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Traction resistance of a chisel plow section with working bodies of various geometric shapes

https://doi.org/10.32786/2071-9485-2024-02-42

Abstract

The experimental results showed that the modified working bodies with a modified surface shape had a lower traction resistance compared to the serial ones.

Introduction. The improvement of working bodies for agricultural machinery plays an important role in improving production efficiency. This makes it possible to improve the quality of tillage, reduce fuel consumption and increase the productivity of agricultural machinery. The development of modernized working bodies for the chisel plow is aimed at optimizing the process of chiseling the soil in order to reduce energy consumption. Research shows that the use of such working bodies helps to improve the tillage process, reduce energy consumption and increase the efficiency of the plow.

Object. The object of the study is the working body of a chisel plow, made in the form of a chisel.

Materials and methods. Experimental research methods were used. Experimental studies were carried out on real objects of tillage implements equipped with working bodies with different geometric characteristics of the working surface, using standard techniques.

Results and conclusions. The experimental results showed that the modified working bodies with a modified surface shape had a lower traction resistance compared to the serial ones. This suggests that optimizing the shape of the working bodies allows you to reduce energy consumption for soil work. Further research in this direction may lead to the creation of more efficient agricultural tools and an improved tillage process.

About the Authors

S. D. Fomin
Volgograd State Agrarian University
Russian Federation

Fomin Sergey Denisovich, Doctor of Engineering Sciences, Professor of the Department of Mechanics, Head of the Center for Scientometric Analysis and International Indexing Systems,

400002, Volgograd, Universitetskiy Ave., 26



D. S. Gapich
Volgograd State Agrarian University
Russian Federation

Dmitry Sergeevich Gapich, Doctor of Engineering Sciences, Professor, Head of the Department of the Department of Power Supply and Energy Systems,

400002, Volgograd, Universitetskiy Ave., 26



S. I. Subbotin
Volgograd State Agrarian University
Russian Federation

Subbotin Stanislav Igorevich, postgraduate student of the Department of Power Supply and Energy Systems,

400002, Volgograd, Universitetskiy Ave., 26



Yu. A. Shvabauer
Volgograd State Agrarian University
Russian Federation

Shvabauer Yuri Alexandrovich, Postgraduate student of the Department of Power Supply and Energy Systems,

400002, Volgograd, Universitetskiy Ave., 26



References

1. Borisenko I. B., Dotsenko A. E. Technical and Technological Features of the Combined Working Body. Niva of the Volga region. 2015. № 3 (36). Pp. 89-96.

2. Izmailov A., Liskin I., Lobachevskii Ya., Sidorov S., Khoroshenkov V., Mironova A., Luzhnova E. Simulation of soil-cutting blade wear in an artificial abrasive environment based on the similarity theory. Russian Agricultural Sciences. 2017. V. 43. N 1. Pp. 71-74.

3. Lobachevsky Y. P., Starovoitov S. I. Physical Aspects of Loamy Soil. Bryansk: Bryansk State Agrarian University, 2015. 92 p.

4. Lobachevsky Y. P., Starovoitov S. I., Komogortsev V. F. Substantiation of Parameters of Soil-Cutting Working Bodies for Operating Conditions on Loamy Soils. Moscow: Federal Scientific Agroengineering Center VIM, 2018. 304 p.

5. Liskin I. V., Lobachevsky Y. P., Mironov D. A., et al. Results of Laboratory Studies of Soil-Cutting Working Bodies. Agricultural Machinery and Technologies. 2018. V. 12. № 4. Pp. 41-47.

6. Borisenko I. B., Ivantsova E. A., Pleskachev Yu. New technologies of soil tillage. Proceedings of the Nizhnevolzhsky Agro-University Complex: Science and higher professional education. 2012. № 1 (25). Pp. 14-16.

7. Lobachevsky Y. P., Komogortsev V. F., Starovoitov S. I., Khramovskikh K. A. Analysis of Traction Resistance of Cylindroidal Plough Body Elements. Agricultural Machinery and Technologies. 2016. № 2. Pp. 11-15.

8. Sidorov S. A., Lobachevsky Y. P., Mironov D. A., Zolotarev A. S. Influence of Geometric and Installation Parameters of Plough Working Bodies on Agrotechnical and Power Characteristics. Agricultural Machinery and Technologies. 2020. V. 14. № 2. Pp. 10-16.

9. Vaskov A. A., Dorokhov A. S., Trushina L. N. Graphic construction of working surfaces of plough bodies. Bulletin of the Federal State Educational Institution of Higher Professional Education "Moscow State Agroengineering University named after V. P. Goryachkin". 2012. № 2 (53). Pp. 51-53.

10. Berdyshev V. E., Tseplyaev A. N., Shaprov M. N., Kharlashin A. V., Sedov A. V., Tseplyaev V. A., Borisenko I. B. Theory and calculation of technological parameters of agricultural machines. Volgograd, 2018.

11. Vetokhin V. I. On the Dynamics of the Shape of the Surface of the Working Organs of Soil Cultivators. Tractors and agricultural machinery. 2010. № 6. Pp. 30-35.

12. Lobachevsky Y. P., Starovoitov S. I. Optimal Profile of the Front Surface of the Chisel Working Body. Agricultural Machinery and Technologies. 2018. V. 12. № 2. Pp. 26-30.

13. Lobachevsky Y. P., Starovoitov S. I. Theoretical and Technological Aspects of the Work of the Loosening Working Organ. Agricultural Machinery and Technologies. 2016. № 5. Pp. 17-23.

14. Borisenko I. B., Sokolova M. V. Technological Scheme of the Working Body for Strip Deep Soil Cultivation. Niva of the Volga region. 2014. № 3 (32). Pp. 44-48.

15. Mazitov N. K., Lobachevsky Y. P., Dmitriev S. Yu., et al. Modernized Technology and Technique for Soil Treatment and Sowing in Extreme Conditions. Proceedings of the Russian Academy of Agricultural Sciences. 2014. № 6. Pp. 63-67.

16. Lobachevsky Y. P., Liskin I. V., Sidorov S. A., et al. Development and Technology of Production of Soil Cultivating Working Bodies. Agricultural Machinery and Technologies. 2016. № 4. Pp. 3-8.

17. Lobachevsky Y. P., Lachuga Y. F., Izmailov A. Yu., Shogenov Y. Kh. Scientific and Technical Achievements of Agroengineering Scientific Organizations in the Context of Digital Transformation of Agriculture. Machinery and equipment for the village. 2023. № 3 (309). Pp. 2-12.

18. Babitsky L. F., Sobolevsky I. V., Kuklin V. A. Theoretical prerequisites for bionic justification of the parameters of the working bodies of a stubble cultivator. Agrarian Science of the Euro-North-East. 2019. V. 20. № 2. Pp. 183-191.

19. Mazitov N. K., Lobachevsky Y. P., Rakhimov R. S., et al. Russian Technology of Soil Cultivation and Sowing Based on Own Competitive Innovative Machines. Achievements of science and technology of the agro-industrial complex. 2014. № 7. Pp. 68-70.

20. Shvabauer Y. A., Subbotin S. I., Gapich D. S., Fomin S. D. Modeling of the surface of the working body of a chisel plow. Izvestiya NV AUK. 2024. № 1 (73). Pp. 365-373.

21. Gubaidulin D. S., Shvabauer Y. A., Gapich D. S., Fomin S. D. Results of Experimental Studies of the Power Load of a Chisel Unit. Izvestiya NV AUK. 2024. № 1 (73). Pp. 357-365.

22. Gapich D. S., Shvabauer Y. A., Subbotin S. I., Gubaidulin D. S. Reduction of traction resistance of chisel guns. Izvestiya NV AUK. 2023. № 4 (72). Pp. 398-409.


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For citations:


Fomin S.D., Gapich D.S., Subbotin S.I., Shvabauer Yu.A. Traction resistance of a chisel plow section with working bodies of various geometric shapes. Title in english. 2024;(2 (74)):358-367. (In Russ.) https://doi.org/10.32786/2071-9485-2024-02-42

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