Foldable mobile photovoltaic module

By designing foldable photovoltaic modules and utilizing wheels and storage components, the photovoltaic panels can be folded and unfolded, solving the problems of inconvenient movement and limited transportation of photovoltaic modules, and realizing convenient movement and transportation.

CN223872247UActive Publication Date: 2026-02-03HONGXINGHE INNOVATIVE ENERGY (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202520132405.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-03
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing photovoltaic modules are inconvenient to move because they need to be lifted, and they cannot be folded to reduce their size during transportation, which limits their use.

Method used

A foldable mobile photovoltaic module was designed. By setting up moving wheels and storage components on the moving frame, including a first mounting frame, a second mounting frame, a U-shaped clamp, and a locking screw, the photovoltaic panel can be folded and unfolded. The U-shaped clamp and locking screw are used for fixing and limiting, reducing the volume and facilitating movement and transportation.

Benefits of technology

This enables convenient movement and transportation of photovoltaic modules, reduces their size, and solves the problems of inconvenient movement and limited transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of photovoltaic panels, and specifically relates to a foldable mobile photovoltaic assembly. Comprising a moving frame, moving wheels, a first photovoltaic panel and a storage component, the storage component comprises a first mounting frame, a second mounting frame, a U-shaped clamp, a locking screw, a connecting part and an adjusting part, photovoltaic conversion can be performed through the first photovoltaic panel, the second photovoltaic panel and a third photovoltaic panel, and the device can be conveniently moved through the moving wheels at the bottom of the moving frame; when the device is further moved, a connecting part is taken down, a first mounting frame and a second mounting frame are rotated respectively, so that a second photovoltaic panel and a third photovoltaic panel can be rotated respectively and then abut against the surface of the first photovoltaic panel, and then the mounting frames are fixed and limited through a U-shaped clamp and a locking screw rod, so that the device is folded; therefore, the problems that an existing photovoltaic module needs to be lifted and moved during movement, the photovoltaic module is very inconvenient to move, the photovoltaic module cannot be folded during transportation to reduce the size for transportation, and the use limitation is large can be solved.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic panel technology, and in particular to a foldable mobile photovoltaic module. Background Technology

[0002] The surface of solar panels is inconvenient to clean, and the wipers cannot self-clean, affecting the cleaning quality. In addition, the base is inconvenient to fix and install, and is bulky and difficult to move.

[0003] Existing technology CN221748322U discloses a combined solar photovoltaic panel module, belonging to the field of photovoltaic panel technology. It includes a base, with a support rod one on one side of the upper end of the base and a support rod two on the other side. A support plate is located at the upper end of the support rod two, and an electric telescopic rod is located at the upper end of the support plate. This invention includes a cleaning component. A drive motor rotates, causing a lead screw to rotate, which in turn rotates a moving block. A fixed plate on the side of the moving block moves, causing a cleaning brush to move and clean the surface of the solar panel. The elastic force of a return spring keeps the cleaning brush in close contact with the solar panel surface, ensuring cleaning quality. When the connecting plate moves below the stepper motor, the stepper motor rotates, causing a cam to rotate. The cam presses down on the surface of the connecting plate. Due to the elastic force of the return spring, the cleaning brush moves up and down, generating vibration and shaking off the dust adhering to the brush, ensuring effective cleaning.

[0004] However, in actual use, the base structure of the aforementioned photovoltaic modules makes them inconvenient to move, requiring them to be lifted. Furthermore, the photovoltaic modules cannot be folded to reduce their volume during transportation, resulting in significant limitations in their use. Utility Model Content

[0005] The purpose of this invention is to provide a foldable mobile photovoltaic module, which aims to solve the problems of existing photovoltaic modules that require lifting to move, which is very inconvenient, and that photovoltaic modules cannot be folded to reduce volume during transportation, thus limiting their use.

[0006] To achieve the above objectives, this utility model provides a foldable mobile photovoltaic module, including a mobile frame, with mobile wheels installed at the bottom of the mobile frame and a first photovoltaic panel disposed on its inclined mounting plate, and also including a storage component;

[0007] The storage component includes a first mounting frame, a second mounting frame, a U-shaped clamp, a locking screw, a connecting component, and an adjusting component. The first mounting frame is mounted on the top side of the movable frame via a hinge, and a second photovoltaic panel is disposed on the first mounting frame. The second mounting frame is mounted on the bottom of the movable frame via a hinge, and a third photovoltaic panel is disposed on the second mounting frame. The U-shaped clamp is slidably connected to the movable frame, the first mounting frame, and the second mounting frame, respectively. The locking screw is slidably connected to the U-shaped clamp and threadedly connected to the movable frame, passing through the U-shaped clamp. The connecting component is disposed on the side of the movable frame close to the first mounting frame and the second mounting frame, respectively. The adjusting component is disposed at the bottom of the movable frame.

[0008] The connecting component includes a plug-in block and a limiting nut. The plug-in block is slidably connected to the movable frame, the first mounting frame, and the second mounting frame, and is disposed through them. The limiting nut is screwed onto the external thread end of the plug-in block and abuts against the movable frame, the first mounting frame, and the second mounting frame, respectively.

[0009] The connecting component further includes a U-shaped block, which is integrally formed with the plug-in block and located on the side of the plug-in block away from the limiting nut.

[0010] The adjusting component includes an adjusting plate and a T-shaped screw. The adjusting plate is welded to the support foot at the bottom of the movable frame. The T-shaped screw is threaded to the adjusting plate and passes through the adjusting plate, and its bottom is a circular abutment plate.

[0011] The foldable mobile photovoltaic module further includes a stabilizing component, which includes a mounting frame and a positioning frame. The mounting frame is fixed to the bottom of the mounting plate of the mobile frame; the positioning frame is threadedly connected to the mounting frame and is located at the bottom of the mounting frame.

[0012] This utility model discloses a foldable mobile photovoltaic module. In use, it utilizes a first, second, and third photovoltaic panel for photoelectric conversion. The mobile frame has wheels at its bottom for easy movement. Furthermore, connecting components can be removed during movement. Then, the first and second mounting frames are rotated, allowing the second and third photovoltaic panels to rotate and abut against the surface of the first photovoltaic panel. A U-shaped clamp and locking screws then secure the panels, enabling the module to fold, reducing its size during movement and facilitating convenient transport. This solves the problems of existing photovoltaic modules requiring lifting for movement, which is inconvenient, and the inability to fold for transport, limiting their usability. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0014] Figure 1 This is a schematic diagram of the overall structure of the foldable mobile photovoltaic module according to the first embodiment of this utility model.

[0015] Figure 2 This is a schematic diagram of the plug block according to the first embodiment of the present invention.

[0016] Figure 3 This is a schematic diagram of the structure of the U-shaped clip according to the first embodiment of this utility model.

[0017] Figure 4 This is a schematic diagram of the overall structure of the foldable mobile photovoltaic module according to the second embodiment of this utility model.

[0018] Figure 5 This is a schematic diagram of the mounting bracket according to the second embodiment of the present invention.

[0019] In the diagram: 101-Moving frame, 102-Moving wheel, 103-First photovoltaic panel, 104-First mounting frame, 105-Second photovoltaic panel, 106-Second mounting frame, 107-Third photovoltaic panel, 108-U-shaped clamp, 109-Locking screw, 110-Plug-in block, 111-Limit nut, 112-U-shaped block, 113-Adjusting plate, 114-T-shaped screw, 201-Moving frame, 202-Positioning frame. Detailed Implementation

[0020] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0021] Example 1:

[0022] like Figures 1 to 3 As shown, where Figure 1 This is a schematic diagram of the overall structure of a foldable, portable photovoltaic module. Figure 2 This is a structural schematic diagram of the plug-in block 110. Figure 3This is a schematic diagram of the U-shaped clamp 108. This utility model provides a foldable, mobile photovoltaic module: including a moving frame 101, moving wheels 102, a first photovoltaic panel 103, and a storage component. The storage component includes a first mounting frame 104, a second mounting frame 106, a U-shaped clamp 108, a locking screw 109, a connecting component, and an adjusting component. The connecting component includes a plug-in block 110, a limiting nut 111, and a U-shaped block 112. The adjusting component includes an adjusting plate 113 and a T-shaped screw 114. The aforementioned solution solves the problems of existing photovoltaic modules requiring lifting for movement, which is inconvenient, and the inability to fold for transport to reduce volume, resulting in significant limitations. It is understood that the aforementioned solution facilitates convenient movement of photovoltaic modules and allows for folding to reduce volume during transport.

[0023] In this embodiment, the bottom of the mobile frame 101 is equipped with a mobile wheel 102, and a first photovoltaic panel 103 is provided on its inclined mounting plate. The mobile wheel 102 can be a universal self-locking wheel for moving the device, and the first photovoltaic panel 103 is used for photoelectric conversion.

[0024] The first mounting frame 104 is mounted on the top side of the movable frame 101 via a hinge. A second photovoltaic panel 105 is mounted on the first mounting frame 104. The second mounting frame 106 is mounted on the bottom of the movable frame 101 via a hinge. A third photovoltaic panel 107 is mounted on the second mounting frame 106. The U-shaped clamp 108 is slidably connected to the movable frame 101, the first mounting frame 104, and the second mounting frame 106, respectively. The locking screw 109 is slidably connected to the U-shaped clamp 108 and threadedly connected to the movable frame 101, and passes through the U-shaped clamp 108. The connecting component is located on the side of the movable frame 101 near the first mounting frame 104 and the second mounting frame 106, respectively. The adjusting component is located at the bottom of the movable frame 101. The first mounting frame 104 and the second mounting frame 106 are respectively mounted on the movable frame 101 via hinges, facilitating flipping and folding. After flipping, the ends of the first mounting frame 104 and the second mounting frame 106 will not abut against each other or interfere. After flipping, the first mounting frame 104 and the second mounting frame 106 can slide and engage with the U-shaped clip 108. The mating cavity of the U-shaped clip 108 has the same spacing and thickness as the movable frame 101 and the first mounting frame 104 and the second mounting frame 106 after flipping. Then, a through hole is provided on the support arm of the U-shaped clip 108 to facilitate the installation of the locking screw 109. The bottom end of the mounting plate of the movable frame 101 is provided with a threaded hole for the locking screw 109. The connecting component is used to limit the first mounting frame 104 and the second mounting frame 106 after unfolding, ensuring the stable operation of the second photovoltaic panel 105 and the third photovoltaic panel 107. The adjusting component is used to improve the working stability of the device after movement.

[0025] Secondly, the plug-in block 110 is slidably connected to the movable frame 101, the first mounting frame 104, and the second mounting frame 106, respectively, and is disposed through them; the limiting nut 111 is screwed onto the external thread end of the plug-in block 110, and abuts against the movable frame 101, the first mounting frame 104, and the second mounting frame 106, respectively. The movable frame 101, the first mounting frame 104, and the second mounting frame 106 are each provided with corresponding circular through-holes to facilitate the insertion of the round shafts on both sides of the plug-in block 110. The bottom ends of the round shafts on both sides of the plug-in block 110 are external thread ends to facilitate the installation of the limiting nut 111.

[0026] Then, the U-shaped block 112 is integrally formed with the plug-in block 110 and is located on the side of the plug-in block 110 away from the limiting nut 111. The function of the U-shaped block 112 is to facilitate the installation or removal of the plug-in block 110.

[0027] Finally, the adjusting plate 113 is welded to the support foot at the bottom of the movable frame 101; the T-shaped screw 114 is threadedly connected to the adjusting plate 113 and passes through the adjusting plate 113, with a circular abutment plate at the bottom. One end of the adjusting plate 113 is welded to the bottom support foot of the movable frame 101 and is provided with a through threaded hole to facilitate the installation of the T-shaped screw 114. The bottom of the T-shaped screw 114 is a circular support plate for easy contact with the ground, the middle is an external thread end for easy engagement with the adjusting plate 113, and the top is an external hexagonal column for easy rotation of the T-shaped screw 114 with a wrench.

[0028] This invention addresses the limitations of existing photovoltaic (PV) modules, which require lifting for movement, are inconvenient, and cannot be folded for transport to reduce volume. The first PV panel 103, the second PV panel 105, and the third PV panel 107 enable photoelectric conversion. During movement, the T-shaped screw 114 is rotated so that its bottom contacts the disc and moves away from the ground. The wheels 102 at the bottom of the moving frame 101 facilitate easy movement. Furthermore, the connecting components can be removed during movement, and then the components can be rotated... The first mounting frame 104 and the second mounting frame 106 allow the second photovoltaic panel 105 and the third photovoltaic panel 107 to rotate and abut against the surface of the first photovoltaic panel 103. Then, the first mounting frame 104 and the second mounting frame 106 are fixed and limited by the U-shaped clamp 108 and the locking screw 109, so that the device can be folded to reduce the volume when moving, which is convenient for movement. This solves the problem that existing photovoltaic modules need to be lifted when moving, which is very inconvenient, and photovoltaic modules cannot be folded to reduce the volume during transportation, which limits their use.

[0029] Example 2:

[0030] like Figure 4 and Figure 5 As shown, where Figure 4 This is a schematic diagram of the overall structure of a foldable, portable photovoltaic module. Figure 5 This is a structural schematic diagram of the mounting frame 201. Based on the first embodiment, this utility model provides a foldable mobile photovoltaic module. The foldable mobile photovoltaic module also includes a stabilizing component, which includes the mounting frame 201 and the positioning frame 202.

[0031] The mounting bracket 201 is fixed to the bottom of the mounting plate of the movable frame 101; the positioning bracket 202 is threadedly connected to the mounting bracket 201 and located at the bottom of the mounting bracket 201. The mounting bracket 201 is fixed to the bottom of the mounting plate of the movable frame 101 by bolts. The vertical internal cavity of the mounting bracket 201 is set as a threaded cavity. The bottom of the positioning bracket 202 is a supporting disc, and the top is an externally threaded end that is threadedly connected to the mounting bracket 201.

[0032] In this embodiment, after the device is moved to the work site, the positioning frame 202 can be rotated so that its bottom support disc abuts against the ground, further increasing the support structure and improving the working stability of the mobile frame 101.

[0033] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A foldable mobile photovoltaic module, comprising a mobile frame, wherein the bottom of the mobile frame is equipped with casters and a first photovoltaic panel is disposed on its inclined mounting plate, characterized in that: It also includes storage components; The storage component includes a first mounting frame, a second mounting frame, a U-shaped clamp, a locking screw, a connecting component, and an adjusting component. The first mounting frame is mounted on the top side of the movable frame via a hinge, and a second photovoltaic panel is disposed on the first mounting frame. The second mounting frame is mounted on the bottom of the movable frame via a hinge, and a third photovoltaic panel is disposed on the second mounting frame. The U-shaped clamp is slidably connected to the movable frame, the first mounting frame, and the second mounting frame, respectively. The locking screw is slidably connected to the U-shaped clamp and threadedly connected to the movable frame, passing through the U-shaped clamp. The connecting component is disposed on the side of the movable frame close to the first mounting frame and the second mounting frame, respectively. The adjusting component is disposed at the bottom of the movable frame.

2. The foldable mobile photovoltaic module as described in claim 1, characterized in that: The connecting component includes a plug-in block and a limiting nut. The plug-in block is slidably connected to the movable frame, the first mounting frame, and the second mounting frame, and is disposed through them. The limiting nut is screwed onto the external thread end of the plug-in block and abuts against the movable frame, the first mounting frame, and the second mounting frame, respectively.

3. The foldable mobile photovoltaic module as described in claim 2, characterized in that: The connecting component also includes a U-shaped block, which is integrally formed with the plug block and located on the side of the plug block away from the limiting nut.

4. The foldable mobile photovoltaic module as described in claim 1, characterized in that: The adjusting component includes an adjusting plate and a T-shaped screw. The adjusting plate is welded to the support foot at the bottom of the movable frame. The T-shaped screw is threaded to the adjusting plate and passes through the adjusting plate, and its bottom is a circular abutment plate.

5. The foldable mobile photovoltaic module as described in claim 1, characterized in that... : The foldable mobile photovoltaic module also includes a stabilizing component, which includes a mounting frame and a positioning frame. The mounting frame is fixed to the bottom of the mounting plate of the mobile frame; the positioning frame is threadedly connected to the mounting frame and is located at the bottom of the mounting frame.

Citation Information

Patent Citations

  • Combined solar photovoltaic panel assembly

    CN221748322U