Пожалуйста, используйте этот идентификатор, чтобы цитировать или ссылаться на этот ресурс: http://elar.urfu.ru/handle/10995/130552
Название: Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV
Авторы: Giniyatova, S. G.
Kadyrzhanov, K. K.
Shlimas, D. I.
Borgekov, D. B.
Uglov, V. V.
Kozlovskiy, A. L.
Zdorovets, M. V.
Дата публикации: 2023
Издатель: MDPI
Библиографическое описание: Giniyatova, SG, Kadyrzhanov, KK, Shlimas, DI, Borgekov, DB, Uglov, VV, Kozlovskiy, AL & Zdorovets, MV 2023, 'Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV', Materials, Том. 16, № 11, 4031. https://doi.org/10.3390/ma16114031
Giniyatova, S. G., Kadyrzhanov, K. K., Shlimas, D. I., Borgekov, D. B., Uglov, V. V., Kozlovskiy, A. L., & Zdorovets, M. V. (2023). Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV. Materials, 16(11), [4031]. https://doi.org/10.3390/ma16114031
Аннотация: This paper presents simulation results of the ionization losses of incident He2+ ions with an energy of 40 keV during the passage of incident ions in the near-surface layer of alloys based on TiTaNbV with a variation of alloy components. For comparison, data on the ionization losses of incident He2+ ions in pure niobium, followed by the addition of vanadium, tantalum, and titanium to the alloy in equal stoichiometric proportions, are presented. With the use of indentation methods, the dependences of the change in the strength properties of the near-surface layer of alloys were determined. It was established that the addition of Ti to the composition of the alloy leads to an increase in resistance to crack resistance under high-dose irradiation, as well as a decrease in the degree of swelling of the near-surface layer. During tests on the thermal stability of irradiated samples, it was found that swelling and degradation of the near-surface layer of pure niobium affects the rate of oxidation and subsequent degradation, while for high-entropy alloys, an increase in the number of alloy components leads to an increase in resistance to destruction. © 2023 by the authors.
Ключевые слова: HARDNESS
HELIUM SWELLING
HIGH ENTROPY ALLOYS
RADIATION EMBRITTLEMENT
SWELLING
ENTROPY
IONIZATION
IONS
IRRADIATION
NIOBIUM
NIOBIUM ALLOYS
SWELLING
THERMODYNAMIC STABILITY
TITANIUM ALLOYS
ALLOY COMPONENTS
ENERGY
HELIUM SWELLING
HIGH ENTROPY ALLOYS
INCIDENT IONS
IONIZATION LOSS
NEAR-SURFACE LAYERS
PURE NIOBIUM
RADIATION EMBRITTLEMENT
TITANIA
HELIUM
URI: http://elar.urfu.ru/handle/10995/130552
Условия доступа: info:eu-repo/semantics/openAccess
cc-by
Текст лицензии: https://creativecommons.org/licenses/by/4.0/
Идентификатор SCOPUS: 85161610868
Идентификатор WOS: 001003475500001
Идентификатор PURE: 40643808
ISSN: 1996-1944
DOI: 10.3390/ma16114031
Сведения о поддержке: Ministry of Education and Science of the Republic of Kazakhstan: BR18574135
This research was funded by the Science Committee of the Ministry of Education and Science of the Republic of Kazakhstan (No. BR18574135).
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

Файлы этого ресурса:
Файл Описание РазмерФормат 
2-s2.0-85161610868.pdf6,88 MBAdobe PDFПросмотреть/Открыть


Лицензия на ресурс: Лицензия Creative Commons Creative Commons