Solar panel heating, adsorbing and transporting platform

By setting through holes and negative pressure plates on the conveyor belt, the problem of conveyor belt slippage and deviation was solved, and the stable transportation and heating and drying of the solar panels were achieved, ensuring processing accuracy.

CN224076302UActive Publication Date: 2026-04-03YOURSUN NEW ENERGY DEVELOPMENT (HANGZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In the existing solar panel manufacturing process, slippage and misalignment of the conveyor belt lead to inaccurate positioning, affecting the processing accuracy of subsequent processes.

Method used

A solar panel heating and adsorption transport platform was designed. By setting through holes in the conveyor belt and placing a negative pressure plate on the lower side, the negative pressure plate generates adsorption force to stabilize the solar panels. Combined with a heating plate, the solar panels are dried. The tension of the conveyor belt is maintained by a compensation wheel to ensure stable transport of the solar panels.

Benefits of technology

It achieves stability and positioning accuracy of the solar panels during transportation, avoids conveyor belt deviation, ensures the processing accuracy of subsequent processes, and dries the adhesive on the bottom of the solar panels through heating.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224076302U_ABST
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Abstract

The utility model discloses a solar panel heating, adsorbing and transporting platform, which relates to the technical field of conveyor belts and comprises a conveyor belt mounting frame, a driving wheel is arranged on the conveyor belt mounting frame, and a reversing shaft and a compensation wheel are arranged on the other side of the conveyor belt mounting frame. A conveyor belt is rotatably arranged on the driving wheel, the reversing shaft and the compensation wheel and surrounds the conveyor belt mounting frame, a negative pressure plate is arranged on the conveyor belt mounting frame, a plurality of air pipes which are uniformly arranged in parallel are arranged in the negative pressure plate, vent holes which are uniformly and sequentially arranged are formed in the top of each air pipe, a through groove is formed in the top surface of the negative pressure plate, and the negative pressure plate is arranged in the through groove. And through holes are uniformly distributed in the conveying belt, and a negative pressure plate is arranged on the lower side of the conveying belt, so that the conveying belt has an adsorption function, and the conveying belt can stably convey the battery panels when conveying the battery panels.
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Description

Technical Field

[0001] This utility model relates to the field of conveyor belt technology, specifically to a solar panel heating and adsorption transport platform. Background Technology

[0002] During the processing of existing solar panels, positioning is required to facilitate subsequent processing steps. However, current solar panel processing equipment typically uses conveyor belts. The solar panels may move unexpectedly during conveyor belt transport due to slippage. Furthermore, with prolonged use, the conveyor belt may loosen and shift, further leading to inaccurate positioning of the solar panels. Utility Model Content

[0003] Purpose of the utility model: The technical problem to be solved by this utility model is to provide a solar panel heating and adsorption transportation platform, which solves the problem of existing solar panels moving during transportation.

[0004] Technical solution

[0005] To solve the above problems, the technical solution provided by this utility model is as follows:

[0006] A solar panel heating and adsorption transport platform includes a conveyor belt mounting frame. The conveyor belt mounting frame has a drive wheel, and a reversing shaft and a compensating wheel are located on the other side of the frame. A conveyor belt rotates around the conveyor belt mounting frame, with a negative pressure plate on the frame. The negative pressure plate contains several evenly parallel air pipes, each with a vent hole arranged in a uniform sequence at its top. A through groove is provided on the top surface of the negative pressure plate, corresponding to the vent hole at the top of the air pipe. The conveyor belt has evenly distributed through holes.

[0007] Furthermore, negative pressure plates extend from both ends of the air pipe. One end of the air pipe is a closed end, and the other end is provided with a connecting pipe. The connecting pipe of the air pipe in each negative pressure plate is connected to the same vacuum generator, which is connected to the air source processor.

[0008] Furthermore, the conveyor belt is a Teflon conveyor belt.

[0009] Furthermore, the conveyor belt mounting frame is provided with a mounting plate, the mounting plate is provided with a sliding groove, a limiting block is slidably provided in the sliding groove, the central shaft of the compensation wheel is rotatably installed between the limiting blocks on both sides, and a horizontally arranged push rod is provided on the limiting block.

[0010] Furthermore, a pneumatic tensioning assembly is fixedly installed at the bottom of the conveyor belt mounting frame. The pneumatic tensioning assembly consists of a pneumatic push rod and an air intake controller. The air intake controller is connected to an external air intake pipe and is connected to the pneumatic push rod. The pneumatic push rod is connected to the push rod.

[0011] Furthermore, the conveyor belt mounting bracket is provided with a power drive component on one side of the drive wheel, and the output shaft of the power drive component is connected to the central shaft of the drive wheel.

[0012] Furthermore, the conveyor belt mounting frame is also equipped with a heating plate, which contains a plurality of uniformly arranged heating elements and a thermocouple.

[0013] Furthermore, the negative pressure plate and the heating plate are arranged alternately in sequence.

[0014] Furthermore, the negative pressure plate and the heating plate are integrated into a single plate, with air pipes and heating elements arranged alternately within the plate.

[0015] Furthermore, a plurality of the negative pressure plates are arranged at one end of the conveyor belt, and a plurality of the heating plates are arranged at the other end of the conveyor belt.

[0016] Beneficial effects

[0017] Compared with the prior art, the technical solution provided by this utility model has the following advantages:

[0018] The technical solution provided by this utility model is to set through holes on the conveyor belt and provide a negative pressure plate on the lower side of the conveyor belt to enable the conveyor belt to have an adsorption function, so that the conveyor belt can transport the solar panels stably. In addition, a heating plate is provided inside the conveyor belt to dry the adhesive on the solar panels. The conveyor belt mounting frame is equipped with movable compensation wheels to keep the conveyor belt in a taut state and prevent it from deflecting during long-term operation, thus ensuring the stable transport of solar panels. Attached Figure Description

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

[0020] Figure 2 This is a side view of Embodiment 1 of the present invention;

[0021] Figure 3 This is a schematic diagram of the negative pressure plate in Embodiment 1 of this utility model;

[0022] Figure 4 This is a cross-sectional view of the heating element and the air pipe mounted on the same plate in Embodiment 1 of this utility model. Detailed Implementation

[0023] To make the technical solution of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0024] Example 1

[0025] Combined with appendix Figure 1-4 A solar panel heating and adsorption transport platform is used to transport solar panels. By setting vents on the conveyor belt, the conveyor belt is made to have an adsorption function, which enables the solar panels to be transported stably on the conveyor belt. The conveyor belt also has a heating function, which can bake the solar panels to solidify the bottom of the solar panels.

[0026] The system includes a conveyor belt mounting frame 1. One end of the conveyor belt mounting frame 1 is rotatably equipped with a drive wheel 11. The other end of the conveyor belt mounting frame 1 has a reversing shaft 13 and a compensating wheel 12 installed on the lower side of the reversing shaft 13, respectively. The drive wheel 11 and the reversing shaft 13 are fixedly installed on the conveyor belt mounting frame 1, and the compensating wheel 12 is slidably installed on the conveyor belt mounting frame 1. The drive wheel 11, the reversing shaft 13 and the compensating wheel 12 rotate together to install the conveyor belt 2 surrounding the conveyor belt mounting frame 1.

[0027] On the lower side of the conveyor belt mounting frame 1, near the compensating wheel 12, symmetrical mounting plates 15 are provided on both sides. Each mounting plate 15 has a sliding groove 17, within which a limiting block 16 slides. The central axis of the compensating wheel 12 is rotatably mounted between the limiting blocks 16 on both sides. A horizontally positioned push rod 18 is provided on each limiting block 16. A pneumatic tension assembly 14 is fixedly installed at the bottom of the conveyor belt mounting frame 1. The pneumatic tension assembly 14 consists of a pneumatic push rod and an air intake controller. The air intake controller is connected to an external air intake pipe. The air controller is connected to the air pressure push rod, which is connected to the push rod 18. After receiving the gas from the external air intake pipe, the air controller pushes the air pressure push rod to move. The air pressure push rod simultaneously pushes the push rod 18 to move. At this time, the push rod 18 drives the limit block 16 to slide in the sliding groove 17. At this time, the limit block 16 drives the compensation wheel 12 to move. The movement of the compensation wheel 12 adjusts the tension of the conveyor belt 2. After the compensation wheel 12 tightens the conveyor belt, the conveyor belt 2 is not easy to deflect, ensuring the safe and accurate transportation of the solar panels.

[0028] Reversing shaft 13 is used to reverse the direction of conveyor belt 2, so that conveyor belt 2 is in continuous contact with compensating wheel 12.

[0029] The conveyor belt mounting frame 1 is provided with a power drive component 21 on one side of the drive wheel 11. The power drive component 21 is preferably a motor. The output shaft of the power drive component 21 is connected to the central shaft of the drive wheel 11. The power drive component 21 drives the drive wheel 11 to rotate, and the drive wheel 11 drives the conveyor belt 2 to rotate to transport the solar panels.

[0030] The conveyor belt mounting frame 1 is equipped with a negative pressure plate 3 and a heating plate 4. The negative pressure plate 3 is used to generate suction. Its interior is in a negative pressure state. Through the negative pressure state, it continuously generates suction to adsorb the solar panel onto the conveyor belt, thereby achieving stable transportation of the solar panel. The heating plate 4 can heat up to bake the solar panel and dry the adhesive on the bottom of the solar panel.

[0031] The negative pressure plate 3 is provided with several air pipes 31 arranged in parallel. Each air pipe 31 has a ventilation hole 32 arranged in a uniform sequence at its top. The top surface of the negative pressure plate 3 is provided with a through groove 33, which corresponds to the ventilation hole 32 at the top of the air pipe 31. The suction force generated by the air pipe 31 is transmitted through the ventilation hole 32 and the through groove 33 in sequence. At this time, the negative pressure plate 3 can adsorb the material located on the surface of the negative pressure plate 3.

[0032] The negative pressure plate 3 extends from both ends of the air pipe 31. One end of the air pipe 31 is a closed end 311, and the other end is provided with a connecting pipe 312. The connecting pipe 312 of the air pipe 32 in each negative pressure plate 3 is connected to the same vacuum generator 33. The vacuum generator 33 is connected to the gas source processor 34. When the vacuum generator 33 is turned on, the air pipe 31 generates suction. The gas source processor 34 processes the gas discharged from the vacuum generator 33 to prevent it from polluting the surrounding environment.

[0033] The conveyor belt 2 is provided with several evenly arranged through holes. The through holes are densely arranged and penetrate through the conveyor belt 2. The conveyor belt 2 covers the negative pressure plate 3. The suction force generated by the air pipe of the negative pressure plate 3 is transmitted to the surface of the conveyor belt 2 through the through holes after passing through the air holes and through grooves. At this time, the conveyor belt 2 can adsorb the battery panel.

[0034] Conveyor belt 2 is preferably a Teflon conveyor belt.

[0035] The heating plate 4 is provided with a number of uniformly arranged heating elements 41. The heating elements 41 are preferably heating rods. The heating elements 41 are uniformly and parallelly arranged in the heating plate 4. The heating elements 41 are turned on to supply heat to the heating plate 4, so that the heating plate 4 has the function of drying the adhesive on the bottom of the battery panel.

[0036] The heating plate 4 is also equipped with a thermocouple 42. The thermocouple 42 and the heating element 41 are alternately arranged. The thermocouple 42 is used to detect the temperature of the heating plate in real time, thereby providing feedback to adjust the opening and closing of the heating element 41, and further precisely adjusting the drying temperature of the heating plate 41.

[0037] The temperature of heating plate 4 is 200-300 degrees Celsius, which can effectively dry the solar panels.

[0038] In this embodiment, the negative pressure plate 3 and the heating plate 4 can be arranged alternately, that is, the negative pressure plate 3 and the heating plate 4 are arranged adjacent to each other, so that after the battery panel passes through the negative pressure plate 3 and the heating plate 4, the battery panel can be stably dried on the conveyor belt 2. The heating plate 3 and the negative pressure plate 4 can cooperate with each other to process the battery panel.

[0039] In other embodiments, the negative pressure plate 3 and the heating plate 4 can be integrated into a single plate, wherein the air pipes 31 and the heating element 41 are arranged alternately in the plate, and the plate is provided with through grooves corresponding to the air pipes, so that the plate can adsorb the battery panel while drying, and the battery panel can be dried stably.

[0040] In other embodiments, a plurality of negative pressure plates 3 are arranged at one end of the conveyor belt 2, and a plurality of heating plates 4 are arranged at the other end of the conveyor belt. This ensures that when the battery panel is initially moving on the conveyor belt 2, the negative pressure plates 3 prevent the battery panel 3 from moving relative to the conveyor belt 2 due to the initial acceleration. After the battery panel is synchronized with the conveyor belt 2, the heating plates 4 dry the battery panel.

[0041] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A solar panel heating and adsorption transport platform, characterized in that, The system includes a conveyor belt mounting frame, on which a drive wheel is mounted. A reversing shaft and a compensating wheel are located on the other side of the mounting frame. A conveyor belt rotates around the mounting frame, enclosing the drive wheel, reversing shaft, and compensating wheel. A negative pressure plate is mounted on the mounting frame, and several evenly parallel air pipes are arranged inside the negative pressure plate. Each air pipe has a vent hole arranged evenly in sequence at its top. A through groove is provided on the top surface of the negative pressure plate, corresponding to the vent hole at the top of the air pipe. Evenly distributed through holes are provided on the conveyor belt.

2. The solar panel heating and adsorption transport platform according to claim 1, characterized in that, The negative pressure plate extends from both ends of the air pipe. One end of the air pipe is a closed end, and the other end is provided with a connecting pipe. The connecting pipe of the air pipe in each negative pressure plate is connected to the same vacuum generator, which is connected to the air source processor.

3. The solar panel heating and adsorption transport platform according to claim 1, characterized in that, The conveyor belt is a Teflon conveyor belt.

4. The solar panel heating and adsorption transport platform according to claim 1, characterized in that, The conveyor belt mounting frame is provided with a mounting plate, the mounting plate is provided with a sliding groove, a limiting block is slidably provided in the sliding groove, the central shaft of the compensation wheel is rotatably installed between the limiting blocks on both sides, and a horizontally arranged push rod is provided on the limiting block.

5. A solar panel heating and adsorption transport platform according to claim 4, characterized in that, The bottom of the conveyor belt mounting frame is fixedly equipped with a pneumatic tensioning component, which consists of a pneumatic push rod and an air intake controller. The air intake controller is connected to an external air intake pipe and is connected to the pneumatic push rod, which is in turn connected to the push rod.

6. The solar panel heating and adsorption transport platform according to claim 1, characterized in that, The conveyor belt mounting bracket is provided with a power drive component on one side of the drive wheel, and the output shaft of the power drive component is connected to the central shaft of the drive wheel.

7. A solar panel heating and adsorption transport platform according to claim 1, characterized in that, The conveyor belt mounting frame is also equipped with a heating plate, which contains several uniformly arranged heating elements and thermocouples.

8. A solar panel heating and adsorption transport platform according to claim 7, characterized in that, The negative pressure plate and the heating plate are arranged alternately in sequence.

9. A solar panel heating and adsorption transport platform according to claim 7, characterized in that, The negative pressure plate and the heating plate are integrated into a single plate, with air pipes and heating elements arranged alternately within the plate.

10. A solar panel heating and adsorption transport platform according to claim 7, characterized in that, A plurality of negative pressure plates are arranged at one end of the conveyor belt, and a plurality of heating plates are arranged at the other end of the conveyor belt.