Issue Date | Title | Author(s) |
2020 | Characteristics of ZrB₂-ZrO₂-MoSi₂-Al coating on carbon/carbon composite obtained by a new multi-chamber detonation accelerator | Kovaleva, M. G.; Goncharov, I. Yu.; Novikov, V. Yu.; Yapryntsev, M. N.; Vagina, O. N.; Pavlenko, I. N. |
2022 | Combined method of grinding and homogenization of fine powders rubbers and other polymers | Sirota, V. V.; Kovaleva, M. G.; Shabanov, I. E.; Ageeva, M. S.; Kaledin, A. S. |
2015 | Deposition and characterization of the titanium-based coating by a multi-chamber detonation sprayer | Arseenko, M. Yu.; Tyurin, Yu. N.; Prozorova, M. S.; Kovaleva, M. G.; Novikov, V. Yu.; Yapryntsev, M. N.; Sirota, V. V.; Pavlenko, I. A. |
2020 | Effect of surface pre-treatment on adhesive strength of multi-component vacuum-arc coatings | Lytovchenko, S. V.; Beresnev, V. M.; Klymenko, S. A.; Kovaleva, M. G.; Novikov, V. U. |
2017 | Fracture toughness of Al2O3/ZrSiO4 coatings obtained by multi-chamber gas-dynamic accelerator | Arseenko, M. Yu.; Kovaleva, M. G.; Prozorova, M. S.; Vagina, O. N.; Yapryntsev, M. N. |
2018 | Improving the wear resistance of thermally sprayed nanocomposite Cr3C2-25NiCr coatings by pulsed plasma treatment | Kovaleva, M. G.; Sirota, V. V.; Beresnev, V. M.; Tyurin, Y. N.; Vagina, O. N. |
2020 | Influence of the magnitude of the bias potential and thickness of the layers on the structure, substructure, stress-deformed state and mechanical characteristics of vacuum-arc multi-layered (TiMo)N/(TiSi)N coatings | Sobol, O. V.; Postelnyk, H. O.; Kolesnikov, D. A.; Kovaleva, M. G.; Sukhorukova, Yu. V. |
2019 | Layered structure of CoCrAlY/ZrSiO₄/Al₂O₃ coatings before and after thermal treatment | Kovaleva, M. G.; Sirota, V. V.; Beresnev, V. M.; Tyurin, Yu. N.; Vagina, O. N.; Pavlenko, I. A. |
2021 | Microstructure evolution and phase transformation of ZrB₂-45MoSi₂-10Al coating at high temperature | Kovaleva, M. G.; Novikov, V. Yu.; Vagina, O. N.; Sirota, V. V. |
2019 | Nanostructured coatings based on amorphous carbon and gold nanoparticles obtained by the pulsed vacuum-arc method | Kolpakov, A. Ya.; Kovaleva, M. G.; Beresnev, V. M.; Manokhin, S. S.; Poplavsky, A. I. |
2018 | Properties of carbon coatings obtained by pulsed high power methods of vacuum-arc and magnetron sputtering | Poplavsky, A. I.; Kolpakov, A. Ya.; Galkina, M. E.; Kovaleva, M. G.; Mishunin, M. V. |
2018 | Properties of coatings based on carbon and nitrogen-doped carbon obtained using a pulsed vacuum arc method | Kovaleva, M. G.; Kolpakova, A. J.; Poplavskya, A. I.; Galkina, M. E.; Gerus, J. V. |
2012 | Properties of coatings manufactured from titanium powder | Tyurin, Yu. N.; Polyakov, S. G.; Ivanov, M. B.; Kovaleva, M. G.; Maradudina, O. N. |
2017 | Properties of coatings on the basis of carbon, tungsten, boron, and titanium obtained by the pulsed vacuum-arc method | Kovaleva, M. G.; Kolpakov, A. Ya.; Kolesnikov, D. A.; Kudryavtsev, E. A. |
2019 | Structural engineering of NbN/Cu multilayer coatings by changing the thickness of the layers and the magnitude of the bias potential during deposition | Sobol, O. V.; Andreev, A. A.; Stolbovoy, V. A.; Kolesnikov, D. A.; Kovaleva, M. G. |
2015 | Structure and properties of the hardmetal coatings Cr3C2-25NiCr formed by a multi-chamber detonation sprayer | Kovaleva, M. G.; Tyurin, Yu. N.; Prozorova, M. S.; Arseenko, M. Yu.; Yapryntsev, M. N.; Novikov, V. Yu.; Sirota, V. V.; Pavlenko, I. A.; Mamunin, K. N. |
2012 | Structure and the physico-mechanical properties of the ceramic coatings obtained by the cumulative -detonation device | Prozorova, M. S.; Kovaleva, M. G.; Arseenko, M. Yu.; Tyurin, Yu. N.; Kolisnishenko, O. V. |
2018 | The use of plasma-based deposition with ion implantation technology to produce superhard molybdenum-based coatings in a mixed (C₂H₂+N₂) atmosphere | Sobol, O. V.; Mygushchenko, R. P.; Beresnev, V. M.; Kolesnikov, D. A.; Kovaleva, M. G. |