1. Demin, F.I., Pronichev, N.D., and Shitarev, I.L., Tekhnologiya izgotovleniya osnovnykh detalei gazoturbinnykh dvigatelei (Technology for Manufacturing Main Elements of Gas-Turbine Engines), Moscow: Mashinostroenie, 2002, 2nd ed.
2. Afonin, V.L., Gavrilina, L.V., Ibragimov, A.R., Kondrat’ev, I.M., Morozov, S.V., Rakov, D.L., Smolentsev, A.N., Sukhorukov, R.Yu., and Shitov, A.M., Issledovaniya i razrabotka innovatsionnykh tekhnologicheskikh protsessov i intellektual’nykh sistem upravleniya dlya izgotovleniya detalei gazoturbinnykh dvigatelei (GTD) (Research and Development of Innovative Technological Processes and Smart Control Systems for Preparing Elements of Gas-Turbine Engines), Moscow: Inst. Mashinovedeniya Ross. Akad. Nauk, 2019.
3. Klimov, V.G., Structure and properties of gas-turbine engine blades recovered by laser welding deposit from superalloys, Cand. Sci. (Eng.) Dissertation, Samara: Samarsk. Gos. Tekh. Univ., 2019.
4. Tikhonov, N.T., Musatkin, N.F., and Matveev, V.N., Teoriya lopatochnykh mashin aviatsionnykh gazoturbinnykh dvigatelei (Theory of blade machines of aviation gas-turbine engines), Samara: Samarsk. Gos. Aerokosm. Univ., 2001.
5. Ospennikova, O.G., Lukin, V.I., Afanasev-Khodykin, A.N., and Galushka, I.A., The manufacture of the blisk rotor design made from bimetallic combination of materials (review), Tr. VIAM, 2018, no. 10, pp. 10–16. https://doi.org/10.18577/2307-6046-2018-0-10-10-16