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Producing antifriction babbitt В83 layer by gas-dynamic cold spraying

https://doi.org/10.22349/1994-6716-2024-118-2-78-90

Abstract

The technological processing of antifriction layer from Babbitt by gas-dynamic cold spraying was carried out on the DIMET-403. The coating was sprayed on plain bearings for marine low- and medium-speed diesel engines, turbines, and shaft lines. Technical requirements for antifriction layer materials, standard technological processes of preparation, spraying, heat treatment, and quality control are also considered.

About the Authors

R. Yu. Bystrov
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

49 Shpalernaya St, 191015 St Petersburg



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

Dr Sc. (Eng).

49 Shpalernaya St, 191015 St Petersburg



E. Yu. Gerashchenkova
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

49 Shpalernaya St, 191015 St Petersburg



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

49 Shpalernaya St, 191015 St Petersburg



E. N. Barkovskaya
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

49 Shpalernaya St, 191015 St Petersburg



References

1. Alifanov, A.V., Razrabotka i issledovanie modifitsirovannogo babbitovogo materiala s tselyu ispolzovaniya ego pri remonte tyazhelonagruzhennykh podshipnikov skolzheniya [Development and research of modified Babbitt material for the purpose of using it in the repair of heavily loaded plain bearings], Litie i metallurgiya, 2012, No 3 (66), pp. 83–86.

2. Oryshchenko, A.S., Gerashchenkov, D.A., Aluminum matrix functional coatings with high microhardness on the basis of Al–Sn + Al2O3 composite powders fabricated by cold gas dynamic spraying, Inorganic Materials: Applied Research, 2016, No 7 (6), pp. 863–867. URL: https://doi.org/10.1134/S2075113316060125.

3. Gerashchenkov, D.A., Farmakovsky, B.V., Bobkova, T.I., Klimov, V.N., Features of the Formation of Wear-Resistant Coatings from Powders Prepared by a Micrometallurgical Process of High-Speed Melt Quenching, Metallurgist, 2017, No 60 (9–10), pp. 1103–1112. URL: https://doi.org/10.1007/s11015-017-0413-0.

4. Gerashchenkov, D.A., Vasiliev, A.F., Farmakovsky, B.V., Mashek, A.Ch., Issledovanie temperatury potoka v protsesse kholodnogo gazodinamicheskogo napyleniya funktsionalnykh pokryty [Study of the flow temperature in the process of cold gas-dynamic spraying of functional coatings], Voprosy Materialovedeniya, 2014, No 1 (77), pp. 87–96.

5. Bystrov, R.Yu., Gerashchenkov, D.A., Coating of a multicomponent system Al–Cr–Ni– Co–Fe on a steel substrate obtained by laser, Inorganic Materials: Applied Research, 2022, December, No 13, pp. 1569–1574. DOI: 10.1134/S2075113322060065.

6. Chudina, O.V., Kombinirovannye tekhnologii poverkhnostnogo uprochneniya konstruktsionnykh stalei [Combined technologies of surface hardening of structural steels]: thesis for the degree of Dr Sc. (Eng), Moscow: Moskovsky gosudarstvenny avtomobilno-dorozhny institut, 2003.


Review

For citations:


Bystrov R.Yu., Gerashchenkov D.A., Gerashchenkova E.Yu., Kashirina A.A., Barkovskaya E.N. Producing antifriction babbitt В83 layer by gas-dynamic cold spraying. Voprosy Materialovedeniya. 2024;(2(118)):78-90. (In Russ.) https://doi.org/10.22349/1994-6716-2024-118-2-78-90

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ISSN 1994-6716 (Print)