Recycling structure for solar panel cleaning device

By designing a recycling structure for a solar panel cleaning device with adjustable spacing and fixed components, the problem that traditional equipment cannot adapt to the storage of objects of different specifications is solved, and stability and practicality are improved.

CN223384513UActive Publication Date: 2025-09-26NINGBO TIANYI NEW ENERGY CO LTD
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Patent Information

Application Number
CN202423031785.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-09-26
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The storage structure area of ​​traditional solar energy-related object recycling and transportation equipment cannot be adjusted, resulting in poor practicality and inability to adapt to the storage needs of objects of different specifications.

Method used

A recycling structure for a solar panel cleaning device was designed, including components such as a transport chassis, a buffer table, a telescopic plate, and a guide slider. Through the coordinated use of sliders and slides, adjustable spacing and fixation can be achieved to adapt to the storage of objects of different specifications. Guide wheels and limit plates are used to protect objects and reduce the risk of falling.

Benefits of technology

It improves the stability and applicability of the equipment, can adapt to the storage of objects of different specifications, reduces the risk of falling during transportation, and enhances the practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a recycling structure for a solar panel cleaning device, which comprises a first transportation underframe, a first buffer table, a first telescopic plate and a second telescopic plate, a second transportation underframe is arranged on one side of the first transportation underframe, and a third interaction groove is connected in one side, close to the second transportation underframe, of the first transportation underframe. A second telescopic plate is connected to the side, close to the first transportation bottom frame, of the second transportation bottom frame, and positioning holes are connected into the front side and the rear side of the second telescopic plate at equal intervals. The buffering platform I, the buffering platform II and the damping springs are arranged and matched for use, so that objects needing to be recycled and transported are buffered, supported and placed, and the stability of storage and follow-up moving and transporting is improved; the distance between the first buffering table and the second buffering table and the distance between the first transportation bottom frame and the second transportation bottom frame can be adjusted and controlled through the effects that the second guiding sliding block slides along the second guiding sliding groove in a guiding mode and the third guiding sliding block slides along the third guiding sliding groove in a guiding mode, and the structure can be suitable for storing and using objects of different specifications.
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Description

Technical Field

[0001] The utility model relates to the technical field of recycling devices, in particular to a recycling structure for a solar panel cleaning device. Background Art

[0002] During the recycling and disassembly process of photovoltaic panels, in order to improve the disassembly efficiency, the disassembly and recycling tasks of photovoltaic panels can be completed through recycling processing equipment, such as mobile transportation equipment for recycled objects.

[0003] A solar photovoltaic panel recycling and processing device disclosed in the Chinese utility model patent application disclosure CN220807287U is arranged on a fixed disk so that the rotating disk can tilt the frame under the action of external force. The frame slides off the clamp unit under the action of gravity, which changes the current situation where the frame needs to be manually removed from the clamp unit, provides support for the disassembly of the remaining frames, and improves the automation of the device. However, in traditional solar-related object recycling and transportation work, the structural area of ​​the recycling and transportation equipment used to store objects has weak adjustability and cannot adjust the size of the support placement area, resulting in poor practicality and urgent need for development. Utility Model Content

[0004] The purpose of the present invention is to provide a recycling structure for a solar panel cleaning device to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a recycling structure for a solar panel cleaning device, comprising a transport chassis 1, a buffer platform 1, a telescopic plate 1 and a telescopic plate 2, wherein the transport chassis 1 is provided with a transport chassis 2 on one side, the transport chassis 1 is connected to an interactive groove 3 on a side close to the transport chassis 2, the transport chassis 2 is connected to the telescopic plate 2 on a side close to the transport chassis 1, and positioning holes are connected at equal intervals on the front and rear sides of the telescopic plate 2, a built-in block is fixed on the front side of the transport chassis 1, a limit block 1 is slidably installed in the built-in block, a pull block is connected to the side of the limit block 1 away from the positioning rod, the pull block extends to the outside of the front and rear sides of the transport chassis 1, and a reset spring 1 is set at the connection between the limit block 1 and the pull block;

[0006] The surfaces of the first limiting block close to the front and rear sides of the second telescopic plate are connected with positioning rods matching the positioning holes;

[0007] The telescopic plate 2 extends into the interactive groove 3, and the top and bottom of the interactive groove 3 are both connected to the guide slide groove 3. The top and bottom of the telescopic plate 2 extending to the inner end side of the interactive groove 3 are both connected to the guide slider 3 matching the guide slide groove 3. The guide slider 3 slides along the guide slide groove 3 to assist the telescopic plate 2 in stabilizing the telescopic movement;

[0008] The upper surfaces of the transport chassis 1 and the transport chassis 2 are respectively connected with groove 2 and groove 1, and the upper surfaces of the groove 2 and the groove 1 are connected to the buffer platform 1 and the buffer platform 2 through damping springs, the side of the buffer platform 1 close to the buffer platform 2 is connected with the interactive groove 2, and the side of the buffer platform 2 close to the buffer platform 1 is connected with the telescopic plate 1, the top and bottom of the interactive groove 2 are connected with the guide slide groove 2, and the top and bottom of the telescopic plate 1 extending to the inner end side of the interactive groove 2 are connected with the guide slider 2 matching the guide slide groove 2, and the guide slider 2 slides along the guide slide groove 2 to assist the telescopic plate 1 in stable telescopic movement;

[0009] The sides of the buffer platform 1 and the buffer platform 2 that are away from each other are both connected with a limiting slider, and the inner sides of the groove 2 and the groove 1 are both connected with a limiting sliding groove that matches the limiting slider.

[0010] The upper surfaces of the transport chassis 1 and the transport chassis 2 are both connected with triangular slopes, and guide wheels are installed at equal intervals on the upper surfaces of the triangular slopes;

[0011] A push handle is fixed at the connection between one side of the transport chassis 1 and the triangular slope, and the bottoms of the transport chassis 1 and the transport chassis 2 are both connected with movable casters.

[0012] Preferably, the interiors of the transport chassis 1 and the transport chassis 2 are both connected to an interactive groove 1, the bottom of the triangular slope is connected to a telescopic rod, the bottom of the telescopic rod is connected to a limiting cavity, two limiting blocks are symmetrically provided in the limiting cavity, the two limiting blocks 2 are connected by a reset spring 2, the two limiting blocks 2 are connected to a positioning block on opposite sides, and the front and rear sides of the interactive groove 1 are evenly spaced and connected with positioning slots matching the positioning blocks;

[0013] The telescopic rod extends into an interactive groove 1, and both sides of the interactive groove 1 are connected to a guide slide groove 1. The bottoms of both sides of the telescopic rod are connected to a guide slider 1 matching the guide slide groove 1. The guide slider 1 slides along the guide slide groove 1 to assist the telescopic rod in stabilizing the lifting and lowering action.

[0014] The front sides of the triangular slopes are all fixed with limiting plates.

[0015] Compared with the prior art, the beneficial effects of the present invention are:

[0016] (1) The recycling structure for the solar panel cleaning device is used to provide a buffer support for the objects to be recycled and transported by setting and cooperating with the buffer platform 1, the buffer platform 2 and the damping shock-absorbing spring, thereby improving the stability of storage and subsequent mobile transportation. The guide slider 2 slides along the guide slot 2 and the guide slider 3 slides along the guide slot 3 to achieve adjustable spacing between the buffer platform 1 and the buffer platform 2 and between the transport chassis 1 and the transport chassis 2, so that the structure can be used to store objects of different specifications.

[0017] (2) The recycling structure for the solar panel cleaning device can manually adjust the connection state of the positioning rod and the positioning hole by setting and coordinating the pull block, the built-in block, the positioning hole, the telescopic plate 2, the positioning rod, the limit block 1 and the reset spring 1, and can be used to fix the state of the transport chassis 1 and the transport chassis 2 and the buffer platform 1 and the buffer platform 2 with the spacing adjusted, thereby effectively improving the stability of the equipment during use;

[0018] (3) The recycling structure of the solar panel cleaning device can conveniently guide the objects to the buffer platform 1 and the buffer platform 2 for storage by setting the guide wheel. The limiting setting of the limiting plate can protect the stored objects and reduce the risk of falling during transportation. The telescopic rod can be extended and retracted in the interactive groove by the guide slider along the guide groove to adjust the use height of the guide wheel. The expansion of the limiting cavity can make the two positioning blocks contact the positioning slot and automatically position and plug in. It is used to fix the height state of the guide wheel after adjustment, improve the use stability, and is suitable for objects with different stacking height specifications. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the front view structure of the utility model;

[0020] Figure 2 This is a schematic diagram of the top view of the connection structure of the buffer platform 1 and the buffer platform 2 of the utility model;

[0021] Figure 3 This is a side view of the structure of the connection between the first and second transport chassis of the utility model;

[0022] Figure 4 For this utility model Figure 3 A in the middle is an enlarged structural diagram;

[0023] Figure 5 This is a side view structural diagram of the transport chassis connected to the triangular slope of the utility model.

[0024] Figure: 1. Transport chassis 1; 2. Interactive groove 1; 3. Telescopic rod; 4. Guide chute 1; 5. Guide slider 1; 6. Buffer platform 1; 7. Guide chute 2; 8. Interactive groove 2; 9. Guide slider 2; 10. Telescopic plate 1; 11. Damping spring; 12. Groove 1; 13. Buffer platform 2; 14. Push handle; 15. Guide wheel; 16. Triangular slope; 17. Moving caster; 18. Limiting chute; 19. Groove 2 ; 20. Interactive slot three; 21. Guide slide slot three; 22. Guide slider three; 23. Positioning hole; 24. Telescopic plate two; 25. Transport chassis two; 26. Limit slider; 27. Positioning block; 28. Limit plate; 29. ​​Pull block; 30. Built-in block; 31. Positioning rod; 32. Limit block one; 33. Return spring one; 34. Positioning slot; 35. Return spring two; 36. Limit cavity; 37. Limit block two. DETAILED DESCRIPTION

[0025] The following is a clear and complete description of the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0026] See also Figure 1-5 The utility model provides an embodiment of a recycling structure for a solar panel cleaning device, comprising a transport chassis 1, a buffer platform 6, a telescopic plate 10 and a telescopic plate 24. A transport chassis 25 is provided on one side of the transport chassis 1, an interactive groove 3 20 is connected to the side of the transport chassis 1 close to the transport chassis 2 25, a telescopic plate 24 is connected to the side of the transport chassis 2 25 close to the transport chassis 1, the telescopic plate 24 extends into the interactive groove 3 20, the top and bottom of the interactive groove 3 20 are both connected to the guide slide 3 21, the telescopic plate 24 extends The top and bottom of the inner end of the interactive groove 3 20 are connected to the guide slider 3 22 that matches the guide slide 3 21. The upper surfaces of the transport chassis 1 and the transport chassis 2 25 are connected to the groove 2 19 and the groove 12 respectively. The upper surfaces of the groove 2 19 and the groove 12 are connected to the buffer platform 1 6 and the buffer platform 2 13 via the damping shock-absorbing spring 11. The arrangement and coordinated use of the buffer platform 1 6, the buffer platform 2 13 and the damping shock-absorbing spring 11 are used to provide buffering support for the objects that need to be recycled and transported, thereby improving the stability of storage and subsequent mobile transportation.

[0027] The side of the buffer table 1 6 close to the buffer table 2 13 is connected to the interactive groove 2 8, and the side of the buffer table 2 13 close to the buffer table 1 6 is connected to the telescopic plate 10. The top and bottom of the interactive groove 2 8 are both connected to the guide chute 2 7. The top and bottom of the telescopic plate 10 extending to the inner end side of the interactive groove 2 8 are both connected to the guide slider 2 9 that matches the guide chute 2 7. The guide slider 29 slides along the guide chute 2 7 and the guide slider 3 22 slides along the guide chute 3 21 to achieve the adjustable distance between the buffer table 1 6 and the buffer table 2 13, and between the transport chassis 1 and the transport chassis 2 25, so that the structure can be used to store objects of different specifications;

[0028] The side of the buffer platform 1 6 and the buffer platform 2 13 away from each other is connected to the limit slider 26 , and the inner sides of the groove 2 19 and the groove 1 12 are connected to the limit sliding groove 18 matching the limit slider 26 .

[0029] The front and rear sides of the telescopic plate 24 are connected with positioning holes 23 at equal intervals, and the front and rear sides of the transport chassis 1 are fixed with built-in blocks 30, and a limit block 1 is slidably installed in the built-in block 30. The surface of the limit block 1 32 close to the front and rear sides of the telescopic plate 24 is connected with a positioning rod 31 matching the positioning holes 23, and the side of the limit block 1 32 away from the positioning rod 31 is connected with a pull block 29. The pull block 29 extends to the front and rear sides of the transport chassis 1. A return spring 1 is set at the connection between the limit block 1 32 and the pull block 29. The setting and coordinated use of the pull block 29, the built-in block 30, the positioning holes 23, the telescopic plate 24, the positioning rod 31, the limit block 1 32 and the return spring 1 33 can be manually adjusted to the plug-in state of the positioning rod 31 and the positioning hole 23, which is used to fix the transport chassis 1 and the transport chassis 2 25 and the buffer platform 1 6 and the buffer platform 2 13 with adjusted spacing, effectively improving the stability of the equipment when in use.

[0030] The upper surfaces of the transport chassis 1 and the transport chassis 2 25 are both connected with a triangular slope 16, and a push handle 14 is fixed at the connection between one side of the transport chassis 1 and the triangular slope 16. The bottoms of the transport chassis 1 and the transport chassis 2 25 are both connected with movable casters 17, and guide wheels 15 are installed at equal intervals on the upper surface of the triangular slope 16. The setting of the guide wheels 15 facilitates the centralized guidance of objects to the buffer table 1 6 and the buffer table 2 13 for storage. Combined with the limiting setting of the limiting plate 28, the stored objects can be protected to reduce the risk of falling during transportation.

[0031] The interiors of the transport chassis 1 and the transport chassis 2 25 are both connected to an interactive groove 2, the bottom of the triangular slope 16 is connected to a telescopic rod 3, the telescopic rod 3 extends into the interactive groove 2, both sides of the interactive groove 2 are connected to a guide slide 4, and the bottoms of both sides of the telescopic rod 3 are connected to a guide slider 5 matching the guide slide 4. The guide slider 5 slides along the guide slide 4 to achieve the telescopic movement of the telescopic rod 3 in the interactive groove 2, and the use height of the guide wheel 15 can be adjusted.

[0032] The bottom of the telescopic rod 3 is connected to a limiting cavity 36. The expansion of the limiting cavity 36 allows the two positioning blocks 27 to contact the positioning slots 34 and automatically position and plug in. It is used to fix the height of the guide wheel 15 after adjustment, improve the stability of use, and is suitable for objects of different stacking height specifications.

[0033] A second limiting block 37 is symmetrically provided in the limiting cavity 36. The two second limiting blocks 37 are connected by a second reset spring 35. The opposite sides of the two second limiting blocks 37 are connected with a positioning block 27. The front and rear sides of the interactive groove 2 are evenly spaced and connected with positioning slots 34 that match the positioning blocks 27.

[0034] A limiting plate 28 is fixed to the front side of the triangular slope 16 .

[0035] When the embodiment of the present application is in use: the setting and coordinated use of the buffer table 1 6, the buffer table 2 13 and the damping shock-absorbing spring 11 are used to buffer and support the objects that need to be recycled and transported, thereby improving the stability of storage and subsequent mobile transportation. The guide slider 2 9 slides along the guide slot 2 7 and the guide slider 3 22 slides along the guide slot 3 21 to achieve the adjustable distance between the buffer table 1 6 and the buffer table 2 13 and between the transport chassis 1 and the transport chassis 2 25, so that the structure can be suitable for storing objects of different specifications. The setting and coordinated use of the pull block 29, the built-in block 30, the positioning hole 23, the telescopic plate 2 24, the positioning rod 31, the limit block 1 32 and the reset spring 1 33 can manually adjust the positioning The plug-in state of the insertion rod 31 and the positioning hole 23 is used to fix the state of the transport chassis 1 and the transport chassis 2 25 and the buffer platform 1 6 and the buffer platform 2 13 with adjusted spacing. The setting of the guide wheel 15 is convenient for guiding objects to be stored above the buffer platform 1 6 and the buffer platform 2 13. Combined with the limiting setting of the limiting plate 28, the stored objects can be protected to reduce the risk of falling during transportation. The telescopic rod 3 can be extended and retracted in the interactive groove 2 by the guiding sliding action of the guide slider 15 along the guide groove 14 to adjust the use height of the guide wheel 15. The expansibility of the limiting cavity 36 allows the two positioning blocks 27 to contact the positioning groove 34 for automatic positioning and plugging, which is used to fix the height state of the guide wheel 15 after adjustment.

Claims

1. A recycling structure for a solar panel cleaning device, characterized in that: The invention comprises a transport chassis 1 (1), a buffer platform 1 (6), a telescopic plate 1 (10) and a telescopic plate 2 (24), wherein one side of the transport chassis 1 (1) is provided with a transport chassis 2 (25), and the side of the transport chassis 1 (1) close to the transport chassis 2 (25) is connected with an interactive groove 3 (20), and the side of the transport chassis 2 (25) close to the transport chassis 1 (1) is connected with a telescopic plate 2 (24), and the telescopic plate 2 (24) extends into the interactive groove 3 (20), and the top and bottom of the interactive groove 3 (20) are both connected with a guide slide 3 (21), and the top and bottom of the telescopic plate 2 (24) extending to the inner end side of the interactive groove 3 (20) are both connected with a guide slider 3 (22) matching the guide slide 3 (21), and the upper surfaces of the transport chassis 1 (1) and the transport chassis 2 (25) are respectively connected with a groove 2 (19) and a groove 1 (12). , the upper surfaces of the groove 2 (19) and the groove 1 (12) are connected to the buffer platform 1 (6) and the buffer platform 2 (13) through the damping shock absorbing spring (11), the side of the buffer platform 1 (6) close to the buffer platform 2 (13) is connected to the interactive groove 2 (8), the side of the buffer platform 2 (13) close to the buffer platform 1 (6) is connected to the telescopic plate 1 (10), the top and bottom of the interactive groove 2 (8) are connected to the guide slide groove 2 (7), the top and bottom of the telescopic plate 1 (10) extending to the inner end side of the interactive groove 2 (8) are connected to the guide slider 2 (9) matching the guide slide groove 2 (7), the side away from the buffer platform 1 (6) and the buffer platform 2 (13) is connected to the limiting slider (26), and the inner sides of the groove 2 (19) and the groove 1 (12) are connected to the limiting slide groove (18) matching the limiting slider (26).

2. The recycling structure for a solar panel cleaning device according to claim 1, characterized in that: Positioning holes (23) are connected at equal intervals in the front and rear sides of the second telescopic plate (24), and a built-in block (30) is fixed in the front side of the first transport chassis (1). A limiting block (32) is slidably installed in the built-in block (30), and a positioning rod (31) matching the positioning hole (23) is connected to the surface of the limiting block (32) close to the front and rear sides of the second telescopic plate (24).

3. The recycling structure for a solar panel cleaning device according to claim 2, characterized in that: The side of the limit block (32) away from the positioning rod (31) is connected to a pull block (29), and the pull block (29) extends to the front and rear sides of the transport chassis (1). A return spring (33) is installed at the connection between the limit block (32) and the pull block (29).

4. The recycling structure for a solar panel cleaning device according to claim 1, characterized in that: The upper surfaces of the transport chassis 1 (1) and the transport chassis 2 (25) are both connected with a triangular slope (16), a push handle (14) is fixed at the connection between one side of the transport chassis 1 (1) and the triangular slope (16), and the bottoms of the transport chassis 1 (1) and the transport chassis 2 (25) are both connected with movable casters (17).

5. The recycling structure for a solar panel cleaning device according to claim 4, characterized in that: Guide wheels (15) are installed at equal intervals on the upper surface of the triangular slope (16).

6. The recycling structure for a solar panel cleaning device according to claim 4, characterized in that: The interiors of the transport chassis 1 (1) and the transport chassis 2 (25) are both connected to an interactive groove 1 (2), the bottom of the triangular slope (16) is connected to a telescopic rod (3), the telescopic rod (3) extends into the interactive groove 1 (2), both sides of the interactive groove 1 (2) are connected to a guide slide groove 1 (4), and the bottoms of both sides of the telescopic rod (3) are connected to a guide slider 1 (5) matching the guide slide groove 1 (4).

7. The recycling structure for a solar panel cleaning device according to claim 6, characterized in that: The bottom of the telescopic rod (3) is connected to a limiting cavity (36), and two limiting blocks (37) are symmetrically arranged in the limiting cavity (36). The two limiting blocks (37) are connected by a return spring (35). The two limiting blocks (37) are connected to each other on one side. The two positioning blocks (37) are connected to a positioning block (27). The front and rear sides of the interactive groove (2) are evenly spaced and matched with the positioning block (27).

8. The recycling structure for a solar panel cleaning device according to claim 5, characterized in that: A limiting plate (28) is fixed on the front side of the triangular slope (16).

Citation Information

Patent Citations

  • Recycling device for solar photovoltaic panel

    CN220807287U