Preview

Voprosy Materialovedeniya

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Optimization of the coating process by cold gas dynamic spraying applied to production conditions of Ni–Ti and Ni–Al systems

https://doi.org/10.22349/1994-6716-2020-102-2-108-116

Abstract

This study developed practical recommendations for using the method of cold gas dynamic spraying to obtain functional coatings in a production environment using powders of nickel, titanium and aluminum of the grades: PNE-1 (Ni), PTOM-1 (Ti) and PA-VCh (Al). The temperature and speed parameters of the process were optimized using mechanical mixtures (Ni + Ti) and (Ni + Al) as an example. High adhesion of the coating and coefficient of powder use were ensured with maximum productivity at the DIMET-403 installation.

About the Authors

A. M. Makarov
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation
49 Shpalernaya St, 191015 St Petersburg


V. R. Nikitina
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation
49 Shpalernaya St, 191015 St Petersburg


D. A. Gerashchenkov
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Cand Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



A. F. Vasiliev
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation
49 Shpalernaya St, 191015 St Petersburg


References

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.

6. Guo, X., Zhang, G., Li, W.Y., Dembinski, L., Gao, Y., Liao, H., Coddet, C., Microstructure, microhardness and dry friction behavior of cold-sprayed tin bronze coatings, Applied Surface Science, 2007, V. 254, pp. 1482–1488.

7. Alkhimov, A.P., Klinkov, S.V., Kosarev, V.F., Fomin, V.M., Kholodnoe gazodinamicheskoe napylenie [Cold gas dynamic spraying], Moscow: FIZMATLIT, 2010.

8. Li, W.-Y., Li, C.-J., Liao, H., Coddet, C., Effect of heat treatment on the microstructure and microhardness of cold-sprayed tin bronze coating, Applied Surface Science, 2007, V. 253, No 14, pp. 5967– 5971.

9. Bobkova, T.I., Sokolova, N.A., Makarov, A.M., Gerashchenkov, D.A., F a r m a k o v s k y , B . V . , Kombinirovanny metod polucheniya kompozitsionnykh poroshkovykh materialov i funktsionalnykh pokrytiy na ikh osnove [Combined method for producing composite powder materials and functional coatings based on them], Voprosy Materialovedeniya, 2018, V. 2, No 94, pp. 81–87.

10. Nielsen, S.E. Laser fusing-a technique for surface improvement, Industrial Laser Solutions, 2009, p. 13.

11. Mathew, R., Stoddart, P., Nolan, D., Durandet, Y. Thermal modification of zinc- aluminum coated steel using lasers, Proceedings of the 30th International Congress on Applications of Lasers and Electro-Optics (ICALEO 2011), pp. 457–462.

12. Metals with shape memory. Shape memory effect mechanism. URL: http://uas.su/books/newmaterial/101/razdel101.php (reference date 26/06/2019).

13. Kablov, E.N., Buntushkin, V.P., Povarova, K.B., Bazyleva, O.A., Morozova, G.I., Kazanskaya N.K., Malolegirovannye legkie zharoprochnye vysokotemperaturnye materialy na osnove intermetallida Ni3Al [Low-alloy light heat-resistant high-temperature materials based on Ni3Al intermetallic], Moscow: VIAM, 1998.

14. Grinberg, B.A., Ivanov, M.A., Intermetallidy Ni3Al i TiAl: mikrostruktura, deformatsionnoe povedenie [Intermetallides Ni3Al and TiAl: microstructure, deformation behavior], Ekaterinburg, 2002.

15. Wear-resistant materials for friction pairs operating at high sliding speeds. URL: http://chiefengineer.ru (reference date 25/06/2019).


Review

For citations:


Makarov A.M., Nikitina V.R., Gerashchenkov D.A., Vasiliev A.F. Optimization of the coating process by cold gas dynamic spraying applied to production conditions of Ni–Ti and Ni–Al systems. Voprosy Materialovedeniya. 2020;(2(102)):108-116. (In Russ.) https://doi.org/10.22349/1994-6716-2020-102-2-108-116

Views: 469


ISSN 1994-6716 (Print)