Multi-nozzle truss sprinkling machine
Through the design of threaded connection and toothed meshing, the problem of inconvenient disassembly and storage of sprinkler head trusses is solved, and the equipment is easily disassembled and stored, reducing space occupied and improving warehouse usage rate.
Patent Information
- Application Number
- CN202422125984.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The nozzle truss of existing sprinklers are not convenient for disassembly and storage, resulting in the equipment occupying a large space and reducing the warehouse usage rate.
A multi-spray truss sprinkler irrigation machine is designed to facilitate disassembly and storage of the nozzle truss through threaded connection and toothed meshing, and to achieve rapid limiting using limit blocks and spring structures.
It realizes convenient disassembly and storage of nozzle trusses, reduces equipment space and improves warehouse usage.
Smart Images

Figure CN223168866U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sprinklers, in particular to a multi-nozzle truss sprinkler. Background Technique
[0002] The multi-nozzle truss sprinkler is an agricultural irrigation device. It uses a truss structure to support multiple nozzles to achieve large-area and uniform spraying irrigation. This kind of sprinkler is usually applicable to field crops, orchards, lawns, etc., which can improve irrigation efficiency, save water resources, and can adjust the spraying amount and spraying range according to the needs of crops.
[0003] During the use of the existing sprinkler, although it can irrigate the product, it is not convenient to disassemble the nozzle truss, resulting in a large amount of time spent disassembling the nozzle truss during use. At the same time, the nozzle truss cannot be stored when the equipment is placed, resulting in a large floor area required for the sprinkler when placed, reducing the utilization rate of the warehouse. Therefore, a multi-nozzle truss sprinkler is introduced. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides a multi-nozzle truss sprinkler, which has the advantages of being convenient for disassembly and storage, and solves the problems raised in the above background technique.
[0005] The utility model provides the following technical scheme: A multi-nozzle truss sprinkler, including a sprinkler body, an outer wall of the sprinkler body is fixedly assembled with a limiting frame, an outer wall of the limiting frame is provided with a nozzle truss body, an outer wall of the nozzle truss body is provided with a fixing component, a fixing block is fixedly assembled on a top of the nozzle truss body, an inner wall of the fixing block is rotatably connected with a rotating rod, a thread groove is formed on an outer wall of the rotating rod, one end of a threaded rod is threadedly connected to an inner wall of the thread groove, the other end of the threaded rod is fixedly assembled with a limiting block, a second toothed block is fixedly assembled on one end of the limiting block close to the threaded rod, a first toothed block is fixedly assembled on an inner wall of the fixing block, and a support rod is fixedly assembled on an outer wall of the rotating rod.
[0006] As a preferred technical scheme of the utility model: A main water pipe is fixedly assembled on a top of the support rod, and a water spray head is fixedly assembled on a bottom of the support rod.
[0007] As a preferred technical solution of the present utility model: The fixing assembly includes a limiting rod, a placement groove is formed on the outer wall of the limiting rod, one end of a spring is fixedly assembled on the inner wall of the placement groove, the other end of the spring is fixedly assembled with a moving block, a placement block is fixedly assembled on the inner wall of the placement groove, a sliding rod is fixedly assembled on the outer surface of the moving block, a rotating column is rotatably connected to the inner wall of the moving block away from one end of the spring, one end of a rotating plate is fixedly assembled on the outer wall of the rotating column, the other end of the rotating plate is fixedly assembled with a clamping block, and a clamping groove is provided on the outer wall of the clamping block.
[0008] As a preferred technical solution of the present utility model: The clamping groove is formed on the outer wall of the limiting frame, the limiting rod is fixedly assembled with the outer wall of the sprinkler truss body, the moving block is slidably connected with the inner wall of the placement block through the sliding rod, and the clamping block is clamped with the inner wall of the clamping groove.
[0009] As a preferred technical solution of the present utility model: The water outlet end of the main water pipe is provided with a plurality of branch water pipes, and the sprinkler head is communicated with the inner wall of the main water pipe through the branch water pipe, the thread groove is formed on the outer wall of the fixing block, and the first toothed block meshes with the second toothed block.
[0010] As a preferred technical solution of the present utility model: The number of the fixing assemblies is two groups, and the two groups of fixing assemblies are respectively located on the outer wall of the sprinkler truss body.
[0011] Compared with the prior art, the present utility model has the following beneficial effects:
[0012] 1. When placing the equipment of this multi-nozzle truss sprinkler irrigation machine, the staff rotates the support rod, so that the support rod drives the rotating rod to rotate in the inner wall of the fixing block. When the support rod is rotated to the top of the sprinkler truss body, the staff puts the threaded rod, the limiting block and the second toothed block into the inner wall of the thread groove for threaded connection. The threaded rod and the limiting block are limited by the threaded connection between the threaded rod and the inner wall of the rotating rod, and then the second toothed block meshes with the first toothed block to limit the rotating rod, avoiding the rotation of the rotating rod during placement or use, so as to realize the storage of the equipment and prevent the equipment from occupying a large amount of usage area when placed.
[0013] 2. When disassembling the nozzle truss body of this multi-nozzle truss sprinkler, the staff pulls the rotating plate, so that the rotating plate drives the clamping block to move out from the inner wall of the clamping groove to limit the rotating plate. Then, the staff rotates the rotating plate, so that the rotating plate drives the rotating column to rotate inside the moving block. By the staff pulling the moving block, the moving block drives the sliding rod to move inside the placing block. At the same time, when the moving block moves, it will drive the spring to stretch and contract. When the staff slowly releases the hand, the elastic potential energy of the spring is released, so that the spring drives the moving block to rebound to the inner wall of the placing groove for limiting, thereby realizing the rapid disassembly of the nozzle truss body. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0015] Figure 2 is a structural schematic diagram of the water pipe of the present utility model;
[0016] Figure 3 is a structural schematic diagram of the spring of the present utility model;
[0017] Figure 4 is a structural schematic diagram of the water spray head of the present utility model;
[0018] Figure 5 of the present utility model Figure 3 is an enlarged structural schematic diagram at A in;
[0019] Figure 6 of the present utility model Figure 4 is an enlarged structural schematic diagram at B in.
[0020] In the figure: 1. Sprinkler body; 2. Limiting frame; 3. Nozzle truss body; 4. Fixing component; 5. Fixing block; 6. Rotating rod; 7. Support rod; 8. Main water pipe; 9. Water spray head; 10. Threaded groove; 11. First toothed block; 12. Threaded rod; 13. Limiting block; 14. Second toothed block.
[0021] 401. Limiting rod; 402. Placing groove; 403. Spring; 404. Placing block; 405. Moving block; 406. Sliding rod; 407. Rotating column; 408. Rotating plate; 409. Clamping groove; 410. Clamping block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0023] Please refer to Figure 1 - Figure 6 , a multi-nozzle truss sprinkler, including a sprinkler body 1. A limit frame 2 is fixedly assembled on the outer wall of the sprinkler body 1. A nozzle truss body 3 is provided on the outer wall of the limit frame 2. A fixing component 4 is provided on the outer wall of the nozzle truss body 3. A fixing block 5 is fixedly assembled at the top of the nozzle truss body 3. A rotating rod 6 is rotatably connected to the inner wall of the fixing block 5. A thread groove 10 is formed on the outer wall of the rotating rod 6. One end of a threaded rod 12 is threadedly connected to the inner wall of the thread groove 10. The other end of the threaded rod 12 is fixedly assembled with a limit block 13. A second toothed block 14 is fixedly assembled at one end of the limit block 13 close to the threaded rod 12. A first toothed block 11 is fixedly assembled on the inner wall of the fixing block 5. A support rod 7 is fixedly assembled on the outer wall of the rotating rod 6.
[0024] In the above structure, during the equipment installation process, the staff rotates the support rod 7 to drive the rotating rod 6 to rotate on the inner wall of the fixing block 5. When the support rod 7 rotates to align with the top end of the nozzle truss body 3, the staff installs the threaded rod 12, the limit block 13 and the second toothed block 14 into the inner wall thread of the thread groove 10. The threaded rod 12 is positioned by being threadedly connected to the inner wall of the rotating rod 6. At the same time, the meshing effect of the second toothed block 14 and the first toothed block 11 positions the rotating rod 6 to prevent it from rotating during installation or use. This series of operations ensures the orderly storage of the equipment and avoids the equipment occupying too much space when not in use.
[0025] In a preferred embodiment: a main water pipe 8 is fixedly assembled at the top of the support rod 7, and a water spray head 9 is fixedly assembled at the bottom of the support rod 7.
[0026] In the above structure, the main water pipe 8 is used to convey water, and then the water spray head 9 and the main water pipe 8 are matched to spray the site.
[0027] In a preferred embodiment: The fixing component 4 includes a limiting rod 401. A placement groove 402 is formed in the outer wall of the limiting rod 401. One end of a spring 403 is fixedly assembled on the inner wall of the placement groove 402. The other end of the spring 403 is fixedly assembled with a moving block 405. A placement block 404 is fixedly assembled on the inner wall of the placement groove 402. A sliding rod 406 is fixedly assembled on the outer surface of the moving block 405. A rotating column 407 is rotatably connected to the inner wall of the moving block 405 at one end away from the spring 403. One end of a rotating plate 408 is fixedly assembled on the outer wall of the rotating column 407. The other end of the rotating plate 408 is fixedly assembled with a clamping block 410. A clamping groove 409 is formed in the outer wall of the clamping block 410.
[0028] In the above structure, during the process of disassembling the nozzle truss body 3, the operator first pulls the rotating plate 408 to make it stressed and drive the clamping block 410 out of the inner wall of the clamping groove 409, thereby limiting the rotating plate 408. Subsequently, the operator rotates the rotating plate 408, which drives the rotating column 407 to rotate in the inner wall of the moving block 405. Then, the operator pulls the moving block 405 to drive the sliding rod 406 to move in the inner wall of the placement block 404. During the movement, the moving block 405 will cause the spring 403 to expand and contract. When the operator gradually releases the hand force, the elastic potential energy of the spring 403 component is released, and then the moving block 405 is pushed back to the inner wall of the placement groove 402 for limiting, so as to realize the rapid disassembly of the nozzle truss body 3.
[0029] In a preferred embodiment: The clamping groove 409 is formed in the outer wall of the limiting frame 2. The limiting rod 401 is fixedly assembled with the outer wall of the nozzle truss body 3. The moving block 405 is slidably connected to the inner wall of the placement block 404 through the sliding rod 406. The clamping block 410 is clamped with the inner wall of the clamping groove 409.
[0030] In the above structure, the fixing component 4 is limited by the limiting frame 2 and the nozzle truss body 3, and the moving block 405 is limited by the placement block 404, so that the moving block 405 will not deviate during movement. The limiting frame 2 and the nozzle truss body 3 are connected by the clamping of the clamping block 410 and the clamping groove 409.
[0031] In a preferred embodiment: A plurality of branch water pipes are provided at the water outlet end of the main water pipe 8, and the spray heads 9 communicate with the inner wall of the main water pipe 8 through the branch water pipes. A threaded groove 10 is formed in the outer wall of the fixing block 5. The first toothed block 11 meshes with the second toothed block 14.
[0032] In the above structure, a plurality of branch water pipes can be used to drive multiple groups of spray heads 9 to work simultaneously, and the rotating rod 6 is limited by the meshing of the first toothed block 11 and the second toothed block 14.
[0033] In a preferred embodiment: there are two sets of fixing components 4, and the two sets of fixing components 4 are respectively located on the outer wall of the nozzle truss body 3.
[0034] In the above structure, the two sets of fixing components 4 are used to clamp and fix both sides of the limiting frame 2, so that the nozzle truss body 3 is more stable when placed.
[0035] Working principle: When the device is placed, the staff rotates the support rod 7, causing the support rod 7 to drive the rotating rod 6 to rotate on the inner wall of the fixed block 5. When the support rod 7 rotates to the top of the nozzle truss body 3, the staff installs the threaded rod 12, the limiting block 13 and the second toothed block 14 into the internal thread of the threaded groove 10. The threaded rod 12 is connected to the internal thread of the rotating rod 6 to limit the positions of the threaded rod 12 and the limiting block 13, and the engagement of the second toothed block 14 and the first toothed block 11 is used to limit the rotation of the rotating rod 6 to prevent rotation during the installation or use of the device, so as to store the device and ensure that the device does not occupy too much space when not in use. When disassembling the nozzle truss body 3, the staff pulls the rotating plate 408 to make it stressed and drive the clamping block 410 to move out of the inner wall of the clamping groove 409, so as to limit the rotating plate 408. Subsequently, the staff rotates the rotating plate 408 to drive the rotating column 407 to rotate on the inner wall of the moving block 405. Then, the staff pulls the moving block 405 to drive the sliding rod 406 to move on the inner wall of the placing block 404. During the movement, the moving block 405 causes the spring 403 to expand and contract. When the staff gradually releases the hand force, the elastic potential energy of the spring 403 is released, driving the moving block 405 to rebound to the inner wall of the placing groove 402 for limiting, so as to realize the rapid disassembly of the nozzle truss body 3.
[0036] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multi-nozzle truss sprinkler, comprising a sprinkler body (1), characterized in that: A limiting frame (2) is fixedly assembled on the outer wall of the sprinkler body (1). A sprinkler truss body (3) is arranged on the outer wall of the limiting frame (2). A fixing component (4) is arranged on the outer wall of the sprinkler truss body (3). A fixing block (5) is fixedly assembled at the top of the sprinkler truss body (3). A rotating rod (6) is rotatably connected to the inner wall of the fixing block (5). A threaded groove (10) is formed on the outer wall of the rotating rod (6). One end of a threaded rod (12) is threadedly connected to the inner wall of the threaded groove (10). The other end of the threaded rod (12) is fixedly assembled with a limiting block (13). A second toothed block (14) is fixedly assembled at one end of the limiting block (13) close to the threaded rod (12). A first toothed block (11) is fixedly assembled on the inner wall of the fixing block (5). A support rod (7) is fixedly assembled on the outer wall of the rotating rod (6).
2. The multi-nozzle truss sprinkler according to claim 1, wherein: A main water pipe (8) is fixedly assembled at the top of the support rod (7). A water spray head (9) is fixedly assembled at the bottom of the support rod (7).
3. The multi-nozzle truss sprinkler according to claim 2, wherein: The fixing component (4) includes a limiting rod (401). A placement groove (402) is formed on the outer wall of the limiting rod (401). One end of a spring (403) is fixedly assembled on the inner wall of the placement groove (402). The other end of the spring (403) is fixedly assembled with a moving block (405). A placement block (404) is fixedly assembled on the inner wall of the placement groove (402). A sliding rod (406) is fixedly assembled on the outer surface of the moving block (405). A rotating column (407) is rotatably connected to the inner wall of the moving block (405) at one end away from the spring (403). One end of a rotating plate (408) is fixedly assembled on the outer wall of the rotating column (407). A clamping block (410) is fixedly assembled at the other end of the rotating plate (408). A clamping groove (409) is formed on the outer wall of the clamping block (410).
4. The multi-nozzle truss sprinkler according to claim 3, characterized in that: The clamping groove (409) is formed on the outer wall of the limiting frame (2). The limiting rod (401) is fixedly assembled with the outer wall of the sprinkler truss body (3). The moving block (405) is slidably connected to the inner wall of the placement block (404) through the sliding rod (406). The clamping block (410) is clamped with the inner wall of the clamping groove (409).
5. A multi-nozzle truss sprinkler according to claim 2, characterized in that: A number of branch water pipes are arranged at the water outlet end of the main water pipe (8). And the water spray head (9) is communicated with the inner wall of the main water pipe (8) through the branch water pipes. The threaded groove (10) is formed on the outer wall of the fixing block (5). The first toothed block (11) is meshed with the second toothed block (14).
6. The multi-nozzle truss sprinkler according to claim 1, characterized in that: The number of the fixing components (4) is two groups, and the two groups of fixing components (4) are respectively located on the outer wall of the sprinkler truss body (3).