Agricultural sprinkler support
By designing an adjustable-height sprinkler support, the problem of existing technologies being unable to adapt to different crops and terrain differences has been solved, achieving stable support and uniform sprinkler coverage.
Patent Information
- Application Number
- CN202522036258.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-09-22
AI Technical Summary
Existing agricultural sprinkler irrigation supports cannot be adjusted according to the growth height of crops, and cannot be compatible with the sprinkler irrigation needs of crops of different heights and terrain differences, resulting in uneven irrigation.
A sprinkler support frame was designed, comprising components such as threaded sleeves, fixing frames, fixing poles, positioning rods, positioning blocks, rotating sleeves, and limiting square sleeves. The support height can be flexibly adjusted through threaded connections and gear meshing, and multi-point positioning is formed by inserting the main cone rod and the secondary cone rod into the soil, thereby improving wind resistance and overturning resistance.
It provides stable support, adapts to the entire growth cycle of crops, is compatible with the irrigation needs of crops of different heights and terrain differences, ensures uniform irrigation coverage of crop canopy and root system, and improves irrigation effect.
Smart Images

Figure CN224670521U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the agricultural field, and in particular to an agricultural sprinkler irrigation bracket. Background Technology
[0002] An existing patent (publication number: CN222053999U) discloses an agricultural sprinkler irrigation bracket, including an upright water supply pipe and a support frame structure. The support frame structure is installed on the upright water supply pipe to support it, and includes several support rods. However, this device can only support the water supply pipe and cannot adjust its support height according to the actual growth height of the crop. It cannot accommodate the sprinkler irrigation needs of crops of different heights and terrain differences, thus having drawbacks. Summary of the Invention
[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing an agricultural sprinkler support that offers stable support, strong wind resistance and anti-overturning capability, flexible height adjustment to adapt to the entire growth cycle of crops, and is compatible with the sprinkler irrigation needs of crops of different heights and terrain differences, thereby improving the agricultural sprinkler irrigation effect and ensuring uniform irrigation coverage of the crop canopy and root system.
[0004] The objective of this utility model is achieved through the following technical solution: An agricultural sprinkler irrigation bracket includes a threaded sleeve, a fixed frame, a fixed upright, a positioning support, a positioning block, a rotating sleeve, and a limiting square sleeve. The fixed frame is connected to the outside of an upper bearing, and a drive sleeve is connected inside the upper bearing. The drive sleeve has a rotating wheel on its outside and a threaded sleeve connected inside the drive sleeve. The threaded sleeve passes through the drive sleeve, the fixed frame, and the limiting square sleeve in sequence. The lower end of the threaded sleeve is connected to the limiting square sleeve, and the upper end of the threaded sleeve has a mounting plate connected to a sprinkler head. A water supply hose passes through the threaded sleeve, with one end connected to the sprinkler head and the other end connected to a water pump. The fixed frame has a top plate connected to the upper part of the fixed upright, and a bottom plate connected to the ground. The bottom of the bottom plate has multiple main cone rods inserted into the soil.
[0005] The fixed upright described in this utility model has a limiting sleeve attached to its outer side, and a slide rail on its inner side. The slide rail is adapted to the positioning support block, and the positioning support block is connected to the slide rail. The positioning support block slides within the slide rail. The positioning support block is connected to the upper support rod via an upper shaft rod. The upper shaft rod is sequentially connected to the positioning support block and the upper support rod. The upper support rod is connected to the lower support rod via a middle shaft rod. The middle shaft rod is sequentially connected to the lower support rod and the upper support rod. The lower support rod is connected to the base plate via a lower shaft rod. The lower shaft rod is sequentially connected to the base plate and the lower support rod.
[0006] The lower support rod of this utility model has a fixing hole, which is adapted to the secondary cone rod. The secondary cone rod passes through the fixing hole, the lower end of the secondary cone rod is inserted into the soil, and the upper end of the secondary cone rod is connected to the lower support rod.
[0007] The top plate of this utility model is connected to the outside of the lower bearing, and the inside of the lower bearing is connected to a rotating plate. The upper part of the rotating plate has a rotating sleeve, which fits into the top plate, and the upper part of the top plate fits into a gear. Beneficial effects
[0008] This invention features four sets of gears evenly distributed along the axial direction of the rotating sleeve and meshing with each other. Utilizing the threaded positioning between the positioning support rod and the positioning block, as well as the movable connection between the upper and lower support rods, the four sets of support rods can be synchronously controlled and driven by rotating the rotating sleeve. When the positioning block moves upward to a parallel state between the support rod and the fixed upright, the transportation and storage space of the device can be reduced, making it convenient to carry. When the positioning block moves downward to a parallel state between the bottom surface of the lower support rod and the base plate, a triangular support frame is formed between the support rod and the fixed upright. Together with the main cone rod and the secondary cone rod inserted into the soil, it forms multi-point positioning and anchoring, meeting the fixing requirements of soft soil while improving the device's wind resistance and overturning resistance, ensuring stable support.
[0009] This utility model's drive sleeve is positioned and connected by threads, and with the limiting guide of the limiting square sleeve, the mounting plate's support height can be quickly adjusted by rotating the rotating wheel. This allows for flexible adjustment of the sprinkler head's irrigation height according to the crop's growth height, accommodating the irrigation needs of crops of different heights and terrain differences, improving agricultural irrigation effects, and ensuring uniform irrigation coverage of the crop canopy and root system.
[0010] This utility model provides stable support, strong wind resistance and anti-overturning ability, while the support height is flexibly adjustable to adapt to the entire growth cycle of crops. It is also compatible with the sprinkler irrigation needs of crops of different heights and terrain differences, improving the agricultural sprinkler irrigation effect and ensuring that irrigation evenly covers the crop canopy and root system. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of an agricultural sprinkler irrigation support structure according to the present invention.
[0012] Figure 2 This is a schematic diagram of the storage structure of an agricultural sprinkler irrigation bracket according to the present invention.
[0013] Figure 3 This is a schematic diagram of the support rod drive structure described in this utility model.
[0014] Figure 4 This is a schematic diagram of the fixing frame structure described in this utility model.
[0015] Figure 5 This is a cross-sectional view of an agricultural sprinkler irrigation support structure according to the present invention.
[0016] Figure 6This is a cross-sectional view of the rotating sleeve and gear connection structure described in this utility model.
[0017] Figure 7 This is a schematic diagram of the nozzle, threaded support, drive support, and limiting sleeve of this utility model.
[0018] Figure 8 This is a cross-sectional view of the connection structure between the limiting sleeve and the fixed upright described in this utility model. Detailed Implementation
[0019] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments: Example 1: An agricultural sprinkler irrigation bracket includes a threaded sleeve 04, a fixing frame 05, a fixing pole 10, a positioning support rod 12, a positioning block 13, a rotating sleeve 20, and a limiting square sleeve 29. The fixing frame 05 is connected to the outside of an upper bearing 28, and a drive sleeve 27 is connected inside the upper bearing 28. The drive sleeve 27 has a rotating wheel 26 on its outside, and the threaded sleeve 04 is threadedly connected inside the drive sleeve 27. The threaded sleeve 04 passes through the drive sleeve 27, the fixing frame 05, and the limiting square sleeve 29 in sequence. The lower end of the threaded sleeve 04 is connected to the limiting square sleeve 29, and the upper end of the threaded sleeve 04 has a mounting plate 03. The mounting plate 03 is connected to a sprinkler head 01, and a water supply hose 02 passes through the threaded sleeve 04. One end of the water supply hose 02 is connected to the sprinkler head 01. The other end of the water hose 02 is connected to a water pump. The fixed frame 05 has a top plate 06, which is connected to the upper part of the fixed pole 10. The lower part of the fixed pole 10 is connected to the bottom plate 07, which is connected to the ground. The bottom part of the bottom plate 07 has multiple main cone rods 08, which are inserted into the soil. The drive sleeve 27 is positioned and connected to the threaded sleeve 04 through a thread, and cooperates with the limiting guide of the limiting sleeve 29. This allows the support height of the mounting plate 03 to be quickly adjusted by rotating the rotating wheel 26, so that the sprinkler head 01 can be flexibly adjusted according to the height change of the crop during growth. This accommodates the sprinkler needs of different crops of different heights and terrain differences, improves the agricultural sprinkler irrigation effect, and ensures that irrigation evenly covers the crop canopy and root system.
[0020] Example 2: The fixed upright 10 of this utility model has a limiting sleeve 29 attached to its outer side. The fixed upright 10 has a slide 11 on its inner side. The slide 11 is adapted to the positioning support block 13. The positioning support block 13 is connected to the slide 11 and slides within the slide 11. The positioning support block 13 is connected to the upper support rod 15 through the upper shaft rod 14. The upper shaft rod 14 is connected to the positioning support block 13 and the upper support rod 15 in sequence. The upper support rod 15 is connected to the lower support rod 17 through the middle shaft rod 16. The middle shaft rod 16 is connected to the lower support rod 17 and the upper support rod 15 in sequence. The lower support rod 17 is connected to the base plate 07 through the lower shaft rod 18. The lower shaft rod 18 is connected to the base plate 07 and the lower support rod 17 in sequence.
[0021] Example 3: The lower support rod 17 of this utility model has a fixing hole 25, which is adapted to the secondary cone rod 09. The secondary cone rod 09 passes through the fixing hole 25, the lower end of the secondary cone rod 09 is inserted into the soil, and the upper end of the secondary cone rod 09 is connected to the lower support rod 17.
[0022] Example 4: The top plate 06 of this utility model is connected to the outside of the lower bearing 19, and the inside of the lower bearing 19 is connected to the rotating plate 21. The upper part of the rotating plate 21 has a rotating sleeve 20, which fits into the top plate 06. The upper part of the top plate 06 fits into the gear 22.
[0023] Example 5: The gear 22 of this utility model has multiple teeth 23, and the rotating sleeve 20 has multiple tooth grooves 24. The teeth 23 mesh with the tooth grooves 24, and the teeth 23 connect to the tooth grooves 24. The four sets of gears 22 are evenly distributed in the axial direction of the rotating sleeve 20 and are all meshed with it. The threaded positioning between the positioning support rod 12 and the positioning block 13, and the movable connection between the upper support rod 15 and the lower support rod 17, allow for synchronous control and driving of the four support rod structures by rotating the rotating sleeve 20. When the positioning block 13 moves upward to a state parallel to the support rod and the fixed upright 10, it can reduce the space required for transporting and storing the device, making it easier to carry. When the positioning block 13 moves downward to a state parallel to the bottom surface of the lower support rod 17 and the base plate 07, a triangular support frame is formed between the support rod and the fixed upright 10. Together with the main cone rod 08 and the secondary cone rod 09 inserted into the soil, it forms a multi-point positioning anchor, which meets the fixing requirements of soft soil, improves the wind resistance and overturning resistance of the device, and ensures the stability of the support.
[0024] Example 6: The gear 22 of this utility model has a positioning support rod 12, which is connected in sequence to the top plate 06, the positioning support block 13, and the bottom plate 07. The positioning support rod 12 is connected to the positioning support block 13 by a thread. This device provides stable support, strong wind resistance and anti-overturning ability, and flexible adjustment of the support height. It can adapt to the entire growth cycle of crops and is compatible with the irrigation needs of crops of different heights and terrain differences, thereby improving the effect of agricultural sprinkler irrigation and ensuring that irrigation evenly covers the crop canopy and root system.
[0025] Example 7: Installation steps: First, fix the lower end of the fixed upright 10 to the base plate 07. Then, place the limiting sleeve 29 on the upper part of the base plate 07, ensuring that the limiting sleeve 29 is in contact with the outer surface of the four sets of fixed uprights 10. Next, install and fix the top plate 06 on the upper part of the fixed upright 10. Then, connect the inner end of the lower support rod 17 to the base plate 07 through the lower shaft rod 18, and connect the outer end of the lower support rod 17 to the lower end of the upper support rod 15 through the middle shaft rod 16. Connect the upper end of the upper support rod 15 to the positioning block 13 through the upper shaft rod 14, and place the positioning block 13 into the slide rail 11. Then, connect the positioning support rod 12 to the top plate 06, positioning block 13, and base plate 07 in sequence until the lower surface of the gear 22 is in contact with the upper surface of the top plate 06, and the positioning support rod 12 is connected to the positioning block 13 through threads. Finally, place the rotating sleeve 20 on the top plate 06. 6. The upper part of the fixed frame 05 passes through the center of the rotating sleeve 20. The rotating plate 21 is embedded in the lower bearing 19. The gear teeth 23 and the tooth groove 24 are meshed and connected. The lower surface of the rotating sleeve 20 is in contact with the upper surface of the top plate 06. Then, the drive support sleeve 27 is placed on the upper part of the fixed frame 05 and embedded in the upper bearing 28. Then, the threaded support sleeve 04 passes through the drive support sleeve 27, the fixed frame 05, and the limiting square sleeve 29 in sequence. The threaded support sleeve 04 is positioned and connected to the drive support sleeve 27 through the thread. The lower end of the threaded support sleeve 04 is fixedly connected to the limiting square sleeve 29. Then, the water supply hose 02 is placed in the threaded support sleeve 04. One end of the water supply hose 02 passes through the mounting plate 03 and is fixedly connected to the nozzle 01. The other end of the water supply hose 02 is fixedly connected to the water pump. Finally, the nozzle 01 is installed and fixed on the upper part of the mounting plate 03 to complete the installation.
[0026] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. An agricultural sprinkler irrigation bracket, characterized in that: The system includes a threaded support sleeve (04), a fixed frame (05), a fixed upright (10), a positioning support rod (12), a positioning block (13), a rotating sleeve (20), and a limiting square sleeve (29). The fixed frame (05) is connected to the outside of the upper bearing (28). The upper bearing (28) is connected to the drive support sleeve (27). The drive support sleeve (27) has a rotating wheel (26) on its outside. The drive support sleeve (27) is connected to the threaded support sleeve (04) through a thread. The threaded support sleeve (04) passes through the drive support sleeve (27), the fixed frame (05), and the limiting square sleeve (29) in sequence. The lower end of the threaded support sleeve (04) is connected to... The limiting sleeve (29) and the threaded support sleeve (04) have an installation plate (03) at the upper end. The installation plate (03) is connected to the nozzle (01). The water supply hose (02) passes through the threaded support sleeve (04). One end of the water supply hose (02) is connected to the nozzle (01), and the other end of the water supply hose (02) is connected to the water pump. The fixing frame (05) has a top plate (06). The top plate (06) is connected to the upper part of the fixing pole (10). The lower part of the fixing pole (10) is connected to the bottom plate (07). The bottom plate (07) is connected to the ground. The bottom part of the bottom plate (07) has multiple main cone rods (08). The main cone rods (08) are inserted into the soil.
2. An agricultural sprinkler irrigation support according to claim 1, characterized in that... The fixed upright (10) is fitted with a limiting sleeve (29) on the outside. The fixed upright (10) has a slide (11) on the inside. The slide (11) is adapted to the positioning block (13). The positioning block (13) is connected to the slide (11). The positioning block (13) slides in the slide (11). The positioning block (13) is connected to the upper support rod (15) through the upper shaft (14). The upper shaft (14) is connected to the positioning block (13) and the upper support rod (15) in sequence. The upper support rod (15) is connected to the lower support rod (17) through the middle shaft (16). The middle shaft (16) is connected to the lower support rod (17) and the upper support rod (15) in sequence. The lower support rod (17) is connected to the base plate (07) through the lower shaft (18). The lower shaft (18) is connected to the base plate (07) and the lower support rod (17) in sequence.
3. An agricultural sprinkler irrigation support according to claim 2, characterized in that... The lower support rod (17) has a fixing hole (25), which is adapted to the secondary cone rod (09). The secondary cone rod (09) passes through the fixing hole (25), and the lower end of the secondary cone rod (09) is inserted into the soil. The upper end of the secondary cone rod (09) is connected to the lower support rod (17).
4. An agricultural sprinkler irrigation support according to claim 3, characterized in that: The top plate (06) is connected to the outside of the lower bearing (19), and the inside of the lower bearing (19) is connected to the rotating plate (21). The upper part of the rotating plate (21) has a rotating sleeve (20), which fits against the top plate (06). The upper part of the top plate (06) fits against the gear (22).
5. An agricultural sprinkler irrigation support according to claim 4, characterized in that... The gear (22) has multiple teeth (23), and the sleeve (20) has multiple tooth grooves (24). The teeth (23) mesh with the tooth grooves (24), and the teeth (23) connect to the tooth grooves (24).
6. An agricultural sprinkler irrigation support according to claim 4, characterized in that... The gear (22) has a positioning support rod (12), which is connected in sequence to the top plate (06), the positioning block (13), and the bottom plate (07). The positioning support rod (12) is connected to the positioning block (13) by a thread.
Citation Information
Patent Citations
Agricultural sprinkling irrigation support
CN222053999U