一种月季双碳监管系统育苗装置

The rose dual-carbon monitoring system seedling device uses cameras and PLC to control the motor to adjust the height of the culture dish, solving the problem of rose roots being submerged and improving the seedling yield. It also optimizes the growth environment through a CO2 sensor to ensure the healthy growth of roses.

CN224504277UActive Publication Date: 2026-07-17SUZHOU YUANKE ECOLOGICAL CONSTR GRP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU YUANKE ECOLOGICAL CONSTR GRP CO LTD
Filing Date
2025-08-21
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing seedling cultivation devices, when rose seedlings grow excessively, their roots are easily completely submerged in water, leading to root rot and reducing the yield of high-quality seedlings.

Method used

The rose seedling cultivation device adopts a dual-carbon monitoring system. It uses a camera to monitor the root immersion status, uses a PLC to control the motor and cylinder to adjust the height of the culture dish to avoid the roots being completely submerged, and uses a CO2 sensor to monitor carbon emissions and regulate the growth environment.

Benefits of technology

This effectively prevents the rose roots from being completely submerged, improves the yield of high-quality roses, and ensures the healthy growth of roses by optimizing the growing environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种月季双碳监管系统育苗装置,包括盛装机构、培养机构和调高机构,所述盛装机构包括培育箱、转动扣接于所述培育箱顶部的箱盖、一体成型于所述培育箱内部的隔层、设于所述培育箱内部的腔体。本实用新型中,若某株月季过度生长导致其根部完全浸没于清水中,摄像头会捕捉该画面并上传至外接PLC,外接PLC通过其预设算法进行分析计算后,控制电机驱动输出轴转动相应时长,进而带动往复丝杆运动,使轴承座移动至目标月季位置,随后,气缸推动对应于该月季的U形插;U形插通过插入目标月季上方套件的底部,可抬升其对应的培养皿高度,从而避免该月季根部完全浸没于水中,以此确保良品率。
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Claims

1. A rose double carbon regulatory system seedling device, characterized in that, include: The container (100) includes an incubator (110), a lid (120) that is rotatably fastened to the top of the incubator (110), a partition (130) integrally formed inside the incubator (110), and a cavity (140) disposed inside the incubator (110), the cavity (140) being located at the bottom of the partition (130); A culture mechanism (200) includes a plurality of ports (210) opened on the partition (130) and a culture dish (220) that slides through the top of the ports (210), wherein the culture dish (220) is configured as a plurality of ports; The height adjustment mechanism (300) includes a kit (310) sleeved on the top of the petri dish (220), a U-shaped plug (320) disposed on one side of the kit (310) and slidably connected to the partition (130), a reciprocating screw (340) rotating through one side of the incubator (110), a motor (330) connected between the incubator (110) and the reciprocating screw (340), a bearing seat (350) sleeved on the outside of the reciprocating screw (340) and in contact with the partition (130), a cylinder (360) connected to the bearing seat (350), and a camera (370) penetrating the other side of the incubator (110). The U-shaped plug (320), the cylinder (360) and the camera (370) are all electrically connected to an external PLC.

2. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 1, characterized in that, Multiple culture dishes (220) are arranged in a row with equal spacing, and the bottom of the culture dishes (220) is connected to the inside of the cavity (140).

3. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 1, characterized in that, The bottom of the kit (310) fits against the top of the partition (130), and both the bottom of the kit (310) and the top of the U-shaped insert (320) are set as curved surfaces.

4. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 1, characterized in that, Multiple U-shaped inserts (320) are arranged at equal intervals in a row, and a spacing suitable for the cylinder (360) to slide is formed between the reciprocating lead screw (340) and the row of U-shaped inserts (320).

5. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 1, characterized in that, The incubator (110) is equipped with a monitoring mechanism (400), which includes a sleeve plate (410) connected to the inner wall of the petri dish (220), a CO2 sensor (420) inserted into the sleeve plate (410), and a fan (430) embedded in the cover (120). Multiple CO2 sensors (420) are configured, and both the CO2 sensor (420) and the fan (430) are electrically connected to an external PLC.

6. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 1, characterized in that, The cavity (140) is provided with a water lifting mechanism (500). The water lifting mechanism (500) includes two electric push rods (520) fixed to the bottom of the cavity (140) and a piston plate (510) connected between the two electric push rods (520). The outer wall of the piston plate (510) is in interference fit with the inner wall of the cavity (140).

7. The Rosa chinensis double-carbon regulatory system seedling raising device according to claim 6, characterized in that, Two electric push rods (520) are connected in series, and the electric push rods (520) are electrically connected to an external PLC.