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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 50, 2023 - Issue 4
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Articles

Effect of deformation amount distribution in the austenite recrystallization temperature region on the microstructure and mechanical properties of the X70 pipeline steel

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Pages 402-409 | Received 24 Jun 2022, Accepted 28 Aug 2022, Published online: 25 Sep 2022

References

  • Kim YM, Lee H, Kim NJ. Transformation behavior and microstructural characteristics of acicular ferrite in linepipe steels. Mater Sci Eng A. 2008;478:361–370.
  • Sung HK, Shin SY, Cha W, et al. Effects of acicular ferrite on Charpy impact properties in heat affected zones of oxide-containing API X80 linepipe steels. Mater Sci Eng, A. 2011;528:3350–3357.
  • Sanchez-Mourino N, Petrov R, Bae JH, et al. Microstructural changes after control rolling and interrupted accelerated cooling simulations in pipeline steel. Steel Res Int 2011;82:352–361.
  • Shanmugam S, Misra RDK, Hartmann J, et al. Microstructure of high strength niobium-containing pipeline steel. Mater Sci Eng A. 2006;441:215–229.
  • Ma J, Feng F, Yu BQ, et al. Effect of cooling temperature on the microstructure and corrosion behavior of X80 pipeline steel. Int J Miner, Metall Mater. 2020;27:347–353.
  • Zhao J, Hu W, Wang X, et al. A novel thermo-mechanical controlled processing for large-thickness microalloyed 560 MPa (X80) pipeline strip under ultra-fast cooling. Mater Sci Eng, A. 2016;673:373–377.
  • Duan RH, Xie GM, Luo ZA, et al. Microstructure, crystallography, and toughness in nugget zone of friction stir welded high-strength pipeline steel. Mater Sci Eng, A. 2020;791:139620.
  • Zheng XF, Kang YL, Meng DL, et al. Effect of cooling start temperature on microstructure and mechanical properties of X80 high deformability pipeline steel. J Iron Steel Res Int 2011;18:42–46.
  • Zhang JM, Sun WH, Sun H. Mechanical properties and microstructure of X120 grade high strength pipeline steel. J Iron Steel Res Int 2010;17:63–67.
  • Heedman PJ, Rutqvist SP. Controlled rolling of plates with forced-water cooling during rolling. Met Technol. 1981;8:352–360.
  • Wu JY, Wang B, Wang BX. Toughness and ductility improvement of heavy EH47 plate with grain refinement through inter-pass cooling. Mater Sci Eng, A. 2018;733:117–127.
  • Coldren AP, Mihelich JL. Acicular ferrite HSLA steels for line pipe. Met Sci Heat Treat 1977;19:559–572.
  • Zhao M-C, Yang K, Shan Y. The effects of thermo-mechanical control process on microstructures and mechanical properties of a commercial pipeline steel. Mater Sci Eng A. 2002;335:14–20.
  • Vervynckt S, Verbeken K, Lopez B, et al. Modern HSLA steels and role of non-recrystallisation temperature. Int Mater Rev. 2012;57:187–207.
  • Sellars CM, Whiteman JA. Recrystallization and grain growth in hot rolling. Met Sci 1979;13:178–194.
  • Suikkanen PP, Kömi JI, Karjalainen LP. Effect of austenite deformation and chemical composition on the microstructure and hardness of low-carbon and ultralow-carbon bainitic steels. Met Sci Heat Treat 2005;47:507–511.
  • Pollak EI, Jonas JJ. A one-parameter approach to determining the critical conditions for the initiation of dynamic recrystallization. Acta Mater 1996;44:127–136.
  • Zhao YH, Sheng HW, Lu K. Microstructure evolution and thermal properties in nanocrystalline Fe during mechanical attrition. Acta Mater 2001;49:365–375.
  • Charleaux M, Poole WJ, Militzer M, et al. Precipitation behavior and its effect on strengthening of an HSLA-Nb/Ti steel. Met MaterTrans. A 2000;32:1635.
  • Williamson GK, Hall WH. X-ray line broadening from filed aluminium and wolfram. Acta Metall 1953;1:22–31.
  • Rane GK, Welzel U, Mittemeijer EJ. Grain growth studies on nanocrystalline Ni powder. Acta Mater 2012;60:7011–7023.
  • Wu Q, Zikry MA. Microstructural modeling of transgranular and intergranular fracture in crystalline materials with coincident site lattice grain-boundaries: Σ3 and Σ17b bicrystals. Mater Sci Eng A. 2016;661:32–39.
  • Lin HP, Chen D, Kuo JC. Grain boundary evolution of cold-rolled FePd alloy during recrystallization at disordering temperature. Materials (Basel). 2015;8:3254–3267.
  • Misra RDK, Nathani H, Hartmann JE, et al. Microstructural evolution in a new 770MPa hot rolled Nb–Ti microalloyed steel. Mater Sci Eng A. 2005;394:339–352.
  • Singh N, Casillas G, Wexler D, et al. Application of advanced experimental techniques to elucidate the strengthening mechanisms operating in microalloyed ferritic steels with interphase precipitation. Acta Mater 2020;201:386–402.
  • Kostryzhev AG, Marenych OO, Killmore CR, et al. Strengthening mechanisms in thermomechanically processed NbTi-microalloyed steel. Metall MaterTrans A. 2015;46A:3470–3480.
  • Wang JS, Mulhollandb MD, Olson GB, et al. Prediction of the yield strength of a secondary-hardening steel. Acta Mater 2013;61:4939–4952.
  • Charleux M, Poole WJ, Militzer M, et al. Precipitation behavior and its effect on strengthening of an HSLA-Nb/Ti steel. Metall MaterTrans A. 2011;32:1635–1647.
  • Calcagnotto M, Adachi Y, Ponge D, et al. Deformation and fracture mechanisms in fine- and ultrafine-grained ferrite/martensite dual-phase steels and the effect of aging. Acta Mater 2011;59:658–670.
  • Wang CF, Wang MQ, Shi J, et al. Effect of microstructural refinement on the toughness of low carbon martensitic steel. Scr Mater 2008;58:492–495.

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