logo
calendar21 Aprel 2022
view64
Main language:Uzbek

PROVIDING THE RATIONALE FOR PARAMETERS OF THE WORKING PARTS OF THE CARROT DIGGER ELEVATOR, IN THE CONTEXT OF UZBEKISTAN

Field of Science:
pdf

6260f1368fbfb.pdf

PDF

ARTICLE ANNOTATION

quote
Studies show that due to variability of physical and mechanical properties of the soil, hard lumps are formed when carrots are harvested by diggers and remain inseparable from the tubers complicating the sifting process, which leads to overloading of machines. A lattice loosening working part that improves the separating ability of the digger elevator has been developed. The research objective is to seek rationale for the parameters of the lattice ripper of the carrot digger, which ensures a uniform distribution of the soil pile along the width of the elevator and improves complete separation of impurities with minimal damage to root crops. (Materials and methods) The study looked into the geometrical, kinematic parameters of the lattice ripper of the carrot digger. After investigating the physical and mechanical properties of the carrot bed, the research could provide theoretical rationale for the design parameters of the mechanism and its kinematic indicators. (The research results and analysis) It has been found that when the lattice cultivator interacts with the soil layers on the elevator, soil clods get destroyed and the soil gets loosened at the following parameters: the radius of the cultivator - at least 9.5 centimeters, the height of the shaft - 20 centimeters, the loaded part of the foot of the cultivator - 6 centimeters, the width of the grid ripper - 47 centimeters. (Conclusion) It has been revealed that lattice rippers help separate carrot root crops quickly from the soil layer without any damage or loss. It appears that the rotation speed of the grid ripper should not exceed 2.5 meters/second, the kinematic mode of the intensifi cation agent of separation - 2.5, and the radius of the ripper should be at least 9.5 centimeters.

AUTHORS

R.Chorshanbiyev

Qarshi muhandislik-iqtisodiyot instituti

Tags

# параметр# parameter# илдизмева# сабзи# морковь# carrots# сабзи ковлагич# тупроқ палахсасини элаклаш# панжарали юмшаткич# элеватор# копатель моркови# сепарация почвенных комков# решетчатый рыхлитель# корнеплоды# carrot digger# separation of the soil lumps# lattice cultivator# elevator# root crops

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

Norchayev D., Norchayev R. Korneklubnekopatel. Yevroaziatskiy soyuz uchenix. [Rootdigger. Eurasian Union of Scientists]. 2019, no 4 (61), pp. 55-57.

Zhongcai W., Hongwen L., Yijin M., Chuanzhu S., Xueqiang L., Wenzheng L., Guoliang S. Experiment and analysis of potatosoil separation based on impact recording technology. International Journal of Agriculture and Biology. 2019, nо 5 (12), pp. 71-80.

Lu G. Y., Shang S.Q., Wang D.W., Li J.D., Han W.P., He X.N. Study on lacy components of carrot harvester. Journal of Agricultural Mechanization Research, 2016, no 2, pp. 119-122.

Pramod R.А., Moses S.C., Aalam R.N. Performance Evaluation of Adjustable Elevator for Tractor Drawn Potato Digger. International Journal of Current Microbiology and Applied Sciences. 2018, no 7 (11), pp. 1502-1513.

Petersen T., Hampf H. Einsatz einer pneumatischen Trennan-lage in der Annahmestrecke des Kartoffellagerhaus Broderstorf. Agrartechnik. 1984, no. 7 (34), pp. 314-316.

Listopad G.Y., Demidov G.K., Zonov B.D. i dr. Selsko-xozyaystvenniye i meliorativniye mashini (Agricultural and reclamation machines). Moscow, Agropromizdat, 1986, 688 p.

Alakin V.M., Nikitin G.S. Rezultati issledovaniy texnologicheskogo protsessa kartofelekopatelya. Selskoxozyaystvenniye mashini i texnologii. [Research results of the potato digger technological process. Agricultural machines and technologies]. 2018, no 5, pp. 14-19.

Nikitin G.S., Alakin V.M., Plaxov S.A. Opredeleniye ratsionalnoy skorosti vrasheniya rabochix organov intensivnoy zoni separatsii rotatsionnogo kartofelekopatelya. Agrarniy nauchniy jurnal. [Determination of the rational speed of rotation of the working bodies of the intensive separation zone of the rotary potato digger. Agrarian scientific journal]. 2019, no. 6, pp. 96-100.

Mukesh J., Vijaya R., Anil K. Design and Development of Tractor Operated Carrot Digger. Agricultural mechanization in Asia, Africa and Latin America. 2018, no. 3 (49), pp. 79-85.

Ahmed M.O., Abd El-Wahab M.K., Tawfi k M.A., Wasfy K.I. Evaluating of a prototype machine for carrot crop harvesting suitable for small holdings. Zagazig Journal of Agricultural Research. 2018, no 1 (45), pp. 213-226.

Sibirev A.V., Aksenov A.G., Mosyakov M.A. Experimental Laboratory Research of Separation Intensity of Onion Set Heaps on Rod Elevator. Journal of Engineering and Applied Sciences, 2018, no 23, pp. 10086-10091.

Sibiryov A.V., Aksenov A.G., Mosyakov M.A. Rezultati eksperimentalnix issledovaniy separatsii voroxa luka-sevka na prutkovom elevatore s asimmetrichno ustanovlennimi vstryaxivatelyami. Engineering Technologies and Systems. [Results of experimental studies of separation of a heap of onion sets on a bar elevator with asymmetrically installed shakers. Engineering Technologies and Systems]. 2019, no 1, pp. 91-108.

Dorokhov A.S., Sibirev A.V., Aksenov A.G. Results of laboratory investigations of soil screening ability of a chain digger with asymmetric vibrator arrangement. INMATEH-Agricultural Engineering, 2019, no 1 (57), pp. 9-18.

Dorokhov A.S., Aksenov A.G., Sibirev A.V. Methodolog-ical justification of dynamic systems model construction by artificial neural networks. INMATEH – Agricultural Engineering. 2019, no 2 (58), pp. 63-75.

Sibirev A.V., Aksenov A.G., Dorokhov A.S., Ponomarev A.G. Comparative study of force action of harvester work tools on potato tubers. CAAS agricultural engineering journal, 2019, no 3 (55), pp. 85-90.

Doroxov A.S., Sibiryov A.V., Aksenov A.G. Rezultati polevix issledovaniy separatsii voroxa luka-sevka na prutkovom elevatore s asimmetrichno ustanovlennimi vstryaxivatelyami. Engineering Technologies and Systems. [Results of field studies of separation of a heap of onion sets on a bar elevator with asymmetrically installed shakers. Engineering Technologies and Systems]. 2020, no. 1 (30), pp. 133-149.

Dorokhov A.S., Sibirev A.V., Aksenov A.G., Sazonov N.V. Justification of design and technological parameters of the onion harvester bedshaping roller spiral drum. INMATEHAgricultural Engineering. 2020, no 1, pp. 107-114.

Dorokhov, A.S. Laboratory-field research results for onion cleaning. A.S. Dorokhov, A.V. Sibirev, A.G. Aksenov, M.A. Mosyakov. INMATEH: Agricultural Engineering. 2020, no. 2 (57), pp. 41-48.

Asghar M.T., Ghafoor A., Munir A., Iqbal M., Ahmad M. Design modification and field testing of groundnut digger. Asian Journal of Science and Technology. 2014, vol. 5, pp. 389-394.

Natenadze N. The design and theoretical justification of a vibratory digger shovel. Scientific technical union of mechanical engineering Bulgarian association of mechanization in agriculture. 2016, vol. 5, pp. 9-12.

Norchayev R, Norchayev D, Chorshanbiyev R. Obosnovaniye parametrov reshetchatogo rixlitelya kopatelya morkovi v usloviyax Respubliki Uzbekistan. Selskoxozyaystvenniye mashini i texnologii. [Justification of the parameters of the lattice ripper of the carrot digger in the conditions of the Republic of Uzbekistan. Agricultural machines and technologies]. vol. 14, no. 3, 2020, pp. 15-19.