A seedling raising frame for rosemary planting

By setting up mesh panels to divide the space inside the rosemary seedling rack, the spray water can be recycled and reused, solving the problem of water waste in the seedling rack and improving seedling efficiency and seedling quality.

CN224290857UActive Publication Date: 2026-05-29HENAN JIANYUAN ROSEMARY PROD CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN JIANYUAN ROSEMARY PROD CO LTD
Filing Date
2025-07-14
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing rosemary seedling racks cannot effectively recover excess water during spraying operations, resulting in water waste and a damp and messy seedling environment, which affects work efficiency and seedling quality.

Method used

A mesh partition is set up inside the seedling frame to divide the space, and the lower space is used to collect the spray water. With the reasonable arrangement of the spray head and the diversion pipe, the spray water can be effectively recycled and reused, forming a closed water circulation system.

Benefits of technology

It significantly reduces water waste, improves the efficiency and quality of the seedling process, ensures a stable growth environment for seedlings, and saves on seedling costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to seedling raising equipment technical field discloses a kind of rosemary is planted and is used to raise seedling frame, including two columns of symmetrical arrangement, multiple seedling frames are arranged by interval from top to bottom between two columns, each seedling frame is separated into two spaces by net board in each, seedling tray is placed in upper space, lower space is received and is sprayed with water;Except the seedling frame of bottom layer, the lower space of remaining seedling frame is all set with the shower head towards below;Except the seedling frame of bottom layer, the lower space of remaining seedling frame is all connected with shunt pipe, the shunt pipe is connected with main pipe, and the main pipe is communicated with water source;The utility model, by setting net board to separate space in seedling frame, and using seedling frame lower space to receive and spray with water, while combining the reasonable setting of shower head and shunt pipe, the effective recovery and reuse of spray water are realized, and water flow waste is significantly reduced.
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Description

Technical Field

[0001] This utility model relates to the field of seedling equipment technology, and in particular to a seedling rack for rosemary cultivation. Background Technology

[0002] Rosemary, an aromatic plant with edible, medicinal, and ornamental value, is widely used in spice processing, cosmetics manufacturing, and horticultural landscaping. Its large-scale cultivation has led to a growing demand for high-quality seedlings. In the rosemary seedling stage, seedling racks are crucial equipment, effectively improving space utilization and ensuring efficient seedling cultivation.

[0003] However, existing rosemary seedling racks have significant drawbacks in use. When spraying the upper layer of rosemary, excess water cannot be effectively recycled and is directly lost into the external environment. This not only wastes a lot of water resources and increases seedling costs, but also may cause the seedling environment to become damp and messy due to water overflow, affecting work efficiency and seedling quality.

[0004] Therefore, there is an urgent need for a seedling rack for rosemary cultivation. By setting up a mesh panel to divide the space inside the seedling frame and using the space at the bottom of the seedling frame to collect spray water, and by combining the reasonable setting of the spray head and the diversion pipe, the effective recycling and reuse of spray water is achieved, which significantly reduces water waste and provides a more efficient and water-saving equipment solution for rosemary seedling cultivation. Utility Model Content

[0005] The purpose of this utility model is to provide a seedling rack for rosemary cultivation. By setting up a mesh panel to divide the space inside the seedling frame and using the space at the bottom of the seedling frame to collect spray water, and by combining the reasonable arrangement of the spray head and the diversion pipe, the effective recycling and reuse of spray water is achieved, which significantly reduces water waste.

[0006] The present invention adopts the following technical solution:

[0007] A rosemary seedling rack includes two symmetrically arranged columns. Multiple seedling frames are spaced apart between the two columns from top to bottom. Each seedling frame is divided into upper and lower spaces by a mesh panel. The upper space holds seedling trays, and the lower space holds spray water. Except for the bottom seedling frame, the lower spaces of the other seedling frames are equipped with downward-facing spray heads. Except for the bottom seedling frame, the lower spaces of the other seedling frames are connected to diversion pipes, which are connected to a main pipe, which is connected to a water source.

[0008] Preferably, the inner wall of the seedling frame is provided with supporting ridges, and the mesh plate is placed on the supporting ridges.

[0009] Preferably, the seedling frame is provided in two columns, distributed on both sides of the width direction of the column.

[0010] Preferably, the seedling frames on both sides are arranged in an alternating vertical arrangement.

[0011] Preferably, the distance between the seedling frame and the column on each side gradually increases from top to bottom.

[0012] Preferably, a spray tank is provided between the two columns, and a water pump is connected to the spray tank. The outlet end of the water pump is connected to the main pipe.

[0013] Preferably, a drain pipe is provided at the bottom end of the seedling frame, and the drain pipe is connected to the water tank.

[0014] Preferably, the space below the seedling frame is provided with a guide slope that slopes from top to bottom from the side closest to the column to the side of the sprinkler head or the drain pipe.

[0015] Preferably, the side wall of the seedling frame is provided with a breathable mesh, which is connected to the space below the seedling frame and located on the upper part of the guide slope.

[0016] Preferably, a valve is provided between the branch pipe and the main pipe.

[0017] Compared with existing technologies, the advantages of this invention are as follows: By installing a mesh panel inside each seedling frame, the interior of the seedling frame is divided into upper and lower spaces. The lower space is used to collect spray water, effectively collecting excess water from the upper layer during spraying operations, preventing water from directly flowing into the external environment. Compared with traditional seedling racks, this greatly reduces water waste and saves water costs during the seedling process. The spray heads installed in the lower spaces of the remaining seedling frames (except the bottom layer), combined with the water-collecting space, allow the collected water to be reused for irrigating the rosemary seedlings in the lower layer. This design forms a relatively closed water circulation system, not only realizing the recycling of water resources but also making the spraying process of the entire seedling rack more uniform and efficient. This helps rosemary seedlings obtain a more stable and suitable growth environment, improving seedling survival rate and quality. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of an embodiment of this application;

[0019] Figure 2 This is a side sectional view of the seedling frame according to an embodiment of this application. Detailed Implementation

[0020] The present invention will now be described clearly and completely with reference to the accompanying drawings and embodiments:

[0021] like Figures 1 to 2 As shown, the rosemary seedling rack of this utility model includes two symmetrically arranged columns 1, each column 1 with a supporting base plate 2 at its bottom. Multiple seedling frames 3 are spaced apart between the two columns 1 from top to bottom. While ensuring structural stability, this design fully utilizes the three-dimensional space, improving space utilization and allowing for the cultivation of more rosemary seedlings per unit area, thus facilitating large-scale and intensive rosemary seedling cultivation. Each seedling frame 3 is divided into upper and lower spaces by a mesh panel 4. The upper space is used to place seedling trays, which can be plastic mesh products in the existing technology; the lower space of the seedling frame 3 is used to collect spray water; except for the bottom seedling frame 3, the lower spaces of the other seedling frames 3 are all equipped with downward-facing spray heads 5, which can be atomizing spray heads in the existing technology, so as to evenly spray the germinating rosemary; except for the bottom seedling frame 3, the lower spaces of the other seedling frames 3 are all connected to diversion pipes 6, which are connected to the main pipe 7, and the main pipe 7 is connected to the water source. It is worth noting that when seedling frames 3 are installed on both sides of the column 1, the bottom seedling frames 3 on each side do not have sprinkler heads 5 and diversion pipes 6. This utility model can divide the inside of the seedling frame 3 into upper and lower spaces by installing a mesh plate 4 in each seedling frame 3. The lower space is used to collect the sprinkler water, which can effectively collect the excess water during the upper sprinkler operation and prevent the water from being directly lost to the external environment. Compared with traditional seedling racks, this greatly reduces the waste of water resources and saves water costs in the seedling process.

[0022] Furthermore, the inner wall of the seedling frame 3 is provided with supporting ridges 8, and the mesh plate 4 is placed on the supporting ridges 8. This arrangement allows the mesh plate 4 to be placed and removed within the seedling frame 3, facilitating cleaning of the seedling frame 3 and the mesh plate 4. It also facilitates subsequent targeted replacement, reducing maintenance costs.

[0023] Furthermore, in this embodiment, the seedling frames 3 are arranged in two rows, with the two rows of seedling frames 3 distributed on both sides of the width direction of the column 1 to improve the utilization of space. In addition, the seedling frames 3 on both sides are arranged in an alternating vertical position, that is, the seedling frames 3 on one side are located at the top and the seedling frames 3 on the other side are located at the bottom. This arrangement can reduce interference between them and provide favorable conditions for the growth of rosemary seedlings. In addition, the distance between the seedling frames 3 on each side and the column 1 gradually increases from top to bottom. This arrangement can reduce the interference generated by the rosemary between the upper and lower layers on each side during the growth process.

[0024] Furthermore, a spray water tank 9 is installed between the two columns 1, and a water pump 10 is connected to the spray water tank 9. The outlet end of the water pump 10 is connected to the main pipe 7. Drainage pipes 11 are installed at the bottom of the seedling frames 3 on both sides of the column 1. The drainage pipes 11 are connected to the water tank, so that the upper spray water collected in the bottom seedling frames 3 can smoothly enter the spray water tank 9 for recycling, reducing water waste. In addition, in this embodiment, because the water flow passes through the mesh plate 4 for filtration, the water flowing into the space below the seedling frames 3 and into the spray water tank 9 usually does not carry large particles of impurities, thus preventing clogging of the spray heads 5. Furthermore, a valve is installed between the diversion pipe 6 and the main pipe 7, allowing for flexible adjustment of the water supply to different locations of the rosemary according to its growth.

[0025] The space beneath the upper seedling frames 3, from the side near the column 1 to the sprinkler head 5, and the bottom seedling frames 3, from the side near the column 1 to the drain pipe 11, are all designed with a downward-sloping guide slope 12 to facilitate smooth water flow into the circulation system. Furthermore, each seedling frame 3 has ventilation mesh 13 on both ends of its sidewalls. The ventilation mesh 13 communicates with the space below the seedling frame 3 and is located on the upper part of the guide slope 12. This reduces water splashing and allows for air flow within the lower space, providing favorable conditions for rosemary root growth.

[0026] This invention utilizes a mesh panel 4 to divide each seedling frame 3 into upper and lower spaces. The lower space collects water from the spraying process, effectively preventing excess water from flowing directly into the external environment. Compared to traditional seedling racks, this significantly reduces water waste and saves on water costs during seedling cultivation. Sprayers 5 located in the lower spaces of the remaining seedling frames 3 (except the bottom layer) work in conjunction with the water-collecting space to reuse the collected water for irrigating the rosemary seedlings in the lower layers. This design creates a relatively closed water circulation system, achieving water recycling and ensuring more uniform and efficient spraying throughout the seedling rack. This contributes to a more stable and suitable growth environment for the rosemary seedlings, improving their survival rate and quality. The connection between the branch pipe 6 and the main pipe 7 enables the rational distribution and effective management of water flow across each layer of the seedling frames 3. The main pipe 7 connects to the water source, making it easy to control the water supply of the entire seedling rack. The branch pipe 6 can evenly deliver water to the sprinkler heads 5 on each layer, further ensuring the irrigation needs of the rosemary seedlings on each layer. It also facilitates the maintenance and management of the entire seedling rack, improving the convenience and standardization of the seedling work.

Claims

1. A seedling rack for rosemary cultivation, characterized in that: The device includes two symmetrically arranged columns, with multiple seedling frames spaced apart from top to bottom between the two columns. Each seedling frame is divided into upper and lower spaces by a mesh panel. The upper space holds seedling trays, and the lower space holds spray water. Except for the bottom seedling frame, the lower spaces of the other seedling frames are equipped with downward-facing spray heads. Except for the bottom seedling frame, the lower spaces of the other seedling frames are connected to diversion pipes, which are connected to the main pipe, and the main pipe is connected to the water source.

2. The rosemary seedling rack according to claim 1, characterized in that: The inner wall of the seedling frame is provided with supporting ridges, and the mesh plate is placed on the supporting ridges.

3. The rosemary seedling rack according to claim 1, characterized in that: The seedling frames are arranged in two columns, distributed on both sides of the width direction of the columns.

4. The rosemary seedling rack according to claim 2, characterized in that: The seedling frames on both sides are arranged in an alternating vertical arrangement.

5. The rosemary seedling rack according to claim 4, characterized in that: The distance between the seedling frame and the upright on each side gradually increases from top to bottom.

6. The rosemary seedling rack according to claim 1, characterized in that: A spray tank is provided between the two columns, and a water pump is connected to the spray tank. The outlet end of the water pump is connected to the main pipe.

7. The rosemary seedling rack according to claim 6, characterized in that: The bottom of the seedling frame is equipped with a drain pipe, which is connected to the water tank.

8. The rosemary seedling rack according to claim 7, characterized in that: The space below the seedling frame is designed with a downward-sloping guide surface from the side closest to the column to the side of the sprinkler head or the drain pipe.

9. The rosemary seedling rack according to claim 8, characterized in that: The side wall of the seedling frame is provided with a breathable mesh, which is connected to the space below the seedling frame and is located on the upper part of the guide slope.

10. The rosemary seedling rack according to claim 1, characterized in that: A valve is provided between the branch pipe and the main pipe.