Search Results - "Yastrebinsky, R N"

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  1. 1

    Radiation Resistance of a Structural Material Based on Modified Titanium Hydride by Yastrebinsky, R. N., Pavlenko, V. I., Karnauhov, A. A., Cherkashina, N. I., Yastrebinskaya, A. V., Gorodov, A. I.

    “…This work investigates the radiation resistance of a structural material based on modified titanium hydride and a Portland cement in a flux of neutron and…”
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    Journal Article
  2. 2

    Thermal stability of titanium hydride modified by the electrochemical deposition of titanium metal by Yastrebinsky, R N, Pavlenko, V I, Karnauhov, A A, Cherkashina, N I, Yastrebinskaya, A V

    Published in Materials research express (01-10-2020)
    “…This study aims to address the poor thermal stability of titanium hydride. Surface microstructural observations, differential thermal analysis, and…”
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    Journal Article
  3. 3

    Effect of electrochemical modification of titanium hydride fraction on oxygen content in surface and deep layers by Yastrebinsky, R N, Pavlenko, V I, Gorodov, A I, Karnauhov, A A, Cherkashina, N I, Yastrebinskay, A V

    Published in Materials research express (01-01-2022)
    “…The paper presents a study of the microstructure and oxygen concentration in the surface and deep layers of fractions of unmodified titanium hydride and…”
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    Journal Article
  4. 4

    Synthesis and radiation shielding properties of polyimide/Bi 2 O 3 composites by Pavlenko, V I, Cherkashina, N I, Yastrebinsky, R N

    Published in Heliyon (01-05-2019)
    “…Radiation shielding composites based on polyimide and Bi O were synthesized. Surface and physical-mechanical properties of polyimide/Bi O composites were…”
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  5. 5

    Synthesis and radiation shielding properties of polyimide/Bi2O3 composites by Pavlenko, V.I., Cherkashina, N.I., Yastrebinsky, R.N.

    Published in Heliyon (01-05-2019)
    “…Radiation shielding composites based on polyimide and Bi2O3 were synthesized. Surface and physical-mechanical properties of polyimide/Bi2O3 composites were…”
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    Journal Article
  6. 6

    Attenuation of Neutron and Gamma Radiation from Radioisotope Sources by Material Based on Modified Titanium Hydride by Yastrebinsky, R. N., Bondarenko, G. G., Karnauhov, A. A.

    “…The paper presents experimental studies of the radiation-protective properties of a material based on a modified titanium hydride with respect to gamma and…”
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    Journal Article
  7. 7

    Verifying a Two-Dimensional Model Simulating Attenuation of Neutron and Photon Radiation from Nuclear Reactors Having Metal Hydride Composite Protection by Yastrebinsky, R. N., Bondarenko, G. G., Pavlenko, V. I., Yastrebinskaya, A. V., Gorodov, A. I.

    Published in Inorganic materials : applied research (01-04-2024)
    “…The results of experimental studies on attenuating neutron and photon radiation in a nuclear reactor using a protective metal hydride composite are presented…”
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  8. 8

    Diffusion-Thermal Phase Transformations in Titanium Hydride Containing a Multi-Barrier Systems of Hydrogen Traps by Yastrebinsky, R. N., Bondarenko, G. G., Pavlenko, V. I., Karnaukhov, A. A.

    Published in Inorganic materials : applied research (01-09-2021)
    “…Diffusion-thermal phase transformations in modified titanium hydride containing a multi-barrier system of hydrogen traps are considered. Modification of…”
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    Journal Article
  9. 9

    Multigroup Simulation of Protection Against Neutron and Gamma Radiation by Materials Based on Titanium Hydride by Yastrebinsky, R. N., Bondarenko, G. G., Karnauhov, A. A., Yastrebinskaya, A. V., Denisova, L. V.

    Published in Inorganic materials : applied research (01-10-2022)
    “…The paper presents calculated data on a comparative assessment of the radiation-protective properties of materials based on titanium hydride obtained by the…”
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    Journal Article
  10. 10

    On enhancing the thermal stability of metal hydrides by ion–plasma vacuum magnetron sputtering by Pavlenko, V. I., Cherkashina, N. I., Yastrebinsky, R. N., Demchenko, O. V.

    “…The method of titanium-hydride pellet (THP) modification by the surface deposition of metal titanium with the ion–plasma vacuum magnetron sputtering is…”
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