The concept of using energy-packed tractors as modular universal energy-technological units
- Authors: Sidorova A.V.1, Lavrov A.V.2, Sidorov M.V.3
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Affiliations:
- Kursk State Agrarian University named after I. I. Ivanov
- Federal Scientific Agroengineering Center VIM
- Bauman Moscow State Technical University (Kaluga Branch)
- Issue: Vol 90, No 5 (2023)
- Pages: 413-422
- Section: New machines and equipment
- URL: https://journal-vniispk.ru/0321-4443/article/view/249964
- DOI: https://doi.org/10.17816/0321-4443-568264
- ID: 249964
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Abstract
BACKGROUND: The increase in the energy saturation of the tractor, as the main regularity of the development of its technical level, leads to the outgrowth of the tractor-tractor into a tractor with a reserve of power, allowing the tractor to be used to drive the working bodies of agricultural machines with their simultaneous traction.
AIMS: The purpose of the work is to substantiate the use of modular universal power engineering tools as one of the promising ways to increase the efficiency of using agricultural machinery based on energy-saturated tractors.
METHODS: The method of determining the power and weight of the technological module required to transfer the tractor from the previous to the next higher traction class.
RESULTS: To achieve the maximum traction force on the hook during the transition to the next higher traction class, it is necessary that the energy saturation of the tractor with the technological module corresponds to the energy saturation (1.59...1.65 kW/kN), and the tractor itself, to which the technological module is connected, has an energy saturation of 2.0...2.41 kW/kN, and when switching to two traction classes – 3.3...3.5 kW/kN.
CONCLUSIONS: The use of the technological module is one of the promising ways to solve the problem of ballasting and increase the efficiency of using agricultural machinery based on an energy-saturated tractor of the second generation.
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##article.viewOnOriginalSite##About the authors
Anastasia V. Sidorova
Kursk State Agrarian University named after I. I. Ivanov
Email: nancy85@yandex.ru
ORCID iD: 0009-0007-6339-3162
SPIN-code: 1195-1151
Postgraduate of the Processes and Machines in Agroengineering Department
Russian Federation, KurskAleksandr V. Lavrov
Federal Scientific Agroengineering Center VIM
Email: vimlavrov@mail.ru
ORCID iD: 0000-0002-9070-206X
SPIN-code: 3198-2929
Cand. Sci. (Tech.), Head of the Mobile Energy System Laboratory
Russian Federation, 5 1st Institutskiy drive, 109428 MoscowMaxim V. Sidorov
Bauman Moscow State Technical University (Kaluga Branch)
Author for correspondence.
Email: sidorov.maxim.79@mail.ru
ORCID iD: 0000-0002-6686-2282
SPIN-code: 6131-3669
Cand. Sci. (Tech.), Associate Professor of the Wheeled Vehicles and Applied Mechanics Department
Russian Federation, KalugaReferences
- Kut‘kov GM. Energonasyshchennost‘ i klassifikatsiya traktorov. Tractors and Agricultural Machinery. 2009;76(5):11-14. (in Russ). doi: 10.17816/0321-4443-68584
- Gojaev ZA, Shevtsov VG, Lobachevsky YaP, et al. The concept of creating a family of agricultural mobile universal power equipment of a new generation with complexes of adaptive machines and aggregates. Moscow: FGBNU FNATS VIM; 2020. (in Russ).
- Kut’kov GM, Gribov IV, Perevozchikova NV. Ballasting of tractors. Tractors and Agricultural Machinery. 2017;84(9):52–60. (in Russ). doi: 10.17816/0321-4443-66343
- Kabakov NS, Ponomarev AG. Tractor LTZ-155 for cultivating row crops. Tractors and Agricultural Machinery. 2000;1:7–9. (in Russ).
- Gumilevsky YuN. Tractor “MB trak 1300”. Tractors and Agricultural Machinery. 1979;8:39–40. (in Russ).
- Goltyapin VYa. New JCB integral tractors. Tractors and Agricultural Machinery. 2005;4:40–44. (in Russ).
- Polivaev OI, Voishchev VS. Reducing soil compaction by mobile energy vehicles. Vestnik Voronezhskogo gosudarstvennogo agrarnogo universiteta. 2013;1(36):57–59. (in Russ).
- Kut’kov GM, Ksenevich IP. Block-modular MTAs. Tractors and Agricultural Machinery. 1990;1:8–10. (in Russ).
- Nadykto VT. A promising direction for creating combined and wide-width MTAs. Tractors and Agricultural Machinery. 2008;3:26–30. (in Russ).
- Kabakov NS, Chursin LI, Rozhkov ES. Traction performance of the MTZ-52 tractor with an attached drive axle. Tractors and Agricultural Machinery. 1970;12:13–14. (in Russ).
- Kut’kov GM. Research of a modular energy technology facility. Tractors and Agricultural Machinery. 1989;12:3–9. (in Russ).
- Popov AG, et al. Some results of experimental studies of MES-150. Tractors and Agricultural Machinery: collection of scientific papers. Moscow: MGAU im VP Goryachkina. 1993:107–119. (in Russ).
- Sidorov VN, Voinash SA, Ivanov AA, et al. Modular-technological scheme for tractors of traction classes 1.4. IOP Conf. Ser.: Earth Environ. Sci. 2021;666:042048. doi: 10.1088/1755-1315/666/4/042048
- Lavrov AV, Sidorov MV, Voronin VA. Technological module for peasant farms. Selskiy mekhanizator. 2021;3:5. (in Russ).
- Sidorov MV, Lavrov AV, Voronin VA, et al. Engine power of a tractor equipped with a technological module. Selskokhozyaystvennye mashiny i tekhnologii. 2021;15(2):33–40. (in Russ).
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