Landscaping irrigation equipment
By introducing angle self-adjustment, intermittent azimuth conversion and intermittent non-return limit mechanisms into garden irrigation equipment, the problems of inconvenient adjustment of the sprinkler irrigation range and dead angles are solved, and a full range of automatic irrigation effects is achieved.
Patent Information
- Application Number
- CN202511211576.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2025-09-26
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing landscaping irrigation equipment lacks a multi-directional irrigation mechanism, which makes it difficult to adjust the sprinkler range and creates irrigation blind spots.
A landscaping irrigation device was designed, which includes an angle self-adjusting mechanism, an azimuth intermittent conversion mechanism and an intermittent non-return limit mechanism. Through the coordinated cooperation of these mechanisms, the automatic adjustment and rotation of the sprinkler head can be achieved, ensuring a wide coverage of the irrigation range without dead angles.
Automatic adjustment of the irrigation nozzles is achieved to ensure wide coverage of the irrigation range, no dead angle irrigation, and smooth and orderly operation of the device.
Smart Images

Figure CN120695993A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of garden irrigation, in particular to garden greening irrigation equipment. Background Art
[0002] Municipal garden greening lawns play an important role in urban planning and construction. They aim to improve the quality of the urban environment, improve the quality of life of residents, and promote urban ecological balance and sustainable development. The maintenance of municipal garden greening lawns is crucial. Regular pruning, fertilizing, weeding and watering can not only keep the lawn clean and beautiful, but also promote vegetation growth and enhance the greening effect.
[0003] Most of the existing green lawn irrigation methods are to pre-bury water pipes in the lawn soil layer and water the lawn through the atomizing nozzles on the water pipes. Although irrigation can be carried out through the above method, it is inevitable that it still has shortcomings in actual use. Among them, the device lacks a multi-directional irrigation mechanism, which makes it difficult to adjust the device's spraying range and leaves dead corners in irrigation. For this reason, a garden greening irrigation equipment is proposed to solve the existing problems. Summary of the Invention
[0004] In view of the deficiencies of the prior art, the present invention provides a gardening irrigation device, which solves the problem that the device lacks a multi-directional irrigation mechanism, resulting in inconvenient adjustment of the device's spraying range and dead corners in irrigation.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: landscaping irrigation equipment, including a mounting seat and a transfer bin, the transfer bin is fixedly arranged on the top of the mounting seat through a bracket, the top of the transfer bin is rotatably connected to a spray pipe through a sealed bearing, the top of the spray pipe is fixedly connected to a mounting column, the surface of the mounting column is provided with an angle self-adjusting mechanism, the surface of the spray pipe is provided with an azimuth intermittent conversion mechanism, and the top of the transfer bin is provided with an intermittent non-return limit mechanism.
[0006] Preferably, the angle self-adjusting mechanism includes a slide frame, the slide frame is fixedly arranged on the surface of the mounting column, and the slide frame is equidistantly arranged around the slide frame, the surface of the slide frame is rotatably provided with a first gear through the bracket, and two first gears are symmetrically provided, an irrigation nozzle is fixedly connected between the two first gears, and a water supply hose is connected between the irrigation nozzle and the sprinkler pipe, the interior of the slide frame is slidably connected with a sliding plate, the surface of the sliding plate is fixedly connected with a grooved frame used in conjunction with the first gear, and the inner wall of the grooved frame is fixedly provided with several tooth limit blocks meshing with the first gear, and movable frames are slidably provided on both sides of the transfer bin, and the tops of the two movable frames are fixedly connected to a mounting ring through a bracket, the top of the mounting ring is rotatably provided with a ring plate, and a bending frame is fixedly connected between the ring plate and the sliding plate.
[0007] Preferably, a rotating shaft is rotatably provided between the two sides of the inner cavity of the transfer bin, and a plurality of rotating plates are arranged around the surface of the rotating shaft. Both ends of the rotating shaft extend to the outside of the transfer bin, and both ends of the rotating shaft are fixedly connected to the second gear. A rotating rod is rotatably provided on both sides of the transfer bin, and the surface of the rotating rod is fixedly connected to a third gear meshing with the second gear, and the surface of the rotating rod is fixedly connected to a cam used in conjunction with the movable frame.
[0008] Preferably, the azimuth intermittent conversion mechanism includes a sleeve, which is fixedly arranged on the surface of the spray pipe, and a plurality of inclined grooves are equidistantly provided around the surface of the sleeve. The top of the sleeve is rotatably provided with a plurality of arc-shaped inclined plates used in conjunction with the inclined grooves. The bottom of the mounting ring is fixedly connected to a ring through a bracket, and the bottom of the ring is fixedly connected to an arc-shaped inclined pressure plate used in conjunction with the inclined grooves.
[0009] Preferably, the intermittent non-return limit mechanism includes a limit slot, the limit slot is opened on the surface of the sleeve, and a number of limit slots are opened around it at equal intervals. The top of the transfer bin is fixedly connected to the limit storage frame through a bracket, and the interior of the limit storage frame is slidably connected with an inclined non-return plug plate used in conjunction with the limit slot, and a reset spring is fixedly connected between the inclined non-return plug plate and the limit storage frame.
[0010] Preferably, an arc-shaped sliding groove is provided at the bottom of the arc-shaped inclined plate, and an arc-shaped slider that slides and fits with the arc-shaped sliding groove is fixedly connected to the top of the sleeve, and an arc-shaped return spring is fixedly connected between the arc-shaped slider and the arc-shaped sliding groove.
[0011] Preferably, both sides of the transfer bin are fixedly connected with a slide plate, a sliding frame is slidably provided inside the slide plate, and the top of the sliding frame is fixedly connected to the bottom of the movable frame.
[0012] Preferably, protective shells used in conjunction with the third gear are fixedly connected to both sides of the transfer bin.
[0013] Preferably, the front side of the transfer bin is connected to a water inlet branch pipe.
[0014] Preferably, the top of the transfer bin is provided with a plurality of mounting holes extending through to the bottom.
[0015] The present invention provides a garden irrigation device. Compared with the existing technology, it has the following advantages: (1) The garden irrigation equipment sets an angle self-adjusting mechanism, an azimuth intermittent conversion mechanism and an intermittent non-return limiting mechanism between the transfer bin and the sprinkler pipe, so that the device coordinates the water potential with the angle self-adjusting mechanism, the azimuth intermittent conversion mechanism and the intermittent non-return limiting mechanism, thereby automatically adjusting the longitudinal rotation angle of the irrigation nozzle, thereby making the irrigation area coverage wider, and automatically adjusting the circumferential position of the irrigation nozzle, thereby making the device able to irrigate in an all-round manner without dead angles, and simultaneously performing intermittent non-return limiting on the equidistantly rotating sprinkler pipes, thereby ensuring stable and orderly irrigation of the device.
[0016] (2) The garden irrigation equipment is provided with protective shells on both sides of the transfer bin for use with the second gear and the third gear, so that the meshing of the second gear and the third gear can be covered and protected by the protective shells.
[0017] (3) The garden irrigation equipment has corresponding openings on the surface of the grooved frame, so that the grooved frame can provide shielding for the meshing space between the first gear and the tooth limit block without affecting the meshing of the tooth limit block and the first gear.
[0018] (4) The landscaping irrigation equipment is provided with chute plates on both sides of the transfer bin and a sliding frame between the chute plates and the movable frame, so that the chute plates and the sliding frame can provide stable limit for the reciprocating up and down movement of the movable frame. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Schematic diagram of the external structure of the present invention; Figure 2 This is a schematic diagram of the internal structure of the transfer bin of the present invention; Figure 3 Schematic diagram of the angle self-adjusting mechanism structure of the present invention (1); Figure 4 Schematic diagram of the angle self-adjusting mechanism structure of the present invention (2); Figure 5 Schematic diagram of the angle self-adjusting mechanism structure of the present invention (3); Figure 6 Schematic diagram of the intermittent position conversion mechanism structure of the present invention (1); Figure 7 Schematic diagram of the intermittent azimuth conversion mechanism structure of the present invention (II); Figure 8 It is a schematic diagram of the intermittent non-return limiting mechanism structure of the present invention.
[0020] Figure: 1, mounting base; 2, transfer bin; 3, sprinkler pipe; 4, mounting column; 5, angle self-adjusting mechanism; 501, chute frame; 502, first gear; 503, irrigation nozzle; 504, water supply hose; 505, sliding plate; 506, grooved frame; 507, tooth limit block; 508, movable frame; 509, mounting ring; 510, ring plate; 511, bending frame; 512, rotating shaft; 513, rotating plate; 514, second gear; 515, rotating rod; 516, third gear; 51 7. Cam; 6. Azimuth intermittent conversion mechanism; 601. Sleeve; 602. Bevel; 603. Arc-shaped inclined plate; 604. Ring; 605. Arc-shaped inclined pressure plate; 606. Arc-shaped slide; 607. Arc-shaped slider; 608. Arc-shaped return spring; 7. Intermittent non-return limit mechanism; 701. Limit slot; 702. Limit storage frame; 703. Bevel non-return plug-in plate; 704. Return spring; 8. Slide plate; 9. Sliding frame; 10. Protective shell; 11. Water inlet branch pipe; 12. Mounting hole. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0022] See also Figures 1-8 The present invention provides a technical solution: a garden irrigation device, comprising a mounting base 1 and a transfer bin 2, the transfer bin 2 being fixedly arranged on the top of the mounting base 1 by a bracket, the top of the transfer bin 2 being rotatably connected to a spray pipe 3 through a sealed bearing, the top of the spray pipe 3 being fixedly connected to a mounting column 4, the front side of the transfer bin 2 being connected to a water inlet branch pipe 11, and a plurality of mounting holes 12 being opened on the top of the transfer bin 2 and extending through the bottom.
[0023] As a preferred embodiment, in order to facilitate automatic adjustment of the irrigation angle of the irrigation nozzle 503, an angle self-adjusting mechanism 5 is provided on the surface of the mounting column 4. The angle self-adjusting mechanism 5 includes a slide frame 501, the slide frame 501 is fixedly arranged on the surface of the mounting column 4, and the slide frame 501 is equidistantly arranged around the slide frame 501. A first gear 502 is provided on the surface of the slide frame 501 through a bracket, and two first gears 502 are symmetrically arranged. The irrigation nozzle 503 is fixedly connected between the two first gears 502, and a water supply hose 504 is connected between the irrigation nozzle 503 and the sprinkler pipe 3. The interior of the slide frame 501 is slidably connected to a sliding plate 505, and the surface of the sliding plate 505 is fixedly connected to a grooved frame 506 used in conjunction with the first gear 502. The inner wall of the grooved frame 506 is fixedly provided with a plurality of tooth limit blocks 507 that mesh with the first gear 502. Movable frames 508 are slidably provided on both sides of the transfer bin 2, and the tops of the two movable frames 508 are supported by supports. The frame is fixedly connected with a mounting ring 509, and a ring plate 510 is rotatably provided on the top of the mounting ring 509. A bending frame 511 is fixedly connected between the ring plate 510 and the sliding plate 505. A rotating shaft 512 is rotatably provided between the two sides of the inner cavity of the transfer bin 2. A plurality of rotating plates 513 are arranged around the surface of the rotating shaft 512. Both ends of the rotating shaft 512 extend to the outside of the transfer bin 2. Both ends of the rotating shaft 512 are fixedly connected to a second gear 514. Rotating shafts are rotatably provided on both sides of the transfer bin 2. Rod 515, the surface of the rotating rod 515 is fixedly connected to the third gear 516 meshing with the second gear 514, the surface of the rotating rod 515 is fixedly connected to the cam 517 used in conjunction with the movable frame 508, and both sides of the transfer bin 2 are fixedly connected to the protective shell 10 used in conjunction with the third gear 516, and both sides of the transfer bin 2 are fixedly connected to the slide plate 8, and the slide plate 8 is internally slidingly provided with a sliding frame 9, and the top of the sliding frame 9 is fixedly connected to the bottom of the movable frame 508.
[0024] As a preferred embodiment, in order to facilitate automatic intermittent conversion of the sprinkler irrigation orientation, an orientation intermittent conversion mechanism 6 is provided on the surface of the sprinkler pipe 3, and the orientation intermittent conversion mechanism 6 includes a sleeve 601, which is fixedly arranged on the surface of the sprinkler pipe 3. A plurality of inclined grooves 602 are equidistantly provided on the surface of the sleeve 601. A plurality of arc-shaped inclined plates 603 used in conjunction with the inclined grooves 602 are rotatably provided on the top of the sleeve 601. The bottom of the mounting ring 509 is fixedly connected to a collar 604 through a bracket. The bottom of the collar 604 is fixedly connected to an arc-shaped inclined pressure plate 605 used in conjunction with the inclined groove 602. An arc-shaped slide groove 606 is provided at the bottom of the arc-shaped inclined plate 603. An arc-shaped slider 607 slidingly adapted to the arc-shaped slide groove 606 is fixedly connected to the top of the sleeve 601. An arc-shaped return spring 608 is fixedly connected between the arc-shaped slider 607 and the arc-shaped slide groove 606.
[0025] As a preferred embodiment, in order to facilitate the intermittent rotation of the spray pipe 3 and provide a non-return limit, an intermittent non-return limit mechanism 7 is provided on the top of the transfer bin 2. The intermittent non-return limit mechanism 7 includes a limit slot 701. The limit slot 701 is opened on the surface of the sleeve 601, and a number of limit slots 701 are opened around at equal intervals. The top of the transfer bin 2 is fixedly connected to the limit storage frame 702 through a bracket. The internal sliding connection of the limit storage frame 702 is provided with an inclined non-return plug plate 703 used in conjunction with the limit slot 701. A reset spring 704 is fixedly connected between the inclined non-return plug plate 703 and the limit storage frame 702.
[0026] The specific steps are as follows: The device is installed on the ground of the irrigation area through the installation hole 12, and then the water inlet branch pipe 11 is connected to the main water supply pipe. The water source required for irrigation is injected into the interior of the transfer bin 2 through the transportation cooperation of the main pipe and the water inlet branch pipe 11. The water source enters the transfer bin 2 and the water pressure will drive the rotating plate 513 to rotate. The rotating plate 513 drives the rotating shaft 512 to rotate. The rotating shaft 512 drives the second gear 514 to rotate. The second gear 514 rotates and engages with the third gear 516, causing the third gear 516 to drive the cam 517 to rotate through the rotating rod 515. The cam 517 drives the movable frame 508 to move back and forth up and down. The movable frame 508 drives the mounting ring 509 and the ring plate 510 to move. When the mounting ring 509 and the ring plate 510 move downward, they synchronously drive the bending frame 511 and the sliding plate 505 to descend, and the sliding plate 505 drives the grooved frame 506 and the tooth limit block 507 to descend, and the tooth limit block 507 descends and engages with the first gear 502, prompting the first gear 502 to drive the irrigation sprinkler 503 to rotate upward at an irrigation angle. When the mounting ring 509 descends, it synchronously drives the collar 604 and the arc-shaped inclined surface pressure plate 605 to descend. The arc-shaped inclined surface pressure plate 605 descends, which squeezes the arc-shaped inclined surface 603 and the inclined groove 602 on the same track, prompting the sleeve 601 to be driven by the squeezing force to drive the sprinkler pipe 3 to rotate together at a fixed angle in a circle. When the arc-shaped inclined surface pressure plate 605 follows the arc-shaped inclined surface 603 and the inclined groove 602 on the same track and then enters the inclined groove 602, it squeezes the vertical side surface of the next arc-shaped inclined surface 603, prompting the vertical side surface of the next arc-shaped inclined surface 603 to be flush with the vertical inner wall of the current inclined groove 602. When the mounting ring 509 and the ring plate 510 rise, they drive the collar 604 and the arc-shaped inclined surface pressure plate 605 to rise. The arc-shaped inclined surface pressure plate 605 rises and leaves the interior of the inclined groove 602 and is higher than the arc-shaped inclined surface 603. Then, the next arc-shaped inclined surface 603 elastically rotates under the squeeze and returns to its original position through elastic sliding, so that its arc-shaped inclined surface is located at the bottom of the arc-shaped inclined surface pressure plate 605, making preparations for the next equidistant rotation. The rotation of the sleeve 601 synchronously drives the rotation of the plurality of limit slots 701 , and the rotation of the limit slots 701 will sequentially cooperate with the inclined anti-return plug-in plates 703 for anti-return limiting.
Claims
1. A garden irrigation device, comprising a mounting base (1) and a transfer bin (2), wherein the transfer bin (2) is fixedly arranged on the top of the mounting base (1) via a bracket, and is characterized in that: The top of the transfer bin (2) is rotatably connected to a spray pipe (3) via a sealed bearing, the top of the spray pipe (3) is fixedly connected to a mounting column (4), the surface of the mounting column (4) is provided with an angle self-adjusting mechanism (5), the surface of the spray pipe (3) is provided with an azimuth intermittent conversion mechanism (6), and the top of the transfer bin (2) is provided with an intermittent non-return limiting mechanism (7).
2. The landscaping irrigation equipment according to claim 1, characterized in that: The angle self-adjusting mechanism (5) comprises a chute frame (501), the chute frame (501) is fixedly arranged on the surface of the mounting column (4), and a plurality of chute frames (501) are arranged around the chute frame (501) at equal intervals. The surface of the chute frame (501) is provided with a first gear (502) which is rotatable by a bracket, and two first gears (502) are symmetrically provided. An irrigation nozzle (503) is fixedly connected between the two first gears (502). A water hose (504) is connected between the irrigation nozzle (503) and the spray pipe (3). A sliding plate (505) is slidably connected to the interior of the chute frame (501). The surface of the sliding plate (505) is fixedly connected to a grooved frame (506) used in conjunction with the first gear (502), and the inner wall of the grooved frame (506) is fixedly provided with a plurality of tooth limit blocks (507) meshing with the first gear (502). Both sides of the transfer bin (2) are slidably provided with movable frames (508), and the tops of the two movable frames (508) are fixedly connected to a mounting ring (509) through a bracket. The top of the mounting ring (509) is rotatably provided with a ring plate (510), and a bending frame (511) is fixedly connected between the ring plate (510) and the sliding plate (505).
3. The landscaping irrigation equipment according to claim 2, characterized in that: A rotating shaft (512) is rotatably provided between the two sides of the inner cavity of the transfer bin (2), and a plurality of rotating plates (513) are arranged around the surface of the rotating shaft (512). Both ends of the rotating shaft (512) extend to the outside of the transfer bin (2), and both ends of the rotating shaft (512) are fixedly connected to a second gear (514). A rotating rod (515) is rotatably provided on both sides of the transfer bin (2), and a third gear (516) meshing with the second gear (514) is fixedly connected to the surface of the rotating rod (515). A cam (517) used in conjunction with the movable frame (508) is fixedly connected to the surface of the rotating rod (515).
4. The landscaping irrigation equipment according to claim 2, characterized in that: The intermittent orientation conversion mechanism (6) comprises a sleeve (601), which is fixedly arranged on the surface of the spray pipe (3), and a plurality of inclined grooves (602) are equidistantly provided around the surface of the sleeve (601), and a plurality of arc-shaped inclined plates (603) used in conjunction with the inclined grooves (602) are rotatably provided on the top of the sleeve (601), and the bottom of the mounting ring (509) is fixedly connected to a collar (604) via a bracket, and the bottom of the collar (604) is fixedly connected to an arc-shaped inclined pressure plate (605) used in conjunction with the inclined grooves (602).
5. The landscaping irrigation equipment according to claim 4, characterized in that: The intermittent non-return limiting mechanism (7) comprises a limit slot (701), the limit slot (701) is provided on the surface of the sleeve (601), and a plurality of limit slots (701) are provided around the sleeve at equal intervals. The top of the transfer bin (2) is fixedly connected to a limit storage frame (702) via a bracket. The interior of the limit storage frame (702) is slidably connected to an inclined non-return plug-in plate (703) used in conjunction with the limit slot (701). A return spring (704) is fixedly connected between the inclined non-return plug-in plate (703) and the limit storage frame (702).
6. The landscaping irrigation equipment according to claim 4, characterized in that: An arc-shaped sliding groove (606) is provided at the bottom of the arc-shaped inclined plate (603), and an arc-shaped slider (607) that is slidably adapted to the arc-shaped sliding groove (606) is fixedly connected to the top of the sleeve (601), and an arc-shaped return spring (608) is fixedly connected between the arc-shaped slider (607) and the arc-shaped sliding groove (606).
7. The landscaping irrigation equipment according to claim 2, characterized in that: Both sides of the transfer bin (2) are fixedly connected with a chute plate (8), a sliding frame (9) is slidably provided inside the chute plate (8), and the top of the sliding frame (9) is fixedly connected to the bottom of the movable frame (508).
8. The landscaping irrigation equipment according to claim 3, characterized in that: Protective shells (10) used in conjunction with the third gear (516) are fixedly connected to both sides of the transfer bin (2).
9. The landscaping irrigation equipment according to claim 1, characterized in that: The front side of the transfer bin (2) is connected to a water inlet branch pipe (11).
10. The landscaping irrigation equipment according to claim 1, characterized in that: The top of the transfer bin (2) is provided with a plurality of mounting holes (12) extending through to the bottom.
Citation Information
Patent Citations
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