OPTIMIZATION OF VIBRATING SCREEN SURFACE DESIGN FOR THE SEPARATION OF FINE AND LARGER IMPURITIES IN COTTON CLEANING AGGREGATES
Abstract
This study focuses on optimizing the design and operating parameters of a vibrating screen surface used in cotton cleaning units. Experimental and theoretical analyses were conducted to assess the effects of peg drum speed, vibration frequency, and amplitude on cleaning efficiency and mechanical damage to cotton seeds. A regression-based model was developed to identify optimal parameter ranges that ensure high impurity removal efficiency while minimizing seed damage. The results provide practical guidelines for improving the performance of cotton cleaning machinery.
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