OBRABOTKAMETALLOV Vol. 28 No. 3 2026 312 MATERIAL SCIENCE 18. Savrai R.A., Skorynina P.A., Makarov A.V., Men’shakov A.I., Gaviko V.S. Vliyanie friktsionnoi obrabotki i nizkotemperaturnoi plazmennoi tsementatsii na strukturu i fazovyi sostav metastabil’noi austenitnoi stali [The infl uence of frictional treatment and low-temperature plasma carburizing on the structure and phase composition of metastable austenitic steel]. Fizika metallov i metallovedenie = Physics of Metals and Metallography, 2023, vol. 124, no. 5, pp. 409–416. DOI: 10.31857/S0015323023600442. 19. Savrai R.A., Skorynina P.A., Makarov A.V., Osinceva A.L. Structure and surface properties of metastable austenitic steel subjected to liquid carburizing at a reduced temperature. Physics of Metals and Metallography, 2020, vol. 121 (1), pp. 65–71. DOI: 10.1134/S0031918X20010135. 20. Savrai R.A., Skorynina P.A., MakarovA.V., OsincevaA.L. Eff ect of liquid carburizing at lowered temperature on the micromechanical characteristics of metastable austenitic steel. Physics of Metals and Metallography, 2020, vol. 121 (10), pp. 1015–1020. DOI: 10.1134/S0031918X20100105. 21. Karlina Y.I., Balanovskiy A.E., Kurdyumov G.E., Gladkikh V.A., Konyukhov V.Y., Oparina T.A., Kononenko R.V., Kondratiev V.V. Visualization of the reverse side of cathode and anode spots in a welding arc. Applied Sciences, 2026, vol. 16, p. 3385. DOI: 10.3390/app16073385. 22. Balanovsky A.E., Vu Van Huy. Nasyshchenie poverkhnosti metalla uglerodom pri plazmennoi poverkhnostnoi obrabotke [Saturation of the metal surface with carbon during plasma surface treatment]. Uprochnyayushchie tekhnologii i pokrytiya = Strengthening Technologies and Coatings, 2017, vol. 13, no. 9 (153), pp. 82–91. 23. Vu Van Huy, Balanovsky A.E. Issledovanie iznosostoikosti poverkhnosti stali posle plazmennoi tsementatsii s ispol’zovaniem uglerodosoderzhashchei pasty [Study of wear resistance of steel surface after plasma carburizing using carbon-containing paste]. Vestnik Irkutskogo gosudarstvennogo tekhnicheskogo universiteta = Bulletin of Irkutsk State Technical University, 2017, vol. 21, no. 4, pp. 10–21. 24. Vu Van Huy, Balanovsky A.E. Fizicheskie osnovy tekhnologii plazmennoi poverkhnostnoi tsementatsii detalei na primere vtulki shpintona passazhirskogo vagona [Physical principles of plasma surface carburizing of parts as exemplifi ed by an antirattle bushing of a passenger coach]. Vestnik Irkutskogo gosudarstvennogo tekhnicheskogo universiteta = Bulletin of Irkutsk State Technical University, 2017, vol. 21, no. 3, pp. 10–22. 25. Balanovskii A., Vu Van Huy. Plasma surface carburizing with graphite paste. Letters on Materials, 2017, vol. 7 (2), pp. 175–179. DOI: 10.22226/2410-3535-2017-2-175-179. 26. Balanovskii A.E., Grechneva M.V., Vu Van Huy, Zhuravlev D.A. New plasma carburizing method. IOP Conference Series: Earth andEnvironmental Science, 2017, vol. 87, p. 092003. DOI: 10.1088/1755-1315/87/9/092003. 27. Vu V.H., Balanovskiy A.E., Doan V.T., Nguyen V.T. Surface saturation with carbon using plasma arc and graphite coating. Tribology in Industry, 2021, vol. 43 (2), pp. 211–221. DOI: 10.24874/ti.951.08.20.12. 28. Balanovskiy A.E. Digital visualisation of the process of heating and melting of metal in arc discharge with a non-consumable electrode. Welding International, 2017, vol. 31 (6), pp. 467–476. DOI: 10.1080/09507116.2016.12 68765. 29. Höche D., Kaspar J., Schaaf P. 2 – Laser nitriding and carburization of materials. Laser surface engineering: processes and applications. Ed. by J. Lawrence and D.G. Waugh. Woodhead Publishing Series in Electronic and Optical Materials, no. 65. Elsevier, 2015, pp. 33–58. DOI: 10.1016/B978-1-78242-074-3.00002-7. 30. Katsamas A.I., Haidemenopoulos G.N. Laser-beam carburizing of low-alloy steels. Surface and Coatings Technology, 2001, vol. 139 (2–3), pp. 183–191. DOI: 10.1016/S0257-8972(00)01061-6. 31. Maharjan N., Zhou W., Wu N. Direct laser hardening of AISI 1020 steel under controlled gas atmosphere. Surface and Coatings Technology, 2020, vol. 385, p. 125399. DOI: 10.1016/j.surfcoat.2020.125399. 32. Zhang J., Yu M., Li Z., Liu Y., Zhang Q., Jiang R., Sun S. The eff ect of laser energy density on the microstructure, residual stress and phase composition of H13 steel treated by laser surface melting. Journal of Alloys and Compounds, 2021, vol. 856, p. 158168. DOI: 10.1016/j.jallcom.2020.158168. 33. Kluczyński J., Jasik K., Łuszczek J., Pokropek J. laser surface hardening of carburized steels: a review of process parameters and application in gear manufacturing. Materials, 2025, vol. 18 (15), p. 3623. DOI: 10.3390/ ma18153623. 34. Pozdnyakov E.P., Stepankin I.N. Vliyanie dlitel’nosti tsementatsii na strukturu i svoistva konstruktsionnykh sredneuglerodistykh stalei 40Kh, 35KhGSA i 42CrMoS4 [Infl uence of cementation duration on the structure and properties of structural middle carbon steel 40Cr4, 35CrMnSi4 and 42CrMoS4]. Lit’e i metallurgiya = Foundry Production and Metallurgy, 2024, no. 1, pp. 69–77. DOI: 10.21122/1683-6065-2024-1-69-77. 35. Karlina Yu.I., Konyukhov V.Yu., Oparina T.A. Issledovanie protsessa poverkhnostnogo obezuglerozhivaniya stali 20 posle tsementatsii i termicheskoi obrabotki [Investigation of the process of surface decarburization of steel
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