农业工程学报
農業工程學報
농업공정학보
2014年
23期
10-16
,共7页
李革%应孔月%郑峰君%顾锦波%徐志伟
李革%應孔月%鄭峰君%顧錦波%徐誌偉
리혁%응공월%정봉군%고금파%서지위
农业机械%齿轮%优化%非圆齿轮%无函数表达%分插机构%人机优化
農業機械%齒輪%優化%非圓齒輪%無函數錶達%分插機構%人機優化
농업궤계%치륜%우화%비원치륜%무함수표체%분삽궤구%인궤우화
agricultural machinery%gears%optimization%noncircular gear%nonfunction expression%transplanting mechanism%human-compute optimization
针对行星轮系分插机构的非圆齿轮节曲线形状复杂、反求时难以用函数对非圆齿轮节曲线拟合的问题,把非圆齿轮的节曲线用数值点形式表示,提出了无函数表达非圆齿轮节曲线的设计方法。应用数值分析方法,对分插机构的秧针进行运动学分析;编写了人机交互设计和优化软件,研究设计变量对秧针运动轨迹和运动姿态的影响,对反求得到的无函数表达节曲线的非圆齿轮系进行检验和修正,完成了对行星架初始安装角等分插机构参数的优化。结果显示:非圆齿轮中心距为40.7 mm,齿轮齿数为19,行星架初始安装角为35°,栽植臂初始安装角为42°,秧针长度为142 mm,取秧角为12°,推秧角为75°为满足农业要求的分插机构的结构参数。秧针相对运动轨迹的高速摄影分析和田间插秧试验说明,求得的旋转式分插机构能够很好地满足插秧要求。该研究结果为高速插秧机核心工作部件的研发提供参考。
針對行星輪繫分插機構的非圓齒輪節麯線形狀複雜、反求時難以用函數對非圓齒輪節麯線擬閤的問題,把非圓齒輪的節麯線用數值點形式錶示,提齣瞭無函數錶達非圓齒輪節麯線的設計方法。應用數值分析方法,對分插機構的秧針進行運動學分析;編寫瞭人機交互設計和優化軟件,研究設計變量對秧針運動軌跡和運動姿態的影響,對反求得到的無函數錶達節麯線的非圓齒輪繫進行檢驗和脩正,完成瞭對行星架初始安裝角等分插機構參數的優化。結果顯示:非圓齒輪中心距為40.7 mm,齒輪齒數為19,行星架初始安裝角為35°,栽植臂初始安裝角為42°,秧針長度為142 mm,取秧角為12°,推秧角為75°為滿足農業要求的分插機構的結構參數。秧針相對運動軌跡的高速攝影分析和田間插秧試驗說明,求得的鏇轉式分插機構能夠很好地滿足插秧要求。該研究結果為高速插秧機覈心工作部件的研髮提供參攷。
침대행성륜계분삽궤구적비원치륜절곡선형상복잡、반구시난이용함수대비원치륜절곡선의합적문제,파비원치륜적절곡선용수치점형식표시,제출료무함수표체비원치륜절곡선적설계방법。응용수치분석방법,대분삽궤구적앙침진행운동학분석;편사료인궤교호설계화우화연건,연구설계변량대앙침운동궤적화운동자태적영향,대반구득도적무함수표체절곡선적비원치륜계진행검험화수정,완성료대행성가초시안장각등분삽궤구삼수적우화。결과현시:비원치륜중심거위40.7 mm,치륜치수위19,행성가초시안장각위35°,재식비초시안장각위42°,앙침장도위142 mm,취앙각위12°,추앙각위75°위만족농업요구적분삽궤구적결구삼수。앙침상대운동궤적적고속섭영분석화전간삽앙시험설명,구득적선전식분삽궤구능구흔호지만족삽앙요구。해연구결과위고속삽앙궤핵심공작부건적연발제공삼고。
Design documents about non-circular gears were firstly given with pitch curve functions of gears, and then tooth profiles of non-circular gears were designed according to the design principle of the gear. Because of complicated pitch curve of non-circular gear, in the reverse design process of non-circular gear’s transplanting mechanism, it was difficult to use the function to cover some of the details of non-circular gear pitch curve, which made the study of rotary transplanting mechanism with non-circular gears be carried on, only if a kind of curve function was given. It influenced further study of non-circular gear transplanting mechanism. Aiming at the problem that it was difficult to determine the non-circular gear pitch curve when reversing, this paper studied non-circular gear pitch curve in the expression of numerical points form, and put forward a method of non-circular gear pitch curve in the expression of non-function. The phenomenon of concave or nonsmooth connection in the first joint curve would often appear when the tooth top data of surveying and mapping was fit. So curve correction was needed. It was difficult to find a new suitable function to fit the corrected tooth top data because the original fitting function of addendum curve was not used for the corrected tooth top data. Therefore, this paper proposed a method that the corrected tooth top curve was expressed by the data of addendum circle’s numerical point. The method overcame the limitation of designing non-circular gears transplanting mechanism when the function of pitch curve was given, and it also avoided the problem that it was difficult to find a new suitable function to fit the corrected tooth top data. Numerical point data of non-circular gear pitch curve was obtained by moving the addendum circle an addendum distance to rotation center. Then non-circular gear pitch curve with non-function expression was obtained, which made the design of the non-circular gear more flexible. Using numerical analysis method, the method of solving the seedling needle trajectory was studied, when non-circular gear pitch curve was in the expression of non-function. The kinematics analysis of transplanting mechanism was carried out. Using the design method of human-computer interaction, a software of optimization design of transplanting mechanism was written, to which that seedling needle trajectory met the planting requirements was the optimization target. The software of visualizing characteristics of mechanism motion was used to optimize the structure, and a group of structural parameters which met the agronomic requirements were obtained. The prototype of transplanting mechanism was manufactured based on the optimized structural parameters. The seedling needle tip point’s relative trajectories obtained from high-speed camera and theory study were the same, which indicated that manufactured transplanting mechanism met the requirement of actual testing. According to the field planting experiment, manufactured transplanting mechanism has good seedling upright degree, high precision of fetching seedlings, less seedling injury and also satisfies the requirement of machine planting. The field planting experiment also proves the correctness of reversing of non-circular gears transplanting mechanism based on non-function expression of non-circular gears pitch curve. The research results provided the reference for the research and development of core working parts of high speed transplanter.