Photovoltaic energy storage mobile garage
By incorporating grooves and baffles on both sides of the mobile garage guide rails, combined with the design of telescopic covers, the problem of debris easily entering the guide rails is solved, enabling the guide rails to be cleaned and moved smoothly, reducing the failure rate and improving the reliability of the garage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 广东省光禾悦智能科技有限公司
- Filing Date
- 2025-06-12
- Publication Date
- 2026-05-05
AI Technical Summary
The guide rails of existing mobile garages are prone to getting dust, sand and other debris in, which can cause them to move poorly or get stuck. They are also difficult to clean and have a high failure rate.
Grooves are set on both sides of the guide rail of the mobile garage, and baffles are installed at the bottom of the garage frame to prevent debris from entering. At the same time, telescopic covers are set at the front and rear ends of the guide rail to cover the guide rail. The cover storage box is used to realize the telescopic concealment of the cover, ensuring the cleanliness of the guide rail and smooth movement.
It effectively prevents debris from entering the guide rails, reducing the failure rate of the mobile garage and improving its reliability and service life.
Smart Images

Figure CN224200335U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mobile garage technology, specifically relating to a photovoltaic energy storage mobile garage. Background Technology
[0002] With the increasing number of cars on the road, the demand for parking spaces is also growing. However, due to limitations in site space and construction approval requirements, many areas are unable to build permanent parking garages. Mobile parking garages, on the other hand, offer advantages such as flexible installation, simple construction approval requirements, and low cost, making them an increasingly popular choice.
[0003] In the prior art, as shown in Chinese patent document CN204326618U, a novel solar-powered mobile retractable garage is disclosed, including a garage rear seat, a garage head, a telescopic assembly, a garage cover, and a guide rail. The telescopic assembly is connected between the garage rear seat and the garage head, and the garage cover is installed on the telescopic assembly. The garage head and the telescopic assembly are slidably mounted on the guide rail. A solar panel is installed on the top surface of the garage rear seat via a bracket. A solar battery is installed inside the garage rear seat and connected to the solar panel. The solar battery is charged by the solar panel to power the car and the tractor installed in the garage head, eliminating the need for an external power source and making it energy-saving and environmentally friendly.
[0004] However, in existing mobile garages, because the guide rails are exposed on the ground, dust, sand, and other debris can easily enter the guide rails, often causing problems such as uneven extension and retraction or even jamming. Furthermore, because the internal space of the guide rails is relatively narrow, it is not easy to detect debris entering the guide rails, and even if it is detected, it is not easy to clean them, resulting in a higher probability of malfunctions in the mobile garages. Utility Model Content
[0005] In order to overcome at least some of the shortcomings of the prior art, the present invention provides a photovoltaic energy storage mobile garage.
[0006] The technical solution provided by this utility model is as follows:
[0007] A photovoltaic energy storage mobile garage includes a fixed garage frame and several mobile garage frames. The fixed garage frame is installed on the ground, and the several mobile garage frames are sequentially fitted together from the inside out. Each mobile garage frame has a moving guide rail at its bottom, and each mobile garage frame can move along the moving guide rail into the fixed garage frame. Photovoltaic panels are laid on the top of both the fixed and mobile garage frames. An energy storage battery is installed under the ground at the bottom of the mobile garage, and a charging pile is installed inside the mobile garage. The photovoltaic panels are electrically connected to the energy storage battery to charge it, and the energy storage battery is electrically connected to the charging pile to supply power to it. Grooves are provided on both sides of the moving guide rail, and downward-extending baffles are provided on both sides of the bottom of the mobile garage frame. The baffles are adapted to the grooves. Telescopic covers are connected to the front and rear ends of the mobile garage frame, and the telescopic covers close onto the moving guide rails at the front and rear ends of the mobile garage frame.
[0008] As a further technical solution of this utility model, a cover plate storage box is installed at the front end of the mobile guide rail. The cover plate storage box has a cover plate inlet and outlet on the side facing the mobile guide rail. The telescopic cover plate can enter and exit the cover plate storage box through the cover plate inlet and outlet. The telescopic cover plate includes several unit cover plates that are connected end to end. The unit cover plates can be inserted and extended by each other. The last unit cover plate is connected to the front end of the mobile garage frame.
[0009] As a further technical solution of this utility model, the unit cover plate includes a top support plate and two side telescopic plates. The two side telescopic plates are symmetrically distributed on both sides of the bottom surface of the top support plate. The outer sides of the two side telescopic plates are provided with downwardly extending cover plate baffles. When the unit cover plate is closed on the moving guide rail, the cover plate baffles are adapted to the groove.
[0010] As a further technical solution of this utility model, the bottom surface of the top support plate is provided with two horizontally extending guide grooves, and the top surface of the side telescopic plate is provided with two guide strips for matching the two guide grooves one by one. The two side telescopic plates and the top support plate are slidably connected based on the cooperation of the guide strips and guide grooves. The bottom surface of the top support plate is provided with a horizontally extending mounting groove in the middle, and the inner side of the two side telescopic plates is provided with mounting protrusions that are slidably adapted to the mounting grooves. A pressure spring is embedded in the mounting groove, and the two ends of the pressure spring are respectively fixed to the mounting protrusions on the inner side of the two side telescopic plates. The pressure spring provides the two side telescopic plates with an outward expansion elastic force.
[0011] As a further technical solution of this utility model, the lateral length of the top support plate is equal to the lateral length of the moving guide rail.
[0012] As a further technical solution of this utility model, the lateral length inside the cover storage box is greater than the lateral length of the moving guide rail.
[0013] As a further technical solution of this utility model, the longitudinal length inside the cover storage box is greater than the longitudinal length of the unit cover.
[0014] As a further technical solution of this utility model, the inside of the cover storage box is provided with a guide plate that gradually expands inward from the front end of the moving guide rail.
[0015] As a further technical solution of this utility model, the rear end of the top support plate is provided with a downwardly extending connecting plate, and the front end of the top support plate is provided with a downwardly recessed connecting groove, and the connecting plate is adapted to the connecting groove.
[0016] As a further technical solution of this utility model, magnets with opposite magnetic properties are respectively installed at the bottom of the connecting groove and the bottom of the connecting plate.
[0017] The beneficial effects of this utility model are as follows: By setting grooves on both sides of the movable guide rail and setting baffles at the bottom of the movable garage frame, the baffles are adapted to the grooves to prevent debris from entering the movable guide rail at the corresponding position of the movable garage frame; at the same time, telescopic covers are set at the front and rear ends of the movable garage frame to achieve full coverage of the movable guide rail. The telescopic covers can extend and retract with the movable garage frame, so that the movable garage frame can move along the movable guide rail to any position, and the telescopic covers can cover the movable guide rail to prevent debris from entering the movable guide rail and affecting the movement of the movable garage frame, thereby reducing the failure rate of the movable garage. Attached Figure Description
[0018] Figure 1 This is a perspective view of the mobile garage in its unfolded state according to this embodiment;
[0019] Figure 2 This is a perspective view of the mobile garage in its retracted state according to this embodiment;
[0020] Figure 3 This is a schematic diagram of the end face structure connecting the mobile garage frame and the mobile guide rail in this embodiment;
[0021] Figure 4 This is a schematic diagram of the structure of the telescopic cover plate entering the cover plate storage box in this embodiment;
[0022] Figure 5 This is a perspective view of the unit cover plate in this embodiment;
[0023] Figure 6 This is an exploded view of the unit cover plate in this embodiment;
[0024] Figure 7 This is a perspective view of the top support plate in this embodiment;
[0025] Figure 8 This is a perspective view of the side telescopic plate in this embodiment. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0027] It should be noted that if any directional indication (such as up, down, left, right, front, back, top, bottom, inside, outside, vertical, horizontal, longitudinal, counterclockwise, clockwise, circumferential, radial, axial, etc.) is involved in the embodiments of this utility model, the directional indication is only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indication will also change accordingly.
[0028] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," such descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.
[0029] like Figures 1 to 8As shown, this embodiment discloses a photovoltaic energy storage mobile garage, including a fixed garage frame 1 and several mobile garage frames 2. The fixed garage frame 1 is installed on the ground, and the several mobile garage frames 2 are sequentially fitted from the inside out. Each mobile garage frame 2 is equipped with a moving guide rail 3 at its bottom, and each mobile garage frame 2 can move along the moving guide rail 3 into the fixed garage frame 1. Photovoltaic panels 4 are laid on the top of both the fixed garage frame 1 and the mobile garage frames 2. An energy storage battery is installed under the ground at the bottom of the mobile garage, and a charging pile is installed inside the mobile garage. The photovoltaic panels 4 are electrically connected to the energy storage battery to charge the energy storage battery; the energy storage battery is electrically connected to the charging pile to supply power to the charging pile. The movable guide rail 3 has grooves 32 on both sides, and the bottom of the movable garage frame 2 has downward extending baffles 21 on both sides. The baffles 21 are adapted to the grooves 32 and prevent debris from entering the movable guide rail 3 corresponding to the movable garage frame 2. When the movable garage frame 2 moves to a certain position on the movable guide rail 3, there are exposed movable guide rails 3 at both the front and rear ends of the movable garage frame 2. In order to prevent debris from entering the exposed movable guide rails 3, telescopic covers 13 are connected to both the front and rear ends of the movable garage frame 2. The telescopic covers 13 cover the movable guide rails 3 at the front and rear ends of the movable garage frame 2, thereby preventing debris from entering the movable guide rails 3 and affecting the movement of the movable garage frame 2.
[0030] In a preferred embodiment, since vehicles will run over the telescopic cover 13 at the front end of the mobile garage frame 2 when entering or exiting the mobile garage, the telescopic cover 13 needs to have a certain load-bearing capacity. Additionally, due to the limited space in front of the mobile garage, the space available for the telescopic cover 13 to extend and retract is limited, and the length of movement of the telescopic cover 13 is comparable to the telescopic travel of the mobile garage frame 2. To accommodate these installation conditions, a cover storage box 16 is installed at the front end of the mobile guide rail 3. The cover storage box 16 has a cover inlet / outlet 161 on the side facing the mobile guide rail 3. The telescopic cover 13... The cover plate storage box 16 can be accessed and exited through the cover plate inlet / outlet 161. The telescopic cover plate 13 includes several unit cover plates 100 connected end to end. The unit cover plates 100 can be interlocked and telescopically extended. The last unit cover plate 100 is connected to the front end of the mobile garage frame 2. When the mobile garage frame 2 moves forward, it pushes the telescopic cover plate 13 forward, and the unit cover plates 100 in the telescopic cover plate 13 enter the cover plate storage box 16 segment by segment. When the mobile garage frame 2 moves backward, it pulls the telescopic cover plate 13 backward, and the unit cover plates 100 in the telescopic cover plate 13 are pulled out of the cover plate storage box 16 segment by segment. By setting the cover plate storage box 16 at the front end of the mobile guide rail 3 and setting the telescopic cover plate 13 as several interlockable telescopic unit cover plates 100, the telescopic cover plate 13 can cover the mobile guide rail 3 with a certain load-bearing capacity while being able to telescopically enter the cover plate storage box 16 for storage without occupying a long amount of ground space.
[0031] Specifically, the unit cover 100 includes a top support plate 101 and two side telescopic plates 102. The two side telescopic plates 102 are symmetrically distributed on both sides of the bottom surface of the top support plate 101. Each side telescopic plate 102 has a downwardly extending cover baffle 103 on its outer side. When the unit cover 100 is closed on the moving guide rail 3, the cover baffle 103 matches the groove 32, thereby completely covering the moving guide rail 3 with the unit cover 100, preventing debris from entering the moving guide rail 3. The bottom surface of the top support plate 101 has two horizontally extending guide grooves 1011, and the top surface of the side telescopic plates 102 has two guide strips for matching the two guide grooves 1011 one by one. 1021, the two side telescopic plates 102 and the top support plate 101 are slidably connected based on the cooperation of guide strips 1021 and guide grooves 1011; the bottom surface of the top support plate 101 has a horizontally extending mounting groove 1012 in the middle, and the inner side of the two side telescopic plates 102 has mounting protrusions 1022 that slide and adapt to the mounting grooves 1012. A pressure spring 104 is embedded in the mounting groove 1012, and the two ends of the pressure spring 104 are respectively fixed to the mounting protrusions 1022 on the inner side of the two side telescopic plates 102. The pressure spring 104 provides an outward expansion elastic force for the two side telescopic plates 102, so that the two side telescopic plates 102 expand outward in a natural state. The lateral length of the top support plate 101 is equal to the lateral length of the moving guide rail 3.
[0032] Furthermore, the lateral length inside the cover plate storage box 16 is greater than the lateral length of the moving guide rail 3, and the longitudinal length inside the cover plate storage box 16 is greater than the longitudinal length of the unit cover plate 100. The cover plate storage box 16 is provided with a guide plate 162 that extends inward from the front end of the moving guide rail 3 and gradually expands. When the unit cover plate 100 enters the cover plate storage box 16 from the moving guide rail 3, the unit cover plate 100 enters along the guide plate 162. Under the elastic force of the pressure spring 104, the two side telescopic plates 102 gradually slide outward, and the lateral space at the bottom of the two side telescopic plates 102 increases, which can accommodate the entry of the next unit cover plate 100. This enables the effect of multiple unit cover plates 100 to be inserted and stacked, reducing the storage space of multiple unit cover plates 100. When the unit cover 100 is pulled out from the cover storage box 16 and placed on the moving guide rail 3, the unit cover 100 is pulled out along the guide plate 162. Under the pressure of the guide plate 162 gradually narrowing, the two side telescopic plates 102 gradually retract inward until the unit cover 100 is completely pulled out. Then the unit cover 100 is adapted to the moving guide rail 3 and completely placed on the moving guide rail 3.
[0033] Furthermore, in order to enable adjacent unit cover plates 100 to be connected end to end, the rear end of the top support plate 101 is provided with a downwardly extending connecting plate 1013, and the front end of the top support plate 101 is provided with a downwardly recessed connecting groove 1014. The connecting plate 1013 is adapted to the connecting groove 1014. When the adjacent unit cover plate 100 is in the extended state, the connecting strip of the previous unit cover plate 100 enters the connecting groove 1014 of the next unit cover plate 100, thereby completing the end-to-end connection of the two connecting plates 1013. When the adjacent unit cover plate 100 is in the retracted state, the connecting strip of the previous unit cover plate 100 disengages from the connecting groove 1014 of the next unit cover plate 100. In addition, to ensure a more stable connection between adjacent unit cover plates 100 when they are extended, and to avoid the problem of separation or breakage, a magnet is installed at the bottom of the connecting groove 1014, and the top support plate 101 is made of iron. Alternatively, magnets with opposite magnetic properties are installed at the bottom of the connecting groove 1014 and the bottom of the connecting plate 1013, so that when the connecting plate 1013 approaches the connecting groove 1014, it enters the connecting groove 1014 under the action of magnetic attraction, thereby ensuring a stable connection between adjacent unit cover plates 100 when they are extended.
[0034] The above description is only a preferred embodiment of the present utility model. Any technical solution that achieves the purpose of the present utility model by essentially the same means shall fall within the protection scope of the present utility model.
Claims
1. A photovoltaic energy storage mobile garage, characterized in that: The system includes a fixed garage frame (1) and several mobile garage frames (2). The fixed garage frame (1) is installed on the ground, and the several mobile garage frames (2) are fitted together sequentially from the inside out. Each mobile garage frame (2) is equipped with a moving guide rail (3) at its bottom, and each mobile garage frame (2) can move along the moving guide rail (3) into the fixed garage frame (1). The tops of both the fixed garage frame (1) and the mobile garage frames (2) are covered with photovoltaic panels (4). An energy storage battery is installed under the ground at the bottom of the mobile garage, and a charging station is installed inside the mobile garage. The photovoltaic panel (4) is electrically connected to the energy storage battery to charge the energy storage battery; the energy storage battery is electrically connected to the charging pile to supply power to the charging pile; the movable guide rail (3) has grooves (32) on both sides, and the bottom sides of the movable garage frame (2) have downward extending baffles (21) that are adapted to the grooves (32); the front and rear ends of the movable garage frame (2) are connected to telescopic covers (13), and the telescopic covers (13) cover the movable guide rails (3) at the front and rear ends of the movable garage frame (2).
2. The photovoltaic energy storage mobile garage according to claim 1, characterized in that: The front end of the moving guide rail (3) is equipped with a cover plate storage box (16). The cover plate storage box (16) has a cover plate inlet and outlet (161) on the side facing the moving guide rail (3). The telescopic cover plate (13) can enter and exit the cover plate storage box (16) through the cover plate inlet and outlet (161). The telescopic cover plate (13) includes several unit cover plates (100) connected end to end. The unit cover plates (100) can be inserted and extended by each other. The last unit cover plate (100) is connected to the front end of the mobile garage frame (2).
3. A photovoltaic energy storage mobile garage according to claim 2, characterized in that: The unit cover plate (100) includes a top support plate (101) and two side telescopic plates (102). The two side telescopic plates (102) are symmetrically distributed on both sides of the bottom surface of the top support plate (101). The outer sides of the two side telescopic plates (102) are provided with downwardly extending cover plates (103). When the unit cover plate (100) is closed on the moving guide rail (3), the cover plates (103) are adapted to the groove (32).
4. A photovoltaic energy storage mobile garage according to claim 3, characterized in that: The bottom surface of the top support plate (101) is provided with two laterally extending guide grooves (1011), and the top surface of the side telescopic plate (102) is provided with two guide strips (1021) for matching the two guide grooves (1011) one by one. The two side telescopic plates (102) and the top support plate (101) are slidably connected based on the cooperation of the guide strips (1021) and the guide grooves (1011); the bottom surface of the top support plate (101) is provided with a laterally extending guide groove in the middle. The mounting groove (1012) is extended, and the inner side of the two side telescopic plates (102) is provided with mounting protrusions (1022) that are slidably adapted to the mounting groove (1012). A pressure spring (104) is embedded in the mounting groove (1012). The two ends of the pressure spring (104) are respectively fixed to the mounting protrusions (1022) on the inner side of the two side telescopic plates (102). The pressure spring (104) provides the two side telescopic plates (102) with an outward expansion elastic force.
5. A photovoltaic energy storage mobile garage according to claim 4, characterized in that: The lateral length of the top support plate (101) is equal to the lateral length of the moving guide rail (3).
6. A photovoltaic energy storage mobile garage according to claim 4, characterized in that: The lateral length inside the cover storage box (16) is greater than the lateral length of the moving guide rail (3).
7. A photovoltaic energy storage mobile garage according to claim 4, characterized in that: The longitudinal length inside the cover storage box (16) is greater than the longitudinal length of the unit cover (100).
8. A photovoltaic energy storage mobile garage according to claim 4, characterized in that: The inside of the cover storage box (16) is provided with a guide plate (162) that extends inward from the front end of the moving guide rail (3) and gradually expands.
9. A photovoltaic energy storage mobile garage according to claim 4, characterized in that: The top support plate (101) has a downwardly extending connecting plate (1013) at its rear end and a downwardly recessed connecting groove (1014) at its front end. The connecting plate (1013) is adapted to the connecting groove (1014).
10. A photovoltaic energy storage mobile garage according to claim 9, characterized in that: Magnets with opposite magnetic properties are respectively installed at the bottom of the connecting groove (1014) and the bottom of the connecting plate (1013).
Citation Information
Patent Citations
Novel solar power supply movable telescopic garage
CN204326618U