Журналы →  Gornyi Zhurnal →  2024 →  №10 →  Назад

EQUIPMENT AND MATERIALS
Название Determination of load on dual pneumatic wheels of peat machines
DOI 10.17580/gzh.2024.10.11
Автор Yablonev A. L.
Информация об авторе

Tver State Technical University, Tver, Russia

A. L.Yablonev, Head of Department, Doctor of Engineering Sciences, Professor, alvovich@mail.ru

Реферат

The use of machines and tractors on pneumatic wheels in peat extraction and transportation technologies has made it possible to increase the speed of forward motion of the equipment and its versatility, but also set the operating companies the task of increasing the traction and support cross-country ability of the equipment, since even a peat deposit that is drained and prepared for exploitation is to weak soils with reduced bearing capacity. The solution to this problem in most cases is to use double wheels on special low-pressure flotation tires instead of single ones. A block of inner and outer wheels (double wheel travel) can significantly increase the maneuverability of the vehicle. A reasonable choice of “second” wheels for cars requires the correct calculation of the load on the dual stroke, taking into account its unequal distribution between the inner and outer wheels. The existing traditional calculation method assumes equal loads on both wheels in the block, however, experience in operating pneumatic wheeled equipment, especially on hard-surface roads, shows that the inner wheels wear out much faster than the outer ones, which indicates a higher load on the inner wheels. Since a load-bearing beam with two dual wheels is a statically indeterminate system, its calculation must be carried out taking this circumstance into account. The article provides evidence of the symmetrical loading of the cargo beam with wheels, the greater loading of the internal wheels, and presents a methodology for assessing the loading of the internal and external wheels of peat transport and technological machines.

Ключевые слова Pneumatic wheel travel, peat machine, wheel load, double wheel, deformation of the supporting beam, method of forces, diagram of bending moments
Библиографический список

1. Misnikov O. S., Kopenkina L. V. Peat mining uprising in Russia. Gornyi Zhurnal. 2020. No. 2. pp. 95–99.
2. Ratamäki O., Jokinen P., Albrecht E., Belinskij A. Framing the peat: The political ecology of Finnish mire policies and law. Mires and Peat. 2019. Vol. 24. DOI: 10.19189/MaP.2018.OMB.370
3. Abbaspour H., Drebenstedt C., Paricheh M., Ritter R. Optimum location and relocation plan of semi-mobile in-pit crushing and conveying systems in open-pit mines by transportation problem. International Journal of Mining, Reclamation and Environment. 2019. Vol. 33, Iss. 5. pp. 297–317.
4. Sirén M., Ala-Ilomäki J., Lindeman H., Uusitalo J., Kiilo K. E. K. et al. Soil disturbance by cut-to-length machinery on midgrained soils. Silva Fennica. 2019. Vol. 53, No. 2. ID 10134.
5. Jones M.-F., Arp P. Soil trafficability forecasting. Open Journal of Forestry. 2019. Vol. 9, No. 4. pp. 296–322.
6. Mikhailov А. V., Kazakov Yu. A. Estimation procedure of multiple passability of hauling unit on weak ground. MIAB. 2022. No. 8. pp. 95–110.
7. Yablonev A. L., Dorogov O. V. Justification of the parameters of pneumatic wheel running passive trailed machines for transportation of milled peat. MIAB. 2015. No. 7. pp. 174–177.
8. Yablonev A. L. Resistance to pneumatic wheel travel in uncomacted structurally damaged peat field. MIAB. 2010. No. 9. pp. 41–44.
9. Mikhailov A. V., Garmaev O. Z., Garifullin D. R., Kazakov Y. A. A potential application of in-pit crushing-conveying and dewatering system in peat mining. IOP Conference Series: Earth and Environmental Science. 2019. Vol. 378. ID 012086.
10. Telego A. V., Mikhailov A. V., Bolshunov A. V. Validation of transport-tractor unit passability by organogenic deposits development. Journal of Mining Institute. 2014. Vol. 209. pp. 87–90.
11. Okunev G. A., Kuznetsov N. A., Andrianov A. V. Techno-economic performance parameters of htz-150k-09 tractor with single and twin tyres. Vestnik Chelyabinskoy gosudarstvennoy agroinzhenernoy akademii. 2013. Vol. 66. pp. 58–67.
12. Yablonev A. L. Effective using pneumatic double-wheel running on disturb structure peat deposit. Gornoe oborudovanie i elektromekhanika. 2011. No. 5. pp. 54–56.
13. Kravchenko V. A., Kravchenko L. V., Melikov I. M. The efficiency of the wheel doubling in the tractor of traction class 5. Vestnik agrarnoy nauki Dona. 2021. No. 1(53). pp. 4–12.
14. Lazarev A. V., Korchunov S. S. (Eds.). Peat reference book. Moscow : Nedra, 1982. 760 p.
15. Yablonev A. L., Skorikov A. Yu. Deformation of a peat deposit with stamps and running devices of machines in the light of the general theory of soil mechanics. Trudy Instorfa. 2015. No. 12(65). pp. 33–40.
16. Knoroz V. I., Shelukhin A. S., Petrov I. P. et al. The work of a tire. Moscow : Transport, 1976. 238 p.
17. Wong J. Y. Theory of Ground Vehicles. 4th ed. New York : John Wiley & Sons Inc., 2008. 560 p.
18. Vakhlamov V. K. Cars. Design and Calculation : Textbook. 2nd ed. Moscow : Akademiya, 2008. 479 p.
19. Abdulgazis A. U. Probabilistic method of determination of road response to action of double wheel tires. Uchenye zapiski Krymskogo inzhenerno-pedagogicheskogo universiteta. 2009. No. 20. pp. 5–9.
20. Abdulgazis A. U., Abdulgazis U. A. Diagnostics of the beam of the live axle of a small and pickup truck for the presence of deflection. Uchenye zapiski Krymskogo inzhenerno-pedagogicheskogo universiteta. 2023. No. 2(80).
pp. 200–202.
21. Misnikov O. S., Kopenkina L. V., Zyuzin B. F. The Moscow Peat Institute’s schools and their development at the Tver State Technical University. Gornyi Zhurnal. 2022. No. 5. pp. 9–22.
22. Stepin P. A. Resistance of materials. 13th ed. Moscow : Lan, 2014. 320 p.

Language of full-text русский
Полный текст статьи Получить
Назад