Obrabotka Metallov 2025 Vol. 27 No. 2

ОБРАБОТКА МЕТАЛЛОВ Том 27 № 2 2025 156 ОБОРУДОВАНИЕ. ИНСТРУМЕНТЫ 10. Electron beam powder bed fusion of γ-titanium aluminide: eff ect of processing parameters on part density, surface characteristics, and aluminum content / J. Moritz, M. Teschke, A. Marquardt, L. Stepien, E. López, F. Brückner, M. Macias Barrientos, F. Walther, C. Leyens // Metals. – 2021. – Vol. 11 (7). – P. 1093. – DOI: 10.3390/met11071093. 11. Adesign of experiment approach for development of electron beam powder bed fusion process parameters and improvement of Ti-6Al-4V as-built properties / D. Braun, Y.I. Ganor, S. Samuha, G.M. Guttmann, M. Chonin, N. Frage, S. Hayun, E. Tiferet // Journal of Manufacturing and Materials Processing. – 2022. – Vol. 6 (4). – P. 90. – DOI: 10.3390/jmmp6040090. 12. Compositionally graded metals: a new frontier of additive manufacturing / D.C. Hofmann, J. Kolodziejska, S. Roberts, R. Otis, R.P. Dillon, J.-O. Suh, Z.-K. Liu, J.- P. Borgonia // Journal of Materials Research. – 2014. – Vol. 29. – P. 1899–1910. – DOI: 10.1557/jmr.2014.208. 13. Micro-, meso- and macrostructural design of bulk metallic and polymetallic materials by wire-feed electron-beam additive manufacturing / E.A. Kolubaev, V.E. Rubtsov, A.V. Chumaevsky, E.G. Astafurova // Physical Mesomechanics. – 2022. – Vol. 25. – P. 479– 491. – DOI: 10.1134/S1029959922060017. 14. Alloys-by-design: application to new superalloys for additive manufacturing / Y.T. Tang, C. Panwisawas, J.N. Ghoussoub, Y. Gong, J. Clark, A. Németh, D.G. McCartney, R.C. Reed // Acta Materialia. – 2020. – Vol. 202. – P. 417–436. – DOI: 10.1016/j. actamat.2020.09.023. 15. Phase formation, microstructure, and mechanical properties of Ni-Cu bimetallic materials produced by electron beam additive manufacturing / K. Osipovich, D. Gurianov, A. Vorontsov, E. Knyazhev, A. Panfi lov, A. Chumaevskii, N. Savchenko, S. Nikonov, V. Rubtsov, E. Kolubaev // Metals. – 2022. – Vol. 12. – P. 1931. – DOI: 10.3390/met12111931. 16. Interfacial characteristic and mechanical performance of maraging steel-copper functional bimetal produced by selective laser melting based hybrid manufacture / C. Tan, K. Zhou, W. Ma, L. Min // Materials & Design. – 2018. – Vol. 155. – P. 77–85. – DOI: 10.1016/j.matdes.2018.05.064. 17. Additive manufacturing of metallic components – Process, structure and properties / T. DebRoy, H.L. Wei, J.S. Zuback, T. Mukherjee, J.W. Elmer, J.O. Milewski, A.M. Beese,A. Wilson-Heid,A. De, W. Zhang // Progress in Materials Science. – 2018. – Vol. 92. – P. 112–224. – DOI: 10.1016/j.pmatsci.2017.10.001. 18. Eff ect of heat input on phase content, crystalline lattice parameter, and residual strain in wire-feed electron beam additive manufactured 304 stainless steel / S.Y. Tarasov, A.V. Filippov, N.L. Savchenko, S.V. Fortuna, V.E. Rubtsov, E.A. Kolubaev, S.G. Psakhie // The International Journal of Advanced Manufacturing Technology. – 2018. – Vol. 99. – P. 2353– 2363. – DOI: 10.1007/s00170-018-2643-0. 19. Study on powder particle behavior in powder spreading with discrete element method and its critical implications for binder jetting additive manufacturing processes / S. Wu, Y. Yang, Y. Huang, C. Han, J. Chen, Y. Xiao, Y. Li, D. Wang // Virtual and Physical Prototyping. – 2023. – Vol. 18 (1). – P. 1–26. – DOI: 10. 1080/17452759.2022.2158877. 20. Materials for additive manufacturing / D. Bourell, J.P. Kruth, M. Leu, G. Levy, D. Rosen, A.M. Beese, A. Clare // CIRP Annals Manufacturing Technology. – 2017. – Vol. 66. – P. 659–681. – DOI: 10.1016/j. cirp.2017.05.009. Конфликт интересов Авторы заявляют об отсутствии конфликта интересов. © 2025 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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