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Structure, physical and mechanical properties of bronze castings obtained by continuous and centrifugal casting

https://doi.org/10.21122/1683-6065-2020-2-26-28

Abstract

The influence of crystallization conditions (continuous and centrifugal casting) of small-sized BrА1Fe4Ni4 bronze castings on the structure, phase composition, and hardness was studied. It was found by metallographic and X-ray diffraction methods that the castings consist of (α + γ')-eutectoid, α phase and AlCu, Al2Cu3 intermetallic compounds. The matrix phase in the alloy, crystallized by centrifugal casting, due to its higher alloying with Al atoms, has an increased value of the crystal lattice parameter, compared with the case of continuous casting. The hardness of the casting obtained by centrifugal casting increases compared with continuous casting, which is due to the formation of a more dispersed structure, as well as a large solid solution hardening of the matrix phase of the casting.

About the Authors

E. I. Marukovich
Institute of Technology of Metals of National Academy of Sciences of Belarus
Belarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli Str.


V. A. Kharkov
Institute of Technology of Metals of National Academy of Sciences of Belarus
Belarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli Str.


I. O. Sazonenko
Institute of Technology of Metals of National Academy of Sciences of Belarus
Belarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli Str.


V. A. Kukareko
Joint Institute of Mechanical Engineering of National Academy of Sciences of Belarus
Belarus

Minsk, Belarus, 12, Akademicheskaja Str.



A. V. Kushnerov
Joint Institute of Mechanical Engineering of National Academy of Sciences of Belarus
Belarus

Minsk, Belarus, 12, Akademicheskaja Str.



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Review

For citations:


Marukovich E.I., Kharkov V.A., Sazonenko I.O., Kukareko V.A., Kushnerov A.V. Structure, physical and mechanical properties of bronze castings obtained by continuous and centrifugal casting. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2020;(2):26-28. (In Russ.) https://doi.org/10.21122/1683-6065-2020-2-26-28

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ISSN 1683-6065 (Print)
ISSN 2414-0406 (Online)