Planting device for agricultural science and technology research and development
By combining a water supply bottle, a drain pipe, a water tank, a water-absorbing flowerpot, and a filter nozzle, the problem of inconvenient soil moisture control in agricultural technology research and development planting devices is solved, realizing automatic water supply and precise humidity regulation, and improving the ease of operation and cleanliness of the device.
Patent Information
- Application Number
- CN202520116422.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing agricultural technology research and development planting devices are difficult to precisely control soil moisture, and it is difficult to adjust in time after over-watering, resulting in inconvenience in moisture control.
It adopts a combination structure of water supply bottle, drain pipe, water tank, water-absorbing flower pot and filter nozzle. The water volume is controlled by adjusting the height of the drain pipe to achieve automatic water supply and increase or decrease soil moisture.
It enables precise control of soil moisture, improves the operational convenience of agricultural research and the cleanliness of the water tank, and reduces the rate of water tank contamination.
Smart Images

Figure CN223772726U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of agricultural technology research and development technology, and in particular relates to an agricultural technology research and development planting device. Background Technology
[0002] Agricultural technology research and development needs to study the plant growth process in terms of temperature and humidity. Temperature is achieved through air conditioning, while soil moisture is mainly achieved through irrigation.
[0003] Because controlling humidity through watering is difficult, and if too much water is applied, it is too late even if the sensor detects it, making humidity control in conventional cultivation devices quite troublesome.
[0004] Therefore, we propose an agricultural technology research and development planting device to solve the above problems. Utility Model Content
[0005] The purpose of this invention is to solve the problem of the cumbersome humidity control in conventional cultivation devices, and to propose an agricultural technology research and development planting device.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] An agricultural technology research and development planting device includes a water supply bottle with a drain pipe threaded to its lower end. A water trough is threaded to the lower part of the drain pipe, and a water-absorbing flowerpot is mounted on top of the water trough. A filter nozzle is threaded to the lower part of the water-absorbing flowerpot. Soil is placed into the water-absorbing flowerpot, and the filter nozzle prevents soil from entering the water trough. The water supply bottle is then unscrewed, water is poured into it, and the bottle is inverted and screwed onto the drain pipe, allowing water to flow through the drain pipe to replenish the water trough. Water permeates through the filter nozzle and contacts the soil in the water-absorbing flowerpot, achieving automatic water supply. Twisting the drain pipe upwards raises the lower outlet, increasing the basic water level and lowering the water absorption height of the water-absorbing flowerpot, thus increasing the humidity supply. Conversely, twisting it downwards reduces the humidity supply, facilitating soil moisture control in agricultural research.
[0008] Preferably, the inside of the absorbent flowerpot is lined with a first filter sheet. The first filter sheet blocks the soil inside the absorbent flowerpot, preventing soil from falling into the water tank and improving the cleanliness of the water tank.
[0009] Preferably, the water tank includes a tank body and a threaded shell, the threaded shell being fixedly connected to the side of the tank body; the drain pipe is threadedly installed inside the threaded shell, and the water-absorbing flowerpot is supported on the tank body. Twisting the drain pipe along the inside of the threaded shell allows for easy adjustment of the height of the lower opening of the drain pipe, and the water-absorbing flowerpot can be easily supported via the tank body.
[0010] Preferably, the absorbent flowerpot includes a pot body and a water-absorbing pipe. The lower part of the pot body has evenly spaced ventilation holes, and the water-absorbing pipe is fixedly connected to the lower part of the pot body. The first filter sheet covers the lower part of the pot body, and the filter nozzle is threaded onto the lower part of the water-absorbing pipe. The pot body is placed on a trough. Soil is poured into the pot body and the water-absorbing pipe, allowing water in the trough to permeate through the filter nozzle and soak the soil in the water-absorbing pipe. The soil in the water-absorbing pipe draws water into the soil in the pot, facilitating water absorption by the absorbent flowerpot.
[0011] Preferably, the filter nozzle includes a second filter element, a threaded ring, and a retaining ring. The second filter element is fitted inside the threaded ring, and the retaining ring is fixedly connected to the lower part of the threaded ring. The lower end of the second filter element is in movable contact with the threaded ring. The threaded ring is threadedly installed at the lower part of the suction pipe. The second filter element blocks soil, ensuring the cleanliness of the water tank, and allows water to pass through the second filter element and act on the soil inside the suction pipe, reducing the rate at which the tank becomes contaminated.
[0012] Preferably, the drain pipe includes a baffle bead, a threaded tube, a top post, a connecting block, and an annular knob. The baffle bead is mounted on the top post, the connecting block is symmetrically and fixedly connected to the lower part of the top post, and the connecting block is fixedly connected inside the annular knob. The upper end of the threaded tube is fixedly connected to the lower end of the annular knob. The baffle bead is located inside the water supply bottle, the threaded tube is threadedly installed in the threaded housing, and the water supply bottle is threadedly installed inside the annular knob. After water is poured into the water supply bottle, it is inverted, and the baffle bead blocks the opening of the water supply bottle, reducing the water outflow rate. After the water supply bottle is threadedly installed inside the annular knob, the top post is used to push upwards to open the opening of the water supply bottle, facilitating connection between the water supply bottle and the drain pipe.
[0013] In summary, the technical effects and advantages of this utility model are as follows:
[0014] 1. Place soil into the absorbent planter, using the filter nozzle to block the soil and prevent it from entering the water trough; unscrew the water supply bottle, fill it with water, then invert the bottle and screw it onto the drain pipe, allowing water to flow through the drain pipe to replenish the water trough. The water permeates through the filter nozzle and comes into contact with the soil in the absorbent planter, achieving automatic water supply; screw the drain pipe upwards to raise the lower outlet, thereby increasing the basic water level, lowering the water absorption height of the absorbent planter, and increasing the humidity supply. Conversely, screwing it downwards reduces the humidity supply, facilitating soil moisture control in agricultural research.
[0015] 2. Use the first filter to block the soil in the water-absorbing flowerpot, preventing the soil in the water-absorbing flowerpot from falling into the water tank, thus improving the cleanliness of the water tank.
[0016] 3. The drain pipe can be easily adjusted by screwing it along the inside of the threaded shell to adjust the height of the lower opening of the drain pipe, and the water-absorbing flower pot can be easily supported through the groove.
[0017] 4. Pour the soil into the pot and the water pipe, allowing the water in the trough to soak the soil in the water pipe through the filter nozzle. Use the soil in the water pipe to draw water into the soil in the pot, making it easier for the flowerpot to absorb water.
[0018] 5. Use the second filter to block the soil and keep the water tank clean. This allows water to pass through the second filter and act on the soil in the suction pipe, reducing the rate at which the tank becomes contaminated. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 2 This is a schematic diagram of the water tank structure of this utility model;
[0021] Figure 3 This is a schematic diagram of the water-absorbing flowerpot structure of this utility model;
[0022] Figure 4 This is a schematic diagram of the disassembled structure of the filter tip of this utility model;
[0023] Figure 5 This is a schematic diagram of the drainage pipe structure of this utility model.
[0024] In the diagram: 1. Water bottle; 2. Water tank; 3. Water-absorbing flowerpot; 4. Filter nozzle; 5. Drain pipe; 6. First filter plate; 21. Tank body; 22. Threaded shell; 31. Basin body; 32. Vent hole; 33. Water suction pipe; 41. Second filter plate; 42. Threaded ring; 43. Retaining ring; 51. Retaining bead; 52. Threaded pipe; 53. Top column; 54. Connecting block; 55. Annular knob. Detailed Implementation
[0025] The technical solutions of the utility model embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the utility model, and not all embodiments.
[0026] Reference Figure 1 An agricultural technology research and development planting device includes a water supply bottle 1, a drain pipe 5 threadedly installed at the lower end of the water supply bottle 1, a water trough 2 threadedly installed at the lower part of the drain pipe 5, a water-absorbing flower pot 3 mounted on the upper part of the water trough 2, and a filter nozzle 4 threadedly installed at the lower part of the water-absorbing flower pot 3.
[0027] Reference Figure 1 The inside of the absorbent flowerpot 3 is lined with a first filter sheet 6. The first filter sheet 6 is used to block the soil inside the absorbent flowerpot 3, preventing the soil inside the absorbent flowerpot 3 from falling into the water trough 2.
[0028] Reference Figure 1 and 2The water tank 2 includes a tank body 21 and a threaded shell 22, with the threaded shell 22 fixedly connected to the side of the tank body 21. The drain pipe 5 is threaded into the threaded shell 22, and the water-absorbing flower pot 3 is placed on the tank body 21. By screwing the drain pipe 5 along the inside of the threaded shell 22, the height of the lower opening of the drain pipe 5 is adjusted, and the water-absorbing flower pot 3 is supported by the tank body 21.
[0029] Reference Figure 1 , 2 The water-absorbing flowerpot 3 includes a pot body 31 and a water-absorbing pipe 33. The lower part of the pot body 31 has evenly spaced ventilation holes 32. The water-absorbing pipe 33 is fixedly connected to the lower part of the pot body 31. A first filter sheet 6 covers the lower part of the pot body 31, and a filter nozzle 4 is threaded onto the lower part of the water-absorbing pipe 33. The pot body 31 is placed on a trough 21. Soil is poured into the pot body 31 and the water-absorbing pipe 33, allowing water from the trough 21 to permeate through the filter nozzle 4 and soak the soil in the water-absorbing pipe 33. The soil in the water-absorbing pipe 33 then draws water into the soil in the pot body 31.
[0030] Reference Figure 1 , 3 The filter nozzle 4 includes a second filter element 41, a threaded ring 42, and a retaining ring 43. The second filter element 41 is fitted inside the threaded ring 42, and the retaining ring 43 is fixedly connected to the lower part of the threaded ring 42. The lower end of the second filter element 41 is in movable contact with the threaded ring 42. The threaded ring 42 is threadedly installed on the lower part of the suction pipe 33. The second filter element 41 is used to block soil, ensuring the cleanliness of the water tank 2, and allowing water to pass through the second filter element 41 and act on the soil in the suction pipe 33.
[0031] Reference Figure 1 , 2 The drain pipe 5 includes a baffle 51, a threaded pipe 52, a top post 53, a connecting block 54, and an annular knob 55. The baffle 51 is mounted on the top post 53. The connecting block 54 is symmetrically and fixedly connected to the lower part of the top post 53 and is fixedly connected to the inside of the annular knob 55. The upper end of the threaded pipe 52 is fixedly connected to the lower end of the annular knob 55. The baffle 51 is located inside the water supply bottle 1. The threaded pipe 52 is threadedly installed in the threaded housing 22. The water supply bottle 1 is threadedly installed in the annular knob 55. After water is poured into the water supply bottle 1, it is inverted. The baffle 51 blocks the opening of the water supply bottle 1, reducing the water outflow rate. After the water supply bottle 1 is threadedly installed in the annular knob 55, the top post 53 is used to push it upward to open the opening of the water supply bottle 1.
[0032] Working principle: Soil is placed into the water-absorbing flowerpot 3, and the filter nozzle 4 is used to block the soil, preventing it from entering the water trough 2; the water supply bottle 1 is unscrewed, water is poured into the water supply bottle 1, and then the water supply bottle 1 is inverted and screwed onto the drain pipe 5, so that water is supplied to the water trough 2 through the drain pipe 5. The water permeates the filter nozzle 4 and comes into contact with the soil in the water-absorbing flowerpot 3, realizing automatic water supply; the drain pipe 5 is screwed upward to raise the lower end of the drain pipe 5, thereby increasing the basic water level, lowering the water absorption height of the water-absorbing flowerpot 3, and increasing the humidity supply of the water-absorbing flowerpot 3. Conversely, the humidity supply of the water-absorbing flowerpot 3 is reduced, which is convenient for agricultural scientific research to control soil moisture.
[0033] The above description is only a preferred embodiment of the utility model, but the protection scope of the utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed by the utility model, based on the technical solution and the utility model concept, should be included within the protection scope of the utility model.
[0034] The description briefly mentions the application direction of the utility model in relation to existing technologies known to those skilled in the art without modification, and combines them with the utility model to form a complete technology; it avoids excessive popularization of technologies known to those skilled in the art, in order to help those skilled in the art quickly understand the main content of the utility model.
Claims
1. An agricultural technology research and development planting device, characterized in that: The utility model provides a water supply bottle, the lower end of the water supply bottle (1) is screw mounted with a drain pipe (5), the lower part of the drain pipe (5) is screw mounted with a water tank (2), the upper part of the water tank (2) is provided with a water absorption flowerpot (3), the lower part of the water absorption flowerpot (3) is screw mounted with a filter tip (4).
2. The agricultural science and technology research and development planting device according to claim 1, characterized in that: The inside of the water absorption flowerpot (3) is padded with a first filter sheet (6).
3. The agricultural science and technology research and development planting device according to claim 2, characterized in that: The water tank (2) comprises a tank body (21) and a screw shell (22), the screw shell (22) is fixedly connected to the side of the tank body (21); the drain pipe (5) is screw mounted in the screw shell (22), and the water absorption flowerpot (3) is arranged on the tank body (21).
4. The agricultural science and technology research and development planting device according to claim 3, characterized in that: The water absorption flowerpot (3) comprises a pot body (31) and a water absorption pipe (33), the lower part of the pot body (31) is uniformly provided with air holes (32) in the form of a plurality of holes, and the water absorption pipe (33) is fixedly connected to the lower part of the pot body (31); the first filter sheet (6) covers the lower part of the pot body (31), the filter tip (4) is screw mounted at the lower part of the water absorption pipe (33), and the pot body (31) is arranged on the tank body (21).
5. The agricultural science and technology research and development planting device according to claim 4, characterized in that: The filter tip (4) comprises a second filter sheet (41), a screw ring (42) and a stop ring (43), the second filter sheet (41) is clamped in the screw ring (42), the stop ring (43) is fixedly connected to the lower part of the screw ring (42), and the lower end of the second filter sheet (41) is in movable contact with the screw ring (42); the screw ring (42) is screw mounted at the lower part of the water absorption pipe (33).
6. The agricultural science and technology research and development planting device according to claim 3, characterized in that: The drain pipe (5) comprises a stop bead (51), a screw pipe (52), a top column (53), a connecting block (54) and a ring-shaped knob (55), the stop bead (51) is arranged on the top column (53), the connecting block (54) is fixedly connected to the lower part of the top column (53) in a symmetrical mode, the connecting block (54) is fixedly connected to the inside of the ring-shaped knob (55), and the upper end of the screw pipe (52) is fixedly connected to the lower end of the ring-shaped knob (55); the stop bead (51) is arranged in the inside of the water supply bottle (1), the screw pipe (52) is screw mounted in the screw shell (22), and the water supply bottle (1) is screw mounted in the ring-shaped knob (55).