A photovoltaic embossed tempered glass paperless packaging structure

By using a combination of brackets, honeycomb paper pads, double corrugated cardboard, and plastic steel straps in photovoltaic patterned tempered glass packaging, the problems of low stacking efficiency and insufficient protection caused by anti-mildew paper in traditional photovoltaic patterned glass packaging are solved, achieving stable handling and efficient stacking, and reducing costs.

CN224393488UActive Publication Date: 2026-06-23XIANYANG RAINBOW PHOTOVOLTAIC GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIANYANG RAINBOW PHOTOVOLTAIC GLASS CO LTD
Filing Date
2025-06-24
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

The use of anti-mold paper in traditional photovoltaic patterned glass packaging leads to problems such as low stacking efficiency, equipment downtime caused by electrostatic adsorption, release of volatile pollutants in humid and hot environments, and insufficient stacking compressive strength.

Method used

The photovoltaic embossed tempered glass stack is fixed by a combination of brackets, honeycomb paper pads, double corrugated cardboard, corner protectors and plastic steel straps. It is protected by EVA pads and stretch film, eliminating the need for anti-mildew paper and improving stacking efficiency and protective effect.

Benefits of technology

It enables stable handling and efficient stacking of photovoltaic patterned tempered glass, reduces packaging costs, avoids static electricity and contaminant problems caused by anti-mildew paper, and improves the compressive strength and protective effect of stacking.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of photovoltaic embossed toughened glass paperless packaging structure, including bracket, the top of the bracket is attached with honeycomb paper pad, the top surface of honeycomb paper pad is attached with photovoltaic embossed toughened glass stack, the top of photovoltaic embossed toughened glass stack is attached with double corrugated board, and the four corners of photovoltaic embossed toughened glass stack are attached with corner guard plate;The double corrugated board, corner guard plate, bracket are fixed with photovoltaic embossed toughened glass stack by multiple plastic steel bands;By being provided with bracket in the bottom of honeycomb paper pad, and then by multiple plastic steel bands, double corrugated board, corner guard plate, bracket and photovoltaic embossed toughened glass stack are fixed together, so that robot can stably carry entire photovoltaic embossed toughened glass stack when stacking, with the advantages of improving stacking efficiency and saving packaging cost.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic glass packaging technology, specifically to a paperless packaging structure for photovoltaic embossed tempered glass. Background Technology

[0002] In the traditional packaging process of photovoltaic patterned glass, although anti-mold paper can reduce wear and tear during transportation as an isolation medium between glass sheets, its application has exposed multiple technical defects: On the one hand, the layer-by-layer insertion operation of anti-mold paper significantly reduces packaging stacking efficiency, making it difficult to adapt to the high-speed automated loading requirements of module production lines. Moreover, the electrostatic adsorption between the paper and glass interface can easily cause stacking misalignment, leading to frequent equipment shutdowns for calibration. On the other hand, anti-mold paper is prone to releasing volatile pollutants in humid and hot environments, causing degradation of the coating layer interface performance. At the same time, its moisture absorption and softening characteristics significantly weaken the stacking compressive strength, forcing companies to invest additionally in constant humidity storage and environmental protection systems, resulting in high overall costs. Summary of the Invention

[0003] In order to overcome the defects of the existing technology, the purpose of this utility model is to provide a paperless packaging structure for photovoltaic embossed tempered glass. By setting a bracket at the bottom of the honeycomb paper pad, and then fixing the double corrugated cardboard, corner guards, bracket and photovoltaic embossed tempered glass stack together by multiple plastic steel straps, the entire photovoltaic embossed tempered glass stack can be stably transported by the robot through the bracket when stacking, which has the advantages of improving stacking efficiency and saving packaging costs.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0005] A paperless packaging structure for photovoltaic patterned tempered glass includes a bracket 1. A honeycomb paper pad 2 is attached to the top of the bracket 1. A photovoltaic patterned tempered glass laminate 3 is attached to the top surface of the honeycomb paper pad 2. A double corrugated cardboard 4 is attached to the top of the photovoltaic patterned tempered glass laminate 3. Corner guards 5 are attached to the four corners of the photovoltaic patterned tempered glass laminate 3. The double corrugated cardboard 4, corner guards 5, and bracket 1 are all fixed to the photovoltaic patterned tempered glass laminate 3 by multiple plastic steel straps 6.

[0006] Multiple vertical plates 7 are symmetrically attached to the two long sides of the photovoltaic patterned tempered glass laminate 3, and a horizontal plate 8 is attached to the top surface of the double corrugated cardboard 4. The two ends of the horizontal plate 8 are respectively connected to one end of the vertical plate 7. The vertical plate 7 is fixed to the photovoltaic patterned tempered glass laminate 3 by multiple plastic steel strips 6, and the horizontal plate 8 is fixed to the double corrugated cardboard 4 by multiple plastic steel strips 6.

[0007] EVA pads 9 are respectively provided between the corner guard plate 5 and the photovoltaic patterned tempered glass stack 3, and between the vertical plate 7 and the photovoltaic patterned tempered glass stack 3.

[0008] A plastic packaging film 10 is attached between the bracket 1 and the honeycomb paper pad 2.

[0009] The surface of the photovoltaic embossed tempered glass paperless packaging structure is wrapped with stretch film 11.

[0010] The outer surface of the stretch film 11 is adhered with tape 12.

[0011] A desiccant 13 is disposed on the bottom side of the photovoltaic patterned tempered glass laminate 3.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model provides double corrugated cardboard 4 and honeycomb paper pad 2 at the top and bottom of the photovoltaic patterned tempered glass stack 3, and corner protectors 5 at the four corners of the photovoltaic patterned tempered glass stack 3, which provides a certain protective effect for the entire photovoltaic patterned tempered glass stack 3; at the same time, a bracket 1 is provided at the bottom of the honeycomb paper pad 2, and the double corrugated cardboard 4, corner protectors 5, bracket 1 and photovoltaic patterned tempered glass stack 3 are fixed together by multiple plastic steel straps 6, so that the robot can stably transport the entire photovoltaic patterned tempered glass stack 3 through the bracket 1 when stacking, which has the advantages of improving stacking efficiency and saving packaging costs.

[0014] 2. In this utility model, multiple vertical plates 7 are symmetrically attached to the two long sides of the photovoltaic patterned tempered glass laminate 3, and horizontal plates 8 are attached to the top surface of the double corrugated cardboard 1. The vertical plates 7 and horizontal plates 8 are fixed by plastic steel straps 6, so that when the robot is stacking, it can effectively disperse the concentrated stress in the middle of the photovoltaic patterned tempered glass laminate 3 and improve the protective effect of the photovoltaic patterned tempered glass laminate 3.

[0015] In summary, to reduce the slow stacking efficiency and high cost caused by the anti-mold paper between photovoltaic patterned tempered glass layers during packaging and stacking, this utility model specifically provides a paperless packaging structure for photovoltaic patterned tempered glass. This is achieved by setting double-walled cardboard 4 and honeycomb paper pads 2 at the top and bottom of the photovoltaic patterned tempered glass stack 3, corner protectors 5 at the four corners of the photovoltaic patterned tempered glass stack 3, multiple vertical plates 7 symmetrically arranged on the two long sides of the photovoltaic patterned tempered glass stack 3, a horizontal plate 8 on the top surface of the double-walled cardboard 1, and a bracket 1 at the bottom of the honeycomb paper pad 2. Combined with the fixing effect of the plastic steel straps 6, this makes the photovoltaic patterned tempered glass stack 3 more stable and efficient during stacking, significantly reducing packaging costs. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of a paperless packaging structure for photovoltaic embossed tempered glass.

[0017] Figure 2 This is a partial diagram of a photovoltaic patterned tempered glass paperless packaging structure.

[0018] Figure 3 This is a structural diagram of the corner protector 5 and the EVA pad 9.

[0019] Figure 4 This is a schematic diagram of the structure of the vertical plate 7 and the EVA pad 9.

[0020] In the diagram: 1. Bracket; 2. Honeycomb paperboard; 3. Photovoltaic embossed tempered glass laminate; 4. Double corrugated cardboard; 5. Corner protector; 6. Plastic steel strapping; 7. Vertical board; 8. Horizontal board; 9. EVA pad; 10. Plastic packaging film; 11. Stretch film; 12. Adhesive tape; 13. Desiccant; 14. Label. Detailed Implementation

[0021] The present invention will now be described in further detail with reference to the accompanying drawings.

[0022] A paperless packaging structure for photovoltaic patterned tempered glass includes a bracket 1. A honeycomb paper pad 2 is attached to the top of the bracket 1. A photovoltaic patterned tempered glass laminate 3 is attached to the top surface of the honeycomb paper pad 2. A double corrugated cardboard 4 is attached to the top of the photovoltaic patterned tempered glass laminate 3. Corner guards 5 are attached to the four corners of the photovoltaic patterned tempered glass laminate 3. The double corrugated cardboard 4, corner guards 5, and bracket 1 are all fixed to the photovoltaic patterned tempered glass laminate 3 by multiple plastic steel straps 6.

[0023] In this embodiment, double corrugated cardboard 4 and honeycomb paper pad 2 are respectively provided on the top and bottom of the photovoltaic patterned tempered glass stack 3, and corner guards 5 are provided at the four corners of the photovoltaic patterned tempered glass stack 3, which provides a certain protective effect for the entire photovoltaic patterned tempered glass stack 3; at the same time, a bracket 1 is provided at the bottom of the honeycomb paper pad 2, and the double corrugated cardboard 4, corner guards 5, bracket 1 and photovoltaic patterned tempered glass stack 3 are fixed together by multiple plastic steel straps 6, so that the robot can stably transport the entire photovoltaic patterned tempered glass stack 3 through the bracket 1 when stacking, which has the advantages of improving stacking efficiency and saving packaging costs.

[0024] Multiple vertical plates 7 are symmetrically attached to the two long sides of the photovoltaic patterned tempered glass laminate 3, and a horizontal plate 8 is attached to the top surface of the double corrugated cardboard 4. The two ends of the horizontal plate 8 are respectively connected to one end of the vertical plate 7. The vertical plate 7 is fixed to the photovoltaic patterned tempered glass laminate 3 by multiple plastic steel strips 6, and the horizontal plate 8 is fixed to the double corrugated cardboard 4 by multiple plastic steel strips 6.

[0025] In this embodiment, the vertical plate 7 and the horizontal plate 8 are fixed by the plastic steel strap 5, so that when the robot is stacking, it can effectively disperse the concentrated stress in the middle of the photovoltaic patterned tempered glass stack 3, thereby improving the protective effect of the photovoltaic patterned tempered glass stack 3.

[0026] To avoid direct contact between the photovoltaic patterned tempered glass laminate 3 and the corner guard 5 and the vertical plate 7, EVA pads 9 are respectively arranged between the corner guard 5 and the photovoltaic patterned tempered glass laminate 3, and between the vertical plate 7 and the photovoltaic patterned tempered glass laminate 3, to improve the protective effect on the photovoltaic patterned tempered glass laminate 3.

[0027] When the photovoltaic patterned tempered glass stack 3 is stacked, a plastic packaging film 10 is attached between the bracket 1 and the honeycomb paper pad 2 to reduce the wear on the honeycomb paper pad 2.

[0028] The surface of the photovoltaic embossed tempered glass paperless packaging structure is wrapped with stretch film 11.

[0029] The outer surface of the stretch film 11 is adhered with tape 12.

[0030] To prevent the bottom of the photovoltaic patterned tempered glass stack 3 from getting damp, a desiccant 13 is provided on the bottom side of the photovoltaic patterned tempered glass stack 3.

[0031] A label 14 is affixed to the short side of the photovoltaic patterned tempered glass laminate 3 to record relevant product information of the photovoltaic patterned tempered glass laminate, such as quantity and model.

[0032] The working principle of this utility model is as follows:

[0033] When stacking photovoltaic embossed tempered glass layers 3, the layer-by-layer insertion of anti-mold paper significantly slows down the efficiency of packaging stacking. This invention proposes a paperless packaging structure for photovoltaic embossed tempered glass. By eliminating the anti-mold paper, double corrugated cardboard 4 and honeycomb paper pads 2 are respectively installed at the top and bottom of the photovoltaic embossed tempered glass layers 3; corner protectors 5 are installed at the four corners of the photovoltaic embossed tempered glass layers 3; multiple vertical plates 7 are symmetrically arranged on the two long sides of the photovoltaic embossed tempered glass layers; a horizontal plate 8 is installed on the top surface of the double corrugated cardboard 1; and a bracket 1 is installed at the bottom of the honeycomb paper pads 2. Furthermore, the fixing effect of the plastic steel strap 6 makes the photovoltaic patterned tempered glass stack 3 more stable and efficient during stacking, significantly reducing packaging costs. At the same time, EVA pads 9 are respectively arranged between the corner guards 5 and the photovoltaic patterned tempered glass stack 3, and between the vertical plate 7 and the photovoltaic patterned tempered glass stack 3. The surface of the photovoltaic patterned tempered glass paperless packaging structure is wrapped with stretch film 11, and tape 12 is pasted on the outer surface of the stretch film 11. Desiccant 13 is arranged on the bottom side of the photovoltaic patterned tempered glass stack 3, further improving the protective effect of the photovoltaic patterned tempered glass stack 3.

[0034] The above embodiments are merely detailed descriptions of the present utility model, but the present utility model is not limited to the above embodiments. Any modifications, substitutions, and changes made to the present utility model within the spirit and scope of the claims are within the scope of protection of the present utility model.

Claims

1. A photovoltaic embossed tempered glass paperless packaging structure, characterized in that: The bracket (1) is attached to the top of the bracket (1), a honeycomb paper pad (2) is attached to the top surface of the honeycomb paper pad (2), a photovoltaic patterned tempered glass laminate (3) is attached to the top surface of the photovoltaic patterned tempered glass laminate (3), a double corrugated cardboard (4) is attached to the top surface of the photovoltaic patterned tempered glass laminate (3), and corner protectors (5) are attached to the four corners of the photovoltaic patterned tempered glass laminate (3). The double corrugated cardboard (4), corner protectors (5), and bracket (1) are all fixed to the photovoltaic patterned tempered glass laminate (3) by multiple plastic steel strips (6).

2. The photovoltaic embossed tempered glass paperless packaging structure according to claim 1, characterized in that: Multiple vertical plates (7) are symmetrically attached to the two long sides of the photovoltaic patterned tempered glass laminate (3), and a horizontal plate (8) is attached to the top surface of the double corrugated cardboard (4). The two ends of the horizontal plate (8) are respectively connected to one end of the vertical plate (7). The vertical plate (7) is fixed to the photovoltaic patterned tempered glass laminate (3) by multiple plastic steel strips (6), and the horizontal plate (8) is fixed to the double corrugated cardboard (4) by multiple plastic steel strips (6).

3. A photovoltaic embossed tempered glass paperless packaging structure according to claim 1 or 2, characterized in that: EVA pads (9) are respectively provided between the corner guard (5) and the photovoltaic patterned tempered glass stack (3), and between the vertical plate (7) and the photovoltaic patterned tempered glass stack (3).

4. The photovoltaic embossed tempered glass paperless packaging structure according to claim 1, characterized in that: A plastic packaging film (10) is attached between the bracket (1) and the honeycomb paper pad (2).

5. The photovoltaic embossed tempered glass paperless packaging structure according to claim 1, characterized in that: The surface of the photovoltaic embossed tempered glass paperless packaging structure is wrapped with stretch film (11).

6. The photovoltaic embossed tempered glass paperless packaging structure according to claim 5, characterized in that: The outer surface of the wrapping film (11) is adhered with tape (12).

7. The photovoltaic embossed tempered glass paperless packaging structure according to claim 1, characterized in that: A desiccant (13) is disposed on the bottom side of the photovoltaic patterned tempered glass laminate (3).