胡彩旗1,滕凤洁1,胡笑奇2*,Igor Smirnov3,杜鹍1,刘栋宇1,梁桥峻1
(1. 青岛农业大学机电工程学院,青岛266109,山东,中国;
2.枣庄学院机电工程学院,枣庄277160,山东,中国;
3.Federal Scientific Agroengineering Center VIM, 109428 Moscow, Russia)
摘要:针对果园废弃套袋纸不易降解、污染环境,人工回收效率低、成本高等问题,提出果园套袋纸回收机的设计。研究整机结构组成及工作原理,提出两种捡拾回收装置,分别是弹齿滚筒式捡拾装置和气吸式回收装置,通过对比分析选用弹齿滚筒式捡拾装置。
结合测得套袋纸的物理特性参数,对果园套袋纸回收机的关键装置进行理论计算和运动学分析,得到各装置的工作参数,确定了影响作业效果的关键因素为滚筒转速、行进速度和弹齿排数,以此为基础进行ADAMS仿真分析。利用目标函数优化,确定果园套袋纸回收机的最佳参数组合为:机器行进速度为2 km/h,滚筒转速为60 r/min,弹齿排数为5排。
果园试验验证表明,在最优参数组合下,模型预测的回收率为85.2%,果园试验的回收率为80.9%,与模型预测值相比,相对误差为5.3%,验证所设计的果园套袋纸回收机可以实现预期的工作状态,满足回收套袋纸的目的,且具有良好的回收效果。
关键词:废弃套袋纸;回收机械;结构设计;ADAMS仿真分析;果园试验
DOI: 10.25165/j.ijabe.20251806.9411
引用信息: Hu C Q, Teng F J, Hu X Q, Smirnov I, Du K, Liu D Y, et al. Design and test of a collecting machine for orchard waste fruit pouches. Int J Agric & Biol Eng, 2025; 18(6): 104–111.



















Design and test of a collecting machine for orchard waste fruit pouches
Caiqi Hu1, Fengjie Teng1, Xiaoqi Hu2*, Igor Smirnov3, Kun Du1, Dongyu Liu1, Qiaojun Liang1
(1. College of Mechanical and Electrical Engineering, Qingdao Agricultural University, Qingdao 266109, Shandong, China;
2. College of Mechanical and Electrical Engineering, Zaozhuang University, Zaozhuang 277160, Shandong, China;
3. Federal Scientific Agroengineering Center VIM, 109428 Moscow, Russia)
Abstract: In response to the issues posed by non-biodegradable orchard fruit pouches causing environmental pollution, as well as the inefficiency and high cost of manual recovery, a design for an orchard fruit pouch collecting machine was proposed. The study involved analyzing the structure and working principle of the entire machine, as well as proposing two types of pick-up and recovery devices: a spring-tooth roller type pickup device and an air-suction collecting device. After comparative analysis, the spring-tooth roller type pickup device was selected. Based on the physical characteristics of the fruit pouch, theoretical calculations and kinematic analysis were performed for the key components of the orchard fruit pouch collecting machine. This analysis yielded working parameters for each component, with a focus on roller rotational speed, machine travel speed, and number of spring-tooth rows as critical factors influencing operational effectiveness. Subsequently, the ADAMS simulations were conducted based on these findings. Then the response surface methodology was applied, and an optimal parameter combination for the orchard fruit pouch collecting machine was determined: a machine travel speed of 2 km/h, roller rotational speed of 60 r/min, and five rows of spring teeth. The prototype was made, and the results of orchard experiments indicated that with the optimal parameter combination, the recovery rate predicted by the model was 85.2% and that of the orchard experiment was 80.9%. The relative error between them is 5.3%. These findings confirmed that the designed orchard fruit pouch collecting machine could achieve the expected performance and effectively recover fruit pouches with good efficiency.
Keywords: waste fruit pouches, collecting machinery, structure design, ADAMS simulation analysis, orchard experiment
DOI: 10.25165/j.ijabe.20251806.9411
Citation:Hu C Q, Teng F J, Hu X Q, Smirnov I, Du K, Liu D Y, et al. Design and test of a collecting machine for orchard waste fruit pouches. Int J Agric & Biol Eng, 2025; 18(6): 104–111.
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