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Electrical properties of iron powder-based composites encapsulated by the oxide coating

https://doi.org/10.29235/1561-8323-2020-64-2-233-237

Abstract

The electrical characteristics of composite materials based on iron powders ASC 100.29 (Sweden) were investigated. The surface of powders is encapsulated by an insulating ferrite coating. The conductivity and the thermopower were studied, the cores were made by the pressing method, and then the samples were cut from the cores. The results show that the decrease in the electrical resistance with increasing temperature is due to a change in the contact between the grains in the sample. A change in the boundaries between grains (or domains) creates the conditions for formation of a new magnon, which affects the thermopower coefficient value. The research results can be used in the synthesis of composites with specified electromagnetic characteristics for practical applications.

About the Authors

A. K. Vetcher
Scientific and Practical Material Research Center of the National Academy of Sciences of Belarus,
Belarus

Vetcher Alexander K. – Senior researcher.

19, P. Brovka Str., 220072, Minsk



A. I. Galyas
Scientific and Practical Material Research Center of the National Academy of Sciences of Belarus
Belarus

Galyas Anatoly I. – Ph. D. (Physics and Mathematics), Senior researcher.

19, P. Brovka Str., 220072, Minsk



G. A. Govor
Scientific and Practical Material Research Center of the National Academy of Sciences of Belarus
Belarus

Govor Gennady A. – D. Sc. (Physics and Mathematics), Professor, Сhief researcher.

19, P. Brovka Str., 220072, Minsk



K. I. Yanushkevich
Scientific and Practical Material Research Center of the National Academy of Sciences of Belarus
Belarus

Yanushkevich Kazimir I. – D. Sc. (Physics and Mathematics), Head of the Laboratory.

19, P. Brovka Str., 220072, Minsk



References

1. Govor G. A., Vecher A. K., Yanushkevich K. I. Features of the magnetic characteristics of new composite materials based on iron powders. Klubovich V. V. (ed.). Perspektivnye materialy i tekhnologii [Promising Materials and Technologies], Vitebsk, 2017, vol. 2, pp. 278–299 (in Russian).

2. Ternov E. V., Galyas A. I., Krivchenya D. A. About automation of measurements of thermopower and resistivity of materials at high temperatures. Sbornik dokladov VIII Mezhdunarodnoy nauchnoy konferentsii «Aktual’nye problemy fiziki tverdogo tela–2018» [Materials of the VIII International Scientific Conference “Actual Problems of Solid State Physics–2018”]. Minsk, 2018, vol. 3, pp. 264–266 (in Russian).

3. Blatt F. J., Flood D. J., Rowe V., Schroeder P. A., Cox J. E. Magnon-drag thermopower in iron. Physical Review Letters, 1967, vol. 18, no. 11, pp. 395–396. https://doi.org/10.1103/physrevlett.18.395

4. Greig O. Thermoelectricity in transition metals. Thermoelectricity in Metallic Conductors. New York, London, 1978, pp. 91–106. https://doi.org/10.1007/978-1-4757-6830-5_11

5. Kolomeets N. V., Vedernikov M. V. Thermoelectric properties of ferromagnetic metals and their alloys. Fizika tverdogo tela = Physics of the Solid State, 1961, vol. 3, no. 9, pp. 2734–2745 (in Russian).


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ISSN 1561-8323 (Print)
ISSN 2524-2431 (Online)