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    2019

  1. Ñàâîñòüÿíîâ À.Â., Ìîñêîâñêèõ Ä.Î., Ëîãèíîâ Ï.À., Âîðîòûëî Ñ., Áàðäàñîâà Ê.Â.
    ÈÑÊÐÎÂÎÅ ÏËÀÇÌÅÍÍÎÅ ÑÏÅÊÀÍÈÅ ÌÅÄÍÎ-ÀËÌÀÇÍÛÕ ÊÎÌÏÎÇÈÒÎÂ: ÂËÈßÍÈÅ ÌÎÐÔÎËÎÃÈÈ ÏÎÊÐÛÒÈß B4C ÍÀ ÏÎÂÅÐÕÍÎÑÒÈ ÀËÌÀÇÎÂ
    Ìåæäóíàðîäíûé íàó÷íî-èññëåäîâàòåëüñêèé æóðíàë, ¹ 12-1 (90). Ñ. 30-34., 2019, DOI: 10.23670/IRJ.2019.90.12.007IF=0.141 (ÐÈÍÖ)

  2. A.Yu. Potanin, S. Vorotilo, Yu.S. Pogozhev, S.I. Rupasov, T.A. Lobova, E.A. Levashov
    Influence of mechanical activation of reactive mixtures on the microstructure and properties of SHS-ceramics MoSi2–HfB2–MoB
    Ceramics International45(16), ñ. 20354-20361, DOI: 10.1016/j.ceramint.2019.07.009, 2019, IF=3.45, Q1

  3. A.Yu. Potanin, S. Vorotilo,Yu.S. Pogozhev, S.I. Rupasov, P.A. Loginov, N.V. Shvyndina, T.A. Sviridova, E.A. Levashov
    High-temperature oxidation and plasma torch testing of MoSi2–HfB2–MoB ceramics with single-level and two-level structure
    Corrosion Science 158,108074, DOI: 10.1016/j.corsci.2019.07.001, 2019, IF=6.35, Q1

  4. Kiryukhantsev-Korneev, P., Sytchenko, A., Sheveyko, A., Vorotilo S.
    Structure and properties of protective coatings deposited by pulsed cathodic arc evaporation in Ar, N2, and C2H4 environments using the TiC-NiCr-Eu2O3 cathode
    Coatings 9(4),230, DOI: 10.3390/coatings9040230, 2019,IF=2.33, Q2

  5. Vorotilo, S., Sidnov, K., Mosyagin, I.Y., Patsera, E.I., Abrikosov, I.A
    Ab-initio modeling and experimental investigation of properties of ultra-high temperature solid solutions TaxZr1-xC
    Journal of Alloys and Compounds 778, ñ. 480-486,DOI: 10.1016/j.jallcom.2018.11.219,2019, IF=4.18, Q1

  6. Vorotilo, S., Polosova, E.D., Levashov, E.A.
    Peculiarities of the Synthesis of High-Temperature TaSi2–SiC Ceramics Reinforced in situ by Discrete Silicon Carbide Nanofibers
    Russian Journal of Non-Ferrous Metals 60(2), ñ. 169-172, DOI: 10.17073/0021-3438-2018-6-72-76, 2019, IF=0.497, Q2

  7. Bondarev, A.V., Vorotilo, S., Shchetinin, I.V., Levashov, E.A., Shtansky, D.V.
    Fabrication of Ta-Si-C targets and their utilization for deposition of low friction wear resistant nanocomposite Si-Ta-C-(N) coatings intended for wide temperature range tribological applications
    Surface and Coatings Technology 359, ñ. 342-353, DOI: 10.1016/j.surfcoat.2018.12.030, 2019 IF=3.19, Q1

  8. V.V. Kurbatkina, E.I. Patsera, D.V. Smirnov, E.A. Levashov, S. Vorotilo, A.N. Timofeev.
    Part 2. Structure, mechanical and thermophysical properties of consolidated ceramics based on (Hf,Ta)B2
    Ceramics International 45(3), ñ. 4076-4083, DOI: 10.1016/j.ceramint.2018.10.165, 2019, IF=3.45, Q1

  9. Vorotilo, S., Levashov, E.A., Petrzhik, M.I., Kovalev, D.Y.
    Combustion synthesis of ZrB2-TaB2-TaSi2 ceramics with microgradient grain structure and improved mechanical properties
    Ceramics International 45(2), ñ. 1503-1512,DOI: 10.1016/j.ceramint.2018.10.020,2019, IF=3.45, Q1

  10. Vorotilo, S., Loginov, P., Mishnaevsky, L., Sidorenko, D., Levashov, E.
    Nanoengineering of metallic alloys for machining tools: Multiscale computational and in situ TEM investigation of mechanisms
    Materials Science and Engineering A 739, ñ. 480-490,DOI: 10.1016/j.msea.2018.10.070, 2019, IF=4.08, Q1

  11. Vorotilo, S., Levashov, E.A.
    SHS in the Ta-Zr-Si-B system and properties of the produced ceramics
    IOP Conference Series: Materials Science and Engineering 558(1),012054, DOI: 10.1088/1757-899X/558/1/012054, 2019, IF= N/A, Q=N/A

  12. Vorotilo, S., Potanin, A.Y., Loginov, P.A., Shvindina, N.V., Levashov, E.A.
    Combustion synthesis of SiC-based ceramics reinforced by discrete carbon fibers with in situ grown SiC nanowires
    Ceramics International, DOI: 10.1016/j.ceramint.2019.12.005,2019, IF=3.45, Q1

  13. Levashov, E.A., Kurbatkina, V.V., Vorotilo, S., Pogozhev, Yu.S., Patsera, E.I.
    Prospective SHS composites for high-temperature applications
    IOP Conference Series: Materials Science and Engineering 558(1),012025, DOI: 10.1088/1757-899X/558/1/012025, 2019, IF= N/A, Q=N/A

  14. Sedegov, A., Vorotilo, S., Tsybulin, V., Kuskov, K., Moscovskikh, D.
    Synthesis and study of high-entropy ceramics based on the carbides of refractory metals
    IOP Conference Series: Materials Science and Engineering 558(1),012043, DOI: 10.1088/1757-899X/558/1/012043,2019, IF= N/A, Q=N/A

  15. Vorotilo, S., Potanin, A.Y., Pogozhev, Y.S., Kochetov, N.A., Kovalev, D.Y.
    Self-propagating high-temperature synthesis of advanced ceramics MoSi2–HfB2–MoB
    Ceramics International 45(1), P. 96-107, DOI: 10.1016/j.ceramint.2018.09.138, 2019, IF=3.45, Q1

 
 
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