Search Results - "Naidenkin, E.V."

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  1. 1

    The formation of FeCu composite based on bimetallic nanoparticles by Lozhkomoev, A.S., Lerner, M.I., Pervikov, A.V., Naidenkin, E.V., Mishin, I.P., Vorozhtsov, A.B., Apkarian, A.S., Eskin, D.G.

    Published in Vacuum (01-01-2019)
    “…In this paper we suggest a new method of producing a Fe-28 wt% Cu composite by compacting and subsequent sintering of bimetallic nanoparticles made of metals…”
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  3. 3

    The Influence of Cooling Conditions of Titanium Alloy After High-Temperature Helical Rolling on The Structure and Impact Toughness by Vlasov, I. V., Gomorova, Yu. F., Yakovlev, A. V., Naidenkin, E. V.

    Published in Russian physics journal (01-12-2021)
    “…The paper studies the evolution of the structure, phase composition, and impact toughness of the VT 8 alloy after two types of processing including helical…”
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  4. 4

    Superplastic Deformation of Titanium Alloy with Different Structure and Phase Composition by Ratochka, I. V., Mishin, I. P., Lykova, O. N., Naidenkin, E. V.

    Published in Russian physics journal (01-08-2020)
    “…The α+β titanium alloy Ti-6Al-4V having different structure and phase composition is investigated in this paper under the tensile deformation in the…”
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  5. 5

    Influence of low-temperature annealing time on the evolution of the structure and mechanical properties of a titanium Ti-Al-V alloy in the submicrocrystalline state by Ratochka, I. V., Lykova, O. N., Naidenkin, E. V.

    Published in Physics of metals and metallography (01-03-2015)
    “…The effect of annealing at 673 K for 6–24 h on the structural and phase state and mechanical properties of the titanium alloy of a Ti-Al-V system that was…”
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  6. 6

    Mechanical properties of ferrite-perlite and martensitic Fe–Mn–V–Ti–C steel processed by equal-channel angular pressing and high-temeperature annealing by Zakharova, G. G., Astafurova, E. G., Tukeeva, M. S., Naidenkin, E. V., Raab, G. I., Dobatkin, S. V.

    Published in Russian physics journal (01-09-2011)
    “…Using the method of equal-channel angular pressing (ECAP), submicrocrystalline structure is formed in lowcarbon Fe–Mn–V–Ti–C steel with the average grain size…”
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    Journal Article