., 1939, 135, (8), 396–415.
  • A. N. Kolmogorov: ‘On the statistical theory of the crystallization of metals’, Bull. Acad. Sci. USSR, Math. Ser., 1937, 1, 355–359.
  • Y. C. Liu, F. Sommer, and E. J. Mittemeijer: ‘Abnormal austenite ferrite transformation behaviour in substitute Fe-Base alloys’, Acta Mater., 2003, 51, (2), 507–519.
  • J. Huo, Y. C. Liu, D. T. Zhang, Z. S. Yan, and Z. M. Gao: ‘Isochronal phase transformations of low-carbon high strength low alloy steel upon continuous cooling’, Steel Res. Int., 2012, 84, (2), 184–191.
  • H. J. Jun, J. S. Kang, D. H. Seo, K. B. Kang and C. G. Park: ‘Effects of deformation and boron on microstructure and continuous cooling transformation in low carbon HSLA steels’, Mater. Sci. Eng., 2006, 422A, (1), 157–162.
  • Y. C. Liu, F. Sommer, and E. J. Mittemeijer: ‘Kinetics of austenitization under uniaxial compressive stress in Fe–2·96 at.% Ni alloy’, Acta Mater., 2010, 58, (3), 753–763.
  • Y. E. Smith, A. P. Coldren, and R. L. Cryderman: ‘Toward improved ductility and toughness’, 1972, Tokyo, Climax Molybdenum Company (Japan) Ltd, 119–142.
  • F. R. Xiao, B. Liao, D. L. Ren, Y. Y. Shan, and K. Yang: ‘Acicular ferritic microstructure of a low-carbon Mn–Mo–Nb microalloyed pipeline steel’, Mater. Charact., 2005, 54, (4), 305–314.
  • Y. Chen, D. T. Zhang, Y. C. Liu, H. J. Li, and D. K. Xu: ‘Effect of dissolution and precipitation of Nb on the formation of acicular ferrite/bainite ferrite in low-carbon HSLA steels’, Mater. Charact., 2013, 84, 232–239.
  • C. X. Liu, Y. C. Liu, D. T. Zhang, and Z. S. Yan: ‘Kinetics of isochronal austenization in modified high Cr ferritic heat-resistant steel’, Appl. Phys. A, 2011, 105, (4), 949–957.
  • H. Chen, Y. C. Liu, Z. S. Yan, Y. L. Li, and L. F. Zhang: ‘Consideration of the growth mode in isochronal austenite-ferrite transformation of ultra-low-carbon Fe–C alloy’, Appl. Phys. A, 2010, 98, (1), 211–217.
  • F. Liu, F. Sommer, C. Bos, and E. J. Mittemeijer: ‘Analysis of solid state phase transformation kinetics: models and recipes’, Int. Mater. Rev., 2007, 52, (4), 193–212.
  • D. J. Wang, Y. C. Liu, C. Bao, W. X. Tan, and Z. M. Gao: ‘Approaches for isochronal transformation kinetics model and their application to the crystallization of amorphous alloys’, Appl. Phys. A, 2009, 96, (3), 721–729.
  • N. A. Chester and H. K. D. H. Bhadeshia: ‘Mathematical modelling of bainite transformation kinetics’, J. Phys. IV, 1997, 7, (C5), C5–41.
  • Y. C. Liu, F. Sommer, and E. J. Mittemeijer: ‘Austenite-ferrite transformation kinetics under uniaxial compressive stress in Fe-2.96 at. %Ni alloy’, Acta mater., 2009, 57, (9), 2858–2868.
  • Y. C. Liu, D. J. Wang, F. %Sommer and E. J. Mittemeijer: ‘Isothermal austenite-ferrite transformation of Fe-0.04at.%C alloy: Dilatometric measurement and kinetic analysis’, Acta mater., 2008, 56, (15), 3833–3842.

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