NEW TECHNOLOGY FOR FIBER CLEANING
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Abstract
The article is devoted to the study of the modernized fiber cleaners in the technology of primary cotton processing. It contains a description of the design scheme, principle of operation, research methodology. Studies of the upgraded fiberglass were carried out as part of the production line of fiber cleaning. Research has shown that the cleansing effect of the production line with the inclusion of an upgraded fiber cleaner amounts to 51.8%.
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1. Agzamov M. et al. Search for ways to increase yield and improve product quality in the process of saw ginning //IOP Conference Series: Earth and Environmental Science. – IOP Publishing, 2021. – Т. 939. – №. 1. – С. 012073.
2. Agzamov M. M., Olimov O. T., Urakov N. A. Research results of innovative cotton fiber cleaning technology //Textile Journal of Uzbekistan. – 2019. – Т. 7. – №. 1. – С. 12-16.
3. Olimov O. T., Agzamov M. M. Инновационные технологии для выработки высококачественного хлопкового волокна // Young scientist. – 2014. – №. 19. – С. 231-234.
4. Agzamov M. et al. Search for ways to increase yield and improve product quality in the process of saw ginning //IOP Conference Series: Earth and Environmental Science. – IOP Publishing, 2021. – Т. 939. – №. 1. – С. 012073.
5. Olimov O. T., Makhammadiev Z. O. Экспериментальные исследования по определению оптимального угла наклона передней грани зуба пилы пильного цилиндра прямоточного волокноочистителя // Modern materials, equipment and technology. – 2017. – С. 271-274.
6. Olimov O. T., Makhammadiev Z. O. Инновационный комплекс для многоступенчатой очистки хлопкового волокна // Modern materials, equipment and technology. – 2014. – С. 263-264.