4) Signs of the presence of an ordered phase in the Cu-5.9 at.%Pd
alloy after its long-term annealing at a moderate temperature / O.S. Novikova1, A.E. Kostina1, E.G. Volkova1, Yu.A. Salamatov1, A.V. Glukhov1, A.Yu. Volkov1, V.V. Marchenkov1, V.S. Gaviko1, Yu.M. Ustyugov1. – Текст: непосредственный // Letters on Materials. — 2023. — V. 13 – No. 1. — P. 3—8.
5) Microstructure, Phase Transformations, and Mechanical Properties of Shape Memory Fe-Mn-V-C Austenitic Steels / Victor Sagaradze1, Sergey Afanasiev1, Natalya Kataeva1, Yurii Ustyugov1. – Текст: непосредственный // Metals. — 2023. — V. 13 – No. 2. — P. 248—257.
6) Influence of Heat Treatment and Deformation on the Structure, Phase Transformation, and Mechanical Behavior of Bulk TiNi-Based Alloys / N.N. Kuranova1, V.V. Makarov1, V.G. Pushin1, Y.M. Ustyugov1. – Текст: непосредственный // Metals. — 2022. — V. 12 – No. 12. — P. 2188—2221.
7) Multicomponent Aging Al-Li-Based Alloys of the Latest Generation: Structural and Phase Transformations, Treatments, Properties, and Future Prospects / D. Y. Rasposienko1, L. I. Kaigorodova1, V. G. Pushin2, Y. M. Ustugov1. – Текст: непосредственный // Materials. — 2022. — V. 15 – No. 12. — P. 4190—4232.
8) Design and Development of High-Strength and Ductile Ternary and Multicomponent Eutectoid Cu-Based Shape Memory Alloys: Problems and Perspectives / V. G. Pushin1, N. N. Kuranova1, A. E. Svirid1, A. N. Uksusnikov1, Y. M. Ustyugov1. – Текст: непосредственный // Metals. — 2022. — V. 12 – No. 8. — P. 1289—1321.
9) Mechanosynthesis of high-nitrogen steels strengthened by secondary titanium nitrides / V.A. Shabashov1, K.A. Lyashkov2, A.E. Zamatovskii1, K.A. Kozlov1, N.V. Kataeva1, E.G. Novikov1, Yu.M. Ustyugov1. – Текст: непосредственный // Materials. — 2022. — V. 15 – No. 14. — P. 5038—5052.
10) Mechanical behavior and structural characterization of a Cu-Al-Ni-based shape-memory alloy subjected to isothermal uniaxial megaplastic compression
/ V.G Pushin1, N.N. Kuranova1, A.E. Svirid1, Y.M. Ustyugov1. – Текст: непосредственный // Materials. — 2022. — V. 15 – No. 10. — P. 3713—3728.
11) New Metastable Baro- and Deformation-Induced Phases in Ferromagnetic Shape Memory Ni2MnGa-Based Alloys / Vladimir Pushin1, Alexander Korolyov1, Nataliya Kuranova1, Elena Marchenkova1, Yurii Ustyugov1. – Текст: непосредственный // Materials. — 2022. — V. 15 – No. 6. — P. 2277—2288.
12) Structural and Phase Transformations and Physical and Mechanical Properties of Cu-Al-Ni Shape Memory Alloys Subjected to Severe Plastic Deformation and Annealing / A.E. Svirid1, V.G. Pushin1, N.N. Kuranova1, V.V. Makarov1, Y.M. Ustyugov1. – Текст: непосредственный // Materials. — 2021. — V. 14 – No. 16. — P. 4394—4416.
13) Structure-Phase Transformations in the Course of Solid-State Mechanical Alloying of High-Nitrogen Chromium-Manganese Steels / Kirill Lyashkov0, Valery Shabashov1, Andrey Zamatovskii1, Kirill Kozlov1, Natalya Kataeva1, Evgenii Novikov1, Yurii Ustyugov1. – Текст: непосредственный // Metals. — 2021. — V. 11 – No. 2. — P. 301—316.
14) Critical redistribution of nitrogen in the austenitic Cr-Mn steel under severe plastic deformation / V.A. Shabashov1, K.A. Lyashkov2, K.A. Kozlov1, V.A. Zavalishin1, A.E. Zamatovskii1, N.V. Kataeva1, V.V. Sagaradze1, Yu.M. Ustyugov1. – Текст: непосредственный // Materials. — 2021. — V. 14 – No. 23. — P. 7116—7131.
15) О возможности пластификации поликристаллических сплавов системы Cu–Al–Ni с эффектом памяти формы при высокотемпературной изотермической осадке на большие степени / В.Г. Пушин1, Н.Н. Куранова1, А.В. Пушин1, А.Э. Свирид1, Ю.М. Устюгов1. – Текст: непосредственный // Физика и техника высоких давлений. — 2020. — V. 30 – No. 2. — P. 73—80.
16) Formation of low-temperature deformation-induced segregations of nickel in Fe–Ni-based austenitic alloys / V.V. Sagaradze1, N.V. Kataeva1, V.A. Zavalishin1, K.A. Kozlov1, V.V. Makarov1, A.R. Kuznetsov1, S.V. Rogozhkin0, Yu.M. Ustyugov1. – Текст: непосредственный // Philosophical Magazine. — 2020. — V. 100 – No. 14. — P. 1868—1879.
17) Inversion of the Sign of the Short-Range Order as a Function of the Composition of Fe–Cr Alloys at Warm Severe Plastic Deformation and Electron Irradiation / Kirill Kozlov1, Valery Shabashov1, Andrey Zamatovskii1, Evgenii Novikov1, Yurii Ustyugov1. – Текст: непосредственный // Metals. — 2020. — V. 10 – No. 5. — P. 659—671.
18) Mössbauer analysis of deformation–induced acceleration of short-range concentration separation in Fe-Cr alloys — effect of the substitution impurity: Sb and Au / Valery Shabashov1, Kirill Kozlov1, Yurii Ustyugov1, Andrey Zamatovskii1, Timofey Tolmachev1, Evgenii Novikov1. – Текст: непосредственный // Metals. — 2020. — V. 10 – No. 6. — P. 725—736.
19) Влияние термомеханической обработки на структурно-фазовые превращения в сплаве Cu-14Al-3Ni с эффектом памяти формы, подвергнутом кручению под высоким давлением / Лукьянов А.В.1, Пушин В.Г.1, Куранова Н.Н.1, Свирид А.Э.1, Уксусников А.Н.1, Устюгов Ю.М.1, Гундеров Д.В.0. – Текст: непосредственный // Физика металлов и металловедение. — 2018. — V. 119 – No. 4. — P. 393—401.
20) Atomic order and submicrostructure in iron alloys at megaplastic deformation / V.A. Shabashov1, V.V. Sagaradze1, K.A. Kozlov1, Yu.M. Ustyugov1. – Текст: непосредственный // Metals. — 2018. — V. 8 – No. 12. — P. 995—1017.
21) Low Temperature Diffusion Transformations in Fe–Ni–Ti Alloys During Deformation and Irradiation / Victor Sagaradze1, Valery Shabashov1, Natalya Kataeva1, Kirill Kozlov1, Vadim Arbuzov1, Sergey Danilov1, Yury Ustyugov1. – Текст: непосредственный // Metals and Materials International. — 2018. — V. 24 – No. 2. — P. 249—254.
22) Effect of the Thermomechanical Treatment on Structural and Phase Transformations in Cu–14Al–3Ni Shape Memory Alloy Subjected to High-Pressure Torsion / A. V. Lukyanov2, V. G. Pushin2, N. N. Kuranova1, A. E. Svirid1, A. N. Uksusnikov1, Yu. M. Ustyugov1, D. V. Gunderov0. – Текст: непосредственный // Physics of Metals and Metallography. — 2018. — V. 119 – No. 4. — P. 374—383.
23) The structure–phase transformations and mechanical properties of the shape memory effect alloys based on the system Cu–Al–Ni / A.E. Svirid1, V.G. Pushin1, N.N. Kuranova1, A.V. Luk'yanov1, A.V. Pushin1, A.N. Uksusnikov1, Y.M. Ustyugov1. – Текст: непосредственный // Materials Today: Proceedings. — 2017. — V. 4 – No. 3. — P. 4758—4762.
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