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Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV
(Materials, 2023)
Giniyatova, S.G.; Kadyrzhanov, K.K.; Shlimas, D.I.; Borgekov, D.B.; Uglov, V.V.; Kozlovskiy, A.L.; Zdorovets, M.V. Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV. Materials 2023, 16, 4031. https://doi.org/10.3390/ ma16114031
Study of the Radiation Damage Kinetics in NbTiVZr High-Entropy Alloys Irradiated by Heavy Ions
(Metals, 2023)
Kadyrzhanov, K.K.; Kozlovskiy, A.L.; Shlimas, D.I.; Borgekov, D.B.; Giniyatova, S.G.; Uglov, V.V.; Zdorovets, M.V. Study of the Radiation Damage Kinetics in NbTiVZr High-Entropy Alloys Irradiated by Heavy Ions. Metals 2023, 13, 727. https://doi.org/ 10.3390/met13040727
Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components
(Crystals, 2023)
This research investigated how changes in the composition of Nb–Ti–V–Zr-based alloys
affect their resistance to radiation damage and the preservation of strength characteristics when
exposed to the heavy ions Kr15+ and Xe23+. These heavy ions simulate the impact of nuclear fuel
fission fragments on the material. The primary objective of this study was to explore how variations
in ...
Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV
(Materials, 2023)
Giniyatova, S.G.; Kadyrzhanov, K.K.; Shlimas, D.I.; Borgekov, D.B.; Uglov, V.V.; Kozlovskiy, A.L.; Zdorovets, M.V. Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV. Materials 2023, 16, 4031. https://doi.org/10.3390/ ma16114031
Study of the Mechanisms of Radiation Softening and Swelling upon Irradiation of TiTaNbV Alloys with He2+ Ions with an Energy of 40 keV
(Materials, 2023)
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 ...
Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components
(Crystals, 2023)
This research investigated how changes in the composition of Nb–Ti–V–Zr-based alloys
affect their resistance to radiation damage and the preservation of strength characteristics when
exposed to the heavy ions Kr15+ and Xe23+. These heavy ions simulate the impact of nuclear fuel
fission fragments on the material. The primary objective of this study was to explore how variations
in ...
Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components
(Crystals, 2023)
Giniyatova, S.G.; Kadyrzhanov, K.K.; Shlimas, D.I.; Borgekov, D.B.; Uglov, V.V.; Kozlovskiy, A.L.; Zdorovets, M.V. Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components. Crystals 2023, 13, 1543. https:// doi.org/10.3390/cryst13111543
Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components
(Crystals, 2023)
This research investigated how changes in the composition of Nb–Ti–V–Zr-based alloys
affect their resistance to radiation damage and the preservation of strength characteristics when
exposed to the heavy ions Kr15+ and Xe23+. These heavy ions simulate the impact of nuclear fuel
fission fragments on the material. The primary objective of this study was to explore how variations
in ...
Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components
(Crystals, 2023)
Giniyatova, S.G.; Kadyrzhanov, K.K.; Shlimas, D.I.; Borgekov, D.B.; Uglov, V.V.; Kozlovskiy, A.L.; Zdorovets, M.V. Effects of Structural Radiation Disorder in the Near-Surface Layer of Alloys Based on NbTiVZr Compounds Depending on the Variation of Alloy Components. Crystals 2023, 13, 1543. https:// doi.org/10.3390/cryst13111543









