Obrabotka Metallov 2024 Vol. 26 No. 3

OBRABOTKAMETALLOV Vol. 26 No. 3 2024 50 TECHNOLOGY 67. Madariaga I., Gutiérrez I., Garcı́a-de Andrés C., Capdevila C. Acicular ferrite formation in a medium carbon steel with a two stage continuous cooling. Scripta Materialia, 1999, vol. 41 (3), pp. 229–235. DOI: 10.1016/S13596462(99)00149-9. 68. Aminorroaya Yamini S. Infl uence of microalloying elements (Ti, Nb) and nitrogen concentrations on precipitation of pipeline steels – A thermodynamic approach. Engineering Reports, 2021, vol. 3 (7), p. e12337. DOI: 10.1002/eng2.12337. 69. Zhuo X., Wang X., Wang W., Lee H.G. Nature of large (Ti, Nb)(C, N) particles precipitated during the solidifi cation of Ti, Nb HSLA steel. Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material, 2007, vol. 14 (2), pp. 112–117. DOI: 10.1016/S1005-8850(07)60023-1. 70. Den Boer A.W., Malakhov D.V. Critical role of carbon during production of ferroniobium alloy additions. Canadian Metallurgical Quarterly, 2014, vol. 53 (4), pp. 423–431. DOI: 10.1179/1879139514Y.0000000134. 71. Abraham S., Bodnar R., Lonnqvist J., Hagstrom J., Rydgren E. The mechanism for coarse Nb-rich particle formation in steel. Metallurgical and Materials Transactions A, 2021, vol. 52, pp. 3727–3749. DOI: 10.1007/s11661021-06324-3. 72. Uranga P., Isasti N., Jorge-Badiola D., Taheri M.L. Microstructural features controlling mechanical properties in Nb-Mo microalloyed steels. Part I: Yield strength. Metallurgical and Materials Transactions A, 2014, vol. 45, pp. 4960–4971. DOI: 10.1007/s11661-014-2450-7. 73. Suzuki S., Kuroki K., Kobayashi H., Takahashi N. Sn segregation at grain boundary and interface between MnS and matrix in Fe-3 mass% Si alloys doped with tin. Materials Transactions, JIM, 1992, vol. 33 (11), pp. 1068– 1076. DOI: 10.2320/matertrans1989.33.1068. 74. Tsunekage N., Tsubakino H. Eff ects of sulfur content and sulfi de-forming elements addition on impact properties of ferrite-pearlitic microalloyed steels. ISIJ International, 2001, vol. 41 (5), pp. 498–505. DOI: 10.2355/ isijinternational.41.498. 75. Phillips R., Chapman J.A. Infl uence of fi nish rolling temperature on mechanical properties of some commercial steels rolled to 13/16 in. diameter bars. Journal of the Iron and Steel Institute, 1966, vol. 204, pp. 615–622. 76. Hiroyoshi M., Osuka T., Kozasu I., Tsukada K. Optimization of metallurgical factors for production of high strength, high toughness steel plate by controlled rolling. Transactions of the Iron and Steel Institute of Japan, 1972, vol. 12, pp. 435–443. 77. Hall E.O. The deformation and ageing of mild steel: III discussion of results. Proceedings of the Physical Society. Section B, 1951, vol. 64 (9), p. 747. DOI: 10.1088/0370-1301/64/9/303. 78. Petch N.J. The cleavage strength of polycrystals. Journal of the Iron and Steel Institute, 1953, vol. 174, pp. 25–28. 79. Armstrong R., Codd I., Douthwaite R.M., Petch N.J. The plastic deformation of polycrystalline aggregates. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics, 1962, vol. 7 (73), pp. 45–58. DOI: 10.1080/14786436208201857. 80. Hoogendoorn T.M., Spanraft M.J. Quantifying the eff ect of microalloy elements on structures during processing. Proceedings. Microalloying ’75, Washington, 1975, pp. 75–89. 81. Villalobos J.C., Del-Pozo A., Campillo B., Mayen J., Serna S. Microalloyed steels through history until 2018: review of chemical composition, processing and hydrogen service. Metals, 2018, vol. 8 (5), p. 351. DOI: 10.3390/ met8050351. 82. Palmiere E.J., Garcia C.I., DeArdo A.J. Compositional and microstructural changes which attend reheating and grain coarsening in steels containing niobium. Metallurgical and Materials Transactions A, 1994, vol. 25, pp. 277–286. DOI: 10.1007/BF02647973. 83. Gauthier G., LeBon A.B. Discussion: on the recrystallization of austenite. Proceedings. Microalloying ’75, Washington, 1975, pp. 1–3. 84. Kozasu I., Ouchi C., Sampei T., Okita T. Hot rolling as a high-temperature thermo-mechanical process. Proceedings. Microalloying ’75, Washington, 1975, pp. 120–134. 85. DeArdo A.J. Microalloyed steels: fi fty years of progress – An interpretive review. Available at: https:// www.researchgate.net/publication/304374754_Microalloyed_Steels_Fifty_Years_of_Progress_-_An_Interpretive_ Review (accessed 06.08.2024). 86. Guo F., Wang X., Wang J., Misra R.D.K., Shang C. The signifi cance of central segregation of continuously cast billet on banded microstructure and mechanical properties of section steel. Metals, 2020, vol. 10, p. 76. DOI: 10.3390/ met10010076. 87. Stalheim D.G. The use of high temperature processing (HTP) steel for high strength oil and gas transmission pipeline applications. Iron & Steel, 2005, vol. 40 (11), pp. 699–704.

RkJQdWJsaXNoZXIy MTk0ODM1