Browse > Article
http://dx.doi.org/10.5307/JBE.2012.37.3.155

Transfer Force Characteristics of Seedling Bed Transfer Equipment Using Pneumatic Cylinder for Automation of Plant Factory  

Min, Young-Bong (Dept. of Bio-Industrial Machinery Eng., Gyeongsang Nat'l Univ.(Insti. of Agric. & Life Sci.))
Park, Sang-Min (Dept. of Bio-Industrial Machinery Eng., Gyeongsang Nat'l Univ.(Insti. of Agric. & Life Sci.))
Lee, Gong-In (National Academy of Agri. Sci., Rural Development Admi.)
Kim, Dong-Ouk (National Academy of Agri. Sci., Rural Development Admi.)
Kang, Dong-Hyun (National Academy of Agri. Sci., Rural Development Admi.)
Moon, Sung-Dong (Dept. of Industrial & Management Eng., Kangwon Nat'l Univ.)
Publication Information
Journal of Biosystems Engineering / v.37, no.3, 2012 , pp. 155-165 More about this Journal
Abstract
This study was performed to offer the data for design of the seedling bed transfer equipment to make the automation of working process in a plant factory. The seedling bed transfer equipment pushing the seedling bed with bearing wheels on the rail for interconnecting each working process by a pneumatic cylinder was made and examined. The examined transfer force to push the seedling bed with a weight of 178.9 N by the pneumatic cylinder with length of 60 cm and section area of 5 $cm^2$ was measured by experiments. The examined transfer forces was compared with theoretical ones calculated by the theoretical formula derived from dynamic system analysis according to the number of the seedling bed and pushing speed of the pneumatic cylinder head at no load. The transfer function of the equipment with the input variable as the pushing speed $V_{h0}$(m/s) and the output variable as the transfer force f(t)(N) was represented as $F(s)=(V_{h0}/k)(s+B/M)/(s(s^2+Bs/M+1/(kM))$ where M(kg), k(m/N) and B(Ns/m) are the mass of the bed, the compression coefficient of the pneumatic cylinder and the dynamic friction coefficient between the seedling bed and the rail, respectively. The examined transfer force curves and the theoretical ones were represented similar wave forms as to use the theoretical formular to design the device for the seedling bed transfer. The condition of no vibration of the transfer force curve was $kB^2>4M$. The condition of transferring the bed by the repeatable impact and vibration force according to difference of transfer distance of the pneumatic cylinder head from that of the bed was as $Ce^{-\frac{3{\pi}D}{2\omega}}<-1$, where ${\omega}=\sqrt{\frac{1}{kM}-\frac{B^2}{4M^2}}$, $C=\{\frac{\frac{B}{2M}-\frac{1}{kB}}{\omega}\}$, $D=\frac{B}{2M}$. The examined mean peak transfer force represented 4 times of the stead state transfer force. Therefore it seemed that the transfer force of the pneumatic cylinder required for design of the push device was 4Bv where v is the pushing speed.
Keywords
Plant factory; Raising seedling; Seedling tray; Seedling bed;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Ryu, K. H., G. Y. Kim, Y. S. Ryu, J. S. Han and T. W. Shin. 1998. Development of a Robotic Transplanter for Pot- Seedling of Plant Factory. Journal of the Korean Society for Agricultural Machinery 23(3):277-284. (In Korean)
2 Son, J. E. 1993. Plant Factory - A Prospective Urban Agriculture. Journal of Bio-Environment Control, 2(1): 69-76. (In Korean)
3 Chang, Y. S., H. G. Song and D. E. Kim. 2005. Development of a Chain Conveyor Type Row-Spacing System for Plant Factory. Journal of Bio-Environment Control 14(1): 7-14. (In Korean)
4 Choi, C. H., K. M. Noh, K. C. Lee and J. M. Kim. 1996. Study on Automation of Integrated Seedling Production System - Planting Device -. Journal of the Korean Society for Agricultural Machinery 21(2):123-133. (In Korean)
5 Kim, J. W. 2010. Trend and Direction for Plant Factory System. Journal of Plant Biotechnology 37:442-455. (in Korean)   DOI   ScienceOn
6 Kim, J. h. and S. D. Chang. 2009. Industrialization Condition and Possibility of Plant Factory. Journal of Agricultural Management and Policy 36(4):918-948. (in Korean)
7 Min, Y. B. 2012. Automation equipment system of seedling process. Korean Patent Application No. 10- 1012-0014862. (in Korean)
8 Ryu, K. H., G. Y. Kim, H. H. Lee, J. S. Han and H. J. Hwang. 1997. Development of a Robotic Transplanter Using Machine Vision for Bedding Plants. Journal of Bio- Environment Control 6(1):55-65. (in Korean)
9 Park, S. M., Y. B. Min, G. I. Lee, D. O. Kim, D. H. Kang and S.D. Moon. 2011. Development of Automatic Loading Equipment of Seedling Tray for Automatic Process of Raising Seedlings in Plant Factory. Journal of Agriculture & Life Science published by Institute of Agriculture & Life Science in Gyeongsang National University 45(5):105-113. (In Korean)