DOI QR코드

DOI QR Code

6절 링크를 이용한 진동굴취기의 설계요인

Design Parameters of A Six-bar Linkage Vibrating Digger


초록

An oscillating digger mechanism was designed, constructed. and tested. The mechanism is consisted of a six-bar linkage, one four-bar linkage was fer the digger blade and the other one fur variable soil-crop separation. Experimental variables were amplitude(3, 6, 9 mm). frequency(11.2, 14.9. 17.0 Hz), and forward speed of tractor(0.91, 1.13, 1.56 km/h). Each combination of these variables was replicated three times to measure the draft and torque for power requirement evaluation. and the broken-up soil height on the soil separation sieve mechanism. Four parameters λ(the ratio of vibration speed to forward velocity), p(the ratio of vibration acceleration to forward velocity), K(the ratio of vibration acceleration to gravitational acceleration), and T(the product of λ and K) were induced from three experimental variables: amplitude, frequency, and tractor speed. And the power requirement and soil separation ability were analyzed by regression. Though λ and K were known to be the representative parameters. T was the most moderate one to explain draft. torque. and soil separation in this study. It was estimated that the T equal to or greater than 2.4 was the minimum recommended value. Figure 18 would be useful fir the selection of amplitude. frequency, or operating tractor speed once any two variables are known.

키워드

참고문헌

  1. AI-Jubouri, K. and P. B. McNulty. 1980. Vibratory potato digging. In Proc. 5th International Congress on the Mechanization of Field Energy (ICMFE), 264-268. Wageningen, Netherlands.
  2. Johnson, L. F. 1974. A vibrating blade for the potato harvester. Trans. of the ASAE, 17(5):867-870, 873. https://doi.org/10.13031/2013.36985
  3. Kang, W. S., S. H. Kim and Y. C. Hahm. 1989. Development of an oscillating potato harvester. Jour. of KSAM, 14(1):16-23.
  4. Kang, W. S., Y. B. Shin, S. H. Kim and Y. C. Hahm. 1993. Jour. of KSAM, 18(1):21-29.
  5. Kang, W. S. and J. L. Halderson. 1991a. Development of a vibratory potato digger for small farms. American Potato Jour. 68:557-568. https://doi.org/10.1007/BF02853709
  6. Kang, W. S. and M. E. Wright. 1996. Design and performance parameters of vibrating potato diggers. SAE Paper No. 961777.
  7. Kang, W. S., L. A. Lodriguez and L. D. Crow. 2001. Developing a small commercial potato digger II. - Effects of design parameters on draft, torque, and power. Trans. of the ASAE. 44(6):1391-1396.