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Optimization design and test of rice plug seedling transplanting mechanism of planetary gear train with incomplete eccentric circular gear and non-circular gears

机译:不完全偏心圆齿轮和非圆齿轮行星齿轮系稻塞育苗机构的优化设计与试验

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In order to solve the problem of the high-speed mechanized transplanting of rice plug seedlings, the design requirements of transplanting mechanism for rice plug seedlings were analyzed and a kind of rice plug seedling transplanting mechanism of planetary gear train based on the drive with incomplete eccentric circular gear and non-circular gears was designed innovatively. The laboratory kinematics was examined. The working principle of the transplanting mechanism for rice plug seedlings was studied, kinematics analysis of the transplanting mechanism was carried out and its kinematic model was set up. A human-computer interaction optimization method was used to optimize the parameters of the transplanting mechanism. The computer aided analysis and optimization software of the transplanting mechanism based on Visual Basic 6.0 was developed. Through analyzing the influence of design variables on the optimization objectives of the transplanting mechanism, a set of parameters of the transplanting mechanism which meet the requirements of transplanting trajectory and posture for transplanting rice seedlings were obtained by means of human-computer interaction. The structure of the transplanting mechanism was designed according to this set of parameters, and its virtual prototype and physical prototype were set up and manufactured, respectively. The kinematic simulation test and high-speed photography kinematic test of the transplanting mechanism were conducted to obtain its kinematic performances, such as transplanting trajectory and posture. The results of bench test, simulation analysis and theoretical analysis were almost in agreement, which verified the correctness of the theoretical model and design results of the transplanting mechanism, indicating that the optimized transplanting mechanism can satisfy the requirements of transplanting rice seedlings and be applied in the rice plug seedling transplanter. Keywords: plug seedling, transplanting mechanism, incomplete eccentric circular gear, non-circular gear, planetary gear train, optimization design DOI: 10.25165/j.ijabe.20171006.2712 Citation: Ye B L, Yi W M, Yu G H, Gao Y, Zhao X. Optimization design and test of rice plug seedling transplanting mechanism of planetary gear train with incomplete eccentric circular gear and non-circular gears. Int J Agric & Biol Eng, 2017; 10(6): 43–55.
机译:为了解决插秧机高速机械化移植的问题,分析了插秧机插秧机构的设计要求,并提出了一种基于偏心不完全驱动的行星齿轮系插秧机插秧机构。圆齿轮和非圆齿轮进行了创新设计。检查了实验室运动学。研究了插秧机插秧机构的工作原理,进行了插秧机构的运动学分析,建立了运动学模型。采用人机交互优化方法对移植机构的参数进行优化。开发了基于Visual Basic 6.0的移植机制计算机辅助分析与优化软件。通过分析设计变量对移栽机构优化目标的影响,通过人机交互的方法,获得了一套适合水稻秧苗移栽轨迹和姿势要求的移栽机构参数。根据这组参数设计了移植机构的结构,分别建立并制造了其虚拟原型和物理原型。对移植机构进行了运动学仿真测试和高速摄影运动学测试,以获取其运动性能,例如移植轨迹和姿势。台架试验,模拟分析和理论分析的结果基本吻合,验证了理论模型和移栽机理设计结果的正确性,表明优化的移栽机理可以满足水稻苗期移栽的要求,并在水稻中应用。水稻插秧机。关键字:穴盘苗,移栽机制,不完全偏心圆齿轮,非圆齿轮,行星齿轮系,优化设计DOI:10.25165 / j.ijabe.20171006.2712引用:叶BL,易WM,余GH,高Y,赵X.偏心圆齿轮和非圆齿轮不完整的行星齿轮系稻塞育苗机构的优化设计与试验。国际农业与生物工程杂志,2017; 10(6):43-55。

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