

Obtaining protective coatings based on NbCo2–Zr–WC composition
https://doi.org/10.22349/1994-6716-2021-108-4-108-114
Abstract
The results of complex studies on the production of protective coatings based on the composition NbCo2–Zr–WC are presented. Coatings obtained by microplasma spraying have high microhardness (~15.0 GPa) and wear resistance (~1.0·10–8).
About the Authors
E. Yu. GerashchenkovaRussian Federation
49 Shpalernaya St, 191015 St Petersburg
T. I. Bobkova
Russian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
D. A. Gerashchenkov
Russian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
R. Yu. Bystrov
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
A. M. Makarov
Russian Federation
49 Shpalernaya St, 191015 St Petersburg
B. V. Farmakovsky
Russian Federation
Cand Sc. (Eng)
49 Shpalernaya St, 191015 St Petersburg
References
1. Golovin, Y u . I ., Vvedenie v nanotekhniku [Introduction to nanotechnology], Moscow: Mashinostroenie, 2007.
2. Erlikh, G . V ., Malye obekty – bolshie idei. Shirokiy vzglyad na nanotekhnologii [Small objects – big ideas. A broad view of nanotechnology], Moscow: Binom. Laboratoriya znaniy, 2017.
3. Slutsky, A . G . , Smetkin, V. A . , Slutskaya , O . A . , Trubitsky, R . E ., Issledovanie protsessa vosstanovleniya pri poluchenii legirovannykh vysokouglerodistykh splavov [Investigation of the recovery process when obtaining alloyed high-carbon alloys], Litye i metallurgiya, 2006, No 4 (40), pp. 115– 117.
4. Bobkov a , T . I ., Farmakovsky, B . V ., Iznosostoykie korrozionno-stoykie funktsionalnogradientnye pokrytiya na osnove kompozitsionnykh poroshkov sistemy metall – nemetall [Wear-resistant corrosion-resistant functional-gradient coatings based on composite powders of the metal-non-metal system], Voprosy Materialovedeniya, 2017, No 2 (90), pp. 124–129.
5. Burkanov a , E .Yu . , Farmakovsky, B . V ., Vysokoskorostnoy mekhanosintez s ispolzovaniem dezintegratornykh ustanovok dlya polucheniya nanostrukturirovannykh poroshkovykh materialov sistemy metall–keramika iznosostoykogo klassa [High-speed mechanosynthesis using disintegrator units for obtaining nanostructured powder materials of the metal–ceramic system of wear-resistant class], Voprosy Materialovedeniya, 2012, No 1 (69), pp. 80–85.
6. Bobkova , T . I ., Razrabotka materialov i tekhnologii polucheniya iznosostoykikh gradiyentnykh pokrytiy na baze nanostrukturirovannykh kompozitsionnykh poroshkov [Development of materials and technology for producing wear-resistant gradient coatings based on nanostructured composite powders], Abstract of dissertation for the degree of candidate of technical sciences, St. Petersburg, 2017.
7. Yurkov , M . A ., Razrabotka tekhnologii sozdaniya obiemno-poristykh pokrytiy na osnove oksida alyuminiya metodom mikroplazmennogo napyleniya [Development of technology for creating volumetric porous coatings based on aluminum oxide by microplasma spraying], Voprosy Materialovedeniya, 2011, No 2 (66), pp. 67–76.
8. Grinberg, B . A. , Ivanov , M . A ., Intermetallidy Ni3Al i TiAl: mikrostruktura, deformatsionnoe povedenie [Intermetallic compounds Ni3Al and TiAl: microstructure, deformation behavior], Ekaterinburg: Ural branch, RAS, 2002.
9. Ospennikova O . G ., Podyachev , V . N . , Stolyankov , Yu. V ., Tugoplavkie splavy dlya novoy tekhniki [Refractory alloys for new technology], Trudy VIAM, 2016, No 10 (46), p. 5.
10. Gerashchenkov, D.A., Bobkova, T.I., Vasilev, A.F., Kuznetsov, P.A., Samodelkin , E . A ., Farmakovsky, B . V ., Funktsionalnye zashchitnye pokrytiya iz splava na osnove nikelya [Functional nickel base alloy protective coatings], Voprosy Materialovedeniya, 2018, No 1 (93), pp. 110–114.
Review
For citations:
Gerashchenkova E.Yu., Bobkova T.I., Gerashchenkov D.A., Bystrov R.Yu., Makarov A.M., Farmakovsky B.V. Obtaining protective coatings based on NbCo2–Zr–WC composition. Voprosy Materialovedeniya. 2021;(4(108)):108-114. (In Russ.) https://doi.org/10.22349/1994-6716-2021-108-4-108-114