Investigation of the Influence of Kinematic and Geometric Parameters of the Thermo- Sprayer Location on the Adhesion Strength of Anti-Friction Coating

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Abstract:

The article presents the results of the influence of the kinematic and geometric parameters of the thermos-sprayer location on the adhesion strength of the anti-friction coating. A mathematical apparatus for calculating the inertia forces acting on an anti-friction coating particle is proposed. The results of a number of experimental studies confirming the convergence of theoretical positions are presented. As a result, dependencies have been revealed that make it possible to predict the bond strength of the anti-friction coating with the steel base during gas-flame spraying.

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Solid State Phenomena (Volume 299)

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902-907

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January 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] Y.S. Borisov, Y.A. Kharlamov, S.L. Sidorenko, E.N. Ardatovskaya, Thermal Powder Coatings. Directory, Kiev: Science, (1987).

Google Scholar

[2] V.N. Antsiferov, G.V. Bobrov, L.K. Druzhinin and others, Powder metallurgy and sprayed coatings: Textbook for universities, Moscow: Engineering, (1987).

Google Scholar

[3] V.K. Yaroshevich, M.A. Beloretsky, Antifriction Metal Powder Coatings, Minsk: Science and technology,(1981).

Google Scholar

[4] I.A. Kurbatov Technology, structure and properties of antifriction materials based on iron-copper system containing graphite. Thesis, Ph.D., Moscow, (1986).

Google Scholar

[5] A.A. Kutkov, Wear and antifriction coatings, Moscow: Engineering, (1976).

Google Scholar

[6] A.Y. Rodichev, A.V. Sytin, V.V. Barabash, Technological increase of adhesion strength between anti-friction 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

[7] A. Hasuy, O. Morigaki, Welding and spraying, Moscow, Engineering (1985).

Google Scholar

[8] A.D. Zimon, Adhesion of films and coatings, Мoscow: Chemistry, (1977).

Google Scholar

[9] B.V. Deryagin, N.L. Krotova, V.P. Smilga, Adhesion of solids. Moscow: Science, (1973).

Google Scholar

[10] Y.S. Korobov, Analysis of the properties of gas-thermal coatings: [study guide]: in 2 parts – Yekaterinburg: Publishing house Ural., 2 (2016).

Google Scholar

[11] M.N. Shmelev, Metal Works Controller. Moscow, Engineering, (1980).

Google Scholar

[12] N.N. Dorozhkin, Guidelines for determining the adhesive strength of coatings, Minsk: Urajay, (1985).

Google Scholar

[13] E.V. Ryzhkov, A.G. Suslov, V.P. Fedorov, Technological support of operational properties of machine parts. Мoscow: Engineering, (1979).

Google Scholar