Electrotechnological Sorting Devices

Main Article Content

Makhmudov Nuriddin Makhamadali oʻgʻli
Rivojiddinov Joʻrabek Ilhomjon oʻgʻli
Toʻkhtabaev Jamshid Toʻlqin oʻgʻl

Abstract

The article provides information on the result of the development of an electro technological sorting device for sorting mung beans belonging to the class of leguminous crops, its principle scheme and structure, and the principle of operation. The working body of the electro technological sorting device is made of a polyethylene pipe, and two-lane screw ditches with a slope angle "φ" and a width equal to "t" are directed to its surface. A potential electrode with a large diameter d1 and a grounded electrode with a small diameter d2 are wrapped around the grooves and connected to a high voltage source through current transmitters.


Good results have been achieved in preliminary experimental studies on the sorting of legume seeds with the proposed device.

Article Details

Section

Articles

How to Cite

oʻgʻli, M. N. M., oʻgʻli, R. J. I., & oʻgʻl, T. J. T. (2024). Electrotechnological Sorting Devices. Excellencia: International Multi-Disciplinary Journal of Education (2994-9521), 2(4), 529-532. https://doi.org/10.5281/

References

Umarov, Q. B., & Makhmudov, N. (2021). BASIS OF THE STRENGTH OF THE MUG SEED ON THE EARTH OF THE WORKING BODY. МЕХАНИКА ВА ТЕХНОЛОГИЯ ИЛМИЙ ЖУРНАЛИ, (4), 52.

Rosaboev, A., & Maxmudov, N. (2020). Ways to improve the quality of legume seeds. Agro Ilm. Tashkent,(2), 32-33.

Mukhammadiev, A., & Makhmudov, N. M. (2022). EFFICIENCY OF ELECTROTECHNOLOGICAL SELECTION OF MUNG BEAN SEED. Web of Scientist: International Scientific Research Journal, 3(8), 644-648.

Rosaboev, A. T., & Maxmudov, N. M. (2019). Modernized device for seed sorting of legumes. Innovatsionnoe razvitie.

Даминов, А. А., & Махмудов, Н. М. (2015). Теплопроводность композитного синтетического алмаза. Science Time, (6 (18)), 144-146.

Makhmudov, N., & Diniqulov, D. (2023). TECHNOLOGY OF SELECTING SMALL SEEDS IN AGRICULTURE. Инновационные исследования в современном мире: теория и практика, 2(19), 24-25.

Mukhammadiev, A., & Makhamadali o’g’li, M. N. (2023). The Results of the Theoretical Study of the Movement of Mung Beed Seeds of Different Masses on the Surface of the Working Body by Basing the Electric Field Strength. Web of Synergy: International Interdisciplinary Research Journal, 2(3), 53-58.

Rosaboev, A., & Mahmudov, N. (2019). DUKKAKLI EKINLAR URUG ‘INI SARALASH UCHUN MODERNIZATSIYALASHTIRILGAN QURILMA. SCIENCE AND INNOVATIVE DEVELOPMENT, 2(5), 77-82.

Росабоев, А. Т., & Махмудов, Н. М. (2019). РЕЗУЛЬТАТЫ РАЗРАБОТКИ МОДЕРНИЗИРОВАННОГО ЭЛЕКТРИЧЕСКОГО СОРТИРУЮЩЕГО УСТРОЙСТВА. In ВКЛАД УНИВЕРСИТЕТСКОЙ АГРАРНОЙ НАУКИ В ИННОВАЦИОННОЕ РАЗВИТИЕ АГРОПРОМЫШЛЕННОГО КОМПЛЕКСА (pp. 352-356).

Даминов, А. А., Махмудов, Н. М., & Мамадалиев, Б. Б. (2019). Автоматическое регулирование источников реактивной мощности. Science Time, (4 (64)), 68-71.

Даминов, А. А., & Махмудов, Н. М. (2016). Функциональные возможности и преимущества микропроцессорной системы воздушных линий. Science Time, (3 (27)), 159-161.

Makhmudov, N., & Khamdamov, B. (2024). SEED SELECTION TECHNOLOGY OF OIL CROP IN AGRICULTURE. Академические исследования в современной науке, 3(9), 131-134.

Similar Articles

You may also start an advanced similarity search for this article.