Skip to main content
Log in

Properties of the Powder Particles Produced by the Electrodispersion of the Kh13 Steel Waste

  • RESOURCE SAVING
  • Published:
Russian Metallurgy (Metally) Aims and scope

Abstract

The properties of the metal powder particles fabricated by the electrodispersion of the Kh13 steel waste in butyl alcohol are experimentally studied. The powders are shown to have spherical or elliptical shape; the main elements in them are Fe, Cr, and C; and the average particle size of the powder is 49.33 μm.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1.
Fig. 2.

Similar content being viewed by others

REFERENCES

  1. I. P. Borodin, Yu. S. Shatov, V. Yu. Shiryaev, A. G. Gvozdev, and O. V. Sedykh, “Structure and properties of grade 45 steel–ASP2005 powder steel composite material formed by explosion energy,” Metalloved. Term. Obrab. Met., No. 8 (674), 8–11 (2011).

  2. V. G. Shishka, A. V. Skorikov, I. V. Ivanova, and N. V. Shishka, “Choice of alloying elements to improve the machinability of powder structural steels,” Inzh. Vestn. Dona, No. 4 (51), 11 (2018).

    Google Scholar 

  3. T. V. Vysotskii and V. T. Vysotskii, “Technological processes of manufacturing mechanically alloyed powder steels and products from them,” Vestn. Belorussko–Rossiskogo Univ., No. 3 (20), 58–65 (2008).

  4. V. I. Kostikov, Zh. V. Eremeeva, S. I. Rupasov, R. A. Skorikov, K. N. Slukovskaya, G. Kh. Sharipzyanova, and N. M. Nitkin, “Heat treatment of hot-deformed powder steels alloyed with nanoscale carbon and chromium,” Materialoved., No. 1, 51–55 (2012).

  5. V. L. Girshov, V. N. Tsemenko, and S. A. Mazurov, “Influence of structural defects on the strength of powder high-speed steels,” Nauch.-Tekhn. Vedom. Sankt-Peterburgskogo Gos. Politekh. Univ., No. 3 (130), 175–180 (2011).

  6. V. N. Antsiferov, L. M. Grevnov, M. F. Torsunov, and V. A. Boyarshinov, “Structure of fullerene-containing deformed powder steels,” Izv. Vyssh. Uchebn. Zaved., Poroshk. Metallurgiya Funkts. Pokrytiya, No. 3, 7a–11 (2012).

    Google Scholar 

  7. V. N. Antsiferov, V. Ya. Bulanov, Yu. G. Gurevich, A. G. Ivashko, and M. S. Tsyganova, “Studying the decomposition of the supercooled austenite of powder steels with a new digital magnetometer,” Metalloved. Term. Obrab. Met., No. 4 (598), 24–29 (2005).

  8. Zh. V. Eremeeva, N. M. Nitkin, and G. Kh. Sharip-zyanova, “Application of nanoscale carbon and chromium powders to the processes of charge preparation and pressing of powder steels,” Izv. MGTU MAMI, No. 2 (12), 123–127 (2011).

    Article  Google Scholar 

  9. Yu. G. Dorofeev, V. Yu. Dorofeev, A. V. Babets, E. N. Bessarabov, O. N. Romanova, and A. N. Sviridova, “Contact interaction at the boundary of the layers in hot-stamped powder bimetal of the structural steel–high-speed steel type,” Izv. Vyssh. Uchebn. Zaved., Poroshk. Metallurgiya Funkts. Pokrytiya, No. 3, 11–22 (2018).

    Google Scholar 

  10. A. F. Gaisin, I. M. Nuriev, and A. Z. Gumerov, “Method of fabrication of metal powder,” RF Patent 2332280, Byull. Izobret., No. 24 (2008).

  11. E. V. Ageev and R. A. Latypov, “Fabrication and investigation of carbide billets from powders prepared by electroerosive dispersion of tungsten-containing wastes,” Russ. J. Non-Ferrous Met. 55 (6), 577–580 (2014).

    Article  Google Scholar 

  12. E. V. Ageev and R. A. Latypov, “Composition, structure, and properties of the electroerosive powders fabricated from the wastes of a VNZh alloy in distilled water,” Russ. Metall. (Metally), No. 12, 1423–1427 (2020).

  13. R. A. Latypov, G. R. Latypova, E. V. Ageev, A. Y. Altukhov, and E. V. Ageeva, “Properties of the coatings fabricated by plasma-jet hard-facing by dispersed mechanical engineering wastes,” Russ. Metall. (Metally), No. 6, 573–575 (2018).

  14. R. A. Latypov, G. R. Latypova, E. V. Ageeva, and O. V. Kruglyakov, “Electroerosion micro- and nanopowders for the production of hard alloys,” Russ. Metall. (Metally), No. 6, 547–549 (2016).

  15. E. V. Ageev, A. S. Ugrimov, and R. A. Latypov, “Metallurgical features of the manufacture of hard-alloy powders by electroerosive dispersion of a T15K6 alloy in butanol,” Russ. Metall. (Metally), No. 12, 1155–1157 (2016).

  16. G. R. Latypova, N. N. Karpenko, R. A. Latypov, and E. V. Ageeva, “Composition and properties of the powder fabricated by the electroerosive dispersion of the high-speed tool steel waste,” Elektrometallurgiya, No. 3, 25–29 (2020).

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to R. A. Latypov.

Ethics declarations

The authors declare that they have no conflicts of interest.

Additional information

Translated by K. Shakhlevich

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Latypov, R.A., Ageev, E.V., Latypova, G.R. et al. Properties of the Powder Particles Produced by the Electrodispersion of the Kh13 Steel Waste. Russ. Metall. 2022, 691–693 (2022). https://doi.org/10.1134/S0036029522060167

Download citation

  • Received:

  • Revised:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1134/S0036029522060167

Keywords:

Navigation