

Development of the technology of microplasma spraying of functional coatings of the nickel – aluminum system for the creation of catalytically active compositions
https://doi.org/10.22349/1994-6716-2021-106-2-97-104
Abstract
The results of comprehensive studies on the development of an innovative technology for microplasma spraying of catalytically active systems based on nickel –aluminum intermetallic compositions are presented. A batch of high-capacity chemical current sources based on these compositions with a mass energy level of up to 250 Wt h / kg has been manufactured and tested.
About the Authors
N. V. YakovlevaRussian Federation
49 Shpalernaya St, 191015 St Petersburg
B. V. Farmakovsky
Russian Federation
Cand. Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
R. Yu. Bystrov
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
M. A. Yurkov
Russian Federation
Cand. Sc. (Eng)
27 Engels Ave, letter R, room 1-H, 194156 St Petersburg
References
1. Perspektivnye napravleniya razvitiya nauki v Peterburge [Perspective directions of development of science in St Petersburg], Zh.I. Alferov (Ed.), St Petersburg: Permyakov, 2015
2. Sholkin, S.E., Yurkov, M.A., Issledovanie protsessa mikroplazmennogo naneseniya nanostrukturirovannykh pokrytiy sistemy metall – intermetallid i metall – nemetall [Investigation of the process of microplasma deposition of nanostructured coatings of the metal – intermetallic and metal – nonmetal systems], Novye materialy i tekhnologii v aviatsionnoy i raketno-kosmicheskoy tekhnike, Korolev: Mashpribor, 2008, pp. 52–61.
3. Sholkin, S.E., Yurkov, M.A., Nauchno-tekhnologichesky modul nanotekhnologicheskogo kompleksa FGUP TSNII KM Prometey dlya polucheniya nanoporoshkov i nanostrukturirovannykh funktsionalnykh pokrytiy i operativnogo kontrolya struktury i svoystv[Scientific and technological module of the nanotechnological complex of FSUE CRISM Prometey for obtaining nanopowders and nanostructured functional coatings and operational control of structure and properties], Proceedings of the 1st All-Russian scientific conference “Methods for studying the composition and structure of functional materials”, Novosibirsk: Publishing House of the Boreskov Institute of Catalysis, 2009, pp. 159–163.
4. Bolshakov, S.I., Zhuravleva, L.I. et al., Patent RU 2 047354: Method of catalyst manufacturing, 1992.
5. Perevozchikov, B.N., Melekhin,V.A., Patent RU 2 123 881: Catalytic converter of exhaust gases of internal combustion engines, 1998.
6. Suvorov, B.V., Stepanova, L.A., Belova, N.A., Patent RU 2 126 716: Catalytic system for oxidative ammonolysis of alkyl-pyridines, 1999.
7. Morozov, V.P., Khaidarov, Z.F., Patent RU 2 136 365: Method of manufacturing a catalyst for the oxidation of carbon monoxide exhaust gases, 1999.
8. Yurkov, M.A., Mikroplazmennoe napylenie obiemno-poristykh pokrytiy dlya katalizatorov parovoy konversii uglevodorodnogo syriya v vodorodsoderzhashchee toplivoivo doaktiviruyemykh khimicheskikh istochnikov toka [Microplasma spraying of volumetric porous coatings for catalysts of steam conversion of hydrocarbon raw materials into hydrogen-containing fuel and water-activated chemical current sources]: Abstract of thesis for the degree of Cand. Sc. (Eng), St Petersburg, 2011.
9. Balabanov, V.I., Nanotekhnologii. Nauka budushchego [Nanotechnology. Science of the future], Moscow: Eksmo, 2009.
10. Farmakovsky, B.V., Ulin, I.V., Funktsionalnye materialy i pokrytiya – puti i nadezhdy [Functional materials and coatings – ways and hopes], Po puti sozidaniya, Gorynin, I.V. (Ed.), St Petersburg: Prometey, 2009, V. 2, pp. 149–164.
11. Zhabrev V.A. et al. Fiziko-khimicheskie protsessy nanorazmernykh obiektov [Physicochemical processes of nanoscale objects], St Petersburg: Elmor, 2012.
12. Vazhnova, A.I, Marukovich, A.I., Smorygo, O.L., Kompozitsionnye granuly dlya polucheniya vysokoporistykh materialov na osnove titana [Composite granules for obtaining highly porous materials based on titanium], Proceedings of the 11th International Symposium, Minsk, 2019, pp. 101–108.
13. Gorynin, I.V., Razmyshleniya s optimismom [Reflections with optimism], St Petersburg: Publishing house of the Polytechnic University, 2014.
14. Gorynin, I.V., Oryshchenko, A.S., Farmakovsky, B.V., Kuznetsov, P.A., Perspektivnye issledovaniya i razrabotki nauchnogo nanotekhnologicheskogo tsentra FGUP TsNII KM Prometey v oblasti novykh nanomaterialov [Promising research and development of the scientific nanotechnological center FSUE CRISM Prometey in the field of new nanomaterials], Voprosy Materialovedeniya, 2014, No 2 (78), pp. 118–128.
Review
For citations:
Yakovleva N.V., Farmakovsky B.V., Bystrov R.Yu., Yurkov M.A. Development of the technology of microplasma spraying of functional coatings of the nickel – aluminum system for the creation of catalytically active compositions. Voprosy Materialovedeniya. 2021;(2(106)):97-104. (In Russ.) https://doi.org/10.22349/1994-6716-2021-106-2-97-104