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Determining the correlation between the throughput capacity of the grinder chamber of the smart corn thresher device

G G FozilovNational Research University “Tashkent Institute of Irrigation and Agricultural Mechanization Engineers”, K. Niyazi str. 39, Tashkent, UzbekistanSh KhudayberdievKarshi Institute of Irrigation and Agricultural Technologies of the National Research University “Tashkent Institute of Irrigation and Agricultural Mechanization Engineers”, Kashkadarya region, Karshi city, UzbekistanSh ShodmonovNational Research University “Tashkent Institute of Irrigation and Agricultural Mechanization Engineers”, K. Niyazi str. 39, Tashkent, UzbekistanG RavshanovaNational Research University “Tashkent Institute of Irrigation and Agricultural Mechanization Engineers”, K. Niyazi str. 39, Tashkent, UzbekistanU KhusanovTermez State University of Engineering and Agrotechnologies, I.Karimov str., 190111,Termez, Uzbekistan
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Abstract This article describes the technological scheme of a new innovative device consisting of a hopper, smart cameras, smart mechanisms that sort the cobs according to length, conveyors, rubber grips, conveyors moving against each other that squeeze the cobs, next to the conveyor there is a disc that cuts the tip and bottom (unnecessary) part of the ear corn. On the surface of the threshing drum there is a threshing rasp bar, and under the drum there is a concave, as well as an auger and an auger base. The device consists of a loader with an elevator for loading seeds, an electric motor, an output shaft. Also, a processor is installed for programming the device’s smart cameras and mechanisms. There is a grinder to grind the unwanted tip and bottom of the cob, unfit cobs smaller than 15 cm and the cores left over from crushed cobs as feed. In these studies, the number of holes N h in the grinding part of the device, their diameter, the permissible size of the gap between the holes, the diameter of the grinding chamber D h , and the height of the grinding chamber H h were determined.

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