Directional stability of an agricultural tractor
The discrepancy between the plow width and the tractor width leads to the asymmetry of plowing units. The geometry of the plowshare surface of the moldboard plow contributes to the generation of lateral forces on the working tool. All this leads to the imbalance of the tool and the deviation of the...
| Published in: | FME Transactions |
|---|---|
| Main Authors: | , , , , |
| Format: | Article |
| Language: | English |
| Published: |
University of Belgrade - Faculty of Mechanical Engineering, Belgrade
2021-01-01
|
| Subjects: | |
| Online Access: | https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922102456T.pdf |
| _version_ | 1857120358671319040 |
|---|---|
| author | Troyanovskaya Irina Zhakov A. Grebenshchikova O. Voinash S. Timofeev E. |
| author_facet | Troyanovskaya Irina Zhakov A. Grebenshchikova O. Voinash S. Timofeev E. |
| author_sort | Troyanovskaya Irina |
| collection | DOAJ |
| container_title | FME Transactions |
| description | The discrepancy between the plow width and the tractor width leads to the asymmetry of plowing units. The geometry of the plowshare surface of the moldboard plow contributes to the generation of lateral forces on the working tool. All this leads to the imbalance of the tool and the deviation of the tractor from straight-line movement during plowing. To maintain straight-line movement, the driver has to adjust the machine every 5-10 meters, which is highly tiresome. To study the causes of lateral slips of the plowing unit, we constructed a mathematical model, which consists of the equations of controlled movement and equations of the tractor's uncontrolled shear under the action of external forces from the plow. The description of the force interaction of the drive with the ground is based on the mathematical theory of friction, taking into account anisotropy and elastic properties in contact. Based on the passive shear model, we constructed a hodograph diagram of the maximum tractor shear force from the side of the working tool. We found that the shear force reaches its maximum friction value only in the case of a translational shear, when its line of action passes through the tractor's center of gravity. In all other cases, the shift (slip) of the tractor is caused by a lower force. We formulated the features and assumptions of the model as applied to caterpillar and wheeled tractors. As a result, we found that, regardless of the direction of the lateral displacement of the plow's traction resistance, the tractor is slipped towards the plowed field. The result of the numerical experiment showed that the main reason for the slip of the wheeled plowing unit is the difference in soils along the sides of the tractor but not the deviation of the plow traction resistance. |
| format | Article |
| id | doaj-art-4e1ee69e63b54eb8a366dc019c58e3e2 |
| institution | Directory of Open Access Journals |
| issn | 1451-2092 2406-128X |
| language | English |
| publishDate | 2021-01-01 |
| publisher | University of Belgrade - Faculty of Mechanical Engineering, Belgrade |
| record_format | Article |
| spelling | doaj-art-4e1ee69e63b54eb8a366dc019c58e3e22025-08-19T19:09:21ZengUniversity of Belgrade - Faculty of Mechanical Engineering, BelgradeFME Transactions1451-20922406-128X2021-01-0149245646210.5937/fme2102456T1451-20922102456TDirectional stability of an agricultural tractorTroyanovskaya Irina0Zhakov A.1Grebenshchikova O.2Voinash S.3Timofeev E.4South Ural State University, Department of Wheeled and tracked vehicles, Chelyabinsk, RussiaSouth Ural State University, Department of Wheeled and tracked vehicles, Chelyabinsk, RussiaSouth Ural State Agrarian University, Department of Applied Mechanics, RussiaNovosibirsk State Agrarian University, Department of Science, RussiaInstitute for Engineering and Environmental Problems in Agricultural Production, Laboratory of Ecological Aspects of Energy Supply of Agricultural Production, RussiaThe discrepancy between the plow width and the tractor width leads to the asymmetry of plowing units. The geometry of the plowshare surface of the moldboard plow contributes to the generation of lateral forces on the working tool. All this leads to the imbalance of the tool and the deviation of the tractor from straight-line movement during plowing. To maintain straight-line movement, the driver has to adjust the machine every 5-10 meters, which is highly tiresome. To study the causes of lateral slips of the plowing unit, we constructed a mathematical model, which consists of the equations of controlled movement and equations of the tractor's uncontrolled shear under the action of external forces from the plow. The description of the force interaction of the drive with the ground is based on the mathematical theory of friction, taking into account anisotropy and elastic properties in contact. Based on the passive shear model, we constructed a hodograph diagram of the maximum tractor shear force from the side of the working tool. We found that the shear force reaches its maximum friction value only in the case of a translational shear, when its line of action passes through the tractor's center of gravity. In all other cases, the shift (slip) of the tractor is caused by a lower force. We formulated the features and assumptions of the model as applied to caterpillar and wheeled tractors. As a result, we found that, regardless of the direction of the lateral displacement of the plow's traction resistance, the tractor is slipped towards the plowed field. The result of the numerical experiment showed that the main reason for the slip of the wheeled plowing unit is the difference in soils along the sides of the tractor but not the deviation of the plow traction resistance.https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922102456T.pdfdirectional stabilitymathematical modellateral slipmoldboard plowground contactplowing unitmathematical theory of friction |
| spellingShingle | Troyanovskaya Irina Zhakov A. Grebenshchikova O. Voinash S. Timofeev E. Directional stability of an agricultural tractor directional stability mathematical model lateral slip moldboard plow ground contact plowing unit mathematical theory of friction |
| title | Directional stability of an agricultural tractor |
| title_full | Directional stability of an agricultural tractor |
| title_fullStr | Directional stability of an agricultural tractor |
| title_full_unstemmed | Directional stability of an agricultural tractor |
| title_short | Directional stability of an agricultural tractor |
| title_sort | directional stability of an agricultural tractor |
| topic | directional stability mathematical model lateral slip moldboard plow ground contact plowing unit mathematical theory of friction |
| url | https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922102456T.pdf |
| work_keys_str_mv | AT troyanovskayairina directionalstabilityofanagriculturaltractor AT zhakova directionalstabilityofanagriculturaltractor AT grebenshchikovao directionalstabilityofanagriculturaltractor AT voinashs directionalstabilityofanagriculturaltractor AT timofeeve directionalstabilityofanagriculturaltractor |
