1. 1. Yaresko S.I. Analiz stoykosti i iznashivaniya tverdosplavnogo instrumenta posle lazernoy termoobrabotki [Wear and wear resistance analysis of hard alloy tools after laser treatment]. Izvestia of Samara Scientific Center of the Russian Academy of Sciences, 2001, vol. 3, no. 1, pp. 27-37 (in Russ.).
2. 2. Zhang P-L., Yan H., Xu P-Q., Yu Z-S., Li C-G., Lu Q-H. Effect of laser surface hardening on the mictrostructure, hardness, wear resistance and softening of a low carbon steel. Lasers in engineering, 2014, vol. 28, iss. 3-4, pp. 135-149.
3. 3. Devoyno O.G., Shvec I.V. Obespechenie resursnykh parametrov otvetstvennykh elementov mekhanicheskikh transmissiy s ispolzovaniem poverkhnostnykh sloev, formiruemykh lazernymi tekhnologiyami [Ensuring resource parameters of critical elements of mechanical transmissions using surface layers formed by laser technologies]. Teoreticheskaya i prikladnaya mekhanika, 2019, iss. 34, pp. 266-270. Available at: https://rep.bntu.by/handle/data/52290 (in Russ.).
4. 4. Aborkin A.V., Vaganov V.E., Shlegel' A.N., Bukarev I.M. Effect of laser hardening on die steel microhardness and surface quality. Metallurgist, 2015, vol. 59, iss. 7-8, pp. 619-625. DOI: https://doi.org/10.1007/s11015-015-0148-8.
5. 5. Afanaseva L.E., Novoselova M.V., Baranova I.A., Ratkevich G.V. Vliyanie lazernoy zakalki na mikrostrukturu i abrazivnuyu iznosostoykost stali 30KhGSA [Influence of laser hardening on microstructure and abrasive wear resistance of 30KhGSA steel]. Metally, 2020, no. 1, pp. 54-59 (in Russ.).