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The Transmission Development with P.T.O Axle Design for Work Vehicle Including Multi-faculty  

Kwac, Lee-Ku (전주대학교 기계자동차공학과)
Kim, Jae-Yeol (조선대학교 메카트로닉스공학과)
Publication Information
Abstract
A transmission designed with P.T.O(Power Take-Off) axle for agricultural work vehicles including multi-purpose vehicles has been developed. It is focused on the 4-wheel drive transmission of synchronous contact type for practical use in fruit tree households which is required for a large-sized agricultural vehicle. Concerning to the specification performed, the load capacity is from 500kg to 1,000kg and the safety should be secured for passengers. In addition, the driving condition should also be secured under bad situations of the topographic slope, swampy land and the rest. In order to carry out above tests, a prototype vehicle through strength analysis of transmission design has been manufactured. Consequently, optimal design conditions on the power transmission with multi-purpose vehicle for various jobs are proposed such as an indication of optimal RPM and torque at a certain work situation. The performance test through the prototype of multi-purpose work vehicle is performed and the related data base is achieved. Finally, it is improved on troubles by the analysis of the results of R&D and provided the solutions on problems occurring to mass production in the future.
Keywords
P.T.O (Power Take-Off); Transmission; Work Vehicle including Multi-faculty;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 Bean, T., Glascock, L. A., Wood, R. K., Carpenter, T. G. and Holmes, R., "Identifying potential barriers to developing a lighting and marking system for agricultural equipment on U.S. roadways," XII World Congress on Agricultural Engineering, ASAE, Vol. 2, pp. 286-292, 1994
2 Chang, S. F., Chancellor, W. J. and Garrett, R. E., "Analysis of rice mechanization in Taiwan using optimization theory," Transactions of ASAE, Vol. 30, No. 5, pp. 1315-1322, 1987   DOI
3 Dudley, W. D., "Handbook of practical Gear Design," McGraw-Hill, pp. 2.36-2.38, 1984
4 Capalbo, S. M. and Denny, M., "Testing Long-Run Productivity Models for the Canadian and U.S. Agricultural Sectors," American Journal of Agricultural Economics, Vol. 68, No. 3, pp. 615-625, 1986   DOI   ScienceOn
5 Kim, D. C., Ryu, I. H. and Kim, K. U., "Analysis of tractor transmission and driving axle loads," Transactions of the ASAE, Vol. 44, No. 4, pp. 751-757, 2001
6 Freeman, J. S. and Velinsky, S. A., "Design of vehicle power transmission system," Journal of Mechanical Design & Journal of Vibration and Acoustics, Special Combined Issue, Transactions ASME, Vol. 117, No. B, pp. 113-120, 1995   DOI
7 Kahraman, A., "Dynamic analysis of a multi-mesh helical gear train," International power transmission and gearing conference, ASME DE, Vol. 43, Part 1, pp. 365-373, 1992
8 Lee, C. T., Kwak, D. H., Jung, B. H. and Lee, J. K., "A Study on the Vehicle Dynamic Characteristic of Displacement Sensitive Shock Absorber," J. of KSPE, Vol. 20, No. 1, pp. 187-195, 2003
9 Leming, J. C., "Gear Design," SAE Paper No. 680381, pp. 29-42. 1990