Embedded type lamplight fountain nozzle structure

By designing an automatically liftable nozzle structure, the problem of the inability to adjust the fixing of the water spray pipe and the light bulb is solved, and the automatic adjustment and convenient disassembly and assembly of the water spray and light are realized, improving the service life and maintenance convenience of the nozzle.

CN223128392UActive Publication Date: 2025-07-22GUIZHOU TONGLI ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202421539281.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-07-22
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

In the existing buried lighting fountain nozzle structure, the water spray pipe and the light bulb are not fixed, resulting in damage to the water spilled into the light bulb and inconvenient to disassemble and assemble.

Method used

A nozzle structure that can be automatically lifted and lowered is designed, and the threaded pipe is driven by the motor to drive the driving wheel and driven wheel to drive the threaded pipe up, realizing the automatic lifting and lowering of the nozzle, and is easy to install and disassemble through the knob and snap structure.

Benefits of technology

Automatic adjustment of water spray and light is realized to avoid water damage to the light bulb, and at the same time facilitate the disassembly and assembly and maintenance of the nozzle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fountain nozzles, and discloses an embedded type lamplight fountain nozzle structure which comprises an embedded plate, a shell is fixedly connected to the interior of the embedded plate, a transparent cover is fixedly connected to the interior of the shell, a lamp holder is fixedly connected to the lower surface of the transparent cover, a bulb is connected to the interior of the lamp holder in a threaded mode, and the bulb is connected to the interior of the lamp holder in a threaded mode. A base is fixedly connected to the lower surface of the shell, a groove is formed in the shell, an empty groove is formed in the base, a motor is fixedly connected to the interior of the base, and a driving wheel is fixedly connected to the output end of the motor. The threaded pipe is connected with a water source, the motor is started to drive the driving wheel to rotate, the driving wheel drives the driven wheel to rotate, the driven wheel drives the rotating shaft to rotate, and the rotating shaft drives the threaded pipe to ascend in the rotating process, so that the spraying head is driven to ascend, and the effect of facilitating automatic lifting spraying is achieved; the effect that light can be seen when the fountain sprays water can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of fountain nozzles, in particular to an embedded lighting fountain nozzle structure. Background Art

[0002] The embedded light fountain nozzle structure is a nozzle designed for use in a fountain system. It is characterized by a built-in lighting device that can not only achieve water jetting, but also enhance the landscape effect through lighting effects. This nozzle structure is usually designed to be embedded and installed at the bottom or around the fountain pool or waterscape, so that the water spray and lighting can be integrated with the water body to form a unique visual effect. The lights can be monochrome or multi-colored LED lights. Through different lighting changes and control modes, a variety of colorful or soft and warm light and shadow effects can be created, making the fountain more eye-catching and charming at night or in specific scenes. This structure of nozzles is widely used in the design and construction of fountains in urban squares, park landscapes, amusement parks and other places, creating an emotional and artistic viewing experience for people.

[0003] In the prior art, light fountains are generally directly combined through water spraying pipes and bulbs. The nozzles of the fountains cannot be adjusted and are directly fixed inside. In addition, light fountains are generally directly fixed to the inside of the floor through bolts and nuts. Tools are required for disassembly and installation, which makes disassembly and installation inconvenient.

[0004] With regard to the structure of the prior art, the water spray pipe and the light bulb are fixed and cannot be adjusted, which causes water to easily spill into the light bulb during the water spraying process, causing the light bulb to be damaged and unusable. Therefore, the nozzle needs to be set to a structure that can be raised and lowered and isolated from the light bulb to prevent water from entering the light bulb. In addition, a structure that is easy to disassemble and assemble is needed to facilitate the disassembly and maintenance of the entire nozzle structure. Utility Model Content

[0005] In order to make up for the above shortcomings, the utility model provides an embedded light fountain nozzle structure, which aims to improve the effect of the nozzle being able to automatically rise and fall to spray water in the prior art and facilitate the disassembly and assembly of the entire nozzle structure.

[0006] To achieve the above object, the present utility model provides the following technical solutions: An embedded lighting fountain nozzle structure, including an embedding plate, the inside of the embedding plate is fixedly connected with a housing, the inside of the housing is fixedly connected with a transparent cover, the lower surface of the transparent cover is fixedly connected with a lamp holder, the inside of the lamp holder is threadedly connected with a light bulb, the lower surface of the housing is fixedly connected with a base, a groove is provided inside the housing, an empty groove is provided inside the base, a motor is fixedly connected inside the base, the output end of the motor is fixedly connected with a driving wheel, a rotating shaft is rotatably connected inside the base, a driven wheel is fixedly connected to the outer wall of the rotating shaft, the driven wheel meshes with the driving wheel, and a spraying assembly is arranged inside the rotating shaft, and the spraying assembly is used for fountain water spraying.

[0007] Further, the spraying assembly includes a threaded pipe, the threaded pipe is threadedly connected inside the rotating shaft, and a spray head is fixedly connected to the upper surface of the threaded pipe.

[0008] Further, a connecting column is rotatably connected inside the embedding plate, a knob is fixedly connected to the upper surface of the connecting column, and a rotating plate is fixedly connected to the lower surface of the connecting column.

[0009] Further, a first clamping plate is rotatably connected to the outer wall of the rotating plate, a first limiting block is fixedly connected to the upper surface of the first clamping plate, and the first limiting block is slidably connected inside the embedding plate.

[0010] Further, a first buckle is fixedly connected to the lower surface of the first clamping plate, a first limiting groove is provided inside the embedding plate, and the first limiting block is slidably connected inside the first limiting groove.

[0011] Further, a second clamping plate is rotatably connected to the outer wall of the rotating plate, a second limiting block is fixedly connected to the upper surface of the second clamping plate, the second limiting block is slidably connected inside the embedding plate, and a limiting shaft is slidably connected inside the second clamping plate.

[0012] Further, a second buckle is fixedly connected to the lower surface of the second clamping plate, a second limiting groove is provided inside the embedding plate, and the second limiting block is slidably connected inside the second limiting groove.

[0013] Further, the limiting shaft is slidably connected inside the first clamping plate, a spring is sleeved on the outer wall of the limiting shaft, one end of the spring is fixedly connected to the outer wall of the second clamping plate, and the other end of the spring is fixedly connected to the outer wall of the first clamping plate.

[0014] The present utility model has the following beneficial effects:

[0015] 1. In the present utility model, the threaded pipe is connected to a water source. The motor is started to drive the driving wheel to rotate. The driving wheel drives the driven wheel to rotate, and the driven wheel drives the rotating shaft to rotate. During the rotation of the rotating shaft, the threaded pipe is driven to rise, thereby driving the nozzle to rise, achieving the effect of facilitating automatic lifting and spraying. At the same time, when multiple bulbs are turned on, the effect that the lights can be seen when the fountain sprays water can be achieved.

[0016] 2. In the present utility model, turning the knob drives the connecting column to rotate, thereby driving the rotating plate to rotate, further driving the first clamping plate and the second clamping plate to slide in opposite directions, thereby driving the first buckle and the second buckle to respectively snap into the inside of the bottom plate for installation, achieving the effect of quick installation. Turning the knob in the reverse direction can drive the first clamping plate and the second clamping plate to approach each other and drive the first buckle and the second buckle to approach each other, achieving the effect of disassembly. Description of the Drawings

[0017] Figure 1 is a schematic three-dimensional structure diagram of an embedded lighting fountain nozzle structure proposed by the present utility model;

[0018] Figure 2 is a schematic diagram of the lamp holder structure of an embedded lighting fountain nozzle structure proposed by the present utility model;

[0019] Figure 3 is a schematic diagram of the internal structure of the housing of an embedded lighting fountain nozzle structure proposed by the present utility model;

[0020] Figure 4 is a schematic diagram of the bottom view of the embedded plate of an embedded lighting fountain nozzle structure proposed by the present utility model.

[0021] Legend Explanation:

[0022] 1. Embedded plate; 2. Housing; 3. Transparent cover; 4. Lamp holder; 5. Bulb; 6. Base; 7. Motor; 8. Driving wheel; 9. Driven wheel; 10. Rotating shaft; 11. Threaded pipe; 12. Nozzle; 13. Groove; 14. Empty slot; 15. Knob; 16. Connecting column; 17. Rotating plate; 18. First clamping plate; 19. First limiting block; 20. First limiting groove; 21. First buckle; 22. Second clamping plate; 23. Second limiting block; 24. Second limiting groove; 25. Second buckle; 26. Limiting shaft; 27. Spring. Detailed Embodiment

[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with 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.

[0024] Referring to Figure 1 、 Figure 2 and Figure 3 ,an embodiment provided by the present utility model: a buried lighting fountain nozzle structure, including an embedding plate 1, a housing 2 is fixedly connected inside the embedding plate 1, a transparent cover 3 is fixedly connected inside the housing 2, a lamp holder 4 is fixedly connected to the lower surface of the transparent cover 3, a light bulb 5 is threadedly connected inside the lamp holder 4, a base 6 is fixedly connected to the lower surface of the housing 2, a groove 13 is opened inside the housing 2, an empty slot 14 is opened inside the base 6, a motor 7 is fixedly connected inside the base 6, a driving wheel 8 is fixedly connected to the output end of the motor 7, a rotating shaft 10 is rotatably connected inside the base 6, a driven wheel 9 is fixedly connected to the outer wall of the rotating shaft 10, the driven wheel 9 meshes with the driving wheel 8, a spraying assembly is arranged inside the rotating shaft 10, and the spraying assembly is used for fountain water spraying. The spraying assembly includes a threaded pipe 11, the threaded pipe 11 is threadedly connected inside the rotating shaft 10, and a spray head 12 is fixedly connected to the upper surface of the threaded pipe 11;

[0025] Specifically, a plurality of light bulbs 5 are threadedly connected inside the lamp holder 4. The motor 7 is started to drive the driving wheel 8 to rotate. During the rotation of the driving wheel 8, the driven wheel 9 is driven to rotate. While the driven wheel 9 rotates, the rotating shaft 10 is driven to rotate. During the rotation of the rotating shaft 10, the threaded pipe 11 inside it rises, so that the spray head 12 is driven to rise through the threaded pipe 11. The threaded pipe 11 is connected to the water source, so that the spraying effect can be realized. At the same time, when spraying, a plurality of light bulbs 5 are turned on, so that the effect of showing lights during the operation of the fountain can be realized, and the effect of automatic lifting and spraying is achieved.

[0026] Referring to Figure 1 and Figure 4 ,a connecting column 16 is rotatably connected inside the embedding plate 1, a knob 15 is fixedly connected to the upper surface of the connecting column 16, a rotating plate 17 is fixedly connected to the lower surface of the connecting column 16, a first clamping plate 18 is rotatably connected to the outer wall of the rotating plate 17, a first limiting block 19 is fixedly connected to the upper surface of the first clamping plate 18, the first limiting block 19 is slidably connected inside the embedding plate 1, a first clamping buckle 21 is fixedly connected to the lower surface of the first clamping plate 18, a first limiting groove 20 is opened inside the embedding plate 1, and the first limiting block 19 is slidably connected inside the first limiting groove 20;

[0027] Specifically, rotating the knob 15 drives the connecting column 16 to rotate. During the rotation of the connecting column 16, the rotating plate 17 is driven to rotate. During the rotation of the rotating plate 17, the first clamping plate 18 undergoes an angular change. Since the first limiting block 19 is fixed on the upper surface of the first clamping plate 18 and slides inside the first limiting groove 20, when the rotating plate 17 rotates, the first clamping plate 18 is driven to move left and right, thereby driving the first buckle 21 to move left and right and snap into the floor to be fixed.

[0028] Referring to Figure 4 , the outer wall of the rotating plate 17 is rotatably connected to a second clamping plate 22. The upper surface of the second clamping plate 22 is fixedly connected to a second limiting block 23. The second limiting block 23 is slidably connected inside the embedding plate 1. A limiting shaft 26 is slidably connected inside the second clamping plate 22. The lower surface of the second clamping plate 22 is fixedly connected to a second buckle 25. A second limiting groove 24 is formed inside the embedding plate 1. The second limiting block 23 is slidably connected inside the second limiting groove 24. The limiting shaft 26 is slidably connected inside the first clamping plate 18. A spring 27 is sleeved on the outer wall of the limiting shaft 26. One end of the spring 27 is fixedly connected to the outer wall of the second clamping plate 22, and the other end of the spring 27 is fixedly connected to the outer wall of the first clamping plate 18;

[0029] Specifically, during the rotation of the rotating plate 17, the second clamping plate 22 is also driven to rotate. During the rotation of the second clamping plate 22, the second limiting block 23 is also driven to rotate. Since the second limiting block 23 is slidably connected inside the second limiting groove 24, the second clamping plate 22 is translated left and right, and at the same time, the second buckle 25 is also driven to translate left and right and snap into the floor to be fixed. The two limiting shafts 26 play a role in limiting the first clamping plate 18 and the second clamping plate 22, and the two springs 27 play a role in resetting, achieving the effect of auxiliary fixation.

[0030] Working principle: When the embedded light fountain nozzle needs to be used, first connect the threaded pipe 11 to the water source inside the floor, then place the embedding plate 1 on the floor where it needs to be fixed. Rotate the four groups of knobs 15 respectively to drive the connecting column 16 to rotate, thereby driving the rotating plate 17 to rotate. During the rotation of the rotating plate 17, the first clamping plate 18 and the second clamping plate 22 are driven to slide in opposite directions, so that the first buckle 21 and the second buckle 25 are respectively clamped into the floor for fixation, thus achieving the effect of facilitating installation. When disassembly is required, the knob 15 can be rotated in the reverse direction to drive the connecting column 16 and the rotating plate 17 to rotate in the reverse direction, thereby driving the first clamping plate 18 and the second clamping plate 22 to approach each other and driving the first buckle 21 and the second buckle 25 to approach each other, so that the embedding plate 1 can be taken out from the floor, achieving the effect of facilitating disassembly. After the installation is completed, start the motor 7 to drive the driving wheel 8 to rotate. During the rotation of the driving wheel 8, the driven wheel 9 and the rotating shaft 10 are driven to rotate, thereby driving the threaded pipe 11 to rise and driving the nozzle 12 to rise, realizing the effect of automatic lifting and spraying. At the same time, turn on multiple bulbs 5 to achieve the effect of a light fountain.

[0031] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An embedded lighting fountain nozzle structure, including an embedded plate (1), characterized in that: Inside the embedded board (1), a housing (2) is fixedly connected. Inside the housing (2), a transparent cover (3) is fixedly connected. The lower surface of the transparent cover (3) is fixedly connected with a lamp holder (4). Inside the lamp holder (4), a light bulb (5) is threadedly connected. The lower surface of the housing (2) is fixedly connected with a base (6). Inside the housing (2), a groove (13) is formed. Inside the base (6), an empty cavity (14) is formed. Inside the base (6), a motor (7) is fixedly connected. The output end of the motor (7) is fixedly connected with a driving wheel (8). Inside the base (6), a rotating shaft (10) is rotatably connected. On the outer wall of the rotating shaft (10), a driven wheel (9) is fixedly connected. The driven wheel (9) meshes with the driving wheel (8). Inside the rotating shaft (10), a spraying assembly is arranged, and the spraying assembly is used for the fountain to spray water.

2. The structure of an embedded lighting fountain nozzle according to claim 1, characterized in that: The spraying assembly includes a threaded pipe (11), and the threaded pipe (11) is threadedly connected inside the rotating shaft (10). The upper surface of the threaded pipe (11) is fixedly connected with a spray head (12).

3. The structure of an embedded light fountain nozzle according to claim 1, characterized in that: Inside the embedded board (1), a connecting column (16) is rotatably connected. The upper surface of the connecting column (16) is fixedly connected with a knob (15). The lower surface of the connecting column (16) is fixedly connected with a rotating plate (17).

4. The structure of an embedded lighting fountain nozzle according to claim 3, characterized in that: On the outer wall of the rotating plate (17), a first clamping plate (18) is rotatably connected. The upper surface of the first clamping plate (18) is fixedly connected with a first limiting block (19), and the first limiting block (19) is slidably connected inside the embedded board (1).

5. The structure of an embedded lighting fountain nozzle according to claim 4, characterized in that: The lower surface of the first clamping plate (18) is fixedly connected with a first buckle (21). Inside the embedded board (1), a first limiting groove (20) is formed, and the first limiting block (19) is slidably connected inside the first limiting groove (20).

6. The structure of an embedded lighting fountain nozzle according to claim 3, wherein: On the outer wall of the rotating plate (17), a second clamping plate (22) is rotatably connected. The upper surface of the second clamping plate (22) is fixedly connected with a second limiting block (23), and the second limiting block (23) is slidably connected inside the embedded board (1). Inside the second clamping plate (22), a limiting shaft (26) is slidably connected.

7. An embedded lighting fountain nozzle structure according to claim 6, characterized in that: The lower surface of the second clamping plate (22) is fixedly connected with a second buckle (25). Inside the embedded board (1), a second limiting groove (24) is formed, and the second limiting block (23) is slidably connected inside the second limiting groove (24).

8. The structure of an embedded lighting fountain nozzle according to claim 6, characterized in that: The limiting shaft (26) is slidably connected inside the first clamping plate (18). A spring (27) is sleeved on the outer wall of the limiting shaft (26). One end of the spring (27) is fixedly connected to the outer wall of the second clamping plate (22), and the other end of the spring (27) is fixedly connected to the outer wall of the first clamping plate (18).