Obrabotka Metallov 2024 Vol. 26 No. 3

ОБРАБОТКА МЕТАЛЛОВ Том 26 № 3 2024 44 ТЕХНОЛОГИЯ I. Gutiérrez, C. Garcı́a-de Andrés, C. Capdevila // Scripta Materialia. – 1999. – Vol. 41 (3). – P. 229–235. – DOI: 10.1016/S1359-6462(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. Nature of large (Ti, Nb)(C, N) particles precipitated during the solidifi cation of Ti, Nb HSLA steel / X. Zhuo, X. Wang, W. Wang, H.G. Lee // Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material. – 2007. – Vol. 14 (2). – P. 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). – P. 423–431. – DOI: 10.1179/1879139514 Y.0000000134. 71. The mechanism for coarse Nb-rich particle formation in steel / S. Abraham, R. Bodnar, J. Lonnqvist, J. Hagstrom, E. Rydgren // Metallurgical and Materials Transactions A. – 2021. – Vol. 52. – P. 3727–3749. – DOI: 10.1007/s11661-021-06324-3. 72. Microstructural features controlling mechanical properties in Nb-Mo microalloyed steels. Part I: Yield strength / P. Uranga, N. Isasti, D. Jorge-Badiola, M.L. Taheri // Metallurgical and Materials Transactions A. – 2014. – Vol. 45. – P. 4960–4971. – DOI: 10.1007/s11661014-2450-7. 73. Sn segregation at grain boundary and interface between MnS and matrix in Fe-3 mass% Si alloys doped with tin / S. Suzuki, K. Kuroki, H. Kobayashi, N. Takahashi // Materials Transactions, JIM. – 1992. – Vol. 33 (11). – P. 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). – P. 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. – P. 615–622. 76. Optimization of metallurgical factors for production of high strength, high toughness steel plate by controlled rolling / M. Hiroyoshi, T. Osuka, I. Kozasu, K. Tsukada // Transactions of the Iron and Steel Institute of Japan. – 1972. – Vol. 12. – P. 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. – P. 25–28. 79. The plastic deformation of polycrystalline aggregates / R. Armstrong, I. Codd, R.M. Douthwaite, N.J. Petch // The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics. – 1962. – Vol. 7 (73). – P. 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. – P. 75–89. 81. Microalloyed steels through history until 2018: review of chemical composition, processing and hydrogen service / J.C. Villalobos, A. Del-Pozo, B. Campillo, J. Mayen, S. Serna // 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. – P. 277–286. – DOI: 10.1007/BF02647973. 83. Gauthier G., LeBon A.B. Discussion: on the recrystallization of austenite // Proceedings. Microalloying ’75. – Washington, 1975. – P. 1–3. 84. Hot rolling as a high-temperature thermomechanical process / I. Kozasu, C. Ouchi, T. Sampei, T. Okita // Proceedings. Microalloying ’75. – Washington, 1975. – P. 120–134. 85. DeArdo A.J. Microalloyed steels: fi fty years of progress – An interpretive review. – URL: https://www. researchgate.net/publication/304374754_Microalloyed_ Steels_Fifty_Years_of_Progress_-_An_Interpretive_ Review (accessed: 06.08.2024). 86. The signifi cance of central segregation of continuously cast billet on banded microstructure and mechanical properties of section steel / F. Guo, X. Wang, J. Wang, R.D.K. Misra, C. Shang // 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). – P. 699–704. 88. Misra D., Jansto S.G. Niobium-based alloy design for structural applications: processingstructure-property paradigm // HSLA Steels 2015, Microalloying 2015 & Off shore Engineering Steels 2015: conference proceedings. – Hoboken, NJ, USA: John Wiley & Sons, Inc., 2015. – P. 261–266. – DOI: 10.1002/9781119223399.ch27. 89. The eff ect of coiling temperature on the microstructure and mechanical properties of a niobium– titanium microalloyed steel processed via thin slab

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