Arc-shaped rolling type solar charging shed

By designing an arc-shaped, retractable solar charging shed, and utilizing a motor-driven retractable solar panel, the problem of traditional solar charging sheds being space-consuming and easily damaged is solved, achieving a convenient and efficient charging solution.

CN223767241UActive Publication Date: 2026-01-06GUANGDONG DONGLING ZHI PARK PARKING TECH CO LTD
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Patent Information

Application Number
CN202422134790.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2026-01-06
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

Existing solar charging sheds are space-consuming, made of hard materials, easily damaged, have a short lifespan, and are inconvenient to maintain.

Method used

It adopts an arc-shaped retractable structure, uses a motor to drive the retractable solar panel, and uses an arc-shaped fixing frame to realize the extension and retraction of the solar panel, reducing damage and collision, and facilitating maintenance.

Benefits of technology

Reduce damage and impact to solar panels, extend their lifespan, save space, and improve ease of use and charging efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223767241U_ABST
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Abstract

The utility model discloses an arc-shaped rolling type solar charging shed which comprises a fixing frame, a fixing plate and a ceiling, wherein the fixing plate and the ceiling are connected with the fixing frame. Each fixing frame is of a semi-surrounded arc-shaped structure, a fixing plate is arranged between the fixing frames, each fixing plate is an arc-shaped plate face and is matched with the arc-shaped structure of the corresponding fixing frame, the fixing plates are located on the lower portions of the fixing frames, and one fixing plate is arranged between the two fixing frames; the ceiling is a solar panel capable of being rolled up and comprises a rolling-up shaft and a rolling-up plate connected with the rolling-up shaft. A winding groove is formed in the upper end of the fixing plate, and the winding shaft is located in the winding groove; one end of the winding shaft is connected with a motor, the motor drives the winding shaft to rotate, and the winding plate is arranged between the two fixing frames, extends along the arc-shaped structures of the fixing frames and shields the charging shed; or the winding plate is retracted along the arc-shaped structure of the fixing frame and is wound on the winding shaft.
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Description

Technical Field

[0001] This utility model belongs to the field of solar charging sheds, specifically relating to an arc-shaped roll-up solar charging shed. Background Technology

[0002] With the continuous growth of global energy demand, traditional fossil fuels face the crisis of depletion, while the greenhouse gas emissions from their combustion exacerbate global warming. Therefore, the search for and development of renewable energy has become a focus of international attention. As people's awareness of environmental protection increases, more and more people are paying attention to low-carbon and environmentally friendly lifestyles. Solar energy, as a clean and renewable energy source, is gradually gaining popularity. In recent years, the electric vehicle market has developed rapidly, and the number of electric vehicles on the road has continued to increase. However, the charging problem of electric vehicles has always been one of the key factors restricting their widespread adoption. Traditional charging stations are costly to build, require large areas, and suffer from low charging efficiency and long waiting times. Therefore, there is a need to develop more convenient and efficient charging solutions. With the continuous advancement of solar energy technology, the photoelectric conversion efficiency of solar panels is constantly improving, leading to a gradual reduction in the cost of solar power generation. Continuous innovation in the materials and technologies of key components such as solar panels and inverters has improved the reliability and lifespan of solar charging stations.

[0003] However, existing solar charging sheds generally have fixed solar panels on the roof, which take up a lot of space, are made of hard materials, are susceptible to bending and damage, and suffer serious wear and tear when not in use, resulting in a short service life and inconvenient maintenance. Summary of the Invention

[0004] To address the problems in related technologies, this utility model proposes an arc-shaped retractable solar charging shed, including a fixed frame, a fixed plate, and a roof. The roof is a retractable solar panel. The roof can be opened or rolled up by controlling a motor. It can be retracted on cloudy days or in the absence of sunlight, reducing the wear and tear or impact on the solar panels, making them less prone to breakage and extending their service life.

[0005] This utility model is implemented as follows:

[0006] An arc-shaped retractable solar charging shed includes a fixed frame, a fixed plate connected to the fixed frame, and a roof;

[0007] The fixing frame is a semi-enclosed arc-shaped structure, and a fixing plate is provided between the fixing frames. The fixing plate has an arc-shaped surface and is adapted to the arc-shaped structure of the fixing frame. The fixing plate is located at the lower part of the fixing frame, and a fixing plate is provided between the two fixing frames.

[0008] The canopy is a retractable solar panel, including a winding shaft and a winding plate connected to the winding shaft; the upper end of the fixed plate is provided with a winding groove, and the winding shaft is located in the winding groove; one end of the winding shaft is connected to a motor, the motor drives the winding shaft to rotate, the winding plate extends along the arc structure of the fixed frame between the two fixed frames, and covers the charging canopy; or the winding plate can be retracted along the arc structure of the fixed frame and wound around the winding shaft.

[0009] Preferably, the charging shed includes three fixed frames, each fixed frame having a groove on one side that connects to the fixed plate, and both ends of the fixed plate engaging with the grooves of the fixed frames.

[0010] Specifically, the central fixing frame has grooves on both sides; the three fixing frames are arranged in parallel, the two ends of the fixing plate are engaged in the grooves, and the two ends of the top extend into the grooves, so that the winding plate can extend or retract along the grooves of the fixing frame.

[0011] Preferably, the motor is located on the outer side of the fixing frame near both sides, the take-up shaft has a roller at one end near the middle fixing frame, the take-up shaft has a rotating shaft inside, one end of the rotating shaft is connected to the roller, and the other end of the rotating shaft is connected to the motor.

[0012] Specifically, the motor is a micro motor that drives the take-up shaft to rotate, thereby causing the take-up plate to wind around the take-up shaft.

[0013] Preferably, the roller is located within the take-up groove, is adapted to the take-up groove, and extends into the groove.

[0014] Specifically, the rotation of the entire take-up shaft is driven by the connection between the shaft and the wheel.

[0015] Preferably, the fixing frame includes a bottom section, a side arc section and a top arc section connected in sequence. The bottom section is located on the ground and has a straight structure. The side arc section and the top arc section have arc-shaped structures. The top arc section is located above the bottom section.

[0016] Specifically, the three sections of the mounting frame together form a semi-enclosed arc-shaped structure with one end open, which is the vehicle's entrance and exit.

[0017] Preferably, a support rod is provided on the side where the opening of the fixing frame is located, one end of the support rod is connected to the bottom section, and the other end is connected to the top arc section.

[0018] Specifically, the support rods can improve the overall stability of the fixing frame and prevent the fixing frame from becoming unstable and posing safety hazards when the ceiling is retracted for a long time.

[0019] Preferably, the fixing plate includes a bottom plate and a side arc plate, the bottom plate corresponding to the bottom segment, the side arc plate corresponding to the side arc segment; and the winding plate corresponding to the top arc segment.

[0020] Specifically, the two parts of the fixed plate and the winding plate correspond exactly to the three sections of the fixed frame. The fixed plate is a fixed part and cannot be retracted, while the winding plate is at the top and is a retractable structure.

[0021] Preferably, the side arc plate is further provided with a crossbar in the middle, and the crossbar is perpendicular to the plane where the fixing frame is located.

[0022] Specifically, the horizontal bar can enhance the stability of the side arc plate and improve the overall stability of the arc plate surface.

[0023] Preferably, the end of the bottom plate away from the side arc plate is a transition slope.

[0024] Specifically, the transition slope is designed to keep the vehicle stable when it drives into the charging shed, while also reducing damage to the bottom of the mounting plate.

[0025] Preferably, the surface of the take-up shaft is provided with a protrusion, and the take-up plate is provided with a snap-fit ​​portion adapted to the protrusion. When the take-up plate is wound on the take-up shaft, the positions of the protrusion and the snap-fit ​​portion correspond to each other.

[0026] Specifically, the winding shaft and winding plate are similar in structure to a roller shutter door, with protrusions and locking parts to ensure a smooth winding process for the winding plate.

[0027] Compared with the prior art, the present invention achieves the following beneficial effects:

[0028] This utility model provides an arc-shaped retractable solar charging shed, including a fixed frame, a fixed plate, and a roof. The fixed frame and fixed plate are both arc-shaped structures, and the roof is a retractable solar panel. The roof is controlled by a motor to extend and retract along the arc-shaped structure of the fixed frame, realizing the opening or rolling up of the solar panel. This reduces the wear and tear and impact on the solar panel, and facilitates the maintenance of the solar panel. Compared with traditional rigid solar panels, the retractable solar panel is not easily damaged, is not afraid of twisting, and is suitable for use in various environments, extending the service life of the equipment. The entire charging shed has an arc-shaped structure, which provides better cushioning when rolling up compared to a straight structure. In addition, the arc-shaped structure can better accept direct sunlight from different angles, not only ensuring charging efficiency, but also saving space and effectively protecting the solar panel when there is no sunlight or when it is not in use. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of an arc-shaped retractable solar charging shed according to an embodiment of the present utility model.

[0030] Figure 2 This is a schematic diagram of the fixing frame structure of an arc-shaped retractable solar charging shed according to an embodiment of the present utility model;

[0031] Figure 3 This is a schematic diagram of the roof structure of an arc-shaped retractable solar charging shed according to an embodiment of the present invention.

[0032] Figure label:

[0033] 101. Fixing frame; 102. Bottom section; 103. Side arc section; 104. Top arc section; 105. Support rod;

[0034] 201. Fixing plate; 202. Rewinding groove; 203. Bottom plate; 204. Side arc plate; 205. Crossbar; 206. Transition slope;

[0035] 301. Ceiling; 302. Winding shaft; 303. Winding plate; 304. Rotary wheel; 305. Rotary shaft; 306. Protrusion; 307. Engaging part;

[0036] 401. Electric motor. Detailed Implementation

[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present utility model, and not all of them. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0038] Example

[0039] like Figures 1 to 3 An arc-shaped retractable solar charging shed includes a fixed frame 101, a fixed plate 201 connected to the fixed frame 101, and a roof 301.

[0040] The fixing frame 101 is a semi-enclosed arc-shaped structure. A fixing plate 201 is provided between the fixing frames 101. The fixing plate 201 is an arc-shaped plate surface and is adapted to the arc-shaped structure of the fixing frame 101. The fixing plate 201 is located at the lower part of the fixing frame 101, and a fixing plate 201 is provided between the two fixing frames 101.

[0041] The canopy 301 is a retractable solar panel, including a winding shaft 302 and a winding plate 303 connected to the winding shaft 302; the upper end of the fixing plate 201 is provided with a winding groove 202, and the winding shaft 302 is located in the winding groove 202; one end of the winding shaft 302 is connected to a motor 401, and the motor 401 drives the winding shaft 302 to rotate. The winding plate 303 extends along the arc structure of the fixing frame 101 between the two fixing frames 101 and covers the charging canopy; or the winding plate 303 can be retracted along the arc structure of the fixing frame 101 and wound around the winding shaft 302.

[0042] The charging shed includes three fixed frames 101. The fixed frame 101 has a groove on the side that connects with the fixed plate 201. Both ends of the fixed plate 201 are engaged with the groove of the fixed frame 101.

[0043] The central fixing frame 101 has grooves on both sides; the three fixing frames 101 are arranged in parallel, the two ends of the fixing plate 201 are engaged in the grooves, and the two ends of the canopy 301 extend into the grooves, so that the winding plate 303 can extend or retract along the grooves of the fixing frame 101.

[0044] The motor 401 is located on the outer side of the fixed frame 101 near both sides. The winding shaft 302 has a rotating wheel 304 at one end near the middle fixed frame 101. The winding shaft 302 has a rotating shaft 305 inside. One end of the rotating shaft 305 is connected to the rotating wheel 304, and the other end of the rotating shaft 305 is connected to the motor 401.

[0045] The motor 401 is a micro motor 401, which drives the take-up shaft 302 to rotate, thereby causing the take-up plate 303 to be wound around the take-up shaft 302.

[0046] The roller 304 is located within the take-up groove 202, is adapted to the take-up groove 202, and extends into the groove.

[0047] The rotation of the entire take-up shaft 302 is driven by the connection between the shaft 305 and the wheel 304.

[0048] The fixing frame 101 includes a bottom section 102, a side arc section 103 and a top arc section 104 connected in sequence. The bottom section 102 is located on the ground and has a straight structure. The side arc section 103 and the top arc section 104 have arc-shaped structures. The top arc section 104 is located above the bottom section 102.

[0049] The three sections of the mounting bracket 101 together form a semi-enclosed arc-shaped structure with one end open, which is the vehicle's entrance and exit.

[0050] A support rod 105 is provided on the side where the opening of the fixing frame 101 is located. One end of the support rod 105 is connected to the bottom section 102, and the other end is connected to the top arc section 104.

[0051] The support rod 105 can improve the overall stability of the fixing frame 101 and prevent the fixing frame 101 from becoming unstable and posing a safety hazard when the ceiling 301 is contracted for a long time.

[0052] The fixing plate 201 includes a bottom plate 203 and a side arc plate 204. The bottom plate 203 corresponds to the bottom section 102, and the side arc plate 204 corresponds to the side arc section 103. The winding plate 303 corresponds to the top arc section 104.

[0053] The two parts of the fixing plate 201 and the winding plate 303 correspond exactly to the three sections of the fixing frame 101. The fixing plate 201 is a fixed part and cannot be retracted, while the winding plate 303 is at the top and is a retractable structure.

[0054] The side arc plate 204 is also provided with a crossbar 205 in the middle, and the crossbar 205 is perpendicular to the plane where the fixing frame 101 is located.

[0055] The horizontal bar can enhance the stability of the side arc plate 204 and improve the overall stability of the arc plate surface.

[0056] The end of the bottom plate 203 away from the side arc plate 204 is a transition slope 206.

[0057] The transition slope 206 is designed to keep the vehicle stable when it drives into the charging shed, while also reducing damage to the bottom of the fixing plate 201.

[0058] The surface of the take-up shaft 302 is provided with a protrusion 306, and the take-up plate 303 is provided with a snap-fit ​​portion 307 adapted to the protrusion 306. When the take-up plate 303 is wound on the take-up shaft 302, the positions of the protrusion 306 and the snap-fit ​​portion 307 correspond to each other.

[0059] The winding shaft 302 and winding plate 303 are similar in structure to a roller shutter door. The protrusion 306 and the locking part 307 are to ensure the smooth winding process of the winding plate 303.

[0060] This invention provides an arc-shaped retractable solar charging shed. Its operating principle is as follows: when the roof 301 is retracted, a motor 401 drives a retractor 302 to rotate, which pulls a retractor plate 303 to wind around the surface, completing the retraction of the roof 301. When the roof 301 needs to be opened, the motor 401 drives the retractor 302 to rotate, causing the retractor plate 303 to extend along the arc-shaped structure of the fixing frame 101 and open, unfolding the retractor plate 303 to cover the charging shed. This allows the solar panels to be opened or rolled up, reducing damage and impact to the solar panels, facilitating maintenance, and compared to traditional rigid solar panels, the retractable solar panels are less prone to breakage, save space, and extend the equipment's lifespan.

[0061] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.

Claims

1. An arc-shaped rollable solar charging shed, comprising a fixed frame, a fixed plate connected with the fixed frame, and a roof; characterized in that, the fixed frame is a semi-enclosed arc-shaped structure, and the fixed plates are arranged between the fixed frames, the fixed plates are arc-shaped and adapted to the arc-shaped structure of the fixed frame, the fixed plates are arranged at the lower part of the fixed frame, and one fixed plate is arranged between two fixed frames; the roof is a rollable solar panel, comprising a rolling shaft and a rolling plate connected with the rolling shaft; the upper end of the fixed plate is provided with a rolling groove, and the rolling shaft is arranged in the rolling groove; one end of the rolling shaft is connected with a motor, the motor drives the rolling shaft to rotate, the rolling plate is arranged between the two fixed frames, extends along the arc-shaped structure of the fixed frame, and shields the charging shed; or the rolling plate is retracted along the arc-shaped structure of the fixed frame and wound on the rolling shaft.

2. A curved roll-up solar charging shelter as claimed in claim 1, wherein, The charging shed comprises three fixed frames, and the side of the fixed frame connected with the fixed plate is provided with a groove, and the two ends of the fixed plate are connected with the grooves of the fixed frames.

3. A curved roll-up solar charging shelter according to claim 2, wherein, The motor is arranged on the outer side of the fixed frame close to the two sides, one end of the rolling shaft close to the middle fixed frame is provided with a rotating wheel, the inside of the rolling shaft is provided with a rotating shaft, one end of the rotating shaft is connected with the rotating wheel, and the other end of the rotating shaft is connected with the motor.

4. A curved roll-up solar charging shelter according to claim 3, wherein, The rotating wheel is arranged in the rolling groove and adapted to the rolling groove and extends into the groove.

5. The arc-shaped roll-up solar charging shelter of claim 1, wherein, The fixed frame comprises a bottom section, a side arc section and a top arc section connected in sequence, the bottom section is arranged on the ground and is a linear structure, the side arc section and the top arc section are arc-shaped structures, and the top arc section is arranged above the bottom section.

6. An arc-shaped roll-up solar charging shelter as claimed in claim 5, characterized in that, The side of the opening of the fixed frame is provided with a support rod, one end of the support rod is connected with the bottom section, and the other end of the support rod is connected with the top arc section.

7. The arc-shaped roll-up solar charging shelter according to claim 5, wherein, The fixed plate comprises a bottom plate and a side arc plate, the bottom plate corresponds to the bottom section, and the side arc plate corresponds to the side arc section; the rolling plate corresponds to the top arc section.

8. The arc-shaped roll-up solar charging shelter according to claim 7, wherein, The middle of the side arc plate is further provided with a horizontal rod, and the horizontal rod is perpendicular to the plane of the fixed frame.

9. The arc-shaped roll-up solar charging shelter of claim 7, wherein, The end of the bottom plate away from the side arc plate is a transition inclined surface.

10. The arc-shaped roll-up solar charging shelter of claim 1, wherein, The surface of the rolling shaft is provided with a protruding part, the rolling plate is provided with a clamping part adapted to the protruding part, and the positions of the protruding part and the clamping part correspond when the rolling plate is wound on the rolling shaft.