About the problems and results of obtaining products from technical ceramics for metallurgical production. Message 1

Author:

Panteleenko F. I.1,Popov R. Yu.2,Shmuradko V. T.1,Samsonova A. S.2

Affiliation:

1. Belarusian National Technical University

2. Belarusian State Technological University

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.

Publisher

Belarusian National Technical University

Subject

Pulmonary and Respiratory Medicine,Pediatrics, Perinatology, and Child Health

Reference15 articles.

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.

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