孙博,曹肆林,卢勇涛,席永刚,王敏,营雨琨,郑士琦.“张持”式顺向残膜捡拾机构的设计与试验[J].干旱地区农业研究,2020,38(5):252~258
“张持”式顺向残膜捡拾机构的设计与试验
Design and test of open\|hold forward rotation residual film machine
  
DOI:10.7606/j.issn.1000-7601.2020.05.35
中文关键词:  残膜捡拾  机构设计  响应面试验  优化  田间试验  拾膜率
英文关键词:residual film picking up  mechanism design  response surface experiments  optimization  field test  film pick\|up rate
基金项目:国家自然科学基金(51741508);新疆生产建设兵团中青年科技创新领军人才计划(2018CB011);新疆生产建设兵团重点领域科技攻关项目(2018AB13)
作者单位
孙博 石河子大学机械电气工程学院新疆 石河子 832000 
曹肆林 新疆农垦科学院机械装备研究所新疆 石河子 832000 
卢勇涛 新疆农垦科学院机械装备研究所新疆 石河子 832000 
席永刚 新疆科神农业装备技术开发股份有限公司新疆 石河子 832000 
王敏 新疆农垦科学院机械装备研究所新疆 石河子 832000 
营雨琨 新疆农垦科学院机械装备研究所新疆 石河子 832000 
郑士琦 石河子大学机械电气工程学院新疆 石河子 832000 
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中文摘要:
      针对现有残膜捡拾机构工作过程中土和杂物聚集在机组前进的方向造成的拥堵问题,为减小工作阻力,利用捡拾齿与土壤间阻力和弹簧拉力,设计了“张持”式顺向残膜捡拾机构,其包含摇臂装置和捡拾装置等装置仅在拖拉机拖拽下完成残膜捡拾,适应拖拉机前进速度。对捡拾齿进行受力分析和运动学分析,确定捡拾齿的直径为15 mm、周向排列数量14、轴向间距140 mm;通过分析捡拾齿闭合过程确定了轨道形状。田间试验表明,在机具作业速度5.15 km·h-1、入土深度8.49 cm、张持距离7.61 cm时拾膜率达86.40%。
英文摘要:
      Aiming at the problem of congestion caused by the accumulation of soil and debris in the forward direction of the unit during the operation of the existing residual film pickup machine, in order to reduce the working resistance, the “open\|hold” style of including rocker device and pickup device was designed using the resistance among the picking teeth, the soil, and the spring tension to the residual film pick\|up machine, the residual film was picked up only by the tractor to adapt to the tractor’s forward speed.The force analysis and kinematics analysis of the pick\|up teeth determined that the diameter of the pick\|up teeth was 15 mm, the number of circumferential arrangements was 14 and the axial distance was 140 mm; the track shape were determined by analyzing the closing process of the picking teeth. Field tests showed that the film pick\|up rate reached 86.40% when the machine operating speed was 5.15 km·h-1, the soil depth was 8.49 cm, and the holding distance was 7.61 cm. The research results helped to solve the problem of residual film pollution in cotton fields and enrich the design theory of residual film recovery machinery.
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