Investigation of the influences of pulsed electrical discharges on the grinding of quartz raw materials

Authors

  • A.K. Khassenov
  • D.Zh. Karabekova
  • B.R. Nussupbekov
  • G.A. Bulkairova
  • A.S. Kudusov
  • G.K. Alpysova
  • M.М. Bolatbekova

DOI:

https://doi.org/10.31489/2023ph2/93-99

Keywords:

electrohydraulic effect, discharge voltage, quartz powder, electric pulse, degree of grinding, number of pulse discharges

Abstract

The article considers a method for obtaining raw materials — quartz powder, used to increase the resistance of building materials to adverse natural facts (wind, rain, etc.). When obtaining raw materials necessary for construction from quartz mineral, it is pre-crushed to the desired size. New methods and technologies are proposed to improve the processes of grinding solid materials. One of these methods is the electric pulse method. This method is designed for grinding solid materials with the formation of pulsed electrical discharges in a liquid volume. When processing natural ores by the electric pulse method, the resulting contaminated with metal in the working chamber. The paper analyzes the granulometric composition of quartz powder and determines the degree of grinding of raw materials depending on the parameters of electrical pulse discharges. The investigations on the processing of raw materials were carried out at various parameters of the number of pulse discharges and discharge voltage. In experiments, quartz fractions with a diameter of 10 mm were crushed by the electric pulse method and a product with a diameter of 0.4-1 mm was obtained. Since quartz is crushed in a liquid medium, the amount of water consumed was studied to obtain the necessary granulometric composition of raw materials. The dependences of the degree of quartz grinding on the number of pulse discharges and the discharge voltage are obtained. The results of grinding the material by pulsed electrical discharges allow us to evaluate the main parameters of the process implemented in the electro-pulse method of destruction of solid material.

Additional Files

Published

2023-06-30

Issue

Section

TECHNICAL PHYSICS

Received

2023-11-24