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Design And Research On Walking Mechanism Of Rice Seedling Tray

Posted on:2016-02-01Degree:MasterType:Thesis
Country:ChinaCandidate:Y LiFull Text:PDF
GTID:2133330467993857Subject:Agricultural mechanization
Abstract/Summary:PDF Full Text Request
Rice is one of the three major grain crops of our country, in the northeast of China where is themainly areas of rice production. However the northeast of China is often Suffer from lowtemperature chilling injury that lead to low yield of rice, By the research the rice bowl of educationaltechnology is one of the effective means that can avoid the climate impact. and improve the riceyield. At present we had developed a rice plant matter seedling growing disc to meet therequirements of high-speed transplanter homework, but the seedling up job still use manualoperation way, that makes a high labor cost, and a low operation efficiency.Until now on mechanical disc mechanism has not been studied yet. In this paper, This paper issuitable for rice Yang Pan plate machine crawler travel mechanism of the related research. Through accessto the relevant literature, This paper summarizes the domestic and foreign development situation andcharacteristics of different crawler travel mechanism and scholars’ research results, the research contents andresearch methods of this article is determined.. According to the Agronomic requirements of rice seedlingmachine and the work environment. Study on the theoretical studying of the key part of the manchine,the part of crawler walking mechanism. Through the computer simulation technology simulation analysiswas carried out on the crawler walking mechanism to Verify the rationality of the design and on thesimulation track type walking mechanism the best walking speed for2.43Km/h. The biggestobstacle height is22.5mm. The biggest obstacle tilt angle is36.5degrees.Complete the crawler walking device fabrication and validate the experimental resultsbyprototype test simulation test.
Keywords/Search Tags:Rice Plant bowl infertility, Crawler running gear, Motion, Simulation
PDF Full Text Request
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