1. Burumkulov, F.Kh., Lezin, P.P. Senin, P.V., et al., Elektroiskrovye tekhnologii vosstanovleniya i uprochneniya detalei mashin i instrumentov (teoriya i praktika) (Electric Spark Technologies of Reparation and Hardening of Machine Parts and Tools: Theory and Practice), Saransk: Krasnyi Oktyabr’, 2003.
2. Velichko, S.A., Martynov, A.V., Kuznetov, I.S., and Hassan, I.H., Predicting the erosion resistance of an anode in electrospark surfacing, Russ. Eng. Res., 2020, vol. 40, no. 12, pp. 1039–1041.
3. Senin, P.V., Velichko, S.A., Martynov, A.V., and Martynova, E.G., Increasing the wear resistance of forged tools by electrospark deposition, Russ. Eng. Res., 2020, vol. 40, no. 5, pp. 427–430.
4. Ivanov, V.I., Solov’ev, S.A., Velichko, S.A., and Ignat’kov, D.A., Analysis of electrical impulse processes during electrospark treatment of metal surfaces in a gaseous environment, Svar. Proizvod., 2016, no. 4, pp. 25–33.
5. Verkhoturov, A.D., Podchernyaeva, I.A., Samsonov, G.V., and Fomenko, V.S., Dependence of anode erosion on the state of the hardened surface during electrospark alloying, Elektron. Obrab. Mater., 1970, no. 6, pp. 29–31.