Determination of optimal modes of operation of centrifugal fodder grain grinder
https://doi.org/10.32634/0869-8155-2023-371-6-111-115
Abstract
Relevance. Grain fodder is an important element in the diets of farm animals and poultry. Its grinding is a mandatory preparation operation for feeding, which is carried out at most enterprises with hammer mills, one of the main disadvantages of which is high energy density. Therefore, the development of a grinder that provides grinding of fodder grain with a lower energy density is relevant. The purpose of the study is to determine the optimal operating modes of the developed centrifugal fodder grain grinder when using sieves with holes with a diameter of 4, 6 and 8 mm.
Results. It has been determined that the diameter of the screen holes and the rotor speed have the greatest influence on the specific energy consumption of the grain grinding process. To determine the minimum values of the optimization criterion, the function of the dependence of the specific energy density of grain grinding on the rotor speed was studied by extremum. This made it possible to determine the optimal operating modes of the grinder for sieves with holes of the studied diameters.
About the Authors
M. S. VolkhonovRussian Federation
Mikhail Stanislavovich Volkhonov, Doctor of Technical Sciences, Professor, Professor of the Department of Technical Systems in the agro-industrial complex
34 Uchebny gorodok, Karavaevo village, Kostroma district, Kostroma region,156530
A. M. Abalikhin
Russian Federation
Anton Mikhailovich Abalikhin, Candidate of Technical Sciences, Associate Professor of the Department of Technical Service and Mechanics
45 Sovetskaya str., Ivanovo, 153012
D. V. Barabanov
Russian Federation
Dmitry Vladimirovich Barabanov, research associate at the research laboratory
45 Sovetskaya str., Ivanovo, 153012
A. V. Krupin
Russian Federation
Aleksander Vladimirovich Krupin, Candidate of Technical Sciences, Associate Professor of the Department of Technical Systems in Agribusiness
45 Sovetskaya str., Ivanovo, 153012,
N. V. Mukhanov
Russian Federation
Nikolay Vyacheslavovich Muhanov, Candidate of Technical Sciences, Associate Professor of the Department of Technical Systems in Agribusiness
45 Sovetskaya str., Ivanovo, 153012
References
1. Sabiev U.K., Pushkarev A.S. Comparative analysis devices for crushing grain materials. Vestnik Omskogo gosudarstvennogo agrarnogo universiteta. 2016; (1): 221–226 (In Russian). https://elibrary.ru/vvqhpt
2. Savinyh P., Kazakov V., Moshonkin A., Ivanovs S. Investigations in feeding device of grain crusher. Engineering for Rural Development. 18th International Scientific Conference. 2019; 123–128. http://doi.org/10.22616/ERDev2019.18. N165
3. Sozontov A.V., Lopatin L.A. Investigation and optimization of the working process of the crusher grain percussion. Bulletin NGIEI. 2018; (6): 27−36 (In Russian). https://elibrary.ru/xszdal
4. Kipriyanov F.A., Savinykh P.A., Kopeikin A.D., Sukhlyaev V.A. The classification of devices for reduction in size of forage grain and the directions of construction improvement. AgroEcoInfo. 2022; (5): 33 (In Russian). https://elibrary.ru/erkdgk
5. Isupov A.Yu., Ivanov I.I., Plotnikova Yu.A., Sukhoparov A.I. Investigation of a grain rotary centrifugal grinder performance. AgroEkoInzheneriya. 2021; (3): 90–99 (In Russian). http://doi.org/10.24412/2713-2641-2021-3108-90-99
6. Sabiyev U.K., Sadov V.V. Feeding grain grinder efficiency indices. Bulletin of Altai State Agricultural University. 2021; (6): 93–99 (In Russian). https://elibrary.ru/bszfpo
7. Marczuk A., Blicharz-Kania A., Savinykh P.A., Isupov A.Y., Palichyn A.V., Ivanov I.I. Studies of a Rotary–Centrifugal Grain Grinder Using a Multifactorial Experimental Design Method. Sustainability. 2019; 11(19): 5362. https://doi.org/10.3390/su11195362
8. Savinyh P.A., Isupov A.Ju., Ivanov I.I. Results of the research centrifugal-rotary grain crusher. Bulletin NGIEI. 2019; (8): 18–33 (In Russian). https://elibrary.ru/qtkupi
9. Marczuk A., Caban J., Aleshkin A.V., Savinykh P.A., Isupov A.Y., Ivanov I.I. Modeling and Simulation of Particle Motion in the Operation Area of a Centrifugal Rotary Chopper Machine. Sustainability. 2019; 11(18): 4873. https://doi.org/10.3390/su11184873
10. Asmankin Ye.M., Petrov A.A., Abdyukaeva A.F., Naumov D.V., Fyodorov A.N. Ways of improvement the machines for grain mass grinding. Izvestia Orenburg State Agrarian University. 2017; (2): 79–81 (In Russian). https://elibrary.ru/ymxgsb
11. Sukhoparov A.I., Ivanov I.I., Plotnikova Yu.A. Modeling the movement of a particle in the workspace of a centrifugal-rotary grinder. Izvestiya Saint-Petersburg State Agrarian University. 2019; (4): 240–249 (In Russian). https://doi.org/10.24411/2078-1318-2019-14240
12. Zolotarev A.M., Trufanov V.V., Druzhinin R.A., Yarovoy M.N. On the rationale of operating parameters of an impact centrifugal crusher. Vestnik of Voronezh State Agrarian University. 2018; (1): 119–127 (In Russian). https://doi.org/10.17238/issn2071-2243.2018.1.119
13. Volkhonov M.S., Abalikhin A.M., Krupin A.V. Analysis of the efficiency of the new fodder grain grinder. Izvestiya Saint-Petersburg State Agrarian University. 2020; (3): 124–131 (In Russian). https://doi.org/10.24411/2078-1318-2020-13124
Review
For citations:
Volkhonov M.S., Abalikhin A.M., Barabanov D.V., Krupin A.V., Mukhanov N.V. Determination of optimal modes of operation of centrifugal fodder grain grinder. Agrarian science. 2023;(6):111-115. (In Russ.) https://doi.org/10.32634/0869-8155-2023-371-6-111-115