Search Results - "Gorshenkov, M."

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  1. 1

    Effect of B on improving wetting and imbibition of sintered porous Ta by Cu melt by Zhevnenko, S.N., Gorshenkov, M.V., Petrov, I.S.

    Published in Journal of alloys and compounds (15-04-2021)
    “…The present study focuses on the interaction between copper melts and porous tantalum plates (purity, 99.99 wt% Ta). The samples were prepared by sintering…”
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    Journal Article
  2. 2

    Influence of annealing on the microstructure and magnetic properties of the τ-MnAl alloy deformed by high pressure torsion by Fortuna, A.S., Gorshenkov, M.V., Cheverikin, V.V., Sundeev, R.V.

    Published in Journal of alloys and compounds (25-04-2022)
    “…•The best coercive force (3.7 kOe) in this study was reached after HPT deformation by 20 revolutions.•Twinned structure obtained by severe plastic deformation…”
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    Journal Article
  3. 3

    Capillary Phenomena during Interaction of Copper Melt with Dense and Porous MAX Phases with General Formula (Cr,Mn)2AlC by Zhevnenko, S. N., Gorshenkov, M. V.

    Published in Physics of metals and metallography (01-02-2024)
    “…In this study, we experimentally investigated the interaction of a pure copper melt with dense MAX phase (Cr,Mn) 2 AlC obtained as a result of sintering by the…”
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    Journal Article
  4. 4

    Rotary Forging to Improve the Strength Properties of the Zr–2.5% Nb Alloy by Rogachev, S. O., Andreev, V. A., Gorshenkov, M. V., Ten, D. V., Kuznetsova, A. S., Shcherbakov, A. B.

    Published in Physics of metals and metallography (01-09-2022)
    “…One of the techniques of severe plastic deformation, which has been used to improve the strength of the biocompatible zirconium alloy Zr–2.5% Nb (E125), is…”
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    Journal Article
  5. 5

    Magnetic properties of Mn-Al alloy after HPT deformation by Gorshenkov, M.V., Karpenkov, D.Y., Sundeev, R.V., Cheverikin, V.V., Shchetinin, I.V.

    Published in Materials letters (01-08-2020)
    “…•HPT deformation was employed for production of bulk disk-shaped Mn-Al magnets.•The coercive force Hc = 0.37 T at Ms = 0.49 T was achieved for deformation…”
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  6. 6

    The effect of preparation method on transport and thermoelectric properties of Hf1.75Ti0.25FeNiSb2-xInx double half-Heusler alloys by Hassan, Mohamed Asran, Chernyshova, E. V., Karpenkov, D., Ali, M. S., Seredina, M., Gorshenkov, M., Voronin, A., Khovaylo, V.

    “…The experimental investigations focus on the thermoelectric and structural properties of newly synthesized Hf 1.75 Ti 0.25 FeNiSb 2-x In x ( x  = 0.05 and 0.1)…”
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  7. 7

    The role of structural properties on magnetic characteristics of glass-coated microwires by Baraban, I., Gorshenkov, M., Andreev, N., Chichay, K., Rodionova, V.

    “…We report on the influence of crystalline structure on the magnetic properties of glass-coated microwires with CoFe-based metallic core realised as an…”
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  8. 8

    Formation of intermetallic Ni–Al coatings by mechanical alloying on the different hardness substrates by Zadorozhnyy, V., Kaloshkin, S., Tcherdyntsev, V., Gorshenkov, M., Komissarov, A., Zadorozhnyy, M.

    Published in Journal of alloys and compounds (15-02-2014)
    “…The objective of the study was production and investigation of durable Ni–Al intermetallic coatings on metallic substrates by mechanical alloying method…”
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    Journal Article
  9. 9

    The Features of the Phase Composition and Structure of a Rapidly Quenched Ferromagnetic Mn–Al–Ga Alloy by Fortuna, A. S., Morozova, T. A., Karpenkov, D. Yu, Gorshenkov, M. V.

    Published in Physics of metals and metallography (01-02-2024)
    “…— Rapidly quenched Mn 55 Al 36 Ga 9 ribbons have been obtained using a spinning method. In the initial quenched state, the ribbon structure is a two-phase one…”
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    Journal Article
  10. 10

    Wear behaviour of wear-resistant adaptive nano-multilayered Ti-Al-Mo-N coatings by Sergevnin, V.S., Blinkov, I.V., Volkhonskii, A.O., Belov, D.S., Kuznetsov, D.V., Gorshenkov, M.V., Skryleva, E.A.

    Published in Applied surface science (01-12-2016)
    “…•Nano-multilayered Ti-Al-Mo-N coatings were deposited by the arc-PVD method.•Changes in the coating deposition parameters lead to different phase…”
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    Journal Article
  11. 11
  12. 12

    Ultra-high molecular weight polyethylene reinforced with multi-walled carbon nanotubes: Fabrication method and properties by Maksimkin, A.V., Kaloshkin, S.D., Kaloshkina, M.S., Gorshenkov, M.V., Tcherdyntsev, V.V., Ergin, K.S., Shchetinin, I.V.

    Published in Journal of alloys and compounds (25-09-2012)
    “…► The composites UHMWPE+MWCNT were prepared by mechanochemical synthesis and drawing. ► The orientation composites provides high load transfer ability from the…”
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    Journal Article Conference Proceeding
  13. 13

    Radiation-protective polymer-matrix nanostructured composites by Kaloshkin, S.D., Tcherdyntsev, V.V., Gorshenkov, M.V., Gulbin, V.N., Kuznetsov, S.A.

    Published in Journal of alloys and compounds (25-09-2012)
    “…► Radiation-protective composites were fabricated by solid state intermixing and thermal pressing. ► The composites based on UHMWPE contain В4С and W…”
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    Journal Article Conference Proceeding
  14. 14

    Surface modification of carbon fibers and its effect on the fiber–matrix interaction of UHMWPE based composites by Chukov, D.I., Stepashkin, A.A., Gorshenkov, M.V., Tcherdyntsev, V.V., Kaloshkin, S.D.

    Published in Journal of alloys and compounds (01-02-2014)
    “…• Both chemical and thermal treatments of UKN 5000 carbon fibers allow one to obtain well-developed surface. • The changes of structure and properties of VMN-4…”
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    Journal Article
  15. 15

    Synthesis and Properties of ZnO/ZnWO4-Nanocomposites for Photoelectrochemical Applications by Ulyankina, A. A., Tsarenko, A. D., Molodtsova, T. A., Gorshenkov, M. V., Smirnova, N. V.

    Published in Russian journal of electrochemistry (01-12-2023)
    “…A series of ZnO/ZnWO 4 nanocomposites with different ZnWO 4 content, are electrochemically synthesized under pulse alternating current starting from ZnO and WO…”
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    Journal Article
  16. 16

    Temperature-dependent magnetization reversal in exchange bias NiFe/IrMn/NiFe structures by Gritsenko, Ch, Dzhun, I., Volochaev, M., Gorshenkov, M., Babaytsev, G., Chechenin, N., Sokolov, A., Tretiakov, Oleg A., Rodionova, V.

    “…•The magnetization reversal sequence of the two ferromagnetic layers depends on the composition of Permalloy.•The magnetic features are explained in terms of…”
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    Journal Article
  17. 17

    Modification of the Codeposition Method for the Synthesis of Iron-Oxide Nanoparticles with a High Magnetization Value and a Controlled Reaction Yield by Omelyanchik, A S, Sobolev, K V, Shilov, N R, Andreev, N V, Gorshenkov, M V, Rodionova, V V

    Published in Nanotechnologies in Russia (01-12-2023)
    “…The structural and magnetic properties of magnetic iron-oxide nanoparticles obtained by a modified codeposition method with reduced concentrations of metal…”
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  18. 18

    Martensitic transformation in Cu-doped Ni–Fe-Ga rapidly quenched ribbon by Shevyrtalov, S., Lyatun, I., Grunin, A., Ryba, T., Lyatun, S., Chichay, K., Gorshenkov, M., Rodionova, V., Varga, R.

    Published in Physica. B, Condensed matter (15-04-2020)
    “…Martensitic transformation (MT), structural and magnetic properties were investigated in a rapidly quenched Cu-doped Ni–Fe-Ga ribbon. The X-ray room…”
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    Journal Article
  19. 19

    Mechanical alloying of nanocrystalline intermetallic compound TiFe doped with sulfur and magnesium by Zadorozhnyy, V. Yu, Klyamkin, S.N., Yu. Zadorozhnyy, M., Gorshenkov, M.V., Kaloshkin, S.D.

    Published in Journal of alloys and compounds (05-12-2014)
    “…•By mechanical alloying method have been produced ternary TiFe-based compounds.•The doped TiFe+2%Mg and TiFe+1%S alloys demonstrated a simplified…”
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    Journal Article
  20. 20

    Phase-Structural State of τ-MnAl(Ga) Alloys Prepared at Different Cooling Rates by Fortuna, A. S., Vazhinskii, N. M., Nechaev, K. S., Morozova, T. A., Gorshenkov, M. V., Karpenkov, D. Yu, Malyutina, E. S.

    Published in Physics of metals and metallography (01-06-2024)
    “…An alloy with a nominal composition of Mn 55 Al 36 Ga 9 is prepared by four different methods which ensure different cooling rates. Two bulk samples are…”
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    Journal Article