Abstract

The article improves the quality of raw cotton by creating a new transfer device structure for the transportation of cotton in long-distance riots, located in the main building of the ginnery. Both foreign and domestic separator cleaners have been studied. Experiments were carried out on prototype transfer device and the results were obtained. The cleaning efficiency was determined by sampling the cotton entering the separator in the moving device and exiting after the inclined vibrating mesh surface installed after the separator.

Highlights

  • In ginneries, a pneumatic conveyor system designed to transport cotton raw materials over long distances to the main building is used to separate the cotton from the air, allowing it to quickly separate the cotton stuck to the surface of the inclined mesh from its main working parts

  • The article improves the quality of raw cotton by creating a new transfer device structure for the transportation of cotton in long-distance riots, located in the main building of the ginnery

  • The cleaning efficiency was determined by sampling the cotton entering the separator in the moving device and exiting after the inclined vibrating mesh surface installed after the separator

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Summary

Introduction

A pneumatic conveyor system designed to transport cotton raw materials over long distances to the main building is used to separate the cotton from the air, allowing it to quickly separate the cotton stuck to the surface of the inclined mesh from its main working parts. In order to improve the quality of products in the ginning industry, it is necessary to improve the design of machines in the technological process of cotton processing. Analysis of scientific research on improving the performance of airborne devices has shown that its installation increases the amount of energy used to transport cotton and leads to a deterioration in the quality of cotton To solve this problem, a mechanical conveyor was tried in some factories. The issues of maintaining the initial quality of cotton products and improving the efficiency of cleaning through the development of a rational design of the moving device remain relevant

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