湖北农业科学 ›› 2026, Vol. 65 ›› Issue (9): 152-156.doi: 10.14088/j.cnki.issn0439-8114.2026.09.025

• 农业机械 • 上一篇    下一篇

平原烟区风送式烟株打顶机的设计与性能试验

罗博1,2, 陈冰洁1, 李子健1, 朱晨辉1   

  1. 1.河南农业大学机电工程学院,郑州 450002;
    2.郑州财经学院智能工程学院,郑州 450000
  • 收稿日期:2026-03-16 出版日期:2026-09-25 发布日期:2026-09-17
  • 通讯作者: 朱晨辉(1989-),男,河南杞县人,副教授,主要从事农业机械液压与控制、无人驾驶、烟草全程机械化等研究,(电子信箱)zhuchenhui@henau.edu.cn。
  • 作者简介:罗博(1989-),男,河南商丘人,讲师,主要从事智能农业装备、汽车新技术、汽车控制原理等研究,(电子信箱)luoboj@stu.henau.edu.cn
  • 基金资助:
    河南省烟草公司科技资助项目(HYKJ201206)

Design and performance test of a pneumatic tobacco topping machine in a plain tobacco-growing area

LUO Bo1,2, CHEN Bing-jie1, LI Zi-jian1, ZHU Chen-hui1   

  1. 1. College of Mechanical and Electrical Engineering, Henan Agricultural University, Zhengzhou 450002, China;
    2. College of Intelligent Engineering, Zhengzhou College of Finance and Economics, Zhengzhou 450000, China
  • Received:2026-03-16 Published:2026-09-25 Online:2026-09-17

摘要: 为了突破传统烟株打顶抑芽作业效率低、花顶收集困难等瓶颈,提高平原烟区烟草生产机械化水平,设计了一种风送式烟株打顶机,旨在实现打顶、抑芽剂喷施与花顶收集的同步作业。针对腔体内气流分布不均及花顶易碰撞反弹问题,基于CFD软件对打顶机腔体进行流场仿真分析,并通过增设流线型导流板优化内部气流结构。台架试验结果表明,导流板有效消除了中、上部低速滞留区,使气流分布更趋均匀;刀盘转速对作业性能影响显著,当转速为600 r/min时,打顶合格率达98%,花顶收集合格率达96%,出口风速达6.5 m/s,满足高效风送收集要求。该装置结构合理、运行稳定,可为烟株打顶抑芽全程机械化提供可靠的装备支撑与技术保障。

关键词: 风送式, 烟株, 烟叶, 打顶机, 设计, 流场分析, 性能试验, 平原烟区

Abstract: In order to overcome the bottlenecks of low efficiency in traditional tobacco plant topping and sucker control operations and the difficulty in flower top collection, and to improve the mechanization level of tobacco production in plain tobacco-growing areas, a pneumatic tobacco topping machine was designed to achieve the simultaneous operations of topping, sucker control agent spraying, and flower top collection. To address the problems of uneven airflow distribution within the chamber and the tendency of flower tops to collide and rebound, a flow field simulation analysis of the topping machine chamber was conducted using CFD software, and the internal airflow structure was optimized by adding streamlined guide vanes. The bench test results showed that the guide vanes effectively eliminated the low-velocity stagnant zones in the middle and upper sections, resulting in a more uniform airflow distribution, and that the cutter disc rotational speed had a significant effect on the operational performance; when the rotational speed was 600 r/min, the topping qualification rate reached 98%, the flower top collection qualification rate reached 96%, and the outlet airflow velocity reached 6.5 m/s, meeting the requirements of efficient pneumatic collection. The device featured a rational structure and stable operation, providing reliable equipment support and technical assurance for the full-process mechanization of tobacco plant topping and sucker control.

Key words: pneumatic, tobacco plant, tobacco, tobacco topping machine, design, flow field analysis, performance test, plain tobacco-growing area

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