

On the structure and properties of functional coatings from composite powders of the aluminum – silicon nitride system reinforced with a SiALON type phase
https://doi.org/10.22349/1994-6716-2021-106-2-80-89
Abstract
The work studies development process of a composite powder of the aluminum – silicon nitride system and sprayed coatings using the mechanism of the formation of composite granules and the distribution of a hardening phase of the Sialon type in them. Various modes of powder composite mechanosynthesis are studied. The results of determining the hardness, chemical composition and distribution of elements in the resulting coating are given.
About the Authors
T. I. BobkovaRussian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
A. I. Dmitryuk
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
E. A. Nezhensky
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
N. A. Lukyanova
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
References
1. Maltseva, T.V., Ozerets, N.N., Levina, A.V., Ishina, E.A., Tsvetnye metally i splavy [Non-ferrous metals and alloys]: a reference book, Ekaterinburg: Ural Federal University, 2019.
2. Kulmin, Yu.L., Oryshchenko, A.S., Korroziya i elektrokhimicheskaya zashchita morskikh sudov [Corrosion and electrochemical protection of ships], St Petersburg: Professional, 2017.
3. Bobkova, T.I., Deev, A.A., Bystrov, R.Yu., Farmakovsky, B.V., Nanesenie iznosostoykikh pokrytiy s reguliruemoy tverdostyu s pomoshchyu sverkhzvukovogo kholodnogo gazodinamicheskogo napyleniya [Application of wear-resistant coatings with adjustable hardness using supersonic cold gas-dynamic spraying], Metalloobrabotka, No 5, 2012, pp. 45–49.
4. Koshelev, V.N., Osobennosti tekhnologii naneseniya piroliticheskikh aliuminiyevykh pokrytiy [Features of the technology of applying pyrolytic aluminum coatings], Aviatsionnyye materialy i tekhnologii, 2009, No 2, pp.10–14.
5. Rogov, V.A., Soloviev, V.V., Kopylov, V.V., Novye materialy v mashinostroenii [New materials in mechanical engineering]: a reference book, Moscow: RUDN, 2008.
6. Alferov, Zh.I., et al., Perspektivnye napravleniya razvitiya nauki v Peterburge [Promising areas of science development in St Petersburg], St Petersburg: Permyakov publ., 2015, pp. 137–163.
7. Bobkova, T.I., Mikroplazmennoe napylenie iznosostoykikh pokrytiy, armirovannykh nanorazmernymi chastitsami [Microplasma spraying of wear-resistant coatings reinforced with nanosized particles], Proceedings of the Conference of young researchers and specialists, CRISM Prometey, June 20–22, 2012, St Petersburg, 2013, pp. 45–49.
8. Conference “The use of composite materials in shipbuilding” – it is necessary to create a center of competence in St Petersburg 04/25/2016. URL: https://plastinfo.ru/information/news/29454_12.04.2016/ (reference date 29/06/2021)
9. Zborshchik, A.M., Konspekt lektsiy po distsipline “Novye materialy v metallurgii” [Lecture notes on the discipline “New materials in metallurgy”], Donetsk: DonNTU, 2008.
10. Kim, K.A., Lysenkov, A.S., Titov, D.D., Rheological properties of Si3N4 and Si3N4 with sintering additive CaO-Al2O3 powders, IOP Conference Series: Materials Science and Engineering, 2020, V. 848.
11. Bobkova, T.I, Farmakovsky, B.V., Sokolova, N.A., Sposob polucheniya gradientnogo kompozitsionnogo pokrytiya i kompozitsionnogo poroshka na osnove alyuminiya s nitridom kremniya dlyaego napyleniya [A method of obtaining a gradient composite coating and a composite powder based on aluminum with silicon nitride for its sputtering]: Application for a patent of the Russian Federation (Federal Institute of Industrial Property), No 2018130610, August 23, 2018.
12. Grachev, V.I., Margolin, V.I., Zhabrev, V.A., Tupik, V.A., Osnovy sinteza nanorazmernykh chastits i plenok [Fundamentals of the synthesis of nanosized particles and films], Izhevsk: Udmurtiya, 2014.
13. Lovshenko, F.G., Lovshenko, G.F., Fedosenko, A.S., Struktura, fazovy sostav i svoystva gazotermicheskikh pokrytiy iz mekhanicheski legirovannykh termoreagiruyushchikh kompozitsionnykh poroshkov sistemy “nikel-alyuminiy – oksid nikelya” [Structure, phase composition and properties of thermal gas coatings from mechanically alloyed thermoreactive composite powders of the “nickel-aluminum – nickel oxide” system], Vestnik Belorussko-Rossiyskogo universiteta, 2015, No 3 (48), pp. 33–44.
14. Bobkova, T.I., Farmakovsky, B.V, Bogdanov, S.P., Sozdanie kompozitsionnykh nanostrukturirovannykh poverkhnostno-armirovannykh poroshkovykh materialov na osnove sistem Ti/WC i Ti/TiCN dlya napyleniya pokrytiy povyshennoy tverdosti [Creation of composite nanostructured surfacereinforced powder materials based on the systems Ti/WC and Ti/TiCN for spraying coatings of increased hardness], Voprosy Materialovedeniya, 2015, No 3 (83), pp. 80–90.
15. Garkina, I.A., Danilov, A.M., Sorokin, D.S., Sintez kompozitsionnykh materialov s pozitsii klassicheskoy teorii optimalnogo upravleniya [Synthesis of composite materials from the perspective of the classical theory of optimal control], Tekhnicheskie nauki. Fundamentalnye issledovaniya, 2014, No 9, pp. 1411–1416.
16. Garkina, I.A., Danilov, A.M., Domke, E.R., Korolev, E.V., Sintez kompozitsionnykh materialov kak slozhnykh sistem [Synthesis of composite materials as complex systems], Vestnik MADI (GTU), 2009, No 4 (19), pp. 48–55.
17. Bobkova, T.I., Farmakovsky, B.V., Sokolova, N.A., Nanostrukturirovannye poroshki na osnove alyuminiya, armirovannye nitridom kremniya, dlya napyleniya mnogofunktsionalnykh pokrytiy s povyshennoy tverdostyu [Nanostructured aluminum-based powders reinforced with silicon nitride for the spraying of multifunctional coatings with increased hardness], Voprosy Materialovedeniya, 2018, No 1 (97), pp. 65–73.
18. Kupriyanov, I.L, Geller, M.A., Gazotermicheskie pokrytiya s povyshennoy prochnostyu stsepleniya [Thermal gas coatings with increased adhesion strength], Minsk: Nauka i tekhnika, 1990.
Review
For citations:
Bobkova T.I., Dmitryuk A.I., Nezhensky E.A., Lukyanova N.A. On the structure and properties of functional coatings from composite powders of the aluminum – silicon nitride system reinforced with a SiALON type phase. Voprosy Materialovedeniya. 2021;(2(106)):80-89. (In Russ.) https://doi.org/10.22349/1994-6716-2021-106-2-80-89