Optimization of Aluminum Boride Synthesis in the Self-Propagating High-Temperature Synthesis Mode to Create Waste-Free Technology

Author:

Aknazarov Sestager KhusainovichORCID,Mutushev Alibek ZhumabekovichORCID,Gonzalez-Leal Juan MariaORCID,Bairakova Olga StepanovnaORCID,Golovchenko Olga Yuryevna,Golovchenko Natalia YuryevnaORCID,Ponomareva Elena Alexandrovna

Abstract

This paper is the continuation of our previous paper. In this work, we optimized the synthesis of aluminum borides by the SHS method. The purpose of the research was to develop the foundations of waste-free technology. The initial components were powders of boric anhydride (B2O3), aluminum (Al), the oxide-heating additive (KNO3), various fluxing additives, including mixed ones. The optimal ratios of the initial components for increasing the yield of aluminum boride with a high boron content and obtaining slag suitable for the production of high-alumina clinkers were determined. Studies have shown that the development of a waste-free technology for producing aluminum borides by the method of self-propagating high-temperature synthesis (SHS) is possible and yields target (alloy) and by-product (slag) products that meet the requirements for chemical and phase composition.

Funder

Ministry of Education and Science of the Republic of Kazakhstan

Publisher

MDPI AG

Subject

Materials Science (miscellaneous),Ceramics and Composites

Reference31 articles.

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2. Kinetics of the Synthesis of Aluminum Boride by the Self-Propagating High-Temperature Synthesis Method;Aknazarov;Ceramics,2022

3. Serebryakova, T.I., Neronov, V.A., and Peshev, P.D. (1991). High Temperature Borides, Metallurgy.

4. Podergin, V.A. (1972). Metal Thermal Systems, Metallurgy.

5. Kislyi, P.S., Neronov, V.A., Prikhina, T.A., and Bevzo, Y.B. (1990). Aluminium Borides, Naukova Dumka.

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