[1]
Yu.S. Borisov, Yu.A. Kharlamov, Thermal coatings from powder materials, Kiev, (1987).
Google Scholar
[2]
P.A. Vityaz, P.A. Ivashko, E.D. Manuilo, Theory and practice of flame spraying, Science and technology, Minsk, (1993).
Google Scholar
[3]
V.V. Kudinov, V.M. Ivanov, Plasma coating of refractory coatings, Engineering, Moscow, (1981).
Google Scholar
[4]
V.V. Kudinov, L.K. Druzhinin, Obtaining coatings high-temperature spray, World, Moscow, (1973).
Google Scholar
[5]
M.A. Masino, Organization of the restoration of automotive parts,Transport, Moscow, (1981).
Google Scholar
[6]
N.A. Navoznov, Substantiation and development of technology for the restoration of parts by gas-flame spraying of powder materials using electromechanical treatment. Thesis for the degree of candidate of technical sciences. Ulyanovsk, (1995).
Google Scholar
[7]
V.N. Korenev, V.N. Khromov, V.V. Barabash, K.V. Kulakov, S.A. Zaitsev, RF Patent 2237525 В05D 03/12 (2004).
Google Scholar
[8]
A.Yu. Rodichev, V.N. Khromov, V.N. Korenev, RF Patent 2400312 В05D 3/12. (2010).
Google Scholar
[9]
B.I. Kostecki, Friction, lubrication and wear in machines, Techniques, Kiev, (1970).
Google Scholar
[10]
I.V. Kragelsky, V.V. Alisina, Friction, wear and lubrication, Engineering, Moscow, (1978).
Google Scholar
[11]
M.A. Belotserkovsky, Technologies of activated gas-flaming spraying of anti-friction coatings, Engineering, Moscow, (2004).
Google Scholar
[12]
P.A. Vityaz, M.A. Belotserkovsky, A.M. Goman, Methodology for choosing a coating technology for restoring, hardening and protecting parts, Herald Nat. Acad. sciences of Belarus, 4 (2005) 5-12.
Google Scholar
[13]
L. Pawlowsky, The Science and Engineering of Thermal Spray Coatings, Wiley, UK, (1994).
Google Scholar
[14]
A.V. Gorin, D.N. Eshutkin, M.A. Gorina, Hydraulic Impact Devices Utilization for Ground Wells Development, State University-UNPK, Oryol, (2015).
Google Scholar
[15]
A.Y. Rodichev, A.V Sytin, V.V. Barabash, Technological increase of adhesion strength between antifriction coating and base in bimetal fluid-film bearings, Solid State Phenomena: International Conference on Industrial Engineering, ICIE-2017, 265 (2017) 284-289.
DOI: 10.4028/www.scientific.net/ssp.265.284
Google Scholar
[16]
A. Hasuy, O. Morigaki, Welding and spraying, Engineering, Moscow, (1985).
Google Scholar
[17]
A.Y. Rodichev, A.V Sytin, V.O. Tyurin, Research on influence of technology of bimetal fluid-film bearing manufacturing on microstructure and microhardness of antifriction coating and steel base / Solid State Phenomena: International Conference on Industrial Engineering, ICIE-2017, 265 (2017) 416-421.
DOI: 10.4028/www.scientific.net/ssp.265.416
Google Scholar
[18]
V.N. Korenev, A.Y. Rodichev, I.S. Karasev, A.V. Semenov, RF Patent 2539515. (2015).
Google Scholar
[19]
S.М. Ermakov, V.Z. Brodsky, A.A. Zhiglyavsky, V.P. Kozlov, M.B. Malyutov, V.B. Melas, E.V. Sedunov, V.V. Fedorov; by ed. CM. Ermakova, Mathematical theory of experiment planning, Science, Moscow, (1983).
Google Scholar