Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

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  • Pages: 17-24
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The possibility of obtaining complex-shaped mechanical engineering products based on reaction-sintered silicon carbide using two methods - mechanical processing of polymerized blanks before sintering and hot slip molding under pressure, has been studied. The obtained silicon carbide ceramic materials are characterized by a low density of about 3.04…3.07 g/cm3, a porosity of ? 1 % and a bending strength of 320…360 MPa. Materials based on silicon carbide modified with boron carbide have a density of 2.72 g/cm3, a porosity of about 1 % and a bending strength of 280 MPa.
Mikhail A. Markov – Doctor of Technical Sciences, Head of the sector “Heat-resistant Ceramics”, National Research Center “Kurchatov Institute” – Central Research Institute of Structural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Anton N. Belyakov – Leading Engineer, National Research Center “Kurchatov Institute” – Central Research Institute of Structural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Daria A. Dyuskina – Engineer of the 3rd category, National Research Center “Kurchatov Institute” – Central Research Institute of Struc-tural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Andrey G. Chekuryaev – Engineer of the 3rd category, National Research Center "Kurchatov Institute" – Central Research Institute of Structural Materials "Prometheus", St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Alina D. Bykova – Engineer of the 2nd category, National Research Center “Kurchatov Institute” – Central Research Institute of Structural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Sergey N. Perevislov – Doctor of Technical Sciences, Head of the Laboratory “Technical Ceramics”, National Research Center “Kurchatov Institute” – Central Research Institute of Structural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
Alexander D. Kashtanov – Doctor of Technical Sciences, First Deputy Director General, National Research Center “Kurchatov Institute” – Central Research Institute of Structural Materials “Prometheus”, St. Petersburg, Russia. E-mail: This email address is being protected from spambots. You need JavaScript enabled to view it..
1. Зленко М. А., Нагайцев М. В., Довбыш В. М. Аддитивные технологии в машиностроении: пособие для инженеров. М.: ГНЦ РФ ФГУП «НАМИ», 2015. 220 с.
2. Yan J. W., Zhang Z. Y., Kuriyagawa T. Mechanism for material removal in diamond turning of reaction-bonded silicon carbide // International Journal of Machine Tools and Manufacture. 2009. V. 49, No. 5. P. 366–374.
3. Гаршин А. П., Чулкин С. Г. Реакционно-спеченные карбидокремниевые материалы конструкционного назначения. Физико-механические и триботехнические свойства. СПб.: Изд-во Политехн. ун-та, 2006. 84 с.
4. Pat. 4019913А US, МПК С04В 35/573. Process for fabricating silicon carbide articles / G. Q. Weaver, B. A. Olson, publ. 26.04.1977.
5. Шикунов С. Л., Курлов В. Н. Получение композиционных материалов на основе карбида кремния // Журнал технической физики. 2017. Т. 87, № 12. С. 1871–1878.
6. Беляков А. Н., Марков М. А., Чекуряев А. Г. и др. Исследование реакционно-спеченных материалов B4C–SiC, полученных методом горячего шликерного литья // Физика и химия стекла. 2023. Т. 49, № 3. С. 1–11.
7. Грибовский П. О. Горячее литье керамических изделий. М.: Госэнергоиздат, 1961. 400 с.
8. Гаршин А. П., Вильк Ю.Н. Влияние некоторых технологических параметров на формирование структуры материалов на основе реакционно-спеченного карбида кремния // Огнеупоры и техническая керамика. 1996. № 8. С. 2–8.
9. Гнесин Г. Г. Карбидокремниевые материалы. М.: Металлургия, 1977. 216 с.
10. Дьячкова Л. Н., Звонарев Е. В., Шелехина В. М., Исупов М. А. К вопросу о получении карбидокремниевых материалов методом реакционного спекания // Инженерно-физический журнал. 1997. Т. 70, № 2. С. 260–263.
11. Беляков А. Н., Марков М. А., Перевислов С. Н. и др. Исследование структуры и физико-механических характеристик реакционно-спеченных материалов B4C?SiC // Новые огнеупоры. 2023. № 2. С. 29–33.
12. Петров И. М. Основные тенденции российского рынка металлических порошков для аддитивных технологий // Аддитивные технологии. 2019. № 1. С. 24–26.

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DOI: 10.14489/glc.2023.07.pp.017-024
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Markov M. A., Belyakov A. N., Dyuskina D. A., Chekuryaev A. G., Bykova A. D., Perevislov S. N., Kashtanov A. D. Methods of forming complex profile products from heat-resistant ceramic materials based on silicon carbide. Steklo i keramika. 2023:96(7):17-24. (in Russ). DOI: 10.14489/glc.2023.07.pp.017-024