Strawberry planting drip irrigation emitter
By using a fixing component and mud-blocking ring structure in the strawberry drip irrigation system, the problem of soil clogging was solved, ensuring the normal operation of the drip irrigation system and the healthy growth of strawberries, thus achieving a highly efficient drip irrigation effect.
Patent Information
- Application Number
- CN202422739802.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-11
AI Technical Summary
Existing drip irrigation systems are prone to clogging of the water outlet due to soil adhesion, which affects the irrigation effect and may lead to water shortage and wilting of plants, resulting in economic losses.
A drip irrigation device for strawberry cultivation was designed, which adopts a fixing component and a mud-blocking ring structure. The fixing component is inserted into the soil by fixing nails to prevent the water outlet pipe from directly contacting the ground. The mud-blocking ring is equipped with water outlet holes and a cleaning mechanism to prevent clogging.
It effectively prevents soil clogging, ensures the normal operation of the drip irrigation system, achieves precise drip irrigation for strawberry plants, reduces equipment maintenance needs, and improves irrigation efficiency.
Smart Images

Figure CN223528632U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drip irrigation technology, and more specifically, to a drip irrigation device for strawberry cultivation. Background Technology
[0002] Drip irrigation is a highly efficient irrigation method. Its main characteristics include: precise irrigation, delivering water directly to plant roots and avoiding water waste; saving time and labor, as the drip irrigation system can operate continuously throughout the plant's growth cycle, eliminating the need for frequent manual irrigation; improving crop yield and quality by providing the appropriate amount of water and nutrients according to the plant's needs, promoting healthy plant growth; applicability to various terrains and soil types, unrestricted by terrain or soil type, and usable in different conditions such as mountains, plains, sandy soil, and clay soil; environmental protection, reducing water waste and lessening the burden on the environment; and compatibility with other agricultural technologies, such as fertilization and pesticide application, facilitating farmer management. In summary, drip irrigation not only saves water resources and improves crop yield and quality but also possesses strong applicability and environmental friendliness, making it an indispensable and highly efficient irrigation method in modern agriculture.
[0003] To facilitate precise watering of plant roots directly by drip irrigation systems, drip irrigation systems are usually laid near the plant roots. Since the drip irrigation system is in direct contact with the ground, soil can easily adhere to the drip irrigation outlet over time, causing blockages and affecting the drip irrigation effect. If the drip irrigation system malfunctions, the plants may become weak or even die due to lack of water, ultimately leading to economic losses.
[0004] Therefore, it is necessary to design a drip irrigation system for strawberry cultivation that is less prone to clogging. Utility Model Content
[0005] In order to overcome the shortcomings of the prior art, this utility model provides a strawberry drip irrigation device.
[0006] A strawberry drip irrigation device includes a water supply pipe, a water outlet pipe, and fixing components. At least five water outlet pipes are threaded through the water supply pipe, and at least four fixing components are provided on the water supply pipe. Each fixing component includes a first semicircular ring, a fixing nail, and a second semicircular ring. The fixing nail is symmetrically connected to the first semicircular ring, and the second semicircular ring is rotatably connected to the first semicircular ring. The first semicircular ring and the second semicircular ring are combined to form a fixing ring, which is sleeved on the water supply pipe.
[0007] Furthermore, it also includes mudguard rings, with mudguard rings connected to the water outlet pipes, and each mudguard ring has at least six water outlet holes.
[0008] Furthermore, it also includes a connecting plate, a connecting block, a locking block, and a first connecting spring. The connecting block is connected to the second semi-circular ring, and the locking block is slidably connected to the connecting block. The locking block is located below the connecting plate, and the first connecting spring connects the locking block and the connecting block.
[0009] Furthermore, it also includes a fixing plate, with the fixing plate connected to the fixing nail.
[0010] Furthermore, it also includes rubber rings, with rubber rings connected to the inner walls of both the first and second semicircular rings.
[0011] Furthermore, it also includes a guide rod, a sliding plate, a top plate, and a second connecting spring. The guide rod is connected to the mudguard ring, and the sliding plate is slidably connected to the guide rod. The sliding plate is provided with a top plate with the same number of water outlet holes, and the top plate is aligned with the water outlet holes. The second connecting spring connects the sliding plate and the mudguard ring.
[0012] Compared with the prior art, the present invention has the following advantages:
[0013] This invention uses a fixing component to insert a fixing nail into the soil. The area of the fixing plate connected to the fixing nail is larger than the fixing nail itself. This prevents the fixing nail from sinking too deep into the soil, making it less likely for the water outlet pipe to directly contact the ground. This effectively avoids soil sticking to the water outlet pipe, reduces the risk of the water outlet being blocked by soil, and ensures the normal operation of the device. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This is a three-dimensional structural diagram of the first semicircular ring, the fixing nail, and the second semicircular ring of this utility model;
[0016] Figure 3 This is a cross-sectional view of the connecting block of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the water supply pipe, water outlet pipe, and mud baffle ring of this utility model;
[0018] Figure 5 This is a cross-sectional view of the mudguard ring of this utility model.
[0019] In the attached drawings, the following reference numerals are used: 1. Water supply pipe; 101. Water outlet pipe; 2. First semicircular ring; 21. Connecting plate; 3. Fixing nail; 4. Second semicircular ring; 5. Connecting block; 6. Locking block; 7. First connecting spring; 8. Fixing plate; 81. Rubber ring; 9. Mudguard ring; 91. Water outlet hole; 10. Guide rod; 11. Sliding plate; 111. Top plate; 12. Second connecting spring. Detailed Implementation
[0020] Example: A drip irrigation system for strawberry cultivation, such as Figures 1-3 As shown, the device includes a water supply pipe 1, an outlet pipe 101, and fixing components. Five outlet pipes 101 are threaded through the water supply pipe 1, and five fixing components are provided on the water supply pipe 1. The fixing components include a first semicircular ring 2, a fixing nail 3, and a second semicircular ring 4. The fixing nail 3 is symmetrically connected to the first semicircular ring 2, and the second semicircular ring 4 is rotatably connected to the first semicircular ring 2. The first semicircular ring 2 and the second semicircular ring 4 are combined to form a fixing ring. The fixing ring is fitted onto the water supply pipe 1, and the fixing nail 3 is inserted into the soil, so that the outlet pipe 101 does not directly contact the ground, effectively avoiding soil adhesion to the outlet pipe 101, reducing the risk of the outlet being blocked by soil, ensuring the normal operation of the device, and preventing the strawberry plants from withering due to lack of water. Next, the water pump at the water supply source is started, and the water pump will deliver water through the water supply pipe 1 to each outlet pipe 101. The water eventually flows into the soil around the roots of the strawberry plants, realizing precise drip irrigation for the strawberry plants.
[0021] like Figure 2 and Figure 3 As shown, it also includes a connecting plate 21, a connecting block 5, a locking block 6, and a first connecting spring 7. The connecting block 5 is connected to the second semi-circular ring 4, and the locking block 6 is slidably connected to the connecting block 5. The locking block 6 is located below the connecting plate 21, and the first connecting spring 7 is connected between the locking block 6 and the connecting block 5 through a spring seat.
[0022] like Figure 4 and Figure 5 As shown, it also includes a fixing plate 8, a rubber ring 81, and a mudguard ring 9. The fixing plate 8 is connected to the fixing nail 3, and the area of the fixing plate 8 connected to the fixing nail 3 is larger than the fixing nail 3 itself, which prevents the fixing nail 3 from sinking too deeply into the soil. Rubber rings 81 are connected to the inner walls of both the first semicircular ring 2 and the second semicircular ring 4. When water is being transported in the water pipe 1, the pipe will vibrate, and the rubber rings 81 connected to the inner walls of the first semicircular ring 2 and the second semicircular ring 4 will increase the vibration between the first semicircular ring 2 and the second semicircular ring 4. The friction between the water supply pipes 1 and the water supply pipes 1 provides a more stable fixation for the water supply pipes 1; each water outlet pipe 101 is connected to a mud-blocking ring 9, and the mud-blocking ring 9 has at least six water outlet holes 91. During the drip irrigation of the strawberry plant roots, when the water drips into the soil, a small amount of mud and sand particles may splash up and adhere to the mud-blocking ring 9. Although these mud and sand particles will slightly affect the water output rate, since they do not directly contact the water outlet pipe 101, they will not completely block the water outlet. The mud-blocking ring 9 can play a certain protective role.
[0023] like Figure 4 and Figure 5As shown, it also includes a guide rod 10, a sliding plate 11, a top plate 111, and a second connecting spring 12. The guide rod 10 is connected to the mud ring 9, and the sliding plate 11 is slidably connected to the guide rod 10. The sliding plate 11 has a number of top plates 111 that are the same as the number of water outlet holes 91, and the top plates 111 are all aligned with the water outlet holes 91. The second connecting spring 12 is connected between the sliding plate 11 and the mud ring 9 through a spring seat. When the sliding plate 11 is pressed down to clean, the second connecting spring 12 is compressed, and the sliding plate 11 will drive the top plate 111 to move down and fit with the water outlet hole 91, clearing the mud and sand inside and outside the water outlet hole 91. After the sliding plate 11 is released, the second connecting spring 12 returns to its original position, and the sliding plate 11 also returns to its initial position, ensuring that the water outlet hole 91 is unobstructed and maintaining a normal water output rate. This design effectively prevents the mud ring 9 from being blocked and ensures the drip irrigation effect on strawberry plants.
[0024] When using this device, first select an appropriate number of drip irrigation units based on the area of the strawberry plantation and connect them. Next, place each drip irrigation unit next to the root system of the strawberry plant, ensuring that each outlet pipe 101 is accurately aligned with the corresponding strawberry plant root system. Then, connect all the selected drip irrigation units together, with one end connected to the water supply and the other end connected to other drip irrigation units, thus achieving multi-directional water transport. After installation, insert the fixing nail 3 into the soil. The fixing plate 8 connected to the fixing nail 3 has an area larger than the fixing nail 3 itself. This prevents the fixing nail 3 from sinking too deeply into the soil, thus preventing the outlet pipe 101 from directly contacting the ground and effectively avoiding soil adhesion to the outlet pipe 101. The adhesive material reduces the risk of the water outlet being blocked by soil, ensuring the normal operation of the device and preventing the strawberry plants from withering due to lack of water. Next, the water pump at the water supply source is started, and the water pump will deliver water through the water supply pipe 1 to each water outlet pipe 101. The water outlet pipe 101 will discharge outward through the water outlet hole 91 on the mudguard ring 9. The water will eventually flow into the soil around the roots of the strawberry plants, achieving precise drip irrigation for the strawberry plants. When water is being delivered inside the water supply pipe 1, the water pipe will vibrate, and the rubber ring 81 connected to the inner wall of the first semicircular ring 2 and the second semicircular ring 4 will increase the friction between the first semicircular ring 2 and the second semicircular ring 4 and the water supply pipe 1, thereby fixing the water supply pipe 1 more stably.
[0025] When it is necessary to replace the water pipe 1, simply pull the locking block 6 outwards. The first connecting spring 7 will be compressed until the locking block 6 separates from the connecting plate 21. At this time, the second semi-circular ring 4 can be freely rotated upwards to release the fixation on the water pipe 1. After releasing all the fixing rings on the water pipe 1, the water pipe 1 can be easily replaced or rearranged, making the disassembly and installation of the water pipe 1 more convenient and facilitating the flexible adjustment of the drip irrigation system. During the drip irrigation process of strawberry plant roots, a small amount of mud and sand particles may splash up and adhere to the mud-blocking ring 9 when the water drips into the soil. Although these mud and sand particles will slightly affect the water output rate, since they are not directly affected by the water flow, they will not cause significant water loss. The water outlet is connected to the water outlet pipe 101, so it will not completely block the water outlet. The mud ring 9 can play a certain protective role. If too much mud and sand accumulates on the mud ring 9, it can be cleaned by pressing down the sliding plate 11. At this time, the second connecting spring 12 is compressed, and the sliding plate 11 drives the top plate 111 to move down and fit with the water outlet 91, clearing the mud and sand inside and outside the water outlet 91. After releasing the sliding plate 11, the second connecting spring 12 is reset, and the sliding plate 11 also returns to the initial position, ensuring that the water outlet 91 is unobstructed and maintaining a normal water output rate. This design effectively prevents the mud ring 9 from being blocked and ensures the drip irrigation effect on strawberry plants.
Claims
1. A drip irrigation system for strawberry cultivation, comprising: Water supply pipe (1); There are at least five water outlet pipes (101), which are evenly spaced on the water supply pipe (1); Its features include: A fixing assembly, comprising at least four fixing assemblies evenly spaced on the water supply pipe (1), for fixing the water supply pipe (1), the fixing assembly comprising: First semicircular ring (2); Fixing pins (3) are symmetrically connected to the first semicircular ring (2); The second semicircular ring (4) is rotatably connected to the first semicircular ring (2). The first semicircular ring (2) and the second semicircular ring (4) together form a fixed ring, which is sleeved on the water pipe (1).
2. The strawberry drip irrigation device according to claim 1, characterized in that it also... include: A mudguard ring (9) is connected to each of the water outlet pipes (101), and the mudguard ring (9) has at least six water outlet holes (91).
3. A strawberry drip irrigation device according to claim 2, characterized in that it also... include: A connecting plate (21) is connected to the first semicircular ring (2); Connecting block (5) is connected to the second semi-circular ring (4); The locking block (6) is slidably connected to the connecting block (5), and the locking block (6) is located below the connecting plate (21); A first connecting spring (7) is connected between the locking block (6) and the connecting block (5).
4. A strawberry drip irrigation device according to claim 3, characterized in that: Also includes: The fixing plate (8) is connected to the fixing nail (3).
5. A strawberry drip irrigation device according to claim 4, characterized in that it further... include: Rubber ring (81) is connected to the inner walls of the first semicircular ring (2) and the second semicircular ring (4).
6. A strawberry drip irrigation device according to claim 5, characterized in that it further... include: Guide rod (10) is connected to the mudguard ring (9); A sliding plate (11) is slidably connected to the guide rod (10); The top plate (111) has the same number as the water outlet (91), and is set on the sliding plate (11), and the top plate (111) is aligned with the water outlet (91); The second connecting spring (12) is connected between the sliding plate (11) and the mudguard ring (9).