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Investigation of Wear of Modified Powder Coatings under Sliding Friction at Low Climatic Temperatures

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Abstract

A bench for wear testing of powder coatings and metal counterbodies has been developed and manufactured under conditions of low climatic ambient temperatures. Thermophysical measurements of the operation of the “powder coating–counterbody” friction unit in cold conditions have been carried out. Wear tests were carried out during sliding friction of modified powder coatings at low climatic temperatures. Corundum additives Al2O3 and ultrafine spinels CoAl2O4 and CuAl2O4 were used as modifying additives for wear-resistant powder coatings. For friction, counterbodies were used—pads made of ordinary and hardened ShKh15 grade steel.

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REFERENCES

  1. Ishlinskii, A.Yu. and Belyi, V.A., Development of friction and wear science in Soviet Union, Trenie Iznos, 1980, vol. 1, no. 1, pp. 7–12.

    Google Scholar 

  2. Issledovanie tribotekhnicheskikh sistem v usloviyakh kholodnogo klimata. Sbornik nauchnykh trudov (Studying the Tribotechnical Systems under Conditions of Cold Climate: Collection of Sci. Papers), Yakutsk: Yakutsk. Filial Sib. Otd. Akad. Nauk SSSR, 1990.

  3. Larionov, V.P. and Koval’chuk, V.A., Khladostoikost’ i iznos detalei mashin i svarnykh soedinenii (Cold Resistance and Wear of Machine Elements and Welded Joints), Novosibirsk: Nauka, 1976.

  4. Cherskii, I.N., Criteria of operability and forecasting of the lifetime of metal-polymer friction units, Trenie Iznos, 198, vol. 1, no. 6, pp. 1021–1026.

  5. Kudinov, V.V., Pekshev, P.Yu., Belashchenko, V.E., Solonenko, O.P., and Safiullin, V.A., Nanesenie pokrytii plazmoi (Plasma Deposition of Coatings), Moscow: Nauka, 1990.

  6. Boronenkov, V.N. and Korobov, Yu.S., Osnovy dugovoi metallizatsii. Fiziko-khimicheskie zakonomernosti (Foundations of Electric-Arc Metallization: Physicochemical Regularities), Yekaterinburg: Ural. Univ., 2012.

  7. Tushinskii, L.I., Plokhov, A.V., Tokarev, A.O., and Sindeev, V.I., Metody issledovaniya materialov: Struktura, svoistva i protsessy naneseniya neorganicheskikh pokrytii (Methods for Studying Materials: Structure, Properties, and Deposition of Inorganic Materials), Moscow: Mir, 2004.

  8. Arkhipov, V.E., Gazodinamicheskoe napylenie. Struktura i svoistva pokrytii (Gasdynamic Deposition: Structure and Properties of Coatings), Moscow: Krasand, 2017.

  9. Usol’tsev, A.A., Kibko, N.V., Kozyrev, N.A., Bashchenko, L.P., and Gusev, A.I., Studying the quality of metal deposited by powder wires of Fe–C–Si–Mn–Cr–Ni–Mo system, Vestn. Sib. Gos. Ind. Univ., 2018, no. 1, pp. 5–10.

  10. Kapralov, E.V., Raikov, S.V., Budovskikh, E.A., Gromov, V.E., Vashchuk, E.S., and Ivanov, Yu.F., Structural-phase states and properties of coatings welded onto steel surfaces using powder wires, Bull. Russ. Acad. Sci.: Phys., 2014, vol. 78, no. 10, pp. 1015–1021. https://doi.org/10.3103/S1062873814100098

    Article  CAS  Google Scholar 

  11. Bolotina, N.P., Milokhin, S.E., Larionov, V.P., Shevchenko, V.G., and Vinogradov, A.V., Powder wire for coatings deposition, RF Patent no. 2048273, 1995.

  12. Bolotina, N.P., Milokhin, S.E., Larionov, V.P., Vinogradov, A.V., Stafetskii, L.P., Tsielen, U.A., Smilga, A.A., and Lobzov, S.N., Powder material for gasthermal deposition, RF Patent no. 2040570, 1995.

  13. Bolotina, N.P., Milokhin, S.E., Larionov, V.P., Vinogradov, A.V., Stafetskii, L.P., Tsielen, U.A., Smilga, A.A., and Lobzov, S.N., Powder material for gasthermal deposition, RF Patent no. 2042728, 1995.

  14. Kragel’skii, I.V. and Shchedrov, V.S., Razvitie nauki o trenii. Sukhoe trenie (Development of Friction Science: Dry Friction), Moscow: Izdatel’stvo AN SSSR, 1956.

  15. Pernebekov, S.S., Balabekov, Z.A., Asylbek, G.U., Rakhimberdy, B.K., and Mankaraeva, M.A., Analysis of the factors determining the wear intensity of motor at low temperatures, Molodoi Uchenyi, 2017, no. 1, pp. 76–78.

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Correspondence to N. F. Struchkov.

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Translated by S. Avodkova

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Struchkov, N.F., Lebedev, D.I., Bol’shev, K.N. et al. Investigation of Wear of Modified Powder Coatings under Sliding Friction at Low Climatic Temperatures. Steel Transl. 53, 27–32 (2023). https://doi.org/10.3103/S0967091223010126

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  • DOI: https://doi.org/10.3103/S0967091223010126

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