Design and experiment of brush-roller ginkgo leaf picker for the dwarf dense planting mode

IF 2.4 4区 农林科学 Q2 AGRICULTURAL ENGINEERING
Shanwen Zhang, Yongyuan Sun, Su Lu, Li Wang, Sian Liu, Zhongliu Wang, Min Dai, Jicheng Gao, Hong Miao
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引用次数: 0

Abstract

At present, ginkgo leave are still picked manually. A brush roller ginkgo leaf picker has been designed to improve harvesting efficiency and reduce losses caused by manual failure to pick leaves in time under large-scale planting areas. The ginkgo leaf picker is mainly composed of crawler chassis, gantry frame, brush roller picking parts, and collecting box. The kinematics of the brush roller is analyzed for the picking omission situation. An experimental platform for picking ginkgo biloba leaves was established. Three parameters, namely roller speed, moving speed, and roller inclination, were selected for optimization. Then the maximum net harvest rate and the minimum damage rate were achieved. The orthogonal test showed that when the roller speed was 130 rev/min, the moving speed was 0.25 m/s, and the roller inclination was 32°, the picking effect was the best, the net harvest rate was 93.32%, the damage rate was 1.42%, and the damage degree of the trunks was slight. The experiment proved that the brush-roller ginkgo leaf picker has a good picking effect, which can provide a reference for the optimization design of ginkgo leaf harvesting machinery under the dwarf dense planting mode.
矮密种植方式刷辊式银杏采叶机的设计与试验
目前,银杏叶仍以人工采摘为主。为提高采收效率,减少大面积种植下人工采摘不及时造成的损失,设计了一种刷辊式银杏采叶机。银杏采叶机主要由履带式底盘、龙门架、刷辊采摘部件、采集箱等组成。针对漏拣情况,分析了刷辊的运动学。建立了银杏叶采摘实验平台。选取托辊速度、移动速度、托辊倾角三个参数进行优化。达到最大净收获率和最小伤害率。正交试验表明,当滚筒转速为130转/min,移动速度为0.25 m/s,滚筒倾角为32°时,采摘效果最佳,净收获率为93.32%,毁伤率为1.42%,树干毁伤程度轻微。实验证明,刷辊式银杏采叶机具有良好的采摘效果,可为矮密种植模式下银杏采叶机械的优化设计提供参考。
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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