Optimal design of transplanting mechanism with differential internal engagement non-circular gear trains

IF 2.4 4区 农林科学 Q2 AGRICULTURAL ENGINEERING
Maile Zhou, Jiajia Yang, Tingbo Xu, Jianjun Ying, Xinzhong Wang
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引用次数: 0

Abstract

This study aimed at the problems of unequal speed transmission ratio mutual restriction and side gap accumulation of the transplanting mechanism with single-degree-of-freedom K-H-V non-circular planetary gear train, which leads to poor trajectory and attitude, and poor precision of movement. This study has proposed a simple structure of transplanting mechanism with differential internal engagement non-circular planetary gear trains, which reconstructs the complex transplanting trajectory and attitude of the planting arm through single-stage unequal speed transmission. The working principle of the transplanting mechanism was analysed, and the kinematic theoretical model of the transplanting mechanism was established. The optimal design software for the transplanting mechanism was developed based on the visual platform. The dimensions optimisation on the transplanting mechanism was completed considering the requirements with strong coupling, and multi-objective and a set of superior mechanism parameters were obtained. The design theory and method of the internal engagement non-circular gear pair were proposed based on the generating principle. The correctness and accuracy of the trajectory and attitude of the transplanting mechanism were verified through virtual simulation experiments. The experiments show that the designed transplanting mechanism with internal engagement non-circular planetary gear trains was compact in structure, the trajectory meets the requirements of multi-objective transplanting, and the trajectory and attitude can be accurately reproduced, which provides a new feasible solution for the innovative design of the transplanting mechanism.
差动内啮合非圆轮系移栽机构的优化设计
针对单自由度K-H-V非圆行星轮系移栽机构存在的速比传动比不等、相互制约和侧隙积累等问题,导致移栽机构的运动轨迹和姿态较差,运动精度较差。提出了一种结构简单的差动内啮合非圆行星轮系移栽机构,通过单级不等速传动重构移栽臂复杂的移栽轨迹和姿态。分析了移栽机构的工作原理,建立了移栽机构的运动学理论模型。基于可视化平台开发了移栽机构优化设计软件。考虑强耦合要求,对移栽机构进行了尺寸优化,得到了一组多目标的优机构参数。基于内啮合非圆齿轮副的生成原理,提出了内啮合非圆齿轮副的设计理论和方法。通过虚拟仿真实验验证了移栽机构轨迹和姿态的正确性和准确性。实验结果表明,所设计的内啮合非圆行星轮系移栽机构结构紧凑,轨迹满足多目标移栽要求,且轨迹和姿态能够精确再现,为移栽机构的创新设计提供了一种新的可行方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Agricultural Engineering
Journal of Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
2.30
自引率
5.60%
发文量
40
审稿时长
10 weeks
期刊介绍: The Journal of Agricultural Engineering (JAE) is the official journal of the Italian Society of Agricultural Engineering supported by University of Bologna, Italy. The subject matter covers a complete and interdisciplinary range of research in engineering for agriculture and biosystems.
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