移栽机电驱双组苗筒共轨式分苗系统设计与试验
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新疆维吾尔自治区重点研发项目(2023B02021-2)、国家自然科学基金项目(50905153、51565059)、新疆维吾尔自治区蔬菜产业技术体系项目(XJARS-07-06)、新疆维吾尔自治区"天山英才"青年拔尖人才培养项目(2024TSYCCX0035)和新疆维吾尔自治区研究生科研创新项目(XJ2025G118)


Design and Experiment of Transplanter Electric Drive Double Group Seedling Cup Common Rail Type Separating Seedling System
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    摘要:

    为解决辣椒钵苗全自动移栽机因穴盘缺苗造成的漏栽问题,通过分析移栽机分苗作业过程,提出了2组苗筒独立驱动,落苗位空杯递补的分苗作业方式,设计了双组苗筒电驱共轨式分苗机构。2组苗筒运行轨迹相同,第1组苗筒在静态接苗的同时,第2组苗筒仍可正常完成落苗动作或执行空杯递补操作,确保栽植器鸭嘴始终有钵苗连续落入。选定光纤识别传感器进行钵苗检测,基于PLC构建自动控制系统,实时采集传感器输出信号并依据二值化阈值判定空杯状态,触发执行机构加速运动,完成空杯递补操作。以取投苗频率、供气压力、检补功能开启状态为试验因素,以取投苗失败率和栽植器鸭嘴接苗率为评估指标进行试验,确定了优选参数组合并进行田间试验。结果表明:当取投苗频率为120株/min、供气压力0.4MPa时,关闭检补功能,平均栽植器鸭嘴接苗率为86.46%,开启检补功能,平均栽植器鸭嘴接苗率为98.27%,栽植器鸭嘴接苗率显著提升。研究结果可为辣椒钵苗移栽机分苗装置设计提供参考。

    Abstract:

    Aiming to address the seedling leakage issue caused by missing seedlings in fully automatic pepper tray seedling transplanters, the seedling separation process of the transplanter was analyzed and a dual-seedling cylinder independent drive system with empty-cell replenishment for seedling separation was proposed, aiming to minimize missed planting. An electric drive double group seedling cup common rail type separating seedling system was designed. The two sets of seedling cylinders operated on identical trajectories. While one set remained stationary to receive seedlings, the other set can continue performing seedling-dropping operations or execute empty-cell replenishment tasks, ensuring a continuous supply of seedlings to the planting device’s duckbill mechanism. An optical fiber identification sensor was selected for seedling absence detection, and a PLC-based automatic control system was established to acquire the sensor output signals in real time. Based on the determination of the empty-cell state derived from a binary threshold algorithm, the system triggered the actuator to initiate accelerated motion for empty-cell replenishment operations. With planting frequency, air supply pressure, and the status of the detection and compensation function (on/off) as experimental factors. The trial evaluated transplant failure rates and duckbill seedling reception rates of the planting device to identify optimal parameter combinations, followed by field validation. Results showed that under the combination of 120 plants per minute planting frequency and 0.4MPa air supply pressure with detection and compensation function was disabled, the average duckbill seedling reception rate was 86.46%. When the detection and compensation function was activated, the rate was increased to 98.27%, demonstrating a significant enhancement in seedling reception efficiency. This research can provide valuable insights for the development of seedling separation devices for chili pepper tray seedlings.

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韩长杰,李德生,徐阳,陈蒙,石砦,袁盼盼,毛罕平.移栽机电驱双组苗筒共轨式分苗系统设计与试验[J].农业机械学报,2026,57(4):162-171. HAN Changjie, LI Desheng, XU Yang, CHEN Meng, SHI Zhai, YUAN Panpan, MAO Hanping. Design and Experiment of Transplanter Electric Drive Double Group Seedling Cup Common Rail Type Separating Seedling System[J]. Transactions of the Chinese Society for Agricultural Machinery,2026,57(4):162-171.

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  • 收稿日期:2025-06-20
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  • 在线发布日期: 2026-02-15
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