

Development of a technology of protective functional gradient coatings of titanium diboride by magnetron sputtering
https://doi.org/10.22349/1994-6716-2022-109-1-83-88
Abstract
This work presents the results of studying a composition based on titanium diboride TiB2. Functional gradient coatings with high values of microhardness (28–32 GPa) and corrosion resistance in synthetic seawater, alkali (NaOH) and acid (HCl) were obtained using the method of magnetron sputtering. The obtained functional gradient coatings are recommended for the protection of products of precision mechanical engineering and instrument making.
Keywords
About the Authors
T. I. BobkovaRussian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
R. Yu. Bystrov
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
A. F. Vasiliev
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
D. A. Gerashchenkov
Russian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
A. M. Makarov
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
E. L. Gyulikhandanov
Russian Federation
Dr Sc. (Eng)
29 Polytechnicheskaya St, 195251 St Petersburg
M E. Goshkoderya
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
B. V. Farmakovsky
Russian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
References
1. Alferov, Zh.I., et al., Perspektivnye napravleniya razvitiya nauki v Peterburge [Promising areas of science development in St Petersburg], St Petersburg: Permyakov, 2015.
2. Gorynin, I.V., Burkhanov, G.S., Farmakovsky, B.V., Nanostrukturirovannye pokry-
3. tiya na osnove tugoplavkikh metallov i ikh soedineniy [Nanostructured coatings based on refractory metals and their compounds], Voprosy Materialovedeniya, 2012, No 2 (70), pp. 5–15.
4. Burkhanov, G.S., Burkhanov, Yu.S., Sovremennye podkhody k sozdaniyu funktsionalnykh materialov [Modern approaches to creating functional materials], Materialovedenie, 2008, No 3, pp. 184– 190.
5. Urbanovich, V.S., Kopylov, A.V., Fiziko-mekhanicheskie svoystva poroshka diborida titana, spechennogo pod vysokim davleniem [Physicomechanical properties of titanium diboride powder sintered under high pressure], Fizika i Tekhnika Vysokikh Davleniy, 2011, V. 21, No 4, pp. 77–84.
6. Kobayasi, N., Vvedenie v nanotekhnologiyu [Introduction to nanotechnology], Moscow: Binom. Laboratoriya znaniy, 2007.
7. Zhabrev, V.A., et al., Fiziko-khimicheskie protsessy sinteza nanorazmernykh obiektov [Physicochemical processes of synthesis of nanoscale objects], St Petersburg: Elmor, 2012.
8. Bystrov, R.Yu., Belyakov, A.N., Vasilev, A.F., Prudnikov, I.S., Farma-
9. kovsky, B.V., Splav na osnove alyuminievo-magnievoy sistemy dlya razrabotki misheni magnetronnogo napyleniya tonkikh plenok [Alloy based on an aluminum-magnesium system for developing a target for magnetron spraying of thin films], Voprosy Materialovedeniya, 2020, No 4 (104), pp. 109–112.
10. Kuznetsov, N.T., Novotortsev, V.M., Zhabrev, V.A., Margolin, V.I., Osnovy nanotekhnologiy [Fundamentals of nanotechnology]: Textbook, Moscow: Binom. Laboratoriya znaniy, 2014
Review
For citations:
Bobkova T.I., Bystrov R.Yu., Vasiliev A.F., Gerashchenkov D.A., Makarov A.M., Gyulikhandanov E.L., Goshkoderya M.E., Farmakovsky B.V. Development of a technology of protective functional gradient coatings of titanium diboride by magnetron sputtering. Voprosy Materialovedeniya. 2022;(1(109)):83-88. (In Russ.) https://doi.org/10.22349/1994-6716-2022-109-1-83-88