Water-saving type surrounding drip irrigation equipment for greening seedlings
The water-saving circular drip irrigation system for green seedlings, designed with magnetic adsorption and telescopic rods, solves the problems of complex installation and non-adjustable height of existing equipment, achieving simplified installation and preventing soil clogging, thus improving the practicality and performance of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 黄群
- Filing Date
- 2025-02-28
- Publication Date
- 2026-04-21
AI Technical Summary
Existing water-saving drip irrigation equipment for greening seedlings is connected by screws during installation, which results in a large workload and high level of fatigue. In addition, the height of the equipment cannot be adjusted, and the chuck is in direct contact with the ground, causing soil to adhere and the drip irrigation holes to become clogged, affecting the performance of the equipment.
The chuck is fixed by magnetic attraction using magnet one and magnet two, combined with the design of telescopic rod and conical spike, which enables quick installation and height adjustment of the chuck, avoids direct contact between the equipment and the ground, and prevents soil from clogging the drip irrigation holes.
It simplifies the installation process, reduces the workload of staff, improves installation efficiency, and prevents soil adhesion and blockage, ensuring the performance and functionality of the equipment.
Smart Images

Figure CN224139773U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of drip irrigation equipment for green seedlings, specifically to a water-saving circular drip irrigation device for green seedlings. Background Technology
[0002] Drip irrigation uses plastic pipes to deliver water to the roots of crops through orifices or drippers on capillary tubes with a diameter of about 10mm for localized irrigation, which can save water. Drip irrigation equipment is needed when planting green seedlings.
[0003] Existing water-saving circular drip irrigation equipment for green seedlings uses screws to assemble and fix the chucks. This method is labor-intensive, increasing worker fatigue and affecting installation efficiency. Furthermore, the existing system places the assembled chucks on the ground using a support frame, which prevents height adjustment and causes soil buildup on the chucks due to direct contact with the ground, clogging the drip holes and impacting equipment performance. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] To overcome the shortcomings of existing technologies, a water-saving circular drip irrigation device for green seedlings is proposed. This device solves the problems of existing water-saving circular drip irrigation devices for green seedlings, which use screws to assemble and fix the chuck, resulting in a large workload, increased labor intensity for workers, and reduced installation efficiency. Furthermore, existing devices place the assembled chuck on the ground using a support frame, which not only prevents height adjustment but also causes the chuck to be in direct contact with the ground, leading to soil accumulation and clogging of the drip holes, thus affecting the device's performance.
[0006] (II) Technical Solution
[0007] This utility model is achieved through the following technical solution: This utility model proposes a water-saving circular drip irrigation device for green seedlings, including a chuck one, a chuck two, a magnet one, and a magnet two. The chuck two is provided on one side of the chuck one. Both the chuck one and the chuck two are semi-circular ring structures. The magnet two is fixed at both ends of the chuck one. The magnet two is connected to the chuck two through a slot. The magnet one is provided at both ends of the chuck two. The magnet one is connected to the chuck one through a slot. The magnet one and the magnet two have opposite magnetic properties.
[0008] By adopting the above technical solution, during the equipment installation process, since the magnets one and two have opposite magnetic properties, the chuck one and the chuck two can be connected and fixed by adsorption between the two. The operation process is simple, which not only reduces the amount of installation work, but also reduces the workload of the workers, ensures the installation efficiency of the device, and improves the practicality of the device.
[0009] Furthermore, telescopic rods are fixed at equal intervals at the bottom ends of chuck one and chuck two. The telescopic rods are connected to chuck one and chuck two by screws. A conical spike is fixed at the bottom end of the telescopic rod. The conical spike is connected to the telescopic rod by screws. A fastening bolt is installed on one side wall of the telescopic rod. The fastening bolt is connected to the telescopic rod by threads.
[0010] By adopting the above technical solution, the cone can be inserted into the ground to fix the equipment. At the same time, the telescopic rod can adjust the height of the drip irrigation and fix it at the adjusted height by the fastening bolt. On the one hand, it avoids a large amount of soil sticking to the surface of the equipment due to direct contact with the ground, and on the other hand, it prevents soil from clogging the drip irrigation holes, ensuring the performance of the equipment and improving the functionality of the device.
[0011] Furthermore, both the first chuck and the second chuck have recessed cavities formed on their inner walls, and drip irrigation pipes are installed in the recessed cavities. The drip irrigation pipes are connected to the recessed cavities via slots.
[0012] By adopting the above technical solution, the cavity provides a space for the installation and fixing of the drip irrigation pipe, and water flows out through the drip irrigation pipe to drip irrigate the seedlings.
[0013] Furthermore, both ends of the first chuck and the second chuck are formed with through cavities, which are semi-circular ring structures. A tee is provided on the drip irrigation pipe, which is connected to the drip irrigation pipe by a pipe clamp, and the tee passes through the through cavity.
[0014] By adopting the above technical solution, the tee can connect the drip irrigation pipe to another set of equipment, and the cavity provides a through space for the tee.
[0015] Furthermore, one end of the tee is connected to a connecting pipe, the connecting pipe is connected to the tee by a pipe clamp, and a valve is installed on one side wall of the connecting pipe, the valve is connected to the connecting pipe by a thread.
[0016] By adopting the above technical solution, one end of the connecting pipe can be connected to an underground water pipeline, and the valve controls the opening and closing of the connecting pipe.
[0017] Furthermore, a pump is provided on one side of the valve, and the pump is connected to the connecting pipe via a pipe clamp.
[0018] By adopting the above technical solution, the pump draws groundwater through the connecting pipe into the drip irrigation pipe and discharges it, thereby drip irrigating the seedlings.
[0019] (III) Beneficial Effects
[0020] Compared with the prior art, this utility model has the following advantages:
[0021] 1. To address the problem that existing water-saving drip irrigation equipment for green seedlings uses screw connections to assemble and fix the chucks, which is labor-intensive, increases worker fatigue, affects installation efficiency, and reduces the device's practicality, this invention uses magnet one and magnet two. During installation, magnet one and magnet two have opposite magnetic properties, allowing them to attract and fix the chucks together. This simplifies the operation, reduces installation workload, decreases worker fatigue, ensures installation efficiency, and improves the device's practicality.
[0022] 2. To address the problems of existing water-saving circular drip irrigation equipment for green seedlings, where the bracket places the assembled chuck on the ground, making it impossible to adjust the drip height and causing a large amount of soil to adhere to the chuck surface due to direct contact with the ground, which can also clog the drip holes and affect the equipment's performance, this utility model incorporates a telescopic rod, fastening bolts, and a conical spike. When fixing the equipment, the conical spike can be inserted into the ground to secure it. Simultaneously, the telescopic rod allows for height adjustment of the drip irrigation, and the fastening bolts secure the adjusted height. This design avoids soil adhesion to the equipment surface due to direct contact with the ground and prevents soil from clogging the drip holes, ensuring the equipment's performance and improving its functionality. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of a water-saving surrounding drip irrigation device for green seedlings according to the present invention;
[0024] Figure 2 This is a top sectional view of chuck one and chuck two in a water-saving surrounding drip irrigation device for green seedlings as described in this utility model.
[0025] The annotations in the attached figures are explained as follows:
[0026] 1. Spike; 2. Telescopic rod; 3. Chuck 1; 4. Magnet 1; 5. Cavity; 6. Chuck 2; 7. Drip irrigation pipe; 8. Magnet 2; 9. Valve; 10. Pump; 11. Connecting pipe; 12. Fastening bolt; 13. Tee; 14. Through cavity. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the scope of the present utility model.
[0028] like Figures 1-2 As shown in this embodiment, a water-saving circular drip irrigation device for green seedlings includes a chuck 3, a chuck 6, a magnet 4, and a magnet 8. The chuck 6 is located on one side of the chuck 3. Both the chuck 3 and the chuck 6 are semi-circular ring structures. Magnets 8 are fixed to both ends of the chuck 3, and the magnets 8 are connected to the chuck 6 via slots. Magnets 4 are located at both ends of the chuck 6, and the magnets 4 are connected to the chuck 3 via slots. Magnets 4 and 8 have opposite magnetic properties. During installation, because magnets 4 and 8 have opposite magnetic properties, they attract each other, connecting and fixing the chuck 3 and the chuck 6. The operation is simple, requiring minimal installation work and reducing the workload of workers, while ensuring the safety of the device. To improve installation efficiency and the practicality of the device, telescopic rods 2 are fixed at equal intervals at the bottom ends of chuck 1 3 and chuck 2 6. The telescopic rods 2 are connected to chuck 1 3 and chuck 2 6 by screws. A conical spike 1 is fixed to the bottom end of the telescopic rod 2 and is connected to the telescopic rod 2 by screws. A fastening bolt 12 is installed on one side wall of the telescopic rod 2 and is connected to the telescopic rod 2 by threads. The conical spike 1 can be inserted into the ground to fix the device. At the same time, the telescopic rod 2 can adjust the height of the drip irrigation and fix it at the adjusted height by the fastening bolt 12. On the one hand, this avoids a large amount of soil adhering to the surface of the device due to direct contact with the ground, and on the other hand, it prevents soil from clogging the drip irrigation holes, ensuring the performance of the device and improving its functionality.
[0029] like Figures 1-2 As shown, in this embodiment, both chuck 1 3 and chuck 2 6 have concave cavities 5 formed on their inner walls. Drip irrigation pipes 7 are installed in the concave cavities 5. The drip irrigation pipes 7 are connected to the concave cavities 5 through slots. The concave cavities 5 provide installation and fixing space for the drip irrigation pipes 7. Water flows out through the drip irrigation pipes 7 to drip irrigate the seedlings. Both ends of chuck 1 3 and chuck 2 6 have through cavities 14 formed. The through cavities 14 are semi-circular ring structures. A tee 13 is provided on the drip irrigation pipes 7. The tee 13 is connected to the drip irrigation pipes 7 through a pipe clamp. The tee 13 passes through the through cavity 14. The tee 13 can connect the drip irrigation pipes 7 to another set of equipment. The through cavity 14 provides through space for the tee 13.
[0030] like Figures 1-2As shown, in this embodiment, one end of the tee 13 is connected to a connecting pipe 11. The connecting pipe 11 and the tee 13 are connected by a pipe clamp. A valve 9 is installed on one side wall of the connecting pipe 11. The valve 9 is connected to the connecting pipe 11 by a thread. One end of the connecting pipe 11 can be connected to an underground water pipe. The valve 9 controls the opening and closing of the connecting pipe 11. A pump 10 is installed on one side of the valve 9. The pump 10 is connected to the connecting pipe 11 by a pipe clamp. The pump 10 pumps the groundwater through the connecting pipe 11 into the drip irrigation pipe 7 and discharges it, thereby drip irrigating the seedlings.
[0031] The specific implementation process of this embodiment is as follows: First, the equipment is installed. During the installation process, the chuck 3 and chuck 6 are quickly connected and fixed by the attraction of magnet 4 and magnet 8. Then, the drip irrigation pipe 7 is placed in the cavity 5 and connected to the tee 13. Next, the cone 1 is inserted into the ground to fix the equipment. At the same time, the height of the drip irrigation is adjusted by the telescopic rod 2. After the adjustment is completed, it is fixed by the fastening bolt 12. On the one hand, this can avoid a large amount of soil sticking to the surface of the equipment due to direct contact with the ground. On the other hand, it can prevent soil from clogging the drip irrigation holes and ensure the performance of the equipment. Then, the connecting pipe 11 is connected to the tee 13 and the underground pipeline, and the pump 10 is connected to the external power supply. During the drip irrigation process, the valve 9 is opened and the pump 10 is started. The pump 10 draws groundwater through the connecting pipe 11 into the drip irrigation pipe 7 and discharges it, thereby drip irrigating the seedlings.
[0032] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A water saving type of around drip irrigation equipment for greenery nursery plants, characterized in that: The device includes a chuck one (3), a chuck two (6), a magnet one (4), and a magnet two (8). The chuck two (6) is provided on one side of the chuck one (3). Both the chuck one (3) and the chuck two (6) are semi-circular ring structures. The magnet two (8) is fixed at both ends of the chuck one (3). The magnet two (8) is connected to the chuck two (6) through a slot. The magnet one (4) is provided at both ends of the chuck two (6). The magnet one (4) is connected to the chuck one (3) through a slot. The magnet one (4) and the magnet two (8) have opposite magnetic properties.
2. The water-saving type surrounding drip irrigation equipment for greening seedlings according to claim 1, characterized in that: The bottom ends of the first chuck (3) and the second chuck (6) are fixed with telescopic rods (2) at equal intervals. The telescopic rods (2) are connected to the first chuck (3) and the second chuck (6) by screws. The bottom end of the telescopic rod (2) is fixed with a conical spike (1). The conical spike (1) is connected to the telescopic rod (2) by screws. A fastening bolt (12) is installed on one side wall of the telescopic rod (2). The fastening bolt (12) is connected to the telescopic rod (2) by threads.
3. The water-saving type surrounding drip irrigation equipment for greening seedlings according to claim 2, characterized in that: Both the first chuck (3) and the second chuck (6) have recessed cavities (5) formed on their inner walls. A drip irrigation pipe (7) is installed in the recessed cavity (5), and the drip irrigation pipe (7) is connected to the recessed cavity (5) through a slot.
4. The water-saving type surrounding drip irrigation equipment for greening seedlings according to claim 3, characterized in that: Both ends of the first chuck (3) and the second chuck (6) are formed with through cavities (14). The through cavity (14) is a semi-circular ring structure. A tee (13) is provided on the drip irrigation pipe (7). The tee (13) is connected to the drip irrigation pipe (7) by a pipe clamp. The tee (13) passes through the through cavity (14).
5. The water-saving type surrounding drip irrigation equipment for greening seedlings according to claim 4, characterized in that: One end of the tee (13) is connected to a connecting pipe (11), and the connecting pipe (11) is connected to the tee (13) by a pipe clamp. A valve (9) is installed on one side wall of the connecting pipe (11), and the valve (9) is connected to the connecting pipe (11) by a thread.
6. A water saving type surround drip irrigation equipment for greenery nursery according to claim 5, wherein: A pump (10) is provided on one side of the valve (9).
7. The water-saving type surrounding drip irrigation equipment for green seedling according to claim 6, characterized in that: The pump (10) is connected to the connecting pipe (11) by a pipe clamp.