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Development of a Crawler Type Vehicle to Travel in Water Paddy Rice Field for Water-Dropwort Harvest
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  • Development of a Crawler Type Vehicle to Travel in Water Paddy Rice Field for Water-Dropwort Harvest
  • Development of a Crawler Type Vehicle to Travel in Water Paddy Rice Field for Water-Dropwort Harvest
저자명
Jun. Hyeon-Jong,Kang. Tae-Gyoung,Choi. Yong,Choi. Il-Su,Choi. Duck-Kyu,Lee. Choung-Keun
간행물명
바이오시스템공학
권/호정보
2013년|38권 4호|pp.240-247 (8 pages)
발행정보
한국농업기계학회
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

Purpose: This study was conducted to develop a rubber-crawler type vehicle as a traveling device for harvesting water-dropwort cultivated in water contained paddy rice field in winter season. Methods: A commercial rubber-crawler type vehicle was used to investigate application of rubber crawler to the paddy rice field as preliminary test. As the result of the preliminary test, a both prototype traveling device with rubber crawlers for a water-dropwort harvest was designed with inclination of $45^{circ}$ at the front-end and rear-end of crawler under the basic water depth of 0.6 m in the paddy rice field. The device was fabricated and attached to the experimental harvesting test devices on the front of the prototype vehicle. The size of the prototype crawler vehicle with a harvesting part is $2,800{ imes}1,460{ imes}1,040 $ (mm) ($L{ imes}W{ imes}H$) with weight of 9.21 kN (maximum). Sizes of the crawler of prototype vehicle are ground contact length of 900 mm, width of 180 mm, height of 1,070 mm and distance between center to center of crawlers of 720 mm. The side-overturn angle of the prototype was $26.4^{circ}$. Results: Driving performance of the prototype vehicle in water contained paddy field were good at both forward and reverse (backward) directions as weights were applied. The drawbar pull and the maximum sinking depth of the prototype vehicle were 3.5 kN and 0.13 m respectively at water depth of 0.5 m, when the weight and bearing capacity of the prototype rubber crawler in the paddy field were 8.51 kN and 26.3 $kN/m^2$, respectively. Conclusions: Results of the driving test performance of the prototype crawler in paddy rice field at the water depth of 0.5 m were satisfactory. The prototype had enough drawbar pull and driving ability in the deep water contained paddy field.