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自走式丹参栽植作业平台设计与试验
引用本文:徐高伟,邱绪云,高琦,荐世春,宋裕民. 自走式丹参栽植作业平台设计与试验[J]. 农机化研究, 2022, 44(1): 85-89,96. DOI: 10.3969/j.issn.1003-188X.2022.01.014
作者姓名:徐高伟  邱绪云  高琦  荐世春  宋裕民
作者单位:山东交通学院 汽车工程学院, 济南 250357;山东省农业机械科学研究院, 济南 250100
基金项目:山东省重点研发计划项目(2019GNC106112);山东交通学院博士科研启动基金项目(BS2020002);山东交通学院科研基金项目(Z202008)。
摘    要:针对丹参人工栽植劳动强度较大,机械化栽植缺乏专用栽植装备等问题,结合丹参膜上双行栽植的种植模式,设计了一种用于实现丹参大垄膜上双行栽植的专用自走式栽植平台.在确定整机的结构布局和传统系统的基础上,对栽植平台关键部件栽植机构进行设计,建立栽植机构运动学模型和人机交互辅助界面,以辅助界面为基础确定栽植机构的优化参数.样机试...

关 键 词:丹参作业平台  自走式  齿轮-五杆机构  辅助界面  参数优化

Design and Test of Self-propelled Planting Platform of Salvia Miltiorrhiza
Xu Gaowei,Qiu Xuyun,Gao Qi,Jian Shichun,Song Yumin. Design and Test of Self-propelled Planting Platform of Salvia Miltiorrhiza[J]. Journal of Agricultural Mechanization Research, 2022, 44(1): 85-89,96. DOI: 10.3969/j.issn.1003-188X.2022.01.014
Authors:Xu Gaowei  Qiu Xuyun  Gao Qi  Jian Shichun  Song Yumin
Affiliation:(Department of Automotive Engineering,Shandong Jiaotong University,Jinan 250357,China;Shandong Academy of Agricultural Machinery Sciences,Jinan 250100,China)
Abstract:In view of the labor intensity of artificial planting of salvia miltiorrhiza and the lack of special planting equipment in mechanized planting,combined with the planting mode of double row planting on film of salvia miltiorrhiza,a special planting platform for realizing double row planting on large ridge and film of salvia miltiorrhiza was designed.On the basis of determining the structure layout and traditional system of the whole machine,the planting mechanism of the key components of the planting platform was designed.The kinematic model of the planting mechanism and the human-computer interaction auxiliary interface were established.The optimal parameters of the planting mechanism were determined based on the auxiliary interface.The results of prototype test showed that performance indexes of the planting platform can meet standards of dry land planting and requirements of mechanized planting of salvia miltiorrhiza.
Keywords:salvia miltiorrhiza planting platform  self propelled type  geared five-bars mechanism  auxiliary interface  parameter optimization
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