Justification of Cultivator-Fertiliser Configuration Scheme

A possible way to increase the operating speed and field capacity of a cultivator-fertiliser is to modify its configuration scheme. According to our hypothesis, placing the fertiliser hopper directly on the tractor frame could reduce the traction resistance of the cultivator-fertiliser and consequen...

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Veröffentlicht in:Acta technologica agriculturae 2024-09, Vol.27 (3), p.150-156
Hauptverfasser: Derepaskin, Alexey Ivanovich, Kuvaev, Anton Nikolaevich, Tokarev, Ivan Vladimirovich, Polichshuk, Yurij Vladimirovich, Binyukov, Yurij Viktorovich, Ivanchenko, Pavel Grigoryevich
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Sprache:eng
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Zusammenfassung:A possible way to increase the operating speed and field capacity of a cultivator-fertiliser is to modify its configuration scheme. According to our hypothesis, placing the fertiliser hopper directly on the tractor frame could reduce the traction resistance of the cultivator-fertiliser and consequently increase its operating speed and field capacity. Validating this hypothesis requires a comparative evaluation of the existing configuration schemes for cultivator-fertilisers. However, there are currently no such comprehensive studies available. This research aims to develop a mathematical model for conducting a comparative theoretical evaluation of various configuration schemes for cultivator-fertilisers. The development of this model incorporated principles from classical and agricultural mechanics. We developed a mathematical model and conducted a theoretical evaluation of existing configuration schemes for cultivator-fertilisers, such as mounting the hopper on a separate trailed chassis, mounting the hopper and tillage working bodies on one frame, and mounting the hopper directly on the tractor frame. The working width of the cultivator-fertiliser was constant and amounted to 6.2 m. The effective engine power of the tractor was taken to be 220 × 10 W. It was found that placing the fertiliser hopper on the tractor frame maximises the field capacity to 3.9 ha∙h . The increase in field capacity was 8.9–16.0%. In this case, the fertiliser hopper volume should be 1.89 m and travel speed 8.45 km∙h
ISSN:1338-5267
1335-2555
1338-5267
DOI:10.2478/ata-2024-0020