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指盘式搂草机的设计与试验研究
引用本文:李凤鸣,马赛,张平,翟改霞,贺刚,王全喜.指盘式搂草机的设计与试验研究[J].农机化研究,2016(7):176-181.
作者姓名:李凤鸣  马赛  张平  翟改霞  贺刚  王全喜
作者单位:中国农业机械化科学研究院呼和浩特分院,呼和浩特,010020
基金项目:内蒙古自治区创新方法应用推广与示范项目(2013IM020800)
摘    要:针对目前我国传统搂草设备存在的干燥速度慢、散草打捆困难和草根容易捂烂等问题,研制出适应市场需求的新型指盘式搂草机,能够实现对苜蓿、稻、麦、秸秆的搂集和翻晒作业。为此,论述了9LZ-6.0型指盘式搂草机的整机结构和工作原理,完成了可调旋转架、指盘收放机构和指盘弹齿等关键部件的结构参数设计计算,完成了对弹齿的有限元分析和运动学模拟仿真,并对样机进行了田间试验,通过试验结果与技术指标的分析对样机进行了优化设计。试验结果表明:该机具各项技术性能指标均能满足设计要求,操作方便,使用可靠,搂草质量好,生产率高,可满足我国饲草收获的要求。

关 键 词:指盘式搂草机  弹齿  有限元分析  运动仿真

Design and Experiment of Finger-wheel Rake
Li Fengming;Ma Sai;Zhang Ping;Zhai Gaixia;He Gang;Wang Quanxi.Design and Experiment of Finger-wheel Rake[J].Journal of Agricultural Mechanization Research,2016(7):176-181.
Authors:Li Fengming;Ma Sai;Zhang Ping;Zhai Gaixia;He Gang;Wang Quanxi
Institution:Li Fengming;Ma Sai;Zhang Ping;Zhai Gaixia;He Gang;Wang Quanxi;Hohhot Branch of Chinese Academy of Agricultural Mechanical Sciences;
Abstract:Aiming at the problems such as the low drying speed, baling difficulties of scatter hay and grass-roots rotten, a new type of finger-wheel rake was developed to meet with the market demands and meet with the demands of the forage harvest in our country.It can rake and ted the alfalfa and rice or wheat straw.The overall structure and working principle were described briefly.The major working components such as the structure parameters of the adjustable rotation frame, the extending-retracting mechanism of finger wheel and the spring tooth were designed.And finite element analysis on spring tooth and the kinematics simulation on the finger-wheel was carried out.Through the analysis of performance test results and the technical index of the prototype,it was optimized.The test results showed that all technical indexes of the machine meet the design requirements.It is easy to operate and can be used reliability.While operating, it had good ra-king effect and high working productivity.The machine can satisfy with the harvesting requirements of forage grass.
Keywords:finger-wheel rake  spring tooth  finite element analysis  kinematic simulation
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