A pole coating device for solar street lights

CN224629154UActive Publication Date: 2026-08-14HUANGCHUAN COUNTY LIMIN TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]为提高太阳能路灯的使用寿命,其灯杆在制备过程中,需要喷涂油漆,现有喷涂装置在人工操作下,一次性只能喷涂单根灯杆,其喷涂效率低下

Benefits of technology

[0019]1.将若干个灯杆限位到第一锥形块与第二锥形块之间,通过传动电机可带动灯杆转动,同时若干个喷涂头在第一推送气缸的作用下左右来回动作,将油漆均匀的喷涂到灯杆上,通过上述操作可一次性实现多根灯杆的喷涂操作,提高了喷涂效率;

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of solar street light technology, and particularly to a pole spraying device for solar street lights. It includes a spraying bracket, with a pole support frame slidably disposed within the spraying bracket. A first transmission adjustment module is slidably disposed on the left side of the pole support frame, and a second transmission adjustment module is slidably disposed on the right side. A spraying module is disposed above the pole support frame. The first transmission adjustment module includes a first support plate, and a first sliding rod assembly is disposed between the first support plate and the spraying bracket. A first sliding support block is slidably disposed on the first sliding rod assembly. This utility model provides a pole spraying device for solar street lights, which has high spraying efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of solar street light technology, and in particular to a pole spraying device for solar street lights. Background Technology

[0002] Solar streetlights are environmentally friendly lighting devices that generate and store electrical energy using solar power. Their core advantages include no need for an external power grid, easy installation, and low maintenance costs. Their main components include solar panels, batteries, controllers, LED light sources, and light poles and brackets.

[0003] To improve the lifespan of solar streetlights, the light poles need to be painted during the manufacturing process. However, existing painting equipment, when operated manually, can only paint one light pole at a time, resulting in low painting efficiency. Utility Model Content

[0004] The purpose of this utility model is to provide a pole spraying device for solar street lights, which has high spraying efficiency.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows:

[0006] A pole spraying device for a solar street light includes a spraying bracket, and a pole support frame is slidably disposed within the spraying bracket.

[0007] A first transmission adjustment module is slidably provided on the left side of the rod receiving frame, a second transmission adjustment module is slidably provided on the right side, and a spraying module is provided above the rod receiving frame.

[0008] The first transmission adjustment module includes a first support plate, a first sliding rod group between the first support plate and the spraying bracket, a first sliding support block slidably mounted on the first sliding rod group, a plurality of first telescopic cylinders vertically upward mounted on the first sliding support block, a first limiting bracket fixed on the piston rod of the first telescopic cylinder, a plurality of first conical blocks rotatably limited on the first limiting bracket, the first conical blocks being rotatably mounted on the first limiting bracket via a first rotating shaft, a first transmission gear fixed at the left end of the first rotating shaft, a transmission motor horizontally mounted on the left side of the first limiting bracket, the rotor of the transmission motor being fixedly connected to the first rotating shaft, and a plurality of second transmission gears being mounted between the first transmission gears, the second transmission gears meshing with the first transmission gears;

[0009] The second transmission adjustment module includes a second support plate, a second sliding rod group is provided between the second support plate and the spraying bracket, a second sliding support block is slidably provided on the second sliding rod group, a plurality of second telescopic cylinders are vertically upward provided on the second sliding support block, a second limiting bracket is fixed on the piston rod of the second telescopic cylinder, and a plurality of second conical blocks are rotatably limited on the second limiting bracket.

[0010] As an improvement, several receiving grooves are provided inside the rod receiving frame.

[0011] As an improvement: a plurality of first limiting rods are provided vertically downward on the first limiting bracket, and a plurality of first connecting through holes are provided on the first sliding support block at positions opposite to the first limiting rods, and the first limiting rods can be slidably locked inside the first connecting through holes;

[0012] A plurality of second limiting rods are provided vertically downward on the second limiting bracket, and a plurality of second connecting holes are provided on the second sliding support block at positions opposite to the second limiting rods, and the second limiting rods can be slidably locked inside the second connecting holes.

[0013] As an improvement: a first adjusting cylinder is horizontally provided on the first supporting plate, and the piston rod of the first adjusting cylinder is fixedly connected to the first sliding support block;

[0014] A second adjusting cylinder is horizontally provided on the second supporting plate, and the piston rod of the second adjusting cylinder is fixedly connected to the second sliding support block.

[0015] As an improvement: the spraying module includes a portal frame, which is fixed on the spraying bracket, and the spraying bracket is located above the first transmission adjustment module and the second transmission adjustment module. A third sliding rod group is provided inside the portal frame, and a spraying support block is slidably engaged on the third sliding rod group. A spraying conveying pipe is fixed vertically downward on the spraying support block. The input end of the spraying conveying pipe is connected to an external high-pressure sprayer through a hose, and a spraying pipe is fixed at the output end of the spraying conveying pipe. Several spraying heads are fixed below the spraying pipe.

[0016] A first push cylinder is horizontally arranged on the right side of the portal frame, and the piston rod of the first push cylinder is fixedly connected to the spraying support block.

[0017] As an improvement: a fourth sliding rod assembly is fixed inside the spraying bracket, the rod receiving frame is slidably mounted on the fourth sliding rod assembly, and a second push cylinder is horizontally provided on the rear side of the spraying bracket, the piston rod of the second push cylinder being fixedly connected to the rod receiving frame.

[0018] In summary, this utility model has the following beneficial effects:

[0019] 1. Several lamp posts are positioned between the first and second conical blocks. The lamp posts can be rotated by a drive motor. At the same time, several spray heads move back and forth under the action of the first push cylinder to spray paint evenly onto the lamp posts. Through the above operation, multiple lamp posts can be sprayed at one time, which improves the spraying efficiency.

[0020] 2. The distance between the first and second conical blocks can be adjusted according to the length of the lamp post, so that the device can adapt to the spraying requirements of lamp posts of different lengths. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in this utility model, the accompanying drawings used in the description of the embodiments or prior art will be briefly introduced below.

[0022] Figure 1 A schematic diagram of the overall structure of a solar street light pole spraying device. Figure 1 ;

[0023] Figure 2 for Figure 1 Schematic diagram of part A in the middle;

[0024] Figure 3 A schematic diagram of the overall structure of a solar street light pole spraying device. Figure 2 ;

[0025] Figure 4 for Figure 3 Schematic diagram of Part B in the middle section;

[0026] The components include: 1. Spraying bracket; 2. Rod support frame; 3. First support plate; 4. Second support plate; 5. First sliding rod assembly; 6. Second sliding rod assembly; 7. First sliding support block; 8. Second sliding support block; 9. First telescopic cylinder; 10. Second telescopic cylinder; 11. First limiting bracket; 12. Second limiting bracket; 13. First conical block; 14. Second conical block; 15. First rotating shaft; 16. First transmission gear; 17. Transmission motor. ; 18. Second transmission gear; 19. Receiving groove; 20. First limiting rod; 21. First connecting through hole; 22. Second limiting rod; 23. Second connecting through hole; 24. First adjusting cylinder; 25. Second adjusting cylinder; 26. Portal support frame; 27. Third sliding rod group; 28. Spraying support block; 29. ​​Spraying conveying pipe; 30. Spraying pipe; 31. Spraying head; 32. First pushing cylinder; 33. Fourth sliding rod group; 34. Second pushing cylinder. Detailed Implementation

[0027] The present invention will now be described in further detail with reference to the accompanying drawings.

[0028] Please refer to Figures 1-4 A pole spraying device for a solar street light includes a spraying bracket 1 and a pole support frame 2 that is slidably disposed within the spraying area.

[0029] A first transmission adjustment module is slidably provided on the left side of the rod support frame 2, a second transmission adjustment module is slidably provided on its right side, and a spraying module is provided above the rod support frame 2.

[0030] The first transmission adjustment module includes a first support plate 3, a first sliding rod group 5 between the first support plate 3 and the spraying bracket 1, a first sliding support block 7 slidingly mounted on the first sliding rod group 5, a plurality of first telescopic cylinders 9 vertically upward mounted on the first sliding support block 7, a first limiting bracket 11 fixed on the piston rod of the first telescopic cylinder 9, a plurality of first conical blocks 13 rotatably limited on the first limiting bracket 11, the first conical blocks 13 rotatably mounted on the first limiting bracket 11 via a first rotating shaft 15, a first transmission gear 16 fixed at the left end of the first rotating shaft 15, a transmission motor 17 horizontally mounted on the left side of the first limiting bracket 11, the rotor of the transmission motor 17 fixedly connected to the first rotating shaft 15, a plurality of second transmission gears 18 between the first transmission gears 16, the second transmission gears 18 meshing with the first transmission gears 16;

[0031] The second transmission adjustment module includes a second support plate 4. A second sliding rod group 6 is provided between the second support plate 4 and the spraying bracket 1. A second sliding support block 8 is slidably provided on the second sliding rod group 6. Several second telescopic cylinders 10 are vertically upwardly provided on the second sliding support block 8. A second limiting bracket 12 is fixed on the piston rod of the second telescopic cylinder 10. Several second conical blocks 14 are rotatably limited on the second limiting bracket 12. In this embodiment, several lamp posts are limited between the first conical block 13 and the second conical block 14. The lamp posts can be rotated by the transmission motor 17. At the same time, several spraying heads 31 move back and forth under the action of the first pushing cylinder 32 to evenly spray paint onto the lamp posts. Through the above operation, the spraying operation of multiple lamp posts can be realized at one time, improving the spraying efficiency. Moreover, the distance between the first conical block 13 and the second conical block 14 can be adjusted according to the length of the lamp post, so that the device can adapt to the spraying needs of lamp posts of different lengths.

[0032] Several receiving slots 19 are provided inside the rod receiving frame 2. In this embodiment, the rod can be placed into the receiving slots 19 to prevent the rod from moving within the rod receiving frame 2 during the transfer process.

[0033] A plurality of first limiting rods 20 are provided vertically downward on the first limiting bracket 11, and a plurality of first docking through holes 21 are provided on the first sliding support block 7 at positions opposite to the first limiting rods 20. The first limiting rods 20 are slidably locked inside the first docking through holes 21. A plurality of second limiting rods 22 are provided vertically downward on the second limiting bracket 12, and a plurality of second docking through holes 23 are provided on the second sliding support block 8 at positions opposite to the second limiting rods 22. The second limiting rods 22 are slidably locked inside the second docking through holes 23.

[0034] In this embodiment, the first limiting rod 20 and the second limiting rod 22 can improve the stability of the first telescopic cylinder 9 and the second telescopic cylinder 10 during transmission.

[0035] A first adjusting cylinder 24 is horizontally provided on the first supporting plate 3, and the piston rod of the first adjusting cylinder 24 is fixedly connected to the first sliding support block 7; a second adjusting cylinder 25 is horizontally provided on the second supporting plate 4, and the piston rod of the second adjusting cylinder 25 is fixedly connected to the second sliding support block 8.

[0036] In this embodiment, the first adjusting cylinder 24 and the second adjusting cylinder 25 can be used to adjust the distance between the first conical block 13 and the second conical block 14.

[0037] The spraying module includes a portal frame 26, which is fixed to a spraying bracket 1. The spraying bracket 1 is located above the first and second transmission adjustment modules. A third sliding rod assembly 27 is provided inside the portal frame 26. A spraying support block 28 is slidably mounted on the third sliding rod assembly 27. A spraying delivery pipe 29 is vertically fixed downwards on the spraying support block 28. The input end of the spraying delivery pipe 29 is connected to an external high-pressure sprayer via a flexible hose. A spraying pipe 30 is fixed to the output end of the spraying delivery pipe 29. Several spraying heads 31 are fixed below the spraying pipe 30. A first pushing cylinder 32 is horizontally provided on the right side of the portal frame 26. The piston rod of the first pushing cylinder 32 is fixedly connected to the spraying support block 28. In this embodiment, the spraying heads 31 can move back and forth within the portal frame 26 under the action of the first pushing cylinder 32 to achieve the spraying of the lamp post.

[0038] A fourth sliding rod assembly 33 is fixed inside the spraying bracket 1. The rod receiving frame 2 is slidably engaged on the fourth sliding rod assembly 33. A second pushing cylinder 34 is horizontally provided on the rear side of the spraying bracket 1. The piston rod of the second pushing cylinder 34 is fixedly connected to the rod receiving frame 2. In this embodiment, the second pushing cylinder 34 can be used to push the rod receiving frame 2 back and forth inside the spraying bracket 1 to move the lamp post to the spraying position. After spraying is completed, it is moved back to its original position.

[0039] Workflow: Place several light poles into the receiving grooves 19 within the pole receiving frame 2, ensuring the light poles are relatively aligned. Activate the second push cylinder 34 to push the pole receiving frame 2 below the spray head 31, aligning the spray head 31 with the light pole.

[0040] Then, the first telescopic cylinder 9 and the second telescopic cylinder 10 are activated to drive the first conical block 13 and the second conical block 14 upward, so that the center of the first conical block 13 and the second conical block 14 are aligned with the two ends of the lamp post. Then, the first adjusting cylinder 24 is activated to move to the right and the second adjusting cylinder 25 is activated to move to the left, so that the first conical block 13 and the second conical block 14 are inserted into the lamp post.

[0041] Reactivate the first telescopic cylinder 9 and the second telescopic cylinder 10 to move them upwards, so that the bottom of the lamp post is disengaged from the receiving groove 19, ensuring that the rotation of the lamp post is not hindered.

[0042] Then, the external high-pressure sprayer is started, and the paint is transported to the spray head 31 through the hose, spray delivery pipe 29, and spray pipe 30. The spray head 31 sprays the paint onto the surface of the lamp post. The first push cylinder 32 can drive the spray head 31 to move back and forth in the portal frame 26 to achieve overall spraying of the lamp post. During the spraying process, the lamp post can be rotated by the drive motor 17 to achieve full spraying of the lamp post surface.

[0043] After the spraying is completed, the first telescopic cylinder 9 and the second telescopic cylinder 10 move downwards to place the lamp post back into the receiving groove 19, and the first conical block 13 and the second conical block 14 are pulled out from both ends of the lamp post. The second push cylinder 34 is then activated to move backwards to move the lamp post to the initial position, and the operation is completed.

[0044] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and not to limit it; although the utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications can still be made to the specific implementation of this utility model or equivalent substitutions can be made to some technical features without departing from the spirit of the technical solution of this utility model, and all such modifications and substitutions should be covered within the scope of the technical solution claimed by this utility model.

Claims

1. A pole spraying device for a solar street light, characterized in that, It includes a spraying bracket, and a rod-shaped support frame is slidably provided within the spraying area; A first transmission adjustment module is slidably provided on the left side of the rod receiving frame, a second transmission adjustment module is slidably provided on the right side, and a spraying module is provided above the rod receiving frame. The first transmission adjustment module includes a first support plate, a first sliding rod group between the first support plate and the spraying bracket, a first sliding support block slidably mounted on the first sliding rod group, a plurality of first telescopic cylinders vertically upward mounted on the first sliding support block, a first limiting bracket fixed on the piston rod of the first telescopic cylinder, a plurality of first conical blocks rotatably limited on the first limiting bracket, the first conical blocks being rotatably mounted on the first limiting bracket via a first rotating shaft, a first transmission gear fixed at the left end of the first rotating shaft, a transmission motor horizontally mounted on the left side of the first limiting bracket, the rotor of the transmission motor being fixedly connected to the first rotating shaft, and a plurality of second transmission gears being mounted between the first transmission gears, the second transmission gears meshing with the first transmission gears; The second transmission adjustment module includes a second support plate, a second sliding rod group is provided between the second support plate and the spraying bracket, a second sliding support block is slidably provided on the second sliding rod group, a plurality of second telescopic cylinders are vertically upward provided on the second sliding support block, a second limiting bracket is fixed on the piston rod of the second telescopic cylinder, and a plurality of second conical blocks are rotatably limited on the second limiting bracket.

2. The solar street light pole spraying apparatus according to claim 1, wherein, Several receiving grooves are provided inside the rod receiving frame.

3. The solar street light pole spraying apparatus according to claim 1, wherein, A plurality of first limiting rods are provided vertically downward on the first limiting bracket, and a plurality of first connecting through holes are provided on the first sliding support block at positions opposite to the first limiting rods, and the first limiting rods can be slidably locked inside the first connecting through holes. A plurality of second limiting rods are provided vertically downward on the second limiting bracket, and a plurality of second connecting holes are provided on the second sliding support block at positions opposite to the second limiting rods, and the second limiting rods can be slidably locked inside the second connecting holes.

4. The solar street light pole spraying apparatus according to claim 1, wherein, A first adjusting cylinder is horizontally provided on the first supporting plate, and the piston rod of the first adjusting cylinder is fixedly connected to the first sliding support block; A second adjusting cylinder is horizontally provided on the second supporting plate, and the piston rod of the second adjusting cylinder is fixedly connected to the second sliding support block.

5. The solar street light pole spraying apparatus of claim 1, wherein, The spraying module includes a portal frame, which is fixed on the spraying bracket and located above the first transmission adjustment module and the second transmission adjustment module. A third sliding rod group is provided inside the portal frame, and a spraying support block is slidably mounted on the third sliding rod group. A spraying conveying pipe is fixed vertically downward on the spraying support block. The input end of the spraying conveying pipe is connected to an external high-pressure sprayer through a hose, and a spraying pipe is fixed at the output end of the spraying conveying pipe. Several spraying heads are fixed below the spraying pipe. A first push cylinder is horizontally arranged on the right side of the portal frame, and the piston rod of the first push cylinder is fixedly connected to the spraying support block.

6. The solar street light pole spraying apparatus of claim 1, wherein, A fourth sliding rod group is fixed in the spraying support, the rod body bearing frame is slidingly clamped on the fourth sliding rod group, a second push air cylinder is horizontally arranged on the rear side of the spraying support, and the piston rod of the second push air cylinder is fixedly connected with the rod body bearing frame.