Browse > Article
http://dx.doi.org/10.5307/JBE.2016.41.4.281

Development of a Belt Pick-up Type Two-row Sesame Reaper  

Jun, Hyeon-Jong (National Institute of Agricultural Sciences, Rural Development of Administration)
Choi, Il-su (National Institute of Agricultural Sciences, Rural Development of Administration)
Kang, Tae-Gyoung (National Institute of Agricultural Sciences, Rural Development of Administration)
Kim, Young-Keun (National Institute of Agricultural Sciences, Rural Development of Administration)
Lee, Sang-Hee (National Institute of Agricultural Sciences, Rural Development of Administration)
Kim, Sung-Woo (National Institute of Agricultural Sciences, Rural Development of Administration)
Choi, Yong (National Institute of Agricultural Sciences, Rural Development of Administration)
Choi, Duck-Kyu (National Institute of Agricultural Sciences, Rural Development of Administration)
Lee, Choung-Keun (National Institute of Agricultural Sciences, Rural Development of Administration)
Publication Information
Journal of Biosystems Engineering / v.41, no.4, 2016 , pp. 281-287 More about this Journal
Abstract
Purpose: The purpose of this study is to develop a walking-type two-row sesame reaper, which can simultaneously perform the cutting and collecting of sesame plants and other crops like perilla and soybean. Methods: The factors involved in reaping sesame were determined experimentally in order to design a prototype of the sesame reaper. The prototype is made up of four parts for cutting, conveying, collecting, and running. The height of two disc-plate saw blades on the cutting part is adjusted by an adjusting wheel, and peripheral speed is adjusted in accordance with the running speed. The conveying belt of the conveying part can be tilted from $0^{\circ}$ to $90^{\circ}$. The collecting part extracts a predetermined amount of transferred sesame plants. The prototype was used to evaluate the performance at different working speeds, so that the work efficiency can be calculated. Results: The center of gravity of the sesame plants was 900 mm, measured from the end of the cut stem. The diameter of the disc-plate saw blade was determined to be 355 mm, peripheral speed was 20.4-32.7 m/s, and the picking height of the conveying belt for sesame was 130 mm. The performance of transfer and collection of the sesame, when the insertion angles were $60^{\circ}$ and $90^{\circ}$, proved to be excellent. However, when the angle was over $120^{\circ}$, the performance was only 75-80%. The performance was at 100% efficiency when the ratio between running speed and conveying belt speed of the prototype was 1:2, which seems to be the ideal ratio for the sesame reaper. Conclusions: A sesame reaper was developed, which can integrate the processes of cutting, conveying, and collecting, by investigating and considering various factors involved in the reaping process. The sesame reaper can reduce the costs for yielding and producing sesame due to its highly efficient performance.
Keywords
Crawler; Harvest; Pick-up belt; Reaper; Sesame;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
1 Lee, K. S. and H. K. Noh. 2015. Development of Threshing Machine for Shatter-Resistant Sesame. Journal of Biosystems Engineering 40(2):110-114.   DOI
2 Lee, S. H., H. J. Park, J. T. Hong, K. H. Choi, J. R. Son and C. H. Kang. 1997. Development of sesame reaping and binding machine. RDA.
3 Ministry of Agriculture management information. 2002. Laboring time by corps and work steps. RDA.
4 Noh, H. K. 2014. Separation Characteristic of Shatter Resistant Sesame After Threshing. Journal of Biosystems Engineering 39(4): 299-303.   DOI
5 Sugiyama, T., H. Ezaki, M. Suzuki, S. Imazono and M. Manaka. 1981. Studies and development of soybean reaper(part 1). Tech. Rep. Inst. Of Agric. Mach. 15:39-56 (In Japanese).
6 Kosis 2016. "Sesame cultivation area" http://kosis.kr/statisticsList
7 Lee, J. S. and K. B. Kim. 2009. Development of shattering machine for sesame (III) -Fabrication and evaluation of the final machine-. Jour. of Biosystems Eng. 34(6):425433.
8 Jun, H. J., T. K. Kang, Y. Choi, C. K. Lee, I. S. Choi, S. K. Kim, C. S. Hyun and T. Y. Kwak. 2012. An Experimental Study on Mechanical Harvest for Sesame Cultivated in Double-Row in Flat Beds. Proceedings of the KSCS 2012 Autumn Conference 10(2):11-12.
9 Ichikawa, T., T. Sugiyama, T. Miura, M. Suzuki and M. Manaka. 1981. Studies and development of soybean reaper(part 2). Tech. Rep. Inst. Of Agric. Mach. 16:25-42 (In Japanese).
10 Jun, H. J., J. T. Hong., Y. Choi., Y. K. Kim and C. K. Lee, 2006. Development of a bean cutter. Proceedings of the KSAM 2006 Winter Conference 11(1):173-177 (In Korean).
11 Jun, H. J., T. G. Kang., C. K. Lee., D. K. Choi., C. S. Lee and Y. Choi. 2011. Development of a soybean reaper for double-row soybeans planted on a flat bed. Proceedings of the KSAM 2011 Winter Conference. 16(1):179-183 (In Korean).
12 Korea Agricultural Trade Information(kati). 2016. "Export and Import performance statistics"
13 Jun, H. J., T. G. Kang., C. K. Lee., Y. Choi., C. S. Lee and J. T. Hong. 2010. Development of a belt pick-up one-row soybean cutter. Journal of Biosystems Engineering 35(6):373-379 (In Korean).   DOI
14 Jun, H. J., Y. Choi., C. K. Lee., Y. K. Kim and J. T. Hong. 2008. Development of Rear-discharge Type Bean cutter with Pickup belts. Proceedings of the 4th International Symposium on Machinery and Mechatronics for Agriculture and Biosystems Engineering (ISMAB) 27-29 May 2008, Taichung, Taiwan.