ISSN 3041-1815. Physicochemical Mechanics of Materials. 2025.
Volume 61, Issue 4

Abrasive resistant self-lubricating forsterite-based coatings

Keywords

coating, secondary structures, wear intensity, structural and phase composition

Cite as

Shchepetov V. V., Fialko N. M., and Bys S. S. Abrasive resistant self-lubricating forsterite-based coatings. Physicochemical Mechanics of Materials. 2025. 61(4), 133-138.

https://doi.org/10.15407/pcmm2025.04.133

Abstract

The obtained compounds of complex magnesium orthosilicate oxides were used as the basis of self-lubricating composite coatings. The structural and phase composition of the coatings is established. It is shown that an effective self-lubricating composite coating contains structurally free magnesium carbide. The technology for obtaining a composite powder mixture for spraying is developed, the tribotechnical and operational properties are optimized, and rational parameters for detonation-gas spraying of forsterite-based coatings are established. The physical mechanism is determined and the main factors determining the level of thermodynamic graphitization are clarified. The character and regularities which determine the tendency of coatings to passivation are studied.

References

  1. V. V. Dragobetskyi, O. O. Shapoval, V. V. Schepetov, M. V. Zahirniak, V. V. Lotous, H. I. Lehotkin, O. H. Slepynin, V. V. Chyhyrynslyi, and Yu. S. Kresanov, Controlled Effects of Plastic Deformation of Billets for Metallurgy and Transport Products [in Ukrainian], Madrid Publ. House, Kharkiv (2017).
  2. J. Paulo Davim (editor), Wear of Advanctd Materials, John Wiley &Sonc, Inc. (2012).
  3. H. Feller, and P. Klinger, “Zumtribologischen verhalten von metallischen gläsern,” Metall, 39, No. 7, 627-631 (2015).
  4. J. Paulo Davim (editor), Wear of Composite Materials, Walter de Gruyter, Berlin (2018).
  5. Tribology Composite, Springer, Heidelberg (2016). ISBN: 978-3-642-3381-6.
  6. A. G. Kostornov, Tribotechnical Materials Science [in Russian], Noulidzh, Luhansk (2001).
  7. O. A. Mikosyanchik, and R. G. Mnatsakanov, “Tribotechnical characteristics of castir on with a steel coating in lubrication medium under un steady modes,” J. of Friction and Wear, 38, Is. 4, 279-285 (2017). https://doi.org/10.3103/S1068366617040109
  8. I. M. Fedorchenko, and L. I. Pugina, Composite Sintered Antifriction Materials [in Russain], Naukova Dumka, Kyiv (1980).
  9. V. I. Trefilov, and V. Kh. Kadyrov, Operation Properties of Detonation Coatings [in Russian], Znaniye, Kyiv (1991).
  10. V. V. Schepetov, and O. V. Kharchenko, Wear-Resistant Protective Coatings [in Ukrainian], Naukova Dumka, Kyiv (2023).
  11. B. I. Kostetskyi (editor), Surface Strength of Materials under Friction [in Russian], Tekhnika, Kyiv (1976).