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.
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