A flexible solar panel for easy transportation

By installing rubber magnetic strips on the sides of flexible solar panels, the problem of scattering during transportation is solved, achieving the convenience of quick installation without the need for additional tools, thus improving the ease of transportation and installation.

CN224684170UActive Publication Date: 2026-08-25JUNFENG SOLAR ENERGY JIANGSU
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Patent Information

Application Number
CN202522468712.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-21
Publication Date
2026-08-25
Estimated Expiration
2035-11-21

AI Technical Summary

Technical Problem

Existing flexible solar panels are prone to scattering during transportation, requiring additional tools such as spacers, straps, and wrapping films for securing them, which makes transportation inconvenient.

Method used

Rubber magnetic strips are installed on the sides of flexible solar panels. The automatic adsorption properties of the rubber magnetic strips form a constraint to fix the flexible solar panels in a rolled or stacked state. The rubber magnetic strips can also be quickly adsorbed to ferromagnetic mounting bodies to achieve rapid installation.

Benefits of technology

It achieves secure fixing without the need for additional tools during transportation, is reliably fixed, is not easily scattered, and can be quickly installed after transportation, making it easy to use multiple times and improving the convenience of transportation and installation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224684170U_ABST
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Abstract

The utility model discloses a flexible solar cell panel convenient to transport applied to solar cell panel field, including flexible solar cell panel, the side of flexible solar cell panel is fixed with rubber magnetic stripe, rubber magnetic stripe sets up at least two, at least two rubber magnetic stripes are located on the opposite side wall of flexible solar cell panel respectively, flexible solar cell panel and rubber magnetic stripe are fixed through the connecting body, through setting up rubber magnetic stripe in the side of flexible solar cell panel, when transporting, make the flexible solar cell panel in the transportation process keep fixed state, need not use the utensil fixed, convenient and fast, and the rubber magnetic stripe of restraint flexible solar cell panel is fixed reliably, and it is difficult to scatter, and the smooth operation of convenient transportation is carried out, through the setting of rubber magnetic stripe or fixed angle block, on the basis of convenient transportation reaches the multiple convenient effect of further convenient installation, more practicality.
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Description

Technical Field

[0001] This utility model relates to the field of solar panels, and in particular to a flexible solar panel that is easy to transport. Background Technology

[0002] Flexible solar cells are a new type of photovoltaic device based on flexible materials. Their core features are bendability and thinness, making them suitable for applications such as mobile communication devices, vehicle-mounted energy, and building-integrated photovoltaics.

[0003] Existing flexible solar panels are usually stacked in shipping boxes or rolled (folded) and placed in shipping boxes during transportation. When stacked, flexible spacers need to be placed between two adjacent flexible solar panels to prevent them from rubbing against each other. When rolled, additional straps and wrapping films are needed to keep the flexible solar panels in shape and prevent them from being scattered and affecting subsequent use.

[0004] Whether stacked or rolled up, additional tools (such as spacers, straps, and wrapping films) are required. If the tools are not tightly attached to the flexible solar panels during packaging, they can easily become scattered, causing inconvenience to transportation operations. Utility Model Content

[0005] The core of this invention lies in solving the problem of flexible solar panels easily scattering during transportation by setting rubber magnetic strips on the sides of the flexible solar panel. Simultaneously, the rubber magnetic strips or fixing corner blocks also enable rapid installation, thus achieving multiple conveniences beyond simply facilitating transportation, making it more practical.

[0006] To solve the above problems, the present invention adopts the following technical solution.

[0007] A flexible solar panel that is easy to transport includes a flexible solar panel, with rubber magnetic strips fixed to the side of the flexible solar panel. At least two rubber magnetic strips are provided, and the at least two rubber magnetic strips are respectively located on opposite side walls of the flexible solar panel.

[0008] The flexible solar panel and the rubber magnetic strip are fixed together by a connector.

[0009] By setting rubber magnetic strips on the side of flexible solar panels, during transportation, the flexible solar panels can be rolled up and the rubber magnetic strips will automatically attract and bind them, thus keeping the rolled-up flexible solar panels in a fixed state without the need for additional tools. This is convenient and quick, and the rubber magnetic strips binding the flexible solar panels are reliable and not easily scattered, which facilitates the smooth progress of transportation operations.

[0010] The user can also stack the flexible solar panels in sequence. The rubber magnetic strips above and below are adsorbed and fixed to each other, so that the stacked flexible solar panels form a fixed whole, which is also not easy to scatter and is convenient for transportation.

[0011] In addition, when the flexible solar panel is unfolded after transportation, it can also be quickly adsorbed to the ferromagnetic mounting body that can be adsorbed by the rubber magnetic strip, achieving the purpose of quick installation. Based on being convenient for transportation, it achieves the multiple convenient effects of being further convenient for installation, and is more practical.

[0012] Furthermore, the connecting body is a welding layer, and the flexible solar panel and the rubber magnetic strip are fixed through the welding layer.

[0013] Furthermore, the welding layer is a heat insulation layer made of a flexible elastic heat insulation composite material, and the flexible solar panel and the rubber magnetic strip are welded and fixed through the heat insulation layer.

[0014] Furthermore, convex strips are integrally formed on the side walls on both opposite sides of the flexible solar panel. The convex strips protrude outward from the middle of the flexible solar panel. Card slots adapted to be clamped with the convex strips are provided on the rubber magnetic strip, and the heat insulation layer forms a "ji" shape adapted to the convex strips and the card slots.

[0015] Optionally, the connecting body includes fixing corner blocks. There are four fixing corner blocks, which are respectively located at the four corners of the flexible solar panel. The fixing corner blocks are integrally formed with the flexible solar panel, and the rubber magnetic strip is detachably fixed to the flexible solar panel through the fixing corner blocks.

[0016] Furthermore, slots are provided on the side walls of the plurality of fixing corner blocks adjacent to the side walls of the flexible solar panel, and clamping heads adapted to be inserted into the slots are integrally formed at both ends of the rubber magnetic strip.

[0017] Furthermore, connecting holes are provided on the fixing corner blocks. The connecting holes penetrate through the fixing corner blocks along the thickness direction of the flexible solar panel, and the connecting holes are used for passing bolts.

[0018] Compared with the prior art, the advantages of the present utility model are as follows:

[0019] (1) In this solution, rubber magnetic strips are provided on the sides of the flexible solar panel. During transportation, the flexible solar panel in the transportation process is kept in a fixed state, without the need to use additional tools for fixation, which is convenient and fast. Moreover, the rubber magnetic strips that bind the flexible solar panel are fixed reliably and are not easy to scatter, facilitating the smooth progress of transportation operations.

[0020] (2) By setting rubber magnetic strips or fixed corner blocks, this solution can achieve the purpose of quick installation when the flexible solar panel is unfolded after transportation. This not only facilitates transportation but also makes installation more convenient, making it more practical. Attached Figure Description

[0021] Figure 1 This is a three-dimensional structural diagram of the first embodiment of the present utility model;

[0022] Figure 2 This is a partial side view of the structure of the first embodiment of the present invention;

[0023] Figure 3 This is a three-dimensional structural diagram of the second embodiment of the present utility model;

[0024] Figure 4 This is a schematic diagram of the disassembled structure of the rubber magnetic strip according to the second embodiment of this utility model.

[0025] Explanation of the labels in the diagram:

[0026] 1. Flexible solar panel; 11. Raised strip; 2. Rubber magnetic strip; 201. Slot; 21. Clip head; 3. Heat insulation layer; 4. Fixing corner block; 401. Connecting hole; 402. Slot. Detailed Implementation

[0027] The technical solution will now be clearly and completely described with reference to the accompanying drawings in the embodiments of this utility model.

[0028] First implementation method:

[0029] Please see Figures 1-2 A flexible solar panel that is easy to transport includes a flexible solar panel 1, with rubber magnetic strips 2 fixed to the side of the flexible solar panel 1. At least two rubber magnetic strips 2 are provided, and the at least two rubber magnetic strips 2 are respectively located on opposite side walls of the flexible solar panel 1.

[0030] The flexible solar panel 1 and the rubber magnetic strip 2 are fixed together by a connector.

[0031] Based on the above structure, by setting rubber magnetic strips 2 on the side of the flexible solar panel 1, during transportation, the flexible solar panel (here referring to the whole composed of flexible solar panel 1 and rubber magnetic strips 2) can be rolled up (or folded) to allow the rubber magnetic strips 2 to automatically attract and form a binding, thereby keeping the rolled flexible solar panel 1 in a fixed state without the need for additional tools for fixing. This is convenient and quick, and the rubber magnetic strips 2 binding the flexible solar panel 1 are reliably fixed and not easily scattered, which facilitates the smooth progress of transportation operations.

[0032] The user can also stack the flexible solar panels (the whole composed of flexible solar panel 1 and rubber magnetic strip 2) in sequence. The rubber magnetic strip 2 above and the rubber magnetic strip 2 below adsorb and fix each other, so that the stacked flexible solar panels 1 form a fixed whole, which is also not easy to scatter and is convenient for transportation;

[0033] In addition, when the flexible solar panel 1 is unfolded after transportation, it can also be quickly adsorbed to a ferromagnetic installation body (such as a mounting bracket, a car roof, etc.) that can be adsorbed by the rubber magnetic strip 2 through the rubber magnetic strip 2 to achieve the purpose of quick installation (which can also be used for pre-fixing, and then bolts or other common fixing means are used for final fixing). In this way, on the basis of being convenient for transportation, it achieves the multiple convenient effects of being further convenient for installation, and is more practical.

[0034] Furthermore, the connecting body is a welding layer, and the flexible solar panel 1 and the rubber magnetic strip 2 are fixed through the welding layer; the welding layer is made of a flexible elastic heat insulation composite material (such as a flexible heat insulation composite material based on elastic strengthening and its preparation method disclosed in the patent document with the publication number of "CN117683322B") to form a heat insulation layer 3. The flexible solar panel 1 and the rubber magnetic strip 2 are welded and fixed through the heat insulation layer 3, and the flexible solar panel 1 and the rubber magnetic strip 2 are welded and fixed into one body through the heat insulation layer 3, which is more firm and not easy to crack. At the same time, the heat insulation layer 3 can reduce the efficiency of the solar panel 1 transferring heat to the rubber magnetic strip 2, thereby reducing the possibility of the rubber magnetic strip 2 overheating and causing magnetic weakening or demagnetization, and prolonging the service life of the flexible solar panel convenient for transportation.

[0035] Even further, convex strips 11 are integrally formed on the side walls on both opposite sides of the flexible solar panel 1, and the convex strips 11 protrude outward away from the middle of the flexible solar panel 1. A clamping groove 201 adapted to be clamped with the convex strips 11 is formed on the rubber magnetic strip 2, and the heat insulation layer 3 forms a "ji" shape adapted to the convex strips 11 and the clamping groove 201;

[0036] The setting of the cooperation between the convex strips 11 and the clamping groove 201 can increase the connection area between the flexible solar panel 1 and the rubber magnetic strip 2 through the heat insulation layer 3, thereby enhancing the fastening of the combination of the two, enhancing the structural stability of the flexible solar panel convenient for transportation, and reducing the probability of the flexible solar panel 1 and the rubber magnetic strip 2 separating during transportation and use, which is more beneficial for transportation and use.

[0037] The second implementation manner:

[0038] Please refer to Figures 3-4A flexible solar panel that is easy to transport includes a flexible solar panel 1, with rubber magnetic strips 2 fixed to the side of the flexible solar panel 1. At least two rubber magnetic strips 2 are provided, and the at least two rubber magnetic strips 2 are respectively located on opposite side walls of the flexible solar panel 1.

[0039] The flexible solar panel 1 and the rubber magnetic strip 2 are fixed together by a connector;

[0040] The connector includes four fixed corner blocks 4, which are located at the four corners of the flexible solar panel 1. The fixed corner blocks 4 are integrally formed with the flexible solar panel 1. The rubber magnetic strip 2 is detachably fixed to the flexible solar panel 1 through the fixed corner blocks 4.

[0041] Specifically, slots 402 are provided on the sidewalls of multiple fixed corner blocks 4 adjacent to the sidewalls of the flexible solar panel 1, and the rubber magnetic strip 2 has a clip 21 integrally formed at both ends that engages with the slot 402.

[0042] By setting rubber magnetic strips 2 on the side of the flexible solar panel 1, the purpose of easy transportation can be achieved (same as the first embodiment).

[0043] By setting multiple fixing corner blocks 4, the rubber magnetic strip 2 can be detached. Before transportation, the rubber magnetic strip 2 is snapped between two fixing corner blocks 4 using the clip 21. This allows the rubber magnetic strip 2 to fix the flexible solar panel 1 during transportation. After transportation, the rubber magnetic strip 2 can be removed, allowing it to be reused. Compared to the first embodiment, this method not only facilitates fixing the flexible solar panel 1 but also reduces the cost of the flexible solar panel that is easy to transport.

[0044] In addition, in order to facilitate installation after transportation, the fixing corner block 4 is provided with a connecting hole 401. The connecting hole 401 passes through the fixing corner block 4 along the thickness direction of the flexible solar panel 1. The connecting hole 401 is used to pass through the bolt. The user can fix the fixing corner block 4 to the mounting body with the bolt, so that the flexible solar panel that is easy to transport can be installed when the rubber magnetic strip 2 is removed, thus achieving a diversified effect that facilitates subsequent installation.

[0045] The above description is merely a preferred embodiment of this utility model; it encompasses all the protection scope of this utility model. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be covered within the protection scope of this utility model.

Claims

1. A flexible solar panel that is easy to transport, comprising a flexible solar panel (1), characterized in that: A rubber magnetic strip (2) is fixed to the side of the flexible solar panel (1). At least two rubber magnetic strips (2) are provided, and at least two rubber magnetic strips (2) are respectively located on the opposite side walls of the flexible solar panel (1); The flexible solar panel (1) and the rubber magnetic strip (2) are fixed by a connecting body.

2. The flexible solar panel for easy transportation according to claim 1, characterized in that: The connecting body is a welding layer, and the flexible solar panel (1) and the rubber magnetic strip (2) are fixed by the welding layer.

3. The flexible solar panel for easy transportation according to claim 2, characterized in that: The welding layer is a heat insulation layer (3) made of a flexible elastic heat insulation composite material. The flexible solar panel (1) and the rubber magnetic strip (2) are welded and fixed by the heat insulation layer (3).

4. A flexible solar panel that is easy to transport according to claim 3, characterized in that: Ribs (11) are integrally formed on the side walls of the opposite sides of the flexible solar panel (1). The ribs (11) protrude outward away from the middle of the flexible solar panel (1). A card slot (201) adapted to be clamped with the rib (11) is formed on the rubber magnetic strip (2). The heat insulation layer (3) forms a "Ji" shape adapted to the rib (11) and the card slot (201).

5. A flexible solar panel that is easy to transport according to claim 1, characterized in that: The connecting body includes fixing angle blocks (4). Four fixing angle blocks (4) are provided and are respectively located at the four corners of the flexible solar panel (1). The fixing angle blocks (4) are integrally formed with the flexible solar panel (1). The rubber magnetic strip (2) is detachably fixed to the flexible solar panel (1) through the fixing angle blocks (4).

6. A flexible solar panel that is easy to transport according to claim 5, characterized in that: Slots (402) are formed on the side walls adjacent to the side walls of the flexible solar panel (1) of the plurality of fixing angle blocks (4). Card heads (21) adapted to be inserted into the slots (402) are integrally formed at both ends of the rubber magnetic strip (2).

7. A flexible solar panel that is easy to transport according to claim 6, characterized in that: A connecting hole (401) is formed on the fixing angle block (4). The connecting hole (401) penetrates the fixing angle block (4) along the thickness direction of the flexible solar panel (1). The connecting hole (401) is used for passing through a bolt.

Citation Information

Patent Citations

  • A flexible thermal insulation composite material based on elastic reinforcement and preparation method thereof

    CN117683322B