Innovative solutions for clamping section and effect of clamping capacity on sowing of agricultural crops
Keywords:
seeding depth, clamping force, section, automaticity, mappingAbstract
The relevance of the study is related to the determination of the effective mechanism of clamping the sections of the row drill. The purpose of the study was to analyze the available solutions for clamping the section and the impact of clamping capacity on crop sowing and its further development. First of all, the importance of uniform sowing was described for different types of crops, namely, sunflower, corn and soybeans. Further, the work describes the components of the section of the row drill, where its main elements are indicated. Further, the work reveals the topic of different types of pressure mechanisms of the seeder, namely: mechanical, pneumatic, hydraulic. Researching the last type revealed a number of advantages over its predecessors. The main advantages of hydraulic clamping are a quick response to changes in soil type using strain gauges and, with their help, soil density mapping.
References
1. Osadchii I.O. General provisions for improving the machine use of chemical plant protection technology. Kramarov readings: 10th International Scientific and Technical Conference, Moscow. Kyiv, February 23-24, 2023: abstracts of the conference. Kyiv. 2023. S. 225-228.
2. Kozachenko O.V., Syedykh K.V., Shkrehal O.M. (2021). Mathematical modeling of stability of mechanical system of discator. Machinery and Energetics. Vol. 12(4). P. 61–66.
3. Vlăduţ D.I., Biriş S., Vlăduţ V., Cujbescu D., Ungureanu N., Găgeanu I. (2018). Verification of stress by FEM analysis•M-1 echanical testing of agricultural mobile aggregates couplig device. Inmateh – Agricultural Engineering. Vol. 54, no. 1/2018, P. 37–46.
4. Gheorghe G., Lates D., Oprea C., Baltatu C. (2023). Structural and modal analysis in solidworks of agricultural plow to choose vibration system at moldboard. Engineering for Rural Development. Vol. 22. P. 872–878. DOI: 10.22616/ERDev.2023.22.TF168.
5. Rogovskii I., Titova L., Trokhaniak V., Trokhaniak O., Stepanenko S. (2019). Experimental study on the process of grain cleaning in a pneumatic microbiocature separator with apparatus camera. Bulletin of the Transilvania University of Brasov, Series II: Forestry, Wood Industry, Agricultural Food Engineering. Vol. 12 (61). No 1. Р. 117−128. https://doi.org/10.31926/but.fwiafe.2019.12.61.1.10.
6. Rogovskii I.L., Titova L.L., Trokhaniak V.I., Rosamaha Yu.O., Blesnyuk O.V., Ohiienko A.V. (2019). Engineering management of two-phase coulter systems of seeding machines for implementing precision farming technologies. INMATEH. Agricultural Engineering. Vol. 58. No 2. P. 137−146. https://doi.org/10.35633/INMATEH-58-15.
7. Rogovskii I.L. (2020). Algorithmicly determine the frequency of recovery of agricultural machinery according to degree of resource's costs. Machinery & Energetics. Journal of Rural Production Research. Kyiv. Ukraine. Vol. 11 (1). P. 155−162.
8. Rogovskii I., Titova L., Trokhaniak V., Trokhaniak O., Stepanenko S. (2020). Experimental study of the process of grain cleaning in a vibro-pneumatic resistant separator with passive weeders. Bulletin of the Transilvania University of Brasov, Series II: Forestry, Wood Industry, Agricultural Food Engineering. Vol. 13 (62). No 1. Р. 117−128.
9. Rogovskii I.L., Titova L.L., Trokhaniak V.I., Haponenko O.I., Ohiienko M.M., Kulik V.P. (2020). Engineering management of tillage equipment with concave disk spring shanks. INMATEH. Agricultural Engineering. Bucharest. Vol. 60. No 1. P. 45−52. https://doi.org/10.35633/INMATEH-60-05.
10. Rogovskii I.L. (2019). Consistency ensure the recovery of agricultural machinery according to degree of resource's costs. Machinery & Energetics. Kyiv. Ukraine. Vol. 10(4). P. 145−150. https://doi.org/10.31548/machenergy.2019.04.145-150.
11. Yablonskyi P., Rogovskii I., Sobczuk H., Virchenko G., Volokha M., Vorobiov O. (2024). Computational approach to geometric modeling of plow bodies. Journal of Engineering Sciences (Ukraine). Vol. 11(1). P. E9–E18. https://doi.org/10.21272/jes.2024.11(1).e2.
12. Golub G., Dvornyk A. (2020). Research of indicators of strip tillage. TEKA. Quarterly journal of agri-food industry. Lublin. 2020. Vol. 20. No 2. Р. 83–90.
13. Nazarenko I., Mishchuk Y., Mishchuk D., Ruchynskyi M., Rogovskii I., Mikhailova L., Titova L., Berezovyi M., Shatrov R. (2021). Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher. Eastern-European Journal of Enterprise Technologies. Vol. 4(7(112). P. 41–49.
14. Zagurskiy O., Pokusa Z., Pokusa F., Titova L., Rogovskii I. (2020). Study of efficiency of transport processes of supply chains management under uncertainty. Monograph. Opole: The Academy of Management and Administration in Opole. ISBN 978-83-66567-13-9. 162 p.
15. Sheichenko, V., Rogovskii, I., Skoriak, Y., Petrachenko, D., Shevchuk, M., Sheichenko, D., Titova, L., Sivak, I. (2024). Defining patterns in the intensification of hemp stalk retting processes. Eastern-European Journal of Enterprise Technologies, 6 (1 (132)), 50–63. https://doi.org/10.15587/1729-4061.2024.3150.
16. Rogovskii I., Sivak I., Shatrov R., Nadtochiy O. (2024). Agroengineering studies of tillage and harvesting parameters in soybean cultivation. Engineering of Rural Development. 2024. Vol. 23. P. 965-970. DOI: 10.22616/ERDev.2024.23.TF195.
17. Rogovskii I., Titova L., Ohiienko M., Sivak I., Mstowska I., Nadtochiy O., Matuhno N. (2024). Methods of production management of agrotronics of grain production by agricultural enterprises. Monograph. Opole: The Academy of Management and Administration in Opole, ISBN 978-83-66567-66-5; pp. 305, illus., tabs., bibls.