DOI QR코드

DOI QR Code

Development of a hydraulic power transmission system for the 3-point hitch of 50-kW narrow tractors

  • Chung, Sun-Ok (Department of Biosystems Machinery Engineering, Chungnam National University) ;
  • Kim, Yong-Joo (Department of Biosystems Machinery Engineering, Chungnam National University) ;
  • Choi, Moon-Chan (Department of Biosystems Machinery Engineering, Chungnam National University) ;
  • Lee, Kyu-Ho (Department of Biosystems Machinery Engineering, Chungnam National University) ;
  • Ha, Jong-Kyou (Research Institute, Kukje Machinery Co., Ltd.) ;
  • Kang, Tae-Kyoung (Department of Agricultural Engineering, National Academy of Agricultural Science, RDA) ;
  • Kim, Young-Keun (Department of Agricultural Engineering, National Academy of Agricultural Science, RDA)
  • Received : 2016.09.05
  • Accepted : 2016.09.19
  • Published : 2016.09.30

Abstract

High performance small and mid-sized tractors are required for dryland and orchard operations. A power transmission system is the most important issue for the design of high performance tractors. Many operations, such as loading and lifting, use hydraulic power. In the present study, a hydraulic power transmission system for the 3-point hitch of a 50 kW narrow tractor was developed and its performance was evaluated. First, major components were designed based on target design parameters. Target operations were spraying, weeding, and transportation. Main design parameters were determined through mathematical calculation and computer simulation. The capacity of the hydraulic cylinder was calculated taking the lifting force required for the weight of the implements into consideration. Then, a prototype was fabricated. Major components were the lifting valve, hydraulic cylinder, and 3-point hitch. Finally, performance was evaluated through laboratory tests. Tests were conducted using load weights, lift arm sensor, and lift arm height from the ground. Test results showed that the lifting force was in the range of 23.5 - 29.4 kN. This force was greater than lifting forces of competing foreign tractors by 3.9 - 4.9 kN. These results satisfied the design target value of 20.6 kN, determined by survey of advanced foreign products. The prototype will be commercialized after revision based on various field tests. Improvement of reliability should be also achieved.

Keywords

References

  1. Al-Jalil HF, Khdair A, Mukahal W. 2001. Design and performance of an adjustable three-point hitch dynamometer. Soil & Tillage Research 62:153-156. https://doi.org/10.1016/S0167-1987(01)00219-7
  2. Alimardani R, Fazel Z, Akram A, Mahmoudi A, Varnamkhasti MG. 2008. Design and development of a three-point hitch dynamometer. Journal of Agricultural Technology 4:37-52.
  3. Bentaher H, Hamza E, Kantchev G, Maalej A, Arnlod W. 2008. Three-point hitch-mechanism instrumentation for tillage power optimization. Biosystems Engineering 100:24-30. https://doi.org/10.1016/j.biosystemseng.2008.01.008
  4. Capalbo S, Denny M. 1986. Testing long-run productivity models for Canadian and U.S. agricultural models. American Journal of Agricultural Economics 68:615-625. https://doi.org/10.2307/1241545
  5. Chang DI, Kim MS, Kim KD, Huh YK, Chung SO, Cho BK. 2010. Development of a 50kW tractor for European orchards. Annual Research Report. Center for IT Convergence Agricultural Machinery. [in Korean]
  6. Chaplin J, Lueders, Zhao M. 1987. Three-point hitch dynamometer design and calibration. American Society of Agricultural Engineers 0883-8542/87/0301-0010.
  7. Ha JK. 2015. Development of power transmission system for orchard tractor. Ph.D. dissertation, Chungnam National University, Korea. [in Korean]
  8. Kim YJ, Chung SO, Park SJ, Choi CH. 2011a. Analysis of power requirement of agricultural tractor by major field operation. Journal of Biosystems Engineering 36:79-88. [in Korean] https://doi.org/10.5307/JBE.2011.36.2.79
  9. Kim YJ, Chung SO, Choi CH, Lee DH. 2011b. Evaluation of tractor PTO severeness during rotary tillage operation. Journal of Biosystems Engineering 36:163-170. [in Korean] https://doi.org/10.5307/JBE.2011.36.3.163
  10. Korea Agricultural Machinery Industry Cooperative (KAMICO) and Korean Society for Agricultural Machinery (KSAM). 2015. Agricultural machinery yearbook. Korean Society for Agricultural Machinery. [in Korean]
  11. Lee SS, Lee CH, Park WY, Lee JY, Mun JH. 2006a. A study on operating method of man-machine interface for tractor 3-point hitch. Proceedings of the KSAM 2006 Summer Conference 11:10-14. [in Korean]
  12. Lee SS, Lee CH, Lee JY, Mun JH. 2006b. Development of a draft control system for tractor using a proportional valve. Journal of Biosystems Engineering 31:9-15. [in Korean] https://doi.org/10.5307/JBE.2006.31.1.009
  13. Lee SS and Park WY. 2011a. Development of tractor three-point hitch control system using proportional valve. Journal of Biosystems Engineering 36:89-95. [in Korean] https://doi.org/10.5307/JBE.2011.36.2.89
  14. Lee SS and Park WY. 2011b. Electro-hydraulic characteristic analysis of arm-type implement for three-point hitch. Journal of Biosystems Engineering 36(5):314-318. [in Korean] https://doi.org/10.5307/JBE.2011.36.5.314
  15. Pijuan J, Berga J, Comellas M, Potau X, Roca J. 2011, A three-point hitch dynamometer for load measurements between tillage implements and agricultural tractors during operation. Accessed in https://www.researchgate.net/publication/267405934 on 10 February 2012.
  16. Portes P, Bauer F, Cupera J. 2013. Laboratory-experimental verification of calculation of force effects in tractor's three-point hitch acting on driving wheels. Soil & Tillage Research 128:81-90. https://doi.org/10.1016/j.still.2012.10.007
  17. Ryu KH, Yoo SN, Kim YS. 1992. Microcomputer control of electronic-hydraulic three-point hitch for agricultural tractor(II)-Performance test-. Journal of the Korean Society for Agricultural Machinery 17:223-228. [in Korean]
  18. Sim KJ, Cho WY, Park TG, Choi GJ, Lee YG. 2011. A study on the working data measuring and analysis technology according to the tractor duty mode. The Korean Society of Automotive Engineers 11-H0015:159-163. [in Korean]

Cited by

  1. Performance Evaluation of a Driving Power Transmission System for 50 kW Narrow Tractors vol.43, pp.1, 2018, https://doi.org/10.5307/jbe.2018.43.1.001
  2. Analysis of trends on patents for unmanned technology used in agriculture vol.45, pp.1, 2018, https://doi.org/10.7744/kjoas.20170063