Труды КНЦ (Технические науки вып. 1/2024(15))
2. Effect of twin-wire feeding methods on the in-situ synthesis o f electron beam fabricated Ti-Al-Nb intermetallics / L. Zixiang [et al.] // Materials & Design. 2022. Ѵ оі . 215. P. 110509. https://doi.org/10.1016/j.matdes.2022.110509. 3. Microstructure observations in rare earth element Gd-modified Ti-44 at% Al / W. Li [et al.] // Intermetallics. 2000. Ѵоі. 8 (5-6). P. 519-523. https://doi.org/10.1016/S0966-9795(99)00156-9. 4. Synthesis o f High-Entropy Alloy AlTiZrVNb by Aluminothermic Reaction / E. M. Zhilina [et al.] // Russ. J. Inorg. Chem. 2022. Ѵоі. 67, No. 6 . Р. 888-891. https://doi.org/10.1134/S0036023622060249. 5. Joint Metallothermic Reduction of Titanium and Rare Refractory Metals o f Group V / V. F. Balakirev [et al.] // Russ. J. Non-ferrous Metals. 2021. Ѵ оі . 62, No. 2. Р. 190-196. https://doi.org/10.3103/S1067821221020024. 6 . Thermophysical Properties o f y-Titanium Aluminide: The European IMPRESS Project / I. Egry [et al.] // Int J. Thermophys. 2007. No. 28. P. 1026-1036. 7. Surface, dynamic and structural properties o f liquid Al-Ti alloys / R. Novakovic [et al.] // Appl. Surf. Science. 2012. No. 258. P. 3269-3275. 8 . Попель С. И. Поверхностные явления в расплавах. М.: Металлургия, 1994. 440 с. 9. Арсентьев П. П., Коледов Л. А. Металлические расплавы и их свойства. М.: Металлургия, 1976. 376 с. 10. Линчевский Б. М. Техника металлургического эксперимента. М.: Металлургия, 1979. 256 с. References 1. Toshimitsu T. Effects of high niobium addition on the mechanical properties and high-temperature deformability o f gamma TiAl alloy. Intermetallics, 2002. Ѵ оі . 10 (3), рр. 239-245. https://doi.org/10.1016/S0966-9795(01)00121-2. 2. Li Z., Chang Ba., Cui Y., Zhang H., Liang Zh., Liu Ch., Wang L., Du D., Chang Sh. Effect o f twin-wire feeding methods on the in-situ synthesis o f electron beam fabricated Ti-Al-Nb intermetallics. Materials & Design, 2022, Ѵ оі . 215, рр. 110509. https://doi.org/10.1016/j.matdes.2022.110509. 3. Li W., Inkson B., Horita Z., Xia K. Microstructure observations in rare earth element Gd-modified Ti-44 at% Al. Intermetallics, 2000, Ѵоі. 8 (5-6), рр. 519-523. https://doi.org/10.1016/S0966- 9795(99)00156-9. 4. Zhilina E. M., Russkikh A. S., Krasikov S. A., Osinkina T. V., Rempel A. A. Synthesis o f High-Entropy Alloy AlTiZrVNb by Aluminothermic Reaction. Russian Journal o f Inorganic Chemistry. 2022, Ѵоі. 67, No. 6 , рр. 888-891. https://doi.org/10.1134/S0036023622060249. 5. Balakirev V. F., Osinkina T. V., Krasikov S. A., Zhilina E. M., Vedmid' L. B., Zhidovinova S. V. Joint Metallothermic Reduction o f Titanium and Rare Refractory Metals o f Group V. Russian Journal ofNon- Ferrous Metals, 2021, Ѵ оі . 62, No. 2, рр. 190-196. https://doi.org/10.3103/S1067821221020024. 6 . Egry I., Brooks R., Holland-Moritz D., Novakovich R., Matsushita T., Ricci E., Seetharaman S., Wunderlich R., Jarvis D. Thermophysical Properties o f y-Titanium Aluminide: The European IMPRESS Project. Int J. Thermophys. 2007, No. 28, рр. 1026-1036. 7. Novakovic R., Giuranno D., Ricci E., Tuissi A., Wunderlich R., Fecht H.-J., Egry I. Surface, dynamic and structural properties o f liquid Al-Ti alloys. Applied Surface Science, 2012, No. 258, рр. 3269-3275. 8 . Popel’ S. I. Poverhnostnyeyavleniya v rasplavah [Surface phenomena in melts]. Moscow, Metallurgiya, 1994, 440 p. 9. Arsentyev P. P., Koledov L. A. Metallicheskie rasplavy i ih svojstva [Melts and their properties]. Moscow, Metallurgiya, 1976, 376 p. 10. Linchevskiy B. M. Tekhnika metallurgicheskogo eksperimenta [Metallurgical experiment technique]. Moscow, Metallurgiya, 1979, 256 p. Труды Кольского научного центра РАН. Серия: Технические науки. 2024. Т. 15, № 1. С. 343-349. Transactions of the Kola Science Centre of RAS. Series: Engineering Sciences. 2024. Vol. 15, No. 1. P. 343-349. © Русских А. С., Осинкина Т. В., Жилина Е. М., Красиков С. А., 2024 348
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