Seed hydroponic device
By introducing ventilation plates and barrel-shaped sponge structures into the hydroponic cultivation device, the problem of bead bud konjac bulbs is solved, and the effect of improving breathability and easy cleaning is achieved.
Patent Information
- Application Number
- CN202422869488.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-11-25
AI Technical Summary
The existing hydrocquiring devices have poor ventilation capabilities, which leads to the easy decay of bead bud konjac bulbs, especially inadequate breathability while keeping the soil moist.
A seed water cultivation device is designed, including a mobile base and a planting frame. The planting frame is equipped with ventilation plates, partition plates and barrel sponges. The ventilation holes are provided on the ventilation plates, combined with pulleys and limit frames, which are easy to move and clean and improve breathability.
By improving breathability, the bead-bud konjac bulbs prevent rotting in moist soil, and facilitates cleaning and removal of the cultivated bead-bud konjac.
Smart Images

Figure CN223094320U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cultivation devices, and more particularly, to a seed hydroponic cultivation device. Background Art
[0002] Due to its large propagation coefficient and high yield, compared with traditional Amorphophallus konjac, Amorphophallus bulbifer has greater advantages in terms of viscosity, gel and other properties, and has been favored by a large number of growers.
[0003] During the cultivation of Amorphophallus bulbifer seeds, the corms of Amorphophallus bulbifer need to be planted in soil with relatively high fertility. At the same time, since Amorphophallus bulbifer has poor drought resistance, it needs to be watered frequently to ensure that the soil is moist. In order to prevent the corms from rotting, the applied farmyard manure needs to be fully decomposed to avoid problems such as rotten roots and burned roots. However, the existing hydroponic cultivation devices have poor ventilation ability. Since the soil needs to be kept moist, it is easy for the corms of Amorphophallus bulbifer to rot when the air permeability inside the soil is low. Therefore, we propose a seed hydroponic cultivation device. Summary of the Invention
[0004] In order to overcome the existing deficiencies, the embodiments of this application provide a seed hydroponic cultivation device, which can solve the problem of poor ventilation ability of the above-mentioned hydroponic cultivation device.
[0005] The technical solution adopted by the embodiments of this application to solve its technical problems is: a seed hydroponic cultivation device, including a movable base, a planting frame is inserted on the top of the movable base, several ventilation plates are installed on the inner wall of the planting frame, partition plates are fixedly connected to both side walls at both ends of the several ventilation plates, and several planting grooves are formed between the planting frame and the several partition plates. Barrel-shaped sponges are installed on the inner walls of the several planting grooves, and ventilation holes communicating with the ventilation plates are opened on the outer wall of the planting frame.
[0006] In a specific implementation, several pulleys are fixedly installed at the bottom of the movable base, and a limiting frame is fixedly installed at the top thereof. The bottom of the planting frame is sleeved on the limiting frame and is in contact with the top of the movable base.
[0007] In a specific implementation, a frame-shaped groove is opened at the bottom of the planting frame, the frame-shaped groove is sleeved on the limiting frame, and a sewage discharge pipe is communicated with the bottom of the movable base.
[0008] In a specific implementation, a support plate is fixedly installed on the inner wall of the planting frame, and the bottoms of the several ventilation plates, the several partition plates and the several barrel-shaped sponges are all fixedly connected to the top of the support plate.
[0009] In a specific embodiment, a plurality of through holes are formed in the support plate, and the plurality of through holes are respectively located in the plurality of planting grooves, and support nets are fixedly installed on their inner walls.
[0010] In a specific embodiment, the inside of the ventilation plate is hollow and both ends are open. The ventilation holes are formed on the front and rear surfaces of the planting frame. The ventilation holes are communicated with the openings of the ventilation plate. A plurality of first through holes are respectively formed on the side walls at both ends of the cavity of the ventilation plate, and the plurality of first through holes are respectively communicated with the corresponding planting grooves.
[0011] In a specific embodiment, a plurality of second through holes are respectively formed on the left and right side walls of the planting frame, and the plurality of second through holes are respectively communicated with the corresponding planting grooves. The inner openings of the first through holes and the second through holes are both inclined downward.
[0012] In a specific embodiment, a plurality of support rods are inserted into the top of the planting frame, and a same sunshade cloth is installed on the tops of the plurality of support rods.
[0013] The advantages of the embodiments of the present application are as follows: By installing a planting frame on the moving base, a ventilation plate is installed in the planting frame, and a partition plate is installed on the side wall of the ventilation plate to form a planting groove. A barrel-shaped sponge is installed in the planting groove, which can play a role in heat preservation and ventilation. At the same time, in cooperation with the ventilation plate and the ventilation holes, the air permeability of the soil in the planting groove is improved. Furthermore, it can prevent the bulbs of Amorphophallus bulbifer from rotting due to insufficient air permeability of the soil under the condition of continuous wet soil. In addition, the planting frame can be separated from the moving base, which is convenient for taking out the planting frame to take out the cultivated Amorphophallus bulbifer. At the same time, the moving base and the planting frame can be cleaned separately, so as to achieve the purpose of facilitating the cleaning of the moving base and the planting frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the main structure of the seed hydroponic cultivation device provided by the embodiment of the present application;
[0015] Figure 2 It is a schematic diagram of the separated structure of the planting frame and the moving base in the seed hydroponic cultivation device provided by the embodiment of the present application;
[0016] Figure 3 It is a schematic diagram of the structure of the moving base in the seed hydroponic cultivation device provided by the embodiment of the present application;
[0017] Figure 4 It is a schematic diagram of the structure of the planting frame in the seed hydroponic cultivation device provided by the embodiment of the present application;
[0018] Figure 5Schematic structural diagram of the planting trough in the seed hydroponic device provided by the embodiment of the present application;
[0019] Figure 6 Schematic structural diagram of the ventilation plate in the seed hydroponic device provided by the embodiment of the present application.
[0020] In the figure: 10 - moving base; 110 - pulley; 120 - limit frame; 130 - sewage pipe; 20 - planting frame; 210 - frame-shaped groove; 220 - support plate; 230 - through hole; 240 - support net; 250 - second through hole; 30 - ventilation plate; 310 - first through hole; 40 - partition plate; 50 - planting trough; 60 - barrel-shaped sponge; 70 - ventilation hole; 80 - support rod; 810 - sunshade cloth. Specific embodiments
[0021] The technical solution in the embodiment of the present application is to solve the problem of poor ventilation capacity of the above hydroponic device. The general idea is as follows:
[0022] Embodiment 1:
[0023] Please refer to Figure 1-6 , a seed hydroponic device, including a moving base 10, a planting frame 20 is inserted on the top of the moving base 10, several ventilation plates 30 are installed on the inner wall of the planting frame 20, partition plates 40 are fixedly connected to the side walls at both ends of the several ventilation plates 30, and several planting troughs 50 are formed between the planting frame 20 and the several partition plates 40. Barrel-shaped sponges 60 are installed on the inner walls of the several planting troughs 50. Ventilation holes 70 communicating with the ventilation plates 30 are opened on the outer wall of the planting frame 20. Specifically, the barrel-shaped sponges 60 are attached to the inner walls of the planting troughs 50 and can serve the purpose of binding the soil. The ventilation holes 70 are opened on the front and rear surfaces of the planting frame 20 and are provided with several. The ventilation holes 70 are arranged corresponding to the side walls of the ventilation plates 30, so that the inner walls of the planting troughs 50 are in communication with the outside, thereby improving the air permeability of each planting trough 50.
[0024] Refer to Figure 2 and 3 , several pulleys 110 are fixedly installed at the bottom of the moving base 10, and a limit frame 120 is fixedly installed at the top thereof. The bottom of the planting frame 20 is sleeved on the limit frame 120 and is in contact with the top of the moving base 10. It should be noted that the several pulleys 110 can be used in a combination of directional wheels and universal wheels, which is convenient for moving the above moving base 10 and also convenient for adjusting the traveling direction of the moving base 10.
[0025] Refer to Figure 2, a frame-shaped groove 210 is formed at the bottom of the planting frame 20, and the frame-shaped groove 210 is sleeved on the limiting frame 120. A sewage pipe 130 is communicated with the bottom of the moving base 10. Specifically, the planting frame 20 is placed on the moving base 10, and at the same time, the limiting frame 120 is inserted into the frame-shaped groove 210 to limit the planting frame 20, and the sewage pipe 130 can discharge the water on the top of the moving base 10.
[0026] Refer to Figure 2 and 5 , a support plate 220 is fixedly installed on the inner wall of the planting frame 20. The bottoms of several ventilation plates 30, several partition plates 40 and several barrel-shaped sponges 60 are fixedly connected to the top of the support plate 220. Specifically, the bottom of the barrel-shaped sponge 60 is adhesively arranged with the top of the support plate 220. Further, the support plate 220 forms the bottom of the planting groove 50.
[0027] Refer to Figure 2 and 5 , several through holes 230 are formed in the support plate 220. The several through holes 230 are respectively located in several planting grooves 50, and support nets 240 are fixedly installed on their inner walls. It should be noted that in order to prevent excessive watering, through holes 230 are formed in the support plate 220, so that during the watering process, the water penetrates downward in the soil. At the same time, the barrel-shaped sponge 60 will absorb part of the water. When it reaches the saturation state, the excess water will be discharged downward through the through holes 230 to prevent excessive water in the planting groove 50. The support net 240 in the through hole 230 can support the barrel-shaped sponge 60.
[0028] Refer to Figure 6 , the inside of the ventilation plate 30 is hollow, and both ends are open. Ventilation holes 70 are formed on the front and rear surfaces of the planting frame 20, and the ventilation holes 70 are communicated with the openings of the ventilation plate 30. Several first through holes 310 are respectively formed on the side walls at both ends of the cavity of the ventilation plate 30, and the several first through holes 310 are respectively communicated with the corresponding planting grooves 50. Specifically, after the water in the soil is absorbed by the bulb, the water in the barrel-shaped sponge 60 will penetrate into the soil to further provide water. The barrel-shaped sponge 60 contacts the first through hole 310, so that the barrel-shaped sponge 60 can contact the outside air, and the dehydrated barrel-shaped sponge 60 can improve the air permeability of the soil in the planting groove 50 to prevent the bulb from rotting.
[0029] Refer to Figure 6, a plurality of second through holes 250 are respectively formed in the left and right side walls of the planting frame 20, and the plurality of second through holes 250 are respectively communicated with the corresponding planting grooves 50. The inner openings of the first through hole 310 and the second through hole 250 are both inclined downward. It should be noted that the inner openings of the first through hole 310 and the second through hole 250 are arranged downward, which can prevent the water in the barrel-shaped sponge 60 from entering the first through hole 310 and the second through hole 250, and prevent the water from flowing out from these two places.
[0030] Refer to Figure 1 , a plurality of support rods 80 are inserted into the top of the planting frame 20, and a same sunshade cloth 810 is installed on the tops of the plurality of support rods 80. In specific settings, a plurality of sockets are formed in the top of the planting frame 20, and the support rods 80 are inserted into the sockets, so that the sunshade cloth 810 can be separated from the planting frame 20.
[0031] When this application is used:
[0032] When cultivating the corm of Amorphophallus bulbifer, soil with higher fertility can be added to the planting groove 50, and the height of the soil is close to the top of the planting groove 50. Then, place the corm of Amorphophallus bulbifer in the soil in the planting groove 50, and add soil to the planting groove 50 again to cover the corm. After that, the planting and cultivation process of the corm can be carried out. When watering the corm in the planting groove 50, the water penetrates downward, and at the same time, part of the water is stored in the barrel-shaped sponge 60, and the excess water is discharged to the moving base 10 through the through hole 230. When the corm rhizome absorbs water and reduces the water in the soil, the water in the barrel-shaped sponge 60 penetrates into the soil to provide water for the corm. In addition, since the first through hole 310 is formed in the ventilation plate 30 and the second through hole 250 is formed in the planting frame 20, the air permeability of the soil inside the planting groove 50 can be improved.
[0033] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly illustrating the present invention, rather than limiting the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made on the basis of the above description. It is not necessary and impossible to list all the implementation manners here. And the obvious changes or modifications derived therefrom still fall within the protection scope of the present invention.
Claims
1. A seed hydroponic cultivation device, characterized in that, It includes a mobile base (10), a planting frame (20) is inserted at the top of the mobile base (10), several ventilation plates (30) are installed on the inner wall of the planting frame (20), partition plates (40) are fixedly connected to the side walls at both ends of several ventilation plates (30), and several planting grooves (50) are formed between the planting frame (20) and several partition plates (40). Barrel-shaped sponges (60) are installed on the inner walls of several planting grooves (50), and ventilation holes (70) communicating with the ventilation plates (30) are opened on the outer wall of the planting frame (20).
2. The seed hydroponic cultivation device according to claim 1, characterized in that, Several pulleys (110) are fixedly installed at the bottom of the mobile base (10), and a limit frame (120) is fixedly installed at the top thereof. The bottom of the planting frame (20) is sleeved on the limit frame (120) and is in contact with the top of the mobile base (10).
3. The seed hydroponic cultivation device according to claim 2, characterized in that, A frame-shaped groove (210) is opened at the bottom of the planting frame (20), the frame-shaped groove (210) is sleeved on the limit frame (120), and a sewage discharge pipe (130) is communicated with the bottom of the mobile base (10).
4. The seed hydroponic cultivation device according to claim 1, characterized in that, A support plate (220) is fixedly installed on the inner wall of the planting frame (20), and the bottoms of several ventilation plates (30), several partition plates (40) and several barrel-shaped sponges (60) are fixedly connected to the top of the support plate (220).
5. The seed hydroponic cultivation device according to claim 4, characterized in that, Several through holes (230) are opened on the support plate (220), several through holes (230) are respectively located in several planting grooves (50), and support nets (240) are fixedly installed on their inner walls.
6. The seed hydroponic cultivation device according to claim 1, characterized in that The inside of the ventilation plate (30) is hollow and both ends are open. The ventilation holes (70) are opened on the front and rear surfaces of the planting frame (20), the ventilation holes (70) are communicated with the openings of the ventilation plates (30), and several first through holes (310) are respectively opened on the side walls at both ends of the cavity of the ventilation plate (30), and several first through holes (310) are respectively communicated with the corresponding planting grooves (50).
7. The seed hydroponic cultivation device according to claim 6, characterized in that, Several second through holes (250) are respectively opened on the left and right side walls of the planting frame (20), several second through holes (250) are respectively communicated with the corresponding planting grooves (50), and the inner openings of the first through holes (310) and the second through holes (250) are inclined downward.
8. The seed hydroponic cultivation device according to any one of claims 1-7, characterized in that, Several support rods (80) are inserted at the top of the planting frame (20), and a same sunshade cloth (810) is installed at the top of several support rods (80).