About the problems and results of obtaining products from technical ceramics for metallurgical production. Message 1
https://doi.org/10.21122/1683-6065-2023-1-88-95
Abstract
The article presents the research’s results in the field of multifunctional ceramic materials synthesis for metallurgical, machine‑tool and other branches related to the metal treatment, their alloys and products from them; current trends and tendencies associated with the production of goods from such materials. The information on expanding the local raw material sources for the production of ceramics with the involvement of local enterprises is provided. In addition, the prospects for the industrial potential development to produce such goods are observed.
About the Authors
F. I. PanteleenkoBelarus
Minsk, Belarus, 65, Nezavisimosti ave.
R. Yu. Popov
Belarus
Minsk, Belarus, 13a, Sverdlova str.
V. T. Shmuradko
Belarus
Minsk, Belarus, 65, Nezavisimosti ave.
A. S. Samsonova
Belarus
Minsk, Belarus, 13a, Sverdlova str.
References
1. Matrenin S. V., Slosman A. I. Tehnicheskaja keramika [Technical ceramics.]. Tomsk, izdatel’stvo TPU Publ., 2004, 75 p.
2. Ashby M., Johnson K. Materials and Design. The Art and Science of Materials Selection in Product Design. Amsterdam – Boston – Heidelberg – London – New‑York – Oxford – Paris – San‑Diego – San‑Francisco – Singapore – Sidney – Tokyo: ButterworthHeinemann, 2003, 416 p.
3. Leszek А. Dobranski. Metalowe materialy inzynierskie. Gliwice‑Warszawa, WNT, 2004, 916 p.
4. Panteleyenko F., Kuczumow A., Sieniawski J. et. al. Mechanisms of technical ceramic density adjusting. X International Scientific and Practical Conference «Innovations in Mechanical Engineering» (ISPCIME‑2019). Kemerovo, Russia, 2019, pp. 1–9.
5. Panteleenko F. I., Shmuradko V. T., Reut O. P., Rudenskaya N.A. et. al. Material science principles and technological solutions for the development, creation and use of wear‑resistant corundum materials‑products for underground tunneling mechanisms and metal cord production. Glass and Ceramics, 2016, vol. 89, no. 9, pp. 16–22.
6. Pantsialeyenka F., Kuczumov A., Shmuradko V., Pantsialeyenka K. Oxide ceramic and refractory materials for metallurgical processes and industries. The 73rd Word Foundry Congress. Krakow, Poland, 2018, pp. 465–466.
7. Panteleyenko F. I., Shmuradko V. T., Reut O.P, et. al. Physical‑chemical processes and mechanism for preparing Belaz quarry dumper truck heat‑resistant electrical insulators. Refractories and industrial ceramics, 2017, vol. 57, no. 6, pp. 614–617.
8. Strelov K. K. Teoreticheskie osnovy tehnologii ogneupornyh materialov [Theoretical foundations of technology of refractory materials]. Moscow, Metallurgija Publ., 1985, 480 p.
9. Ogneupornye materialy. Struktura, svojstva, ispytanija [Refractory materials. Structure, properties, tests]. Moscow, Intermet Inzhiniring Publ., 2010, 391 p.
10. Shmuradko V. T. et. al. Tehnicheskaja keramika: materialovedchesko‑tehnologicheskie principy i mehanizmy razrabotki i realizacii keramicheskih jelektroizoljatorov razlichnogo nauchno‑prakticheskogo naznachenija [Technical ceramics: materials science and technology principles and mechanisms for the development and implementation of ceramic electrical insulators for various scientific and practical purposes]. Novye ogneupory = New refractories, 2020, no. 9, pp. 14–24.
11. Shmuradko V. T., Panteleenko F. I., Reut O. P., Rudenskaja N.A., Panteleenko E. F. Sposob poluchenija iznosostojkogo keramicheskogo materiala na osnove oksida aljuminija [Method for producing wear‑resistant ceramic material based on aluminum oxide]. Patent BY 23555, B35/04S1, V35/645S1, 30.10.2021.
12. Shmuradko V. T., Panteleenko F. I., Reut O. P., Rudenskaja N.A., Panteleenko E. F. Shihta dlja poluchenija keramoogneupornogo materiala [Charge for obtaining ceramic refractory material]. Patent BY 23147, В35/106С1, 30.10.2020.
13. Shmuradko V. T., Panteleenko F. I., Reut O. P., Kirshina N. V., Ovchinnikov V. I., Stepkin M. O. Keramicheskoe vjazhushhie [Ceramic binders]. Patent BY 21214, V35/185, V35/10, V35/14 /, 30.08.2017.
14. Shmuradko V. T., Panteleenko F. I., Reut O. P., Kirshina N. V. Kompozicija dlja poluchenija poristogo keramicheskogo materiala [Composition for obtaining a porous ceramic material]. Patent BY 22094, 30.08.2018.
15. Shmuradko V. T., Panteleenko F. I., Reut O. P., Kirshina N. V. Sposob poluchenija poristogo keramicheskogo materiala [Method for producing porous ceramic material]. Patent BY 21974. В38/00С1, 30.06.2018.
Review
For citations:
Panteleenko F.I., Popov R.Yu., Shmuradko V.T., Samsonova A.S. About the problems and results of obtaining products from technical ceramics for metallurgical production. Message 1. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2023;(1):88-95. (In Russ.) https://doi.org/10.21122/1683-6065-2023-1-88-95