Optimization and analysis of the main technical parameters of circular vibrating screen based on activated carbon particles
In order to verify the influence of various motion parameters of the vibrating screen on the screening effect of activated carbon particles in the circular motion vibrating screen,the average screening efficiency was used to represent the activated carbon screening effect.Box-Behnken response surface analysis was used to study the effects of vibration amplitude,motion inclination and vibration frequency on the screening effect of circular motion vibrating screen,and the influence of the three factors on the screening effect of activated carbon was discussed.The verification results show that the vibration frequency has the greatest influence on the screening effect,and the weakest influence is the motion inclination,which has a significant influence between the vibration amplitude and the motion inclination,and the screening effect reaches the maximum value of 40.86%when the vibration amplitude is 4.21 mm,the motion inclination angle is 16.07° and the vibration frequency is 13.83 Hz.The improvement of the screening effect of activated carbon by the circular vibrating screen optimized by this method can provide a certain reference value.
activated carbon materialscircular motion vibrating screenresponse surface analysisdiscrete element method