A lifting and spraying system for germination and growth of plants
By using the spray support and longitudinal adjustment structure in the lifting spray system, the problem that fixed spray heads cannot adapt to cultivation modules of different heights is solved, thus achieving efficient utilization of water resources and uniform spraying.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 广东富隆农业科技有限公司
- Filing Date
- 2025-06-30
- Publication Date
- 2026-05-29
AI Technical Summary
The existing spray heads are fixed on the top of the cultivation tank, which cannot adapt to cultivation modules of different heights, resulting in water waste.
A lifting spray system was designed, including a spray support and a longitudinal adjustment structure. The spray support moves on the longitudinal support through the longitudinal adjustment structure. The height of the spray head can be adjusted to adapt to changes in the cultivation module. The spray support is connected to the spray pipe, and the flexible water supply pipe can be bent to adapt to different heights.
It reduces water waste by 30%, improves water use efficiency, adapts to cultivation modules of different heights, and ensures that water can be sprayed evenly.
Smart Images

Figure CN224290918U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of plant cultivation spraying systems, and in particular to a lifting spraying system for plant germination and growth. Background Technology
[0002] Vegetable seeds are the seeds used to cultivate vegetables. Cultivating vegetable seeds requires a cultivation container, which provides a suitable growing environment for the vegetable seeds, prevents the invasion of pests, and allows the vegetable seeds to grow healthily inside the cultivation container.
[0003] During cultivation, multiple cultivation tanks can be stacked to form cultivation modules of different heights. With the help of spray heads, water is sprayed onto the cultivation tanks of the cultivation modules to achieve cultivation. Existing spray heads are all fixedly installed at the top of a space. The height of the cultivation modules formed by stacking different numbers of cultivation tanks is also different. Therefore, the fixed spray heads will affect the direction of water and are prone to waste. Utility Model Content
[0004] The purpose of this invention is to provide a lifting sprinkler system for plant germination and growth, addressing the shortcomings of existing technologies.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows:
[0006] A lifting sprinkler system for plant germination and growth includes a cultivation module and a sprinkler head disposed above the cultivation module. It also includes a sprinkler bracket for mounting the sprinkler head, and the sprinkler bracket is equipped with a sprinkler pipe communicating with the sprinkler head. It further includes a longitudinally arranged longitudinal support, and the longitudinal support is provided with a longitudinal adjustment structure for longitudinal movement of the sprinkler bracket.
[0007] Furthermore, there are multiple cultivation modules and spray heads, with adjacent spray heads interconnected via spray pipes.
[0008] Furthermore: the spray support includes a longitudinal sliding frame that is slidably mounted on the longitudinal support and a mounting frame that extends laterally toward the spray head, the mounting frame being provided with a connector for the spray pipe.
[0009] Furthermore: the connector includes a sleeve that surrounds the spray pipe.
[0010] Furthermore: the longitudinal adjustment structure includes a longitudinal sliding groove formed in the longitudinal support, and the longitudinal sliding frame moves longitudinally along the longitudinal sliding groove.
[0011] Furthermore, the longitudinal support is also provided with multiple spaced locking holes, and the longitudinal sliding frame is fitted with a locking arm that can swing longitudinally, with a locking post formed at the bottom of the locking arm.
[0012] Furthermore, roller modules that roll in cooperation with the longitudinal sliding groove are installed at both ends of the longitudinal sliding frame.
[0013] Furthermore: the roller module includes a first mounting shaft and a second mounting shaft arranged at intervals. The first mounting shaft and the second mounting shaft are arranged laterally, and guide rollers that roll in cooperation with the longitudinal sliding groove are respectively installed at the outer ends of the first mounting shaft and the second mounting shaft.
[0014] Furthermore, the sprinkler support is also equipped with a top pipe assembly, which has an extension pipe connected to the sprinkler pipe, and a longitudinally arranged flexible water supply pipe is connected to the bottom of the top pipe assembly.
[0015] The beneficial effects of this utility model are as follows: The spray head located above the cultivation module sprays water onto the cultivation module to achieve cultivation. When the height of the cultivation module changes, the spray support can be moved longitudinally in the longitudinal support through the longitudinal adjustment structure, so that the height of the spray support changes. The spray head installed on the spray support can achieve height change and can match the height of the cultivation module. The sprayed water can enter the cultivation module. Compared with the fixed spray head, it can reduce water waste by 30%. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of a lifting sprinkler system.
[0017] Figure 2 for Figure 1 A partial structural diagram.
[0018] Figure 3 This is a schematic diagram of the spray system support.
[0019] The reference numerals in the figures include:
[0020] 1-Sprayer bracket,
[0021] 11-Mounting bracket, 12-Connector, 13-Sleeve, 14-Spray head, 15-Spray pipe
[0022] 16-Longitudinal sliding frame, 17-First mounting shaft, 18-Second mounting shaft, 19-Guide roller,
[0023] 2-Longitudinal adjustment structure,
[0024] 21-Longitudinal support, 22-Longitudinal sliding groove, 23-Locking hole, 24-Locking swing arm, 25-Locking post.
[0025] 26-Top pipe assembly, 27-Extension pipe, 28-Soft water supply pipe, 29-Cultivation module. Detailed Implementation
[0026] The present invention will now be described in detail with reference to the accompanying drawings.
[0027] As shown in the figure
[0028] A lifting sprinkler system for plant germination and growth includes a cultivation module 29 and a sprinkler head 14 disposed above the cultivation module 29. It also includes a sprinkler bracket 1 for mounting the sprinkler head 14, and the sprinkler bracket 1 is equipped with a sprinkler pipe 15 communicating with the sprinkler head 14. It also includes a longitudinally arranged longitudinal support 21, and the longitudinal support 21 is provided with a longitudinal adjustment structure 2 for longitudinal movement of the sprinkler bracket 1.
[0029] The spray head 14 located above the cultivation module 29 sprays water toward the cultivation module 29 to achieve cultivation. When the height of the cultivation module 29 changes, the spray support 1 can move longitudinally in the longitudinal support 21 through the longitudinal adjustment structure 2, so that the height of the spray support 1 changes. The spray head 14 installed on the spray support 1 can achieve height change and match the height of the cultivation module 29. The sprayed water can enter the cultivation module 29. Compared with the fixed spray head, it can reduce water waste by 30%.
[0030] Preferably, there are multiple cultivation modules 29 and multiple spray heads 14, with one spray head 14 corresponding to one cultivation module 29. The spray head 14 is coaxially aligned with the cultivation module in the longitudinal direction. The water sprayed from the spray head 14 can flow downward from the top of the cultivation module 29, and all cultivation modules 29 can flow to achieve cultivation.
[0031] Preferably, two adjacent sprinkler heads 14 are interconnected by a sprinkler pipe 15, and the sprinkler pipe 15 connects multiple sprinkler heads 14 so that multiple sprinkler heads 14 can spray water at the same time to achieve irrigation.
[0032] Furthermore, the spray support 1 includes a longitudinal sliding frame 16 slidably mounted on the longitudinal support 21 and a mounting frame 11 extending laterally towards the spray head 14. The mounting frame 11 is provided with a connector 12 that mates with the spray pipe 15. The connector 12 includes a sleeve 13 that surrounds the spray pipe 15. The spray support 1 is connected to the spray pipe 15 via the laterally arranged mounting frame 11. Since two adjacent spray heads 14 are connected by the spray pipe 15, the sleeve 13 is connected to one or more of the spray pipes 15 to achieve the connection between the spray pipe 15 and the spray support 1. When the spray support 1 moves up and down, the height of the spray head 14 can also change.
[0033] Specifically, the longitudinal adjustment structure 2 includes a longitudinal sliding groove 22 formed in the longitudinal support 21, and the longitudinal sliding frame 16 moves longitudinally along the longitudinal sliding groove 22. The longitudinal sliding groove 22 provides a track for the longitudinal sliding frame 16 to move up and down, so as to realize the height adjustment of the spray support 1.
[0034] Preferably, the longitudinal support 21 is further provided with a plurality of spaced locking holes 23, and the longitudinal sliding frame 16 is fitted with a locking swing arm 24 capable of longitudinal swinging, with a locking post 25 formed at the bottom end of the locking swing arm 24. In this embodiment, the locking swing arm 24 is manually swung, and after the locking post 25 of the locking swing arm 24 disengages from the locking hole 23, the longitudinal sliding frame 16 can be manually moved to adjust its height. After the height of the longitudinal sliding frame 16 changes, the locking swing arm 24 can swing longitudinally around the longitudinal sliding frame 16, and the locking post 25 at the end of the locking swing arm 24 can cooperate with one of the locking holes 23 of the longitudinal support 21 to lock the longitudinal sliding frame 16 and prevent the longitudinal sliding frame 16 from sliding down due to gravity.
[0035] Furthermore, roller modules that roll in cooperation with the longitudinal sliding groove 22 are respectively installed at both ends of the longitudinal sliding frame 16. The roller module includes a first mounting shaft 17 and a second mounting shaft 18 arranged at intervals. The first mounting shaft 17 and the second mounting shaft 18 are arranged laterally, and guide rollers 19 that roll in cooperation with the longitudinal sliding groove 22 are respectively installed at the outer ends of the first mounting shaft 17 and the second mounting shaft 18.
[0036] The first mounting shaft 17 and the second mounting shaft 18 are provided to prevent the longitudinal sliding frame 16 from swaying and to ensure overall stability during longitudinal movement, without any noticeable wobble. The guide rollers 19 installed on the first mounting shaft 17 and the second mounting shaft 18 further improve the stability of longitudinal movement.
[0037] The sprinkler support 1 is also equipped with a top pipe assembly 26, which has an extension pipe 27 connected to the sprinkler pipes 15. The bottom of the top pipe assembly 26 is connected to a longitudinally arranged flexible water supply pipe 28. The flexible water supply pipe 28 supplies water to the top pipe assembly 26, which in turn supplies water to the sprinkler pipes 15 via the extension pipe 27. Since the sprinkler pipes 15 are a single unit, with the sprinkler heads 14 installed at the bottom, all sprinkler heads 14 can spray water after the extension pipe 27 supplies water to the sprinkler pipes 15, thus achieving irrigation. Furthermore, due to the flexible water supply pipe 28 structure, when the height of the sprinkler support 1 changes, the flexible water supply pipe 28 can deform and bend to adapt to different heights, preventing bending and breakage and ensuring stable water supply.
[0038] Preferably, the flexible water supply pipe 28 is a flexible hose or corrugated pipe, which has better bending performance and prevents pipe breakage during lifting and lowering.
[0039] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.
[0040] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A lifting sprinkler system for plant germination and growth, comprising a cultivation module and sprinkler heads disposed above the cultivation module, characterized in that: It also includes a spray bracket for mounting the spray head, the spray bracket being equipped with a spray pipe communicating with the spray head; it also includes a longitudinally arranged longitudinal support, the longitudinal support being provided with a longitudinal adjustment structure for longitudinal movement of the spray bracket.
2. The lifting sprinkler system for plant germination and growth according to claim 1, characterized in that: The number of cultivation modules and spray heads are both multiple, and adjacent spray heads are interconnected through spray pipes.
3. The lifting sprinkler system for plant germination and growth according to claim 2, characterized in that: The spray support includes a longitudinal sliding frame that is slidably mounted on a longitudinal support and a mounting frame that extends laterally toward the spray head. The mounting frame is provided with a connector for the spray pipe.
4. The lifting sprinkler system for plant germination and growth according to claim 3, characterized in that: The connector includes a sleeve that surrounds the spray pipe.
5. A lifting sprinkler system for plant germination and growth according to claim 3, characterized in that: The longitudinal adjustment structure includes a longitudinal sliding groove formed in the longitudinal support, and the longitudinal sliding frame moves longitudinally along the longitudinal sliding groove.
6. The lifting sprinkler system for plant germination and growth according to claim 5, characterized in that: The longitudinal support is also provided with a number of spaced locking holes, and the longitudinal sliding frame is fitted with a locking arm that can swing longitudinally, with a locking post formed at the bottom of the locking arm.
7. A lifting sprinkler system for plant germination and growth according to claim 3, characterized in that: The longitudinal sliding frame is equipped with roller modules at both ends that roll in cooperation with the longitudinal sliding groove.
8. The lifting sprinkler system for plant germination and growth according to claim 7, characterized in that: The roller module includes a first mounting shaft and a second mounting shaft arranged at intervals. The first mounting shaft and the second mounting shaft are arranged laterally, and guide rollers that roll in cooperation with the longitudinal sliding groove are respectively installed at the outer ends of the first mounting shaft and the second mounting shaft.
9. A lifting sprinkler system for plant germination and growth according to claim 2, characterized in that: The spray support is also equipped with a top pipe assembly, which has an extension pipe connected to the spray pipe, and a longitudinally arranged flexible water supply pipe is connected to the bottom of the top pipe assembly.