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

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1016
  • Pages: 14-16
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Heading: Science for glass production

The effect of acoustic vibrations in the cavitation mode on a high-temperature high-viscosity slag melt has been experimentally evaluated. A significant increase in the crystallization ability of the melt after its ultrasonic treatment was established, which may be associated with the depolymerization of the silicon-oxygen framework of the silicate melt and the creation of a developed interface between the gaseous and liquid phases in the melt. It is shown that acoustic treatment promotes the dispersion of a refractory solid phase in the melt.
Khmelev V. N., Slivin A. N., Barsukov R. V. et al. Application of high-intensity ultrasound in industry. Biysk: Altai State Technical University Publishing House, 2010.176 p. Margulis M.A., Sound chemical reactions and sonoluminescence. Moscow: Chemistry, 1986.300 p. Khmelev V.N., Khmelev S.S., Golykh R.N., Barsukov R.V. Increasing the efficiency of ultrasonic cavitation treatment of viscous and dispersed liquid media // Polzunovskii Vestnik. 2010. N 3. S. 321 - 325. Baldev Raj, Ranjendran V., Palanichani P. Application of ultrasound. Moscow: Tekhnosfera, 2006.576 p.

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Spiridonov Yu. A., Serbin V. V., Chainikova A. S., and Klimenko N. N. The influence of cavitation on high-temperature silicate melts. Steklo i keramika. 2012:85(8):14-16. (in Russ). UDK 666.1