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ELASTO-PLASTIC DEFORMATION OF COMPOSITE POWDERS WITH LAYERED CARBON AND CARBIDE-FORMING ELEMENT COATING

Abstract

Coating structure formation under magnetron spraying of titanium and carbon cathodes and combined cathodes, namely cobalt (EP 131) – nickel, tungsten – carbon have been investigated under conditions of carbide separate synthesis within the temperature range of 650–1200 °C. Usage of cobalt and nickel particles as matrix material leads to their rapid thermal expansion under heating during sintering process in the dilatometer. Subsequent plastic deformation of sintered samples provides obtaining a composite powder material that is a composite with framing structure of cobalt, titanium and tungsten carbides in the coatings.

About the Authors

V. N. Kovalevsky
Belarusian National Technical University
Belarus


S. V. Grigoriev
Belarusian National Technical University
Belarus


S. V. Kovalevskaya
Belarusian National Technical University
Belarus


A. E. Zhuk
Belarusian National Technical University


A. V. Rulkevich
Powder Metallurgy Institute of the NAS of Belarus
Belarus


I. V. Fomikhina
Belarusian National Technical University
Belarus


References

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For citations:


Kovalevsky V.N., Grigoriev S.V., Kovalevskaya S.V., Zhuk A.E., Rulkevich A.V., Fomikhina I.V. ELASTO-PLASTIC DEFORMATION OF COMPOSITE POWDERS WITH LAYERED CARBON AND CARBIDE-FORMING ELEMENT COATING. Science & Technique. 2012;(1):5-10. (In Russ.)

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ISSN 2227-1031 (Print)
ISSN 2414-0392 (Online)