[1]
Perspective trends in the development of science in St. Petersburg. Ed. Ed. Zh.I. Alferov et al. - SPb .: Publishing House IP Permyakov SA, 2015 - pp.137-162.
Google Scholar
[2]
T.I. Bobkova, A.A. Deev, R.Yu. Bystrov, B.V. Farmakovsky, Deposition of wear-resistant coatings with adjustable hardness using cold gas-dynamic spraying, Metalworking, 5_2012_45-49.
Google Scholar
[3]
V.I. Grachev, V.I. Margolin, V.A. Zhabrev, V.A. Tupik, Fundamentals of the synthesis of nanoscale particles and films, Izhevsk 8_2014_472-480с.
Google Scholar
[4]
I.V. Gorynin, A.S. Oryschenko, B.V. Farmakovsky, P.A. Kuznetsov, Advanced research and development of the scientific nanotechnology center of the Federal State Unitary Enterprise Central Research Institute of Prometey KV in the field of new nanomaterials, Questions of materials science. 78_2014_118-127.
DOI: 10.18577/2071-9140-2017-0-4-19-24
Google Scholar
[5]
T.I. Bobkova, R.Yu. Bystrov, B.V. Farmakovsky, A.G. Astashov, M.A. Sinaisky, Microplasma sputtering of coatings. Inorganic Materials, Applied Research, 6_2015_5591–5949.
DOI: 10.1134/s2075113315060039
Google Scholar
[6]
T.I. Bobkova, B.V. Farmakovskii, S.P. Bogdanov, Creation of composite nanostructured surface-reinforced powder materials used for coatings with enhanced hardness. Inorganic Materials, Applied Research November 7_2016_855-862.
DOI: 10.1134/s2075113316060034
Google Scholar
[7]
D. Gerashchenkov; B. Farmakovskii; T. Bobkova; V. Klimov, Features of the High-Speed Melt Quenching, Metallurgist 60_2017_1103-1112.
DOI: 10.1007/s11015-017-0413-0
Google Scholar
[8]
T.I. Bobkova, A.A. Chernysh, A.A. Masailo, A.A. Deev, V.N. Klimov, M.A. Yurkov, Structure and properties of the bronze-based functional coating obtained by gas-dynamic and microplasma spraying. Inorganic Materials, Applied Research, 8_2017_861–869.
DOI: 10.1134/s2075113317060028
Google Scholar
[9]
T.Larionova, T.Koltsova, Yu.Fadin, O.Tolochko, Friction and wear of copper–carbon nanofibers compact composites prepared by chemical vapor deposition. Wear, 319_2014_118-122.
DOI: 10.1016/j.wear.2014.07.020
Google Scholar
[10]
D.A. Gerashchenkov, B.V. Farmakovskii, T.I. Bobkova, V.N. Klimov, Features of the Formation of Wear-Resistant Coatings from Powders Prepared by a Micrometallurgical Process of High-Speed Melt Quenching, Metallurgist. 60_2017_9-10.
DOI: 10.1007/s11015-017-0413-0
Google Scholar
[11]
A.I. Rudskoy, V.N. Tsemenko, S.V. Ganin, A Study of Compaction and Deformation of a Powder Composite Material of the Aluminum–Rare Earth Elements, System, Metal Science and Heat Treatment. 56_2015_542-547.
DOI: 10.1007/s11041-015-9796-3
Google Scholar
[12]
A.I. Rudskoy, A.M. Zolotov, S.V. Ganin, Modeling of process of equal channel angular pressing of billets, obtained from aluminum-based powders and rare-earth metals, in Capsules, Tsvetnye Metally. 4_2014_30-35.
Google Scholar
[13]
A.I. Rudskoy, O.V. Tolochko, T.S. Kol'tsova, A.G. Nasibulin, Synthesis of carbon nanofibers on the surface of particles of aluminum powder, Metal science and heat treatment. 55_2014_564-568.
DOI: 10.1007/s11041-014-9670-8
Google Scholar
[14]
D.I. Budelovskiy, S.Y. Petrovich, V.A. Lipin, V.D. Andreeva, Mechanical alloying of powder alloy Al - Si - Ni with nanosized carbon additions, Tsvetnye Metally. 9_2016_77-82.
DOI: 10.17580/tsm.2016.09.11
Google Scholar
[15]
A. D. Breki, Aleksandrov S.E., Tyurikov K.S., Kolmakov A.G., Gvozdev A.E. [et al.]. Antifriction Properties of Plasma-Chemical Coatings Based on SiO2 with MoS2 Nanoparticles under Conditions of Spinning Friction on ShKh15 Steel. Inorganic Materials: Applied Research. 9_2018_714-718.
DOI: 10.1134/s2075113318040081
Google Scholar
[16]
A.P. Alkhimov, S.V. Klinkov, V.F. Kosarev, V.M. Fomin, Cold gas spraying, Theory and practice. Fizmatlit, 2010. p.536.
Google Scholar
[17]
Patent RU 2285746 dated 10/20/2006. Farmakovsky B.V., Dzhurinsky D.V., Vasilyev A.F. Method of applying functional coatings with high adhesive properties.,.
Google Scholar
[18]
Gerashchenko D.A. Development of the technological process of applying coatings by the method of cold gas-dynamic spraying on the basis of reinforced powders of the Al + Sn + Al2O3 system, // Abstract of dissertation for the degree of candidate of technical sciences. SPb., (2015).
Google Scholar
[19]
Bobkova T.I. Development of materials and technologies for obtaining wear-resistant gradient coatings on the basis of nanostructured composite powders, // Abstract of dissertation for the degree of candidate of technical sciences. SPb., (2017).
Google Scholar