Obrabotka Metallov 2026 Vol. 28 No. 3

OBRABOTKAMETALLOV Vol. 28 No. 3 2026 265 MATERIAL SCIENCE entropy alloy / Q. Hu, H.L. Wang, L.H. Qian, L.-c. Zeng, Q. Wang, X.-w. Liu // Transactions of Nonferrous Metals Society of China. – 2023. – Vol. 33 (6). – P. 1803– 1813. – DOI: 10.1016/S1003-6326(23)66223-5. 18. Mechanical and tribological characteristics of nickel-rich CoCrCuxFeNi2 high entropy-alloys / A.D. Fedotov, S.K. Mukanov, B.Yu. Romanenko, P.A. Loginov, M.Ya. Bychkova, S.I. Rupasov // Известия вузов. Цветная металлургия. – 2024. – Т. 30, № 1. – С. 55–69. – DOI: 10.17073/0021-3438-2024-155-69. 19. Boron-doped high entropy CrFeCoNiCu alloybased composites reinforced with oxides and borides with enhanced thermomechanical properties / U.U. Narzulloev, A.T. Matveev, L.Y. Kaplanskaya, S. Mukanov, K. Kuptsov, T. Teplyakova, P. Loginov, I. Shchetinin, D. Shtansky // Journal of Alloys and Compounds. – 2025. – Vol. 1036. – P. 181778. – DOI: 10.1016/J.JALLCOM.2025.181778. 20. On the diff erence in carbon- and nitrogenalloying of equiatomic FeMnCrNiCo high-entropy alloy / E.G. Astafurova, K.A. Reunova, E.V. Melnikov, M.Yu. Panchenko, S.V. Astafurov, G.G. Maier, V.A. Moskvina // Materials Letters. – 2020. – Vol. 276. – P. 128183. – DOI: 10.1016/J.MATLET.2020.128183. 21. The way to improve strength and ductility of heavily carbon-alloyed high-entropy Fe20Mn20Cr20Ni20Co15C5 alloy / S.V. Astafurov, E.V. Melnikov, K.A. Reunova, M.Yu. Panchenko, E.A. Zagibalova, K.V. Krukovskii, E.G. Astafurova // Materials Science and Engineering A. – 2022. – Vol. 851. – P. 143628. – DOI: 10.1016/J.MSEA.2022.143628. 22. Temperature dependence of the deformation behavior of high-entropy alloys Co20Cr20Fe20Mn20Ni20, Co19Cr20Fe20Mn20Ni20C1, and Co17Cr20Fe20Mn20Ni20C3. Mechanical properties and temperature dependence of yield stress alloy / E.G. Astafurova, K.A. Reunova, S.V. Astafurov, D.O. Astapov // Physical Mesomechanics. – 2024. – Vol. 27. – P. 113–123. – DOI: 10.1134/ S1029959924020012. 23. Temperature dependence of mechanical properties and plastic fl ow behavior of cast multicomponent alloys Fe20Cr20Mn20Ni20Co20-xCx (x = 0, 1, 3, 5) / E.G. Astafurova, E.V. Melnikov, K.A. Reunova, S.V. Astafurov, M.Yu. Panchenko, A. Mikhno, I. Tumbusova // Physical Mesomechanics. – 2021. – Vol. 24. – P. 674–683. – DOI: 10.1134/S1029959921060059. 24. Synergistic enhancement of strength and ductility ofCoCrNimedium-entropy alloyvia dual carbon-induced heterogeneous structures / Q.K. Wang, S.A. Li, L.X. He, Z.K. Wang, Y. Cai, N. Zhang, X.J. Zhao, L. Lu // Materials Science and Engineering A. – 2025. – Vol. 948. – P. 149317. – DOI: 10.1016/j.msea.2025.149317. 25. Amani-Ghadim H., Farjam R., Akbari A. Carbon doped Co40Cr20Ni20Fe10Mn10 high entropy alloy: microstructure and mechanical properties // High Entropy Alloy Materials. – 2026. – Vol. 2026. – P. 1–19. – DOI: 10.1007/S44210-025-00073-3. 26. Microstructure and compressive deformation behavior of carbon-doped Fe0.5CrMnAlCu high-entropy alloy / K. Ma, L. Feng, J. Liu, Y. Zhao // Journal of Alloys and Compounds. – 2025. – Vol. 1046. – P. 184880. DOI: 10.1016/J.JALLCOM.2025.184880. 27. Overcoming the strength-ductility trade-off of additively manufactured metastable high-entropy alloy via carbon doping / Q. Tang, S. Peng, C. Lin, Y. Hou, L. Chen, Z. Li // Journal of Alloys and Compounds. – 2025. – Vol. 1036. – P. 181960. – DOI: 10.1016/J.JALLCOM.2025.181960. 28. Получение износостойких боридных керметов на основе высокоэнтропийного сплава CoCrCuFeNi методом горячего прессования / А.Д. Федотов, С.К. Муканов, С.И. Рупасов, П.А. Логинов, Е.А. Левашов // Металлург. – 2026. – № 1. – С. 93–102. – DOI: 10.52351/00260827_2026_1_93. 29. The eff ect of interstitial carbon on the mechanical properties and dislocation substructure evolution in Fe40.4Ni11.3Mn34.8Al7.5Cr6 high entropy alloys / Z. Wang, I. Baker, Z. Cai, S. Chen, J.D. Poplawsky, W. Guo // Acta Materialia. – 2016. – Vol. 120. – P. 228– 239. – DOI: 10.1016/j.actamat.2016.08.072. 30. Ultrahigh-strength and ductile CoCrFeNi-based high-entropy alloys manufactured by laser powder bed fusion with multiple strengthening mechanisms / Z. Wu, M. He, H. Cao, S. Wang, R. Chen, B. Cao, R. Shi, X. Liu, S. Yu, S. Wang, J. Bai, J. Wei // Journal of Materials Research and Technology. – 2023. – Vol. 25. – P. 2948– 2960. – DOI: 10.1016/j.jmrt.2023.06.110. 31. Deformation behavior of nanocrystalline and ultrafi ne-grained CoCrCuFeNi high-entropy alloys / S. Nam, J.Y. Hwang, J. Jeon, J. Park, D. Bae, M.J. Kim, J.H. Kim, H. Choi // Journal of Materials Research. – 2019. – Vol. 34 (5). – P. 720–731. – DOI: 10.1557/ JMR.2018.477. Конфликт интересов Авторы заявляют об отсутствии конфликта интересов. © 2026 Авторы. Издательство Новосибирского государственного технического университета. Эта статья доступна по лицензии Creative Commons «Attribution» («Атрибуция») 4.0 Всемирная (https://creativecommons.org/licenses/by/4.0).

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