1. Makarov, A.M., Gerashchenkov, D.A., Aleksandrov, S.E., Markov, M.A., Gerashchenkova, E.Yu., Belyakov, A.N., Byakova, A.D., Study of the Method of Obtaining Functional Interest-Metallic Coatings Based on Ni–Ti Reinforced with WC Nanoparticles, Key Engineering Materials, 2019, V. 822, pp. 760–767.
2. Bobkova, T.I., Deev, A.A., Bystrov, R.Yu., Farmakovsky, B.V., Nanesenie iznosostoykikh pokrytiy s reguliruemoy tverdostyu s pomoshchyu sverkhzvukovogo kholodnogo gazodinamicheskogo napyleniya [Deposition of wear-resistant coatings with adjustable hardness using supersonic cold gas-dynamic spraying], Metalloobrabotka, 2012, No 5–6, pp. 45–49.
3. Gerashchenkov D.A.,Makarov, A.M., Gerashchenkova, E.Yu., Vasiliev, A.F., Poluchenie funktsionalnogo intermetallidnogo pokrytiya Ni–Ti putem kombinatsii tekhnologiy geterofaznogo perenosa i lazernoy obrabotki [Obtaining a functional Ni–Ti intermetallic coating by a combination of heterophase transfer and laser processing technologies], Voprosy Materialovedeniya, 2018, No 3 (95), pp. 102– 110.
4. Makarov, A.M., Gerashchenkov D.A., Vasiliev, A.F., Optimizatsiya parametrov protsessa napyleniya pokrytiy metodom KhGDN priminitelno k usloviyam proizvodstva na primere poroshka alyuminiya [Optimization of the coating process by CGDS applied to aluminum powder], Voprosy Materialovedeniya, 2017, No 2(90), pp. 116–123.
5. Irissou, E., Legoux, J.-G., Arsenault, B., Moreau, C., Investigation of Al–Al2O3 Cold Spray Coating, Thermal Spray Technol, 2007, V. 16, No 5–6, pp. 661–668.