Container rapid movement photovoltaic installation module structure
By incorporating a hinged folding photovoltaic roof structure and a quick-installation bracket, the problem of rapid installation and folding storage of photovoltaic modules is solved, resulting in a convenient photovoltaic module structure that facilitates the application of new energy power generation equipment.
Patent Information
- Application Number
- CN202520088129.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Photovoltaic modules are difficult to install quickly and fold for storage in practical applications, which affects the practicality and promotion of the device.
The structure adopts a hinged folding photovoltaic roof panel, combined with guide rail sliding, quick installation bracket and stable triangular connector. The folding unit and photovoltaic panel are connected by hinges to achieve a foldable and easy-to-store structural design, and quick installation and disassembly are achieved through photovoltaic quick connection connectors and fixing bolts.
It enables rapid installation and folding storage of photovoltaic modules, improving the convenience and stability of the device, making it suitable for new energy power generation equipment and easy to promote.
Smart Images

Figure CN223786006U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic module technology, specifically a containerized rapid-movement photovoltaic installation module structure. Background Technology
[0002] Photovoltaic modules have broad application prospects. They are devices that convert solar energy into electrical energy and are mostly used in applications that utilize solar power generation. They have significant advantages in terms of energy conservation, environmental protection, economy, adaptability, and technological advancement. However, there are still some shortcomings in the actual use of photovoltaic modules.
[0003] Photovoltaic modules often require the assembly and fixing of individual photovoltaic panels with screws. This makes it difficult to meet the needs of the device for rapid installation and convenient storage of photovoltaic equipment through the folding and unfolding operation of an integrated foldable photovoltaic panel structure. This affects the practicality of the device and makes it difficult to promote. In order to address the above shortcomings, we propose a new type of containerized rapid-moving photovoltaic installation module structure. Utility Model Content
[0004] The purpose of this invention is to provide a containerized, rapidly movable photovoltaic installation module structure to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a container-mounted rapid-moving photovoltaic installation module structure, comprising a hinged folding photovoltaic roof panel and a container. Folding units are evenly arranged on the hinged folding photovoltaic roof panel, and connecting hinges are provided between adjacent folding units. Photovoltaic panels are laid on the folding units. Photovoltaic quick-connect connectors are evenly arranged on the hinged folding photovoltaic roof panel. The container is welded to one end of the hinged folding photovoltaic roof panel. A storage cavity is provided inside the container. Quick-installation brackets are evenly installed at equal intervals on the bottom of both sides of the hinged folding photovoltaic roof panel. Positioning slots that engage with the folding units are provided at the top of each quick-installation bracket. A bracket stabilizing frame is installed between the quick-installation brackets. Positioning sleeves that engage with the quick-installation brackets are welded to both sides of the bracket stabilizing frame. A stabilizing triangular connector that contacts the folding units is installed at the top of each quick-installation bracket. A guide rail is provided on the quick-installation bracket, and a slider matching the guide rail is provided on the hinged folding photovoltaic roof panel.
[0006] Preferably, the folding units are arranged at equal intervals on the hinged folding photovoltaic roof panel.
[0007] Preferably, the photovoltaic panel and the folding unit form a snap-fit structure.
[0008] Preferably, the folding unit is provided with wiring holes that match the photovoltaic quick connector, making it easy to use the wiring holes to pass through the photovoltaic quick connector for installation and fixation.
[0009] Preferably, a first fixing bolt is evenly arranged between the bottom of the positioning sleeve and the quick-installation bracket, so that the bracket can be stably fixed and the quick-installation bracket can be easily assembled and disassembled using the first fixing bolt.
[0010] Preferably, a second fixing bolt is evenly arranged between the positioning slot and the folding unit, so that the bracket and the folding unit can be quickly fixed or disassembled by means of the second fixing bolt.
[0011] Preferably, a third fixing bolt is evenly distributed between the stabilizing triangular connector and the quick-installation bracket, so that the stabilizing triangular connector and the quick-installation bracket can be assembled and disassembled through the third fixing bolt.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] (1) The structure of this photovoltaic module is optimized by setting guide rails, etc. By setting guide rails on the quick installation bracket, and setting sliders that match the guide rails on the hinged folding photovoltaic top plate, and adding a container at the end of the hinged folding photovoltaic top plate, the folding photovoltaic can be quickly folded and stored in the container. The structure consists of a hinged folding photovoltaic structure, a guide rail sliding structure, a quick installation structure and a stable triangular structure, which is convenient for folding and assembly. In addition, photovoltaic quick connection connectors are evenly arranged on the hinged folding photovoltaic top plate, which allows the device to be flexibly combined with inverters and energy storage to form a new energy power generation appliance. It realizes the transformation of new quality productivity from traditional appliances to new energy appliances, and becomes a new energy mobile power generation device that is easy to promote.
[0014] (2) The photovoltaic module structure optimizes its performance by setting positioning slots, etc. On the one hand, the folding units are evenly arranged at equal intervals on the hinged folding photovoltaic top plate, and connecting hinges are set between adjacent folding units. Photovoltaic panels are installed inside the folding units. This allows the folding units with photovoltaic panels to be folded and stored, thus enabling the device to achieve the advantages of being foldable, easy to store and transport. The folding between the photovoltaic surface structures, compared with the common method of assembling each photovoltaic surface structure, allows for direct unfolding during use without additional fixed connections, which enables the device to achieve the advantage of quick installation. On the other hand, users can use the positioning slots on the top of the quick installation bracket and the snap-fit structure between the folding units to position and assemble the quick installation bracket on the hinged folding photovoltaic top plate. Furthermore, by installing a stable triangular connector at the top of the quick installation bracket that contacts the folding unit, the stable triangular connector provides support for the folding unit and improves the stability of the quick installation bracket and folding unit during assembly.
[0015] (3) The photovoltaic module structure is equipped with first fixing bolts, etc., so that when the device is used, on the one hand, drainage ditches are evenly set on the hinged folding photovoltaic top plate to facilitate the drainage of rainwater falling on the hinged folding photovoltaic top plate. On the other hand, the first fixing bolts are evenly set between the positioning sleeve and the bottom of the quick installation bracket. The first fixing bolts facilitate the assembly and disassembly of the bracket and the quick installation bracket. Furthermore, the second fixing bolts are evenly set between the positioning slot and the folding unit to realize the fixing or disassembly of the quick installation bracket and the folding unit. This makes the support structure of the lower part of the device realize the advantage of being split and detachable. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0017] Figure 2 This is a front view structural diagram of the present utility model.
[0018] Figure 3 This is a top view of the structure of this utility model.
[0019] Figure 4 This utility model Figure 1 Enlarged structural diagram at point A in the middle.
[0020] Figure 5 This is a front view structural diagram of the disassembled quick-installation bracket of this utility model.
[0021] Figure 6 This is a partial cross-sectional view of the hinged folding photovoltaic roof panel of this utility model, viewed from below.
[0022] Figure 7 This utility model Figure 4 Enlarged structural diagram at point B.
[0023] In the diagram: 1. Hinged folding photovoltaic roof panel; 2. Folding unit; 3. Quick-install bracket; 4. Storage cavity; 5. Container; 7. Photovoltaic panel; 8. Guide rail; 9. Connecting hinge; 10. Bracket stabilizing bracket; 11. First fixing bolt; 12. Positioning sleeve; 13. Stabilizing triangular connector; 14. Positioning slot; 15. Second fixing bolt; 16. Third fixing bolt; 17. Photovoltaic quick-connect connector; 18. Wiring hole; 19. Slider. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0025] Please see Figure 1-7 This utility model provides an embodiment of a container-mounted rapid-moving photovoltaic installation module structure, comprising a hinged folding photovoltaic roof panel 1 and a container 5. Folding units 2 are evenly arranged on the hinged folding photovoltaic roof panel 1, and connecting hinges 9 are provided between adjacent folding units 2. Photovoltaic panels 7 are installed on the folding units 2, and photovoltaic quick-connect connectors 17 are evenly arranged on the hinged folding photovoltaic roof panel 1. By evenly arranging the folding units 2 at equal intervals on the hinged folding photovoltaic roof panel 1, and providing connecting hinges 9 between adjacent folding units 2, and installing photovoltaic panels 7 inside the folding units 2, the folding units 2 with photovoltaic panels 7 can be folded and stored. This allows the device to achieve the advantages of being foldable, easy to store and transport. Furthermore, the folding between the photovoltaic surface structures, compared to the common method of assembling each photovoltaic surface structure individually, allows for direct unfolding during use without the need for additional fixing connections, thus enabling the device to achieve the advantage of rapid installation.
[0026] The container 5 is installed at one end of the hinged folding photovoltaic roof panel 1. The container 5 has a storage cavity 4 inside. Quick-installation brackets 3 are evenly spaced and installed on the bottom of both sides of the hinged folding photovoltaic roof panel 1. The top of each quick-installation bracket 3 has a positioning slot 14 that engages with the folding unit 2. A bracket stabilizing frame 10 is installed between the quick-installation brackets 3. Users can use the engagement structure between the positioning slot 14 on the top of the quick-installation bracket 3 and the folding unit 2 to position and assemble the quick-installation bracket 3 on the hinged folding photovoltaic roof panel 1.
[0027] Both sides of the bracket stabilizing frame 10 are welded with positioning sleeves 12 that engage with the quick-installation bracket 3. The top of the quick-installation bracket 3 is equipped with a stabilizing triangular connector 13 that contacts the folding unit 2. By installing the stabilizing triangular connector 13 at the top of the quick-installation bracket 3 that contacts the folding unit 2, the stabilizing triangular connector 13 provides support for the folding unit 2, thereby improving the stability of the quick-installation bracket 3 and the folding unit 2 during assembly.
[0028] The folding units 2 are arranged at equal intervals on the hinged folding photovoltaic roof panel 1; the photovoltaic panel 7 and the folding units 2 form a snap-fit structure; the folding units 2 are provided with wiring holes 18 that match the photovoltaic quick connectors 17, so that the wiring holes 18 can be used to pass through the photovoltaic quick connectors 17 for wiring and fixing; the positioning sleeve 12 and the bottom of the quick installation bracket 3 are evenly provided with first fixing bolts 11, so that the bracket can be easily assembled and disassembled by using the first fixing bolts 11 to stabilize the bracket 10 and the quick installation bracket 3.
[0029] A second fixing bolt 15 is evenly arranged between the positioning slot 14 and the folding unit 2, so that the quick-install bracket 3 and the folding unit 2 can be fixed or disassembled through the second fixing bolt 15; a third fixing bolt 16 is evenly arranged between the stabilizing triangular connector 13 and the quick-install bracket 3, so that the stabilizing triangular connector 13 and the quick-install bracket 3 can be assembled and disassembled through the third fixing bolt 16; a guide rail 8 is provided on the quick-install bracket 3, and a slider 19 matching the guide rail 8 is provided on the hinged folding photovoltaic roof panel 1.
[0030] When using this photovoltaic module, a guide rail 8 is first installed on the quick-installation bracket 3, and a slider 19 matching the guide rail 8 is installed on the hinged folding photovoltaic top plate 1. A container 5 is added to the tail end of the hinged folding photovoltaic top plate 1, which allows the folding photovoltaic to be quickly folded and stored in the container 5. This structure consists of a hinged folding photovoltaic structure, a guide rail sliding structure, a quick-installation structure, and a stable triangular structure, which facilitates folding and assembly. Furthermore, photovoltaic quick-connect connectors 17 are evenly arranged on the hinged folding photovoltaic top plate 1, which allows the device to be flexibly combined with inverters and energy storage to form a new energy power generation appliance. It realizes the transformation of new quality productivity from traditional electrical appliances to new energy electrical appliances, and becomes a new energy mobile power generation device that is easy to promote.
[0031] Users connect the photovoltaic panel 7 to the power supply through the photovoltaic quick-connect connector 17 and install and fix it by passing the wiring hole 18 through the photovoltaic quick-connect connector 17. In actual use, the hinged foldable photovoltaic top plate 1 is evenly arranged with folding units 2 at equal intervals, and the connecting hinges 9 are set between adjacent folding units 2. The photovoltaic panel 7 is installed inside the folding unit 2. This allows the folding unit 2 with photovoltaic panel 7 to be folded and stored. Thus, the device as a whole achieves the advantages of being foldable, easy to store and transport. Moreover, by folding the photovoltaic surface structure, compared with the common method of assembling each photovoltaic surface structure, it can be directly unfolded when in use without the need for additional fixing connections. This makes the device have the advantage of rapid installation.
[0032] Users can use the snap-fit structure between the positioning slot 14 at the top of the quick-installation bracket 3 and the folding unit 2 to position and assemble the quick-installation bracket 3 on the hinged folding photovoltaic roof panel 1. Furthermore, by installing a stabilizing triangular connector 13 at the top of the quick-installation bracket 3 that contacts the folding unit 2, the stabilizing triangular connector 13 provides support for the folding unit 2, improving the stability of the quick-installation bracket 3 and the folding unit 2 during assembly. The first fixing bolts 11 are evenly distributed between the positioning sleeve 12 and the bottom of the quick-installation bracket 3, facilitating the assembly and disassembly of the bracket stabilizing frame 10 and the quick-installation bracket 3. The second fixing bolts 15 are also evenly distributed between the positioning slot 14 and the folding unit 2, allowing for the fixing or disassembly of the quick-installation bracket 3 and the folding unit 2. This enables the lower support structure of the device to achieve the advantage of a split and detachable design.
Claims
1. A containerized rapid-moving photovoltaic installation module structure, characterized in that, The system includes a hinged folding photovoltaic roof panel (1) and a container (5). Folding units (2) are evenly arranged on the hinged folding photovoltaic roof panel (1), and connecting hinges (9) are provided between adjacent folding units (2). Photovoltaic panels (7) are laid on the folding units (2). Photovoltaic quick-connect connectors (17) are evenly arranged on the hinged folding photovoltaic roof panel (1). The container (5) is installed at one end of the hinged folding photovoltaic roof panel (1). A storage cavity (4) is provided inside the container (5). Quick-installation brackets (3) are evenly installed at equal intervals on the bottom of both sides of the hinged folding photovoltaic roof panel (1). (3) has a positioning slot (14) that engages with the folding unit (2) at the top. A support stabilizing bracket (10) is installed between the quick-installation brackets (3). Positioning sleeves (12) that engage with the quick-installation brackets (3) are welded on both sides of the support stabilizing bracket (10). A stabilizing triangular connector (13) that contacts the folding unit (2) is installed at the top of the quick-installation bracket (3). A guide rail (8) is provided on the quick-installation bracket (3). A slider (19) that matches the guide rail (8) is provided on the hinged folding photovoltaic roof plate (1). The folding units (2) are arranged at equal intervals on the hinged folding photovoltaic roof plate (1).
2. The containerized rapid-moving photovoltaic installation module structure according to claim 1, characterized in that: The photovoltaic panel (7) and the folded unit (2) form a snap-fit structure.
3. The containerized rapid-moving photovoltaic installation module structure according to claim 1, characterized in that: The folded unit (2) is provided with wiring holes (18) that match the photovoltaic quick-connect connector (17).
4. The containerized rapid-moving photovoltaic installation module structure according to claim 1, characterized in that: The first fixing bolt (11) is evenly arranged between the bottom of the positioning sleeve (12) and the quick installation bracket (3).
5. The containerized rapid-moving photovoltaic installation module structure according to claim 1, characterized in that: The second fixing bolts (15) are evenly arranged between the positioning slot (14) and the folding unit (2).
6. The containerized rapid-moving photovoltaic installation module structure according to claim 1, characterized in that: A third fixing bolt (16) is evenly arranged between the stable triangular connector (13) and the quick-install bracket (3).