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作 者:张亚新[1] 曹万苍[1] 张立华[1] 杨震[1]
机构地区:[1]赤峰学院建筑与机械工程学院,内蒙古赤峰024000
出 处:《农机化研究》2016年第2期100-105,共6页Journal of Agricultural Mechanization Research
基 金:内蒙古自治区高等学校科学技术研究项目(NJZY242)
摘 要:针对北方播种玉米的垄作区内存在一些不适合全机械化播种机工作的特殊地块,设计了一种脚踏式播种机,核心部件是摆动前推机构。根据不同垄宽和株距,设计了由摆动前推杠杆和限位槽组成的摆动前推机构;通过分析摆动前推机构的运动特点,建立空间笛卡尔坐标系,求解摆动前推杠杆两端点的相对坐标,确定杠杆长度和限位槽关键结构参数。田间试验表明:在垄株距分别为350mm×270mm、380mm×300mm和400mm×3 3 0 mm时,垄距误差因脚踏式播种机结构的对称性及播种机支撑装置与垄形状的相似性而相互抵消,株距误差分别为7.44%、5.13%和1.91%。脚踏式玉米播种机摆动前推机构的设计满足了农艺要求,可为便携式脚踏播种机的设计提供参考。To solve the problems of the North Ridge sowing maize area exists in some not suitable for mechanized sowing machine work of the special region,a stampede- style maize seeder was designed. The critical part of the seeder is the Swing pushing device,which affects the operation performance of the whole machine. The key structure parameters were conformed through analyzing its moving characters. The result of field tests showed that in row spacing and plant spacing was respectively 350 mm × 270mm、380mm × 300 mm and 400 mm × 330 mm,and plant spacing error were 7. 44%,5.13% and 1. 91 %,Row distance error were negligible. The design on Swing pushing device of stampede- style maize seeder satisfied the agronomic requirements. The new design and the theoretical analysis method in this research can provide a reference for design and application of seeder.
分 类 号:S223.2[农业科学—农业机械化工程]
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