Hydroponic seedling raising device for vegetables
The hydroponic seedling device, designed with tiered hydroponic racks and hollow racks, solves the problem of limited camera observation angles in existing technologies, enabling rapid extraction of individual seedlings and simulation of sunlight environment, thus improving the convenience and stability of the seedling cultivation process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2026-03-31
AI Technical Summary
The existing hydroponic seedling cultivation devices have limited camera viewing angles during observation and sampling, making it impossible to fully observe the seedlings in a single cultivation hole, which affects the normal development of the seedlings.
The system adopts a tiered hydroponic rack structure, combined with built-in arranged cultivation strips and a hollow frame design, which allows for the rapid extraction of individual seedlings. It is connected to the liquid storage mechanism through an external pipe to provide a stable hydroponic supply, and a daylight lamp is installed at the top of each cultivation chamber to simulate a sunlight environment.
It improves the controllability and convenience of seedling cultivation without affecting the overall cultivation process, provides convenience for rapid separation and placement of seedlings, and ensures the stability and safety of the hydroponic process.
Smart Images

Figure CN224055032U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of vegetable seedling raising devices, specifically a hydroponic seedling raising device for vegetables. Background Technology
[0002] With social development, the application of hydroponics for vegetables has become increasingly widespread. Hydroponic vegetables refer to vegetables that are grown with most of their roots growing in layers of nutrient solution, and are provided with water, nutrients, and oxygen only by the nutrient solution, which is different from the traditional soil cultivation method. Examples of hydroponic vegetables include lettuce, spinach, and water spinach. These vegetables have a short growth cycle and are rich in a variety of vitamins and minerals that are essential to the human body. With technological iteration, hydroponic devices are also widely used in the market.
[0003] Existing technology, such as the patent with publication number CN220654324U, discloses a vegetable hydroponic seedling device, including a multi-layer cultivation box. A touch panel is fixedly installed on the top surface of the multi-layer cultivation box, a fixing block is fixedly installed on the top of the inner side of the multi-layer cultivation box, a plant light is fixedly installed in the middle of the fixing block, a monitoring device is fixedly installed on one side of the top of the multi-layer cultivation box, and a support rod is fixedly installed on the top of the multi-layer cultivation box.
[0004] While the aforementioned existing technologies have significant beneficial effects, they still have shortcomings:
[0005] The aforementioned hydroponic cultivation device forms a multi-layer cultivation box structure by mounting multiple sets of cultivation plates within the structure, which facilitates the cultivation of more seedlings. However, the structure of each set of cultivation plates is fixed, and the observation angle of its camera is limited. This means that when it is necessary to observe and inspect a certain set of seedlings, it is impossible to observe the entire set of seedlings through the camera. The entire cultivation plate must be removed before the seedlings in a single cultivation hole can be inspected. This will affect the normal hydroponic development of the entire cultivation plate and is very inconvenient. Therefore, a hydroponic seedling cultivation device for vegetables is proposed. Utility Model Content
[0006] To address the shortcomings of existing technologies, this utility model provides a hydroponic seedling device for vegetables. Through a layered hydroponic rack structure, the cultivation volume can be increased, and individual seedlings can be quickly extracted through the built-in arranged cultivation strips and the hollowed-out rack in the cultivation trough without affecting the overall cultivation, thus improving the controllability of the cultivation process.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a hydroponic seedling device for vegetables, comprising a main frame, a hydroponic rack distributed at the front end of the main frame, a liquid storage mechanism connected to the top end of the main frame, the hydroponic rack comprising an outer frame plate, an outer pipe connected to the rear end of the outer frame plate, a handle fixed to the front end of the outer frame plate, outer slide rails connected to the outer walls at both ends of the outer frame plate, cultivation strips distributed inside the outer frame plate, inner slide rails fixed to both sides of the cultivation strips, an inner pipe connected to the rear end of the cultivation strips, a cultivation groove formed on the top surface of the cultivation strips, and a hollow frame engaged at the top end of the cultivation groove.
[0008] Preferably, the hollow frame and the cultivation tank are arranged at equal intervals along the top surface of the cultivation strip, and the cultivation tank is connected to the inner pipe.
[0009] Preferably, the culture strip is slidably inserted into the outer frame plate via an inner slide rail and an inner connecting pipe, and the outer frame plate is connected to the liquid storage mechanism via an outer connecting pipe.
[0010] Preferably, the main frame includes an equipment frame, a cultivation chamber is provided at the front end of the equipment frame, an outer frame plate is provided inside the cultivation chamber, a daylight lamp is provided at the top of the cultivation chamber, and ventilation slots are connected to both sides of the cultivation chamber.
[0011] Preferably, the outer frame plate is slidably pulled into contact with the equipment frame through the cultivation cavity, and the cultivation cavity is arranged at equal intervals along the front end of the equipment frame.
[0012] Preferably, the liquid storage mechanism includes a liquid storage tank, a screw cap is connected to the top of the liquid storage tank, a supply pipe is connected to the bottom of the liquid storage tank, a booster pump is connected between the supply pipes, and a connecting pipe is connected to one side of the supply pipe.
[0013] Preferably, the connecting pipe and the booster pump are arranged at equal intervals along the bottom end of the supply pipe, and the supply pipe is connected to the inside of the storage tank.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] This utility model connects to the liquid storage mechanism through the external pipe at the rear end of the outer frame plate to maintain a stable hydroponic supply. Each set of outer frame plates has cultivation strips arranged inside. Vegetables can be cultivated in sections through the cultivation troughs and hollow frames distributed on the top surface of the cultivation strips. The hollow frames and cultivation troughs are connected by a snap-fit mechanism. When extracting seedlings, the hollow frames can be pulled out directly for quick separation to prevent vegetable roots from connecting. The overall structure, through multi-segment combination, provides convenience for extraction and seedling placement while maintaining normal hydroponics.
[0016] This hydroponic seedling device can form a multi-level synchronous cultivation process by having multiple sets of cultivation chambers equidistantly opened at the front of the equipment frame, each accommodating an outer frame plate. At the top of each set of cultivation chambers, a solar lamp is installed to maintain illumination on the hydroponic frame, simulating a sunlight environment and providing a stable and safe hydroponic environment.
[0017] The liquid storage structure of this hydroponic seedling device facilitates the supply during the hydroponic seedling process through its pipeline structure and corresponding booster pumps and connecting pipes for each layer.
[0018] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of this invention can be realized and obtained by means of the structures pointed out in the description, claims, and drawings. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of the main body of this utility model;
[0020] Figure 2 This is a schematic diagram of the three-dimensional structure of the hydroponic rack of this utility model;
[0021] Figure 3 This is a schematic diagram of the three-dimensional structure of the cultivation strips in the hydroponic rack of this utility model;
[0022] Figure 4 This is a three-dimensional structural diagram of the liquid storage mechanism of this utility model.
[0023] In the diagram: 1. Main frame; 101. Equipment frame; 102. Culture chamber; 103. Sunlight; 104. Ventilation duct; 2. Hydroponic rack; 201. Outer frame plate; 202. Outer connecting pipe; 203. Handle holder; 204. Outer slide rail; 205. Culture strip; 206. Inner slide rail; 207. Inner connecting pipe; 208. Culture tank; 209. Hollow frame; 3. Liquid storage mechanism; 301. Liquid storage tank; 302. Screw cap; 303. Supply pipe; 304. Booster pump; 305. Connecting pipe. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1-4This embodiment of a hydroponic seedling device for vegetables includes a main frame 1, a hydroponic rack 2 distributed at the front end of the main frame 1, a liquid storage mechanism 3 connected to the top end of the main frame 1, the main frame 1 includes an equipment frame 101, a cultivation chamber 102 opened at the front end of the equipment frame 101, an outer frame plate 201 disposed inside the cultivation chamber 102, a daylight lamp 103 disposed at the top end of the cultivation chamber 102, and ventilation slots 104 connected to both sides of the cultivation chamber 102.
[0026] like Figure 1-4 As shown, the hydroponic seedling device of this utility model is similar in structure to existing hydroponic seedling devices, such as the vegetable hydroponic seedling device disclosed in CN220654324U. The main improvement of this utility model is that, through the layered hydroponic rack 2 structure, while increasing the cultivation volume, individual seedlings can be quickly extracted through the hollowed-out rack 209 in the built-in cultivation strips 205 and cultivation trough 208 without affecting the overall cultivation, thus improving the controllability of the cultivation process. In this utility model, the solar lamp 103 and the booster pump 304 are existing technologies. When using this hydroponic seedling device, multiple sets of cultivation chambers 102 equidistantly opened at the front end of the equipment frame 101 can each accommodate the outer frame plate 201 to form a multi-layered synchronous cultivation process. A solar lamp 103 is installed at the top of each set of cultivation chambers 102, which can maintain the illumination of the hydroponic rack 2 to simulate the sunlight environment and provide a stable and safe hydroponic environment.
[0027] like Figure 2-3As shown, the hydroponic frame 2 includes an outer frame plate 201. An outer connecting pipe 202 is connected to the rear end of the outer frame plate 201. A handle 203 is fixed to the front end of the outer frame plate 201. Outer slide rails 204 are connected to the outer walls of both ends of the outer frame plate 201. Culture strips 205 are distributed inside the outer frame plate 201. Inner slide rails 206 are fixed to both sides of the culture strips 205. An inner connecting pipe 207 is connected to the rear end of the culture strips 205. A culture groove 208 is formed on the top surface of the culture strips 205. A perforated frame 209 is engaged at the top of the culture groove 208. When using this hydroponic seedling device, if a single seedling needs to be removed, the user can pinch the outer end of the culture strip 205 and pull the entire culture strip 205 out from the front end of the outer frame plate 201 along the inner slide rails 206 on both sides. When the internal connection between the connecting pipe 207 and the outer frame plate 201 is broken, the user can directly remove the hollow frame 209 from the cultivation tank 208 to complete the seedling extraction process. The hydroponic seedling device is connected to the liquid storage mechanism 3 through the external connecting pipe 202 at the rear end of the outer frame plate 201 to maintain a stable hydroponic supply. Each set of outer frame plates 201 has cultivation strips 205 arranged inside. Vegetables can be divided into sections for cultivation through the cultivation tanks 208 and the hollow frame 209 distributed on the top surface of the cultivation strips 205. The hollow frame 209 and the cultivation tank 208 are connected by a snap-fit. When extracting seedlings, the hollow frame 209 can be pulled out directly for quick separation to prevent the vegetable roots from connecting. The overall structure, through multi-segment combination, provides convenience for extraction and seedling placement while maintaining normal hydroponics.
[0028] like Figure 4 As shown, the liquid storage mechanism 3 includes a liquid storage tank 301, a cap 302 connected to the top of the liquid storage tank 301, and a nutrient supply pipe 303 connected to the bottom of the liquid storage tank 301. A booster pump 304 is connected between the nutrient supply pipes 303, and a connecting pipe 305 is connected to one side of the nutrient supply pipe 303. During hydroponic operation, the device can supply water and nutrient solution through the nutrient supply pipe 303 connected to the liquid storage tank 301 at the top of the device. In use, the cap 302 can be unscrewed to allow water or nutrient solution to be added. The solution is introduced into the storage tank 301 and transported through the supply pipe 303 at the bottom of the storage tank 301 to the external pipe 202 connected to the connecting pipe 305. The solution is then transported through the external pipe 202 to the outer frame plate 201, and then, in conjunction with the internal pipe 207 connected inside the outer frame plate 201, to the cultivation tank 208 in each cultivation strip 205, thus completing the hydroponic process. The pipeline structure, as well as the corresponding booster pumps 304 and connecting pipes 305 for each layer, facilitate the supply during the hydroponic seedling process.
[0029] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A hydroponic seedling raising device for vegetables comprising a main frame (1), characterized in that, The front end of the main frame (1) is distributed with a water culture frame (2), and the top end of the main frame (1) is connected with a liquid storage mechanism (3), the water culture frame (2) comprises an outer frame plate (201), the rear end of the outer frame plate (201) is communicated with an external connecting pipe (202), the front end of the outer frame plate (201) is fixedly provided with a handle frame (203), the outer walls of the two ends of the outer frame plate (201) are connected with outer sliding rails (204), the inner part of the outer frame plate (201) is distributed with a culture strip (205), the two sides of the culture strip (205) are fixedly provided with inner sliding rails (206), the rear end of the culture strip (205) is communicated with an inner connecting pipe (207), and the top surface of the culture strip (205) is provided with a culture groove (208), and the top end of the culture groove (208) is clamped with a hollow frame (209).
2. The hydroponic seedling raising device for vegetables according to claim 1, wherein The hollow frame (209) and the culture groove (208) are equidistantly arranged along the top surface of the culture strip (205), and the culture groove (208) is communicated with the inner connecting pipe (207).
3. The hydroponic seedling raising device for vegetables according to claim 1, wherein The culture strip (205) is slidably inserted with the outer frame plate (201) through the inner sliding rails (206) and the inner connecting pipe (207), and the outer frame plate (201) is communicated with the liquid storage mechanism (3) through the external connecting pipe (202).
4. The hydroponic seedling raising device for vegetables according to claim 1, wherein The main frame (1) comprises a device frame (101), the front end of the device frame (101) is provided with a culture cavity (102), the culture cavity (102) is internally provided with an outer frame plate (201), the top end of the culture cavity (102) is provided with a sunlight lamp (103), and the two sides of the culture cavity (102) are communicated with ventilation grooves (104).
5. The hydroponic seedling raising device for vegetables according to claim 4, wherein The outer frame plate (201) is slidably pulled out of the device frame (101) through the culture cavity (102), and the culture cavity (102) is equidistantly arranged along the front end of the device frame (101).
6. The hydroponic seedling raising device for vegetables according to claim 1, wherein The liquid storage mechanism (3) comprises a liquid storage tank (301), the top end of the liquid storage tank (301) is connected with a screw cap (302), the bottom end of the liquid storage tank (301) is connected with a feeding pipe (303), the feeding pipes (303) are communicated with a booster pump (304), and one side of the feeding pipe (303) is connected with a butt joint pipe (305).
7. The hydroponic seedling raising device for vegetables according to claim 6, wherein The butt joint pipe (305) and the booster pump (304) are equidistantly arranged along the bottom end of the feeding pipe (303), and the feeding pipe (303) is communicated with the inside of the liquid storage tank (301).