Funct. Mater. 2024; 31 (2): 192-198.

doi:https://doi.org/10.15407/fm31.02.192

Regularities of fretting-corrosion wear of coatings formed by gas-thermal spraying methods

M.V. Kindrachuk1, 1V.V. Kharchenko1, 1V. Ye. Marchuk1, I. A.Humeniuk1, N. M.Stebeletska2, 1M. A. Hlovyn1, I.V.Kostetsky1

1National Aviation University, 1 Liubomyra Guzara ave, 03058, Kyiv, Ukraine
2SS NULES of Ukraine "Berezhany Agrotechnical Institute", St. Akademichna, 20, Berezhany, Ukraine, 47501,

Abstract: 

The results of experimental studies of wear under fretting-corrosion conditions on a number of coatings formed by the methods of plasma-arc, pulse-plasma, and high-velocity gas-flame spraying are presented. Analytical studies of the regularities of the stress-strained state formation in the "GTS-coating-base" system and evaluation of the efficiency of various technological influences and methods of forming coatings on wear resistance were carried out.

Keywords: 
fretting-corrosion, wear, plasma spraying, gas-flame spraying, electric arc spraying
References: 
1. V.Korzhyk, V.Khaskin, О.Ganushchak, EEJET, 2 (12), 122, 2023.
https://doi.org/10.15587/1729-4061.2023.275510
 
2. Grigorenko, G. M., Adeeva, L. I., Tunik,. Powder Metallurgy and Metal Ceramics, 58 (5-6), 312, 2020.
https://doi.org/10.1007/s11106-019-00080-1
 
3. G.M.Grigorenko, L.I.Adeeva, A.Y.Tunik, Powder Metallurgy and Metal Ceramics, 59 (5-6), 318, 2020.
https://doi.org/10.1007/s11106-020-00165-2
 
4. G.G.Gorokh, M.I.Pashechko, J.T.Borc, Appl. Surf. Sci., 433: 829, 2018.
https://doi.org/10.1016/j.apsusc.2017.10.117
 
5. M.I.Pashechko, K.Dziedzic, E.Mendyk, Tribol., 140, 2: 021302, 2018.
https://doi.org/10.1115/1.4037953
 
6. S.Yu.Sharivner, E.A.Astahov, A.P.Garda. Fiz. i him. obr. Materialov, 5. 157, 1974.
 
7. M.H.Shorshorov, Yu.A.Harlamov, M.: Nauka, 224, 1978.
 
8. C.Wang, Z.Li, M.O.Iefimov, Surface Engineering 39 (5), 532, 2023.
https://doi.org/10.1080/02670844.2023.2242116
 
9. W.Sanjay, W.Rukhande, Surface Engineering 36 (7), 745 (2020).
https://doi.org/10.1080/02670844.2020.1730062
 
10. K.A.Iushchenko, K.: Naukova dumka, 558, 2007.
 
11. M.A.Belocerkovskij, Mn.: Tekhnoprint, 200, 2004.
 
12. R.F.Vojtovich. K. Nauk. dumka, 220, 1971.
 
13. T.S.Cherepova, H.P.Dmytrieva, V.K.Hosenko, Metallurgy and Heat Treatment of Metals, 3, 36-40, 2015, [in Ukrainian].
 
14. F.I. Kitaev, A.S. Namychkin, A.G. Bakova, Poroshkovaya metallurgiya, 10, 29-33, 1982.
 
15. M.V.Kindrachuk, Yu.Ya.Dushek, M.V.Luchka, Poroshkovaya Metallurgiya, 9-10, 56-61, 1994.
 
16. M.V.Kindrachuk, Yu.Ya.Dushek, M.V.Luchka, Poroshkovaya Metallurgiya, 5-6, 104-110. 1995.
 
17. H.P.Dmytrieva, T.S.Cherepova, O.I.Dukhota, Powder Metallurgy, 11/12, 68-75, 2017 [in Ukrainian].
 
18. V.Kindrachuk, , N,Wanderka, J.Banhart, Steel Res. Int., 75(1), 74-78, 2004.
https://doi.org/10.1002/srin.200405929
 
19. M.I. Chernovol, T.V. Vorona, E.E. Kozhevnikova, PtZ. - № 2 (67). - S. 99-108, 2015. (in Ukrainian).
 
20. V.I.Pohmurskiy, M.M.Student, V.M. Gvozdetskiy, Avtomat. Svarka, 9: 52, 2011 [in Russian].
 
21. A. G.Rahshtadt, M.: Metallurgija, 400, 1982.
 
22. V. V. Shevelya, G. S. Kalda. - Hmelnitskiy: PodIllya, 299, 1998.

Current number: