Photovoltaic energy storage telescopic mobile garage
By laying photovoltaic panels on the mobile garage and powering with energy storage batteries, the expansion and contraction of the mobile garage is automatically controlled, which solves the problem of manual operation in the existing technology, and achieves a physical strength-saving and convenient automatic expansion and contraction effect.
Patent Information
- Application Number
- CN202510784475.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2025-08-08
AI Technical Summary
The telescopic control of the existing telescopic mobile garage mainly relies on manual operation, which is inconvenient to use and exhausting physical strength, and cannot meet the convenience needs of most people.
Photovoltaic panels are laid on the fixed garage frame and the mobile garage frame, and solar energy is used to generate electricity and store energy. The dual-axis motor is powered by energy storage batteries to realize automatic telescopic control of the mobile garage frame, combining conductive slide rails and limit wheel sets to ensure smooth movement and stability.
It realizes automated telescopic control of mobile garages, saves physical strength, improves convenience and flexibility in use, and adapts to parking needs in various scenarios.
Smart Images

Figure CN120443899A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of mobile garages, and in particular relates to a photovoltaic energy storage telescopic mobile garage. Background Art
[0002] As car ownership increases, the demand for garages is also growing. However, due to space constraints and construction approval requirements, it is impossible to build fixed garages in many areas. However, mobile garages are more and more popular due to their flexible installation, simple construction approval requirements, and low cost.
[0003] A telescopic mobile garage is a mobile garage that can be extended and adjusted according to people's usage needs, thereby improving the flexibility of garage use. When the mobile garage is in the retracted state, the space occupied by the mobile garage is reduced, and there is a larger space in front of the mobile garage, which is convenient for cars to enter the parking space; when the mobile garage is in the extended state, it serves as an indoor parking space. Therefore, the telescopic mobile garage has smaller parking space requirements. It can increase the space in front of the mobile garage by retracting, and it is more feasible to install in a smaller space.
[0004] However, the telescopic control of the telescopic mobile garage currently relies mainly on manual operation. As shown in the Chinese patent document with patent authorization announcement number CN203321004U, it discloses a telescopic mobile garage that requires shaking a handle to control the telescopic operation of the mobile garage. The use of the telescopic mobile garage is not very convenient and requires a lot of physical strength. Summary of the Invention
[0005] In order to overcome at least some of the deficiencies in the prior art, the present invention provides a photovoltaic energy storage telescopic mobile garage.
[0006] The technical solution provided by the present invention is: The photovoltaic energy storage telescopic 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 from the inside to the outside. The bottom of each mobile garage frame is equipped with a movable guide rail, and each mobile garage frame can move along the movable guide rail into the fixed garage frame; the tops of the fixed garage frame and the mobile garage frame are paved with photovoltaic panels, and energy storage batteries are installed under the ground at the bottom of the mobile garage. A charging pile is installed in the mobile garage, and the photovoltaic panels are electrically connected to the energy storage batteries to charge the energy storage batteries; the energy storage batteries and the charging piles are electrically connected to the charging piles. The charging pile is electrically connected to the charging pile to supply power to the charging pile; two sets of moving rollers are provided at the bottom of the mobile garage frame, and two sets of tracks for cooperating with the two sets of moving rollers are installed on the moving guide rail; a dual-axis motor is installed at the rear end of the mobile garage frame, and driving gears are installed on the two output shafts of the dual-axis motor, and two sets of racks for meshing with the driving gears on the two output shafts are installed on the moving guide rail; the two sets of racks are respectively located on the outside of the two sets of tracks, and the mobile garage frame is based on the dual-axis motor to drive the driving gear to rotate, and the driving gear is engaged with the rack to achieve forward and backward movement.
[0007] As a further technical solution of the present invention, the movable guide rail is provided with a slide groove, a conductive slide rail is installed in the slide groove, and a conductive rod extending downward into the slide groove is provided at the bottom of the mobile garage frame. The bottom of the conductive rod is connected to a conductive slider, and the conductive slider slides in cooperation with the conductive slide rail. The top of the conductive rod is connected to the photovoltaic panel through a wire.
[0008] As a further technical solution of the present invention, grooves are provided on both sides of the movable guide rail, and downwardly extending baffles are provided on both sides of the bottom of the mobile garage frame, and the baffles are adapted to the grooves. The front and rear ends of the mobile garage frame are connected with telescopic covers, and the telescopic covers cover the movable guide rails at the front and rear ends of the mobile garage frame.
[0009] As a further technical solution of the present invention, two sets of limiting wheel groups are also provided at the bottom of the mobile garage frame, and the two sets of limiting wheel groups are respectively arranged on the outside of the two sets of racks. Two downwardly concave limiting grooves are provided on the mobile guide rail, and limiting strips for matching the two sets of limiting wheel groups are installed in the two limiting grooves. The limiting strips are located on the inner side of the limiting wheel groups, and the lateral limitation of the mobile garage frame on the mobile guide rail is achieved through the cooperation of the limiting wheel groups and the limiting strips.
[0010] As a further technical solution of the present invention, the limiting wheel group includes a mounting plate, several mounting shafts and several limiting wheels. The mounting plate is installed at the bottom of the mobile garage frame and extends along the front and rear directions of the mobile garage frame. Several mounting shafts extend downward and are evenly spaced and installed at the bottom of the mounting plate. The limiting wheels are installed one-to-one at the bottom of the mounting shafts, and the side walls of the limiting wheels are adapted to the limiting bars.
[0011] As a further technical solution of the present invention, an obstacle detection radar is installed at the front end of the frontmost mobile garage frame.
[0012] As a further technical solution of the present invention, a cover storage box is installed at the front end of the movable guide rail, and a cover inlet and outlet are opened on the side of the cover storage box facing the movable guide rail, and the telescopic cover can enter and exit the cover storage box through the cover inlet and outlet; the telescopic cover includes several sections of unit cover plates connected end to end, and the unit cover plates can be plugged in and telescoped with each other, and the unit cover plate at the rear end is connected to the front end of the mobile garage frame.
[0013] As a further technical solution of the present invention, the unit cover includes a top support plate and two side telescopic plates. The two side telescopic plates are mirror-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 baffles. When the unit cover is closed on the movable guide rail, the cover baffles are adapted to the grooves.
[0014] As a further technical solution of the present invention, the bottom surface of the top support plate is provided with two laterally 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, and the two side telescopic plates and the top support plate are slidably connected based on the cooperation of the guide strips and the guide grooves; the middle part of the bottom surface of the top support plate is provided with a laterally extending mounting groove, and the inner sides of the two side telescopic plates are provided with mounting protrusions that slidably match the mounting grooves, and 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 sides of the two side telescopic plates, and the pressure spring provides elastic force for the two side telescopic plates to expand outward.
[0015] As a further technical solution of the present invention, the lateral length of the top support plate is equal to the lateral length of the movable guide rail.
[0016] The beneficial effects of the present invention are as follows: the mobile garage of the present invention lays photovoltaic panels on the fixed garage frame and the mobile garage frame, so that the mobile garage can use solar energy to generate electricity and store the electrical energy in the energy storage battery. The energy storage battery powers the dual-axis motor, so that the mobile garage frame can move back and forth along the moving guide rail, and there is no need to manually push the mobile garage to extend or retract, which saves physical effort while ensuring the smooth movement of the mobile garage. The extension and retraction control of the mobile garage is more convenient and better meets the usage needs of most people. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a three-dimensional diagram of the mobile garage in this embodiment; Figure 2 This is a schematic diagram of the end structure of the mobile garage frame connected to the mobile guide rail in this embodiment; Figure 3This is a schematic top view of the structure of the mobile garage frame connected to the mobile guide rails in this embodiment; Figure 4 This is a structural diagram of the telescopic cover entering the cover storage box in this embodiment; Figure 5 is a three-dimensional diagram of the unit cover of this embodiment; Figure 6 This is an exploded view of the unit cover of this embodiment; Figure 7 is a three-dimensional diagram of the top support plate of this embodiment; Figure 8 It is a three-dimensional view of the side telescopic plate of this embodiment. DETAILED DESCRIPTION
[0018] To make the objectives, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
[0019] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, top, bottom, inside, outside, vertical, horizontal, longitudinal, counterclockwise, clockwise, circumferential, radial, axial...), then the directional indication is only used to explain the relative position relationship, movement status, etc. between the various components in a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0020] In addition, if there are descriptions involving "first" or "second" in the embodiments of the present invention, the descriptions of "first" or "second" are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that ordinary technicians in this field can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0021] like Figures 1 to 8As shown, this embodiment discloses a photovoltaic energy storage telescopic 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 several mobile garage frames 2 are sequentially installed from the inside to the outside, and the bottom of each mobile garage frame 2 is provided with a movable guide rail 3, and each mobile garage frame 2 can move along the movable guide rail 3 into the fixed garage frame 1; the tops of the fixed garage frame 1 and the mobile garage frame 2 are paved with photovoltaic panels 4, and energy storage batteries are installed under the ground at the bottom of the mobile garage, and a charging pile is installed in the mobile garage, the photovoltaic panels 4 are electrically connected to the energy storage batteries to charge the energy storage batteries; the energy storage batteries are electrically connected to the charging piles to supply power to the charging piles; two groups of mobile rollers 5 are provided at the bottom of the mobile garage frame 2, and two groups of tracks 6 for cooperating with the two groups of mobile rollers 5 are installed on the mobile guide rail 3; a dual-axis motor 7 is installed at the rear end of the mobile garage frame 2, and driving gears 8 are installed on the two output shafts of the dual-axis motor 7. Two sets of racks 9 are installed on it for meshing with the driving gears 8 on the two output shafts in a one-to-one manner; the two sets of racks 9 are respectively located on the outside of the two sets of rails 6, and the mobile garage frame 2 is based on the dual-axis motor 7 to drive the driving gear 8 to rotate, and the driving gear 8 is engaged with the racks 9 to achieve forward and backward movement; the movable guide rail 3 is provided with a slide groove 31, and a conductive slide rail 10 is installed in the slide groove 31. The bottom of the mobile garage frame 2 is provided with a conductive rod 11 extending downward into the slide groove 31, and the bottom of the conductive rod 11 is connected to a conductive slider 12, and the conductive slider 12 slides with the conductive slide rail 10. The top of the conductive rod 11 is connected to the photovoltaic panel 4 through a wire. The photovoltaic panel 4 uses the solar energy generated by the solar energy to transmit the electric energy to the conductive rod 11 through the wire, and then transmits it to the energy storage battery for energy storage through the conductive slider 12 and the conductive slide rail 10. The conductive slider 12 slides with the conductive slide rail 10, so that the mobile garage frame 2 can still maintain the electrical connection between the photovoltaic panel 4 and the energy storage battery when moving back and forth. Specifically, the track 6 and the rack 9 both extend in parallel along the length direction of the movable guide rail 3 , thereby guiding the movable garage rack 2 to move forward and backward.
[0022] As a preferred embodiment, in order to prevent sand and other debris on the ground from falling into the moving guide rails 3 and affecting the movement of the mobile garage frame 2, grooves 32 are provided on both sides of the moving guide rails 3, and downwardly extending baffles 21 are provided on both sides of the bottom of the mobile garage frame 2, and the baffles 21 are adapted to the grooves 32, and the baffles 21 are used to block debris from entering the moving guide rails 3 corresponding to the mobile garage frame 2; and when the mobile garage frame 2 moves to a certain position on the moving guide rails 3, there are exposed moving guide rails 3 at the front and rear ends of the mobile garage frame 2. In order to prevent debris from entering the exposed moving guide rails 3, the front and rear ends of the mobile garage frame 2 are connected to telescopic cover plates 13, and the telescopic cover plates 13 cover the moving guide rails 3 at the front and rear ends of the mobile garage frame 2, thereby preventing debris from entering the moving guide rails 3 and affecting the movement of the mobile garage frame 2. This embodiment can also improve the power connection safety of the mobile garage rack 2 by fully covering the movable guide rail 3 to prevent debris from entering, preventing debris from entering the chute 31 and affecting the conductive effect between the conductive slider 12 and the conductive slide rail 10.
[0023] Specifically, in order to improve the stability of the movement of the mobile garage frame 2, two sets of limiting wheel groups 14 are further provided at the bottom of the mobile garage frame 2, and the two sets of limiting wheel groups 14 are respectively arranged on the outer sides of the two sets of racks 9. The moving guide rail 3 is provided with two downwardly recessed limiting grooves 33, and the two limiting grooves 33 are both installed with limiting bars 15 for one-to-one adaptation with the two sets of limiting wheel groups 14. The limiting bars 15 are located on the inner side of the limiting wheel groups 14. The limiting wheel groups 14 cooperate with the limiting bars 15 to realize the lateral limitation of the mobile garage frame 2 on the moving guide rail 3, thereby improving the stability of the movement of the mobile garage frame 2. At the same time, this embodiment realizes limitation through the limiting wheel groups 14. When the mobile garage frame 2 moves, the limiting wheel groups 14 rolls along the limiting bars 15, which can better maintain the smoothness of the movement of the mobile garage frame 2 and avoid the problems of increased sliding friction, large movement resistance and large noise when the mobile garage frame 2 moves. The limiting wheel group 14 includes a mounting plate 141, several mounting shafts 142 and several limiting wheels 143. The mounting plate 141 is installed at the bottom of the mobile garage frame 2 and extends along the front and rear directions of the mobile garage frame 2. Several mounting shafts 142 extend downward and are evenly spaced and installed at the bottom of the mounting plate 141. The limiting wheels 143 are installed one by one at the bottom of the mounting shafts 142. The side walls of the limiting wheels 143 are adapted to the limiting bars 15.
[0024] When a vehicle enters or exits a telescopic mobile garage, the mobile garage frame 2 is first controlled to move and retract into the fixed garage frame 1, leaving space in front of the telescopic mobile garage for vehicles to enter and exit. Compared to non-telescopic mobile garages, a telescopic mobile garage does not require much additional space in front of the garage beyond the area occupied by the garage itself. The mobile garage frame 2 can be retracted into the fixed garage frame 1 to increase the space for vehicles to enter and exit. Non-telescopic mobile garages, on the other hand, require planning for the area occupied by the garage itself as well as sufficient space in front of the garage for vehicles to enter and exit. This requires planning for a larger amount of ground space, and therefore lacks the convenience and flexibility of a telescopic mobile garage. Before a vehicle enters the telescopic mobile garage, the mobile garage frame 2 is first moved and retracted into the fixed garage frame 1, and then the vehicle is driven into the parking space corresponding to the telescopic mobile garage, and then the mobile garage frame 2 is controlled to move and extend outside the fixed garage frame 1, thereby covering the vehicle; and when the mobile garage frame 2 is extended forward, it is necessary to ensure that the vehicle is in the parking space, otherwise the mobile garage frame 2 will collide with the vehicle. In order to avoid the occurrence of collision accidents, an obstacle detection radar is installed at the front end of the frontmost mobile garage frame 2, which detects whether there is an obstacle in front of the mobile garage frame 2 through the obstacle detection radar. If there is an obstacle in front, the mobile garage frame 2 stops moving forward and issues an alarm.
[0025] As a preferred embodiment, since the vehicle will roll over the telescopic cover 13 at the front end of the mobile garage frame 2 when entering or leaving the mobile garage, the telescopic cover 13 needs to have a certain load-bearing capacity. In addition, since the space reserved in front of the mobile garage is small, there is not much space for the telescopic cover 13 to be retracted and hidden, and the length of the telescopic cover 13 movement is equivalent to the telescopic movement stroke of the mobile garage frame 2. In order to adapt to the installation conditions, a cover storage box 16 is installed at the front end of the mobile guide rail 3, and a cover inlet and outlet 161 is opened on the side of the cover storage box 16 facing the mobile guide rail 3. The cover plate storage box 16 can be entered and exited through the cover plate entrance and exit 161. The telescopic cover plate 13 includes a plurality of unit cover plates 100 connected end to end. The unit cover plates 100 can be plugged and retracted with each other. The unit cover plate 100 at the rear end is connected to the front end of the mobile garage frame 2. When the mobile garage frame 2 moves forward, the telescopic cover plate 13 is pushed forward, and the unit cover plates 100 in the telescopic cover plate 13 enter the cover plate storage box 16 section by section. When the mobile garage frame 2 moves backward, the telescopic cover plate 13 is pulled backward, and the unit cover plates 100 in the telescopic cover plate 13 are pulled out of the cover plate storage box 16 section by section. By arranging the cover plate storage box 16 at the front end of the movable guide rail 3 and configuring the telescopic cover plate 13 as a plurality of pluggable and retractable unit cover plates 100, the telescopic cover plate 13 covers the movable guide rail 3 with a certain load-bearing capacity, and can be retracted and stored in the cover plate storage box 16 without occupying a large amount of ground space.
[0026] Specifically, the unit cover 100 includes a top support plate 101 and two side telescopic plates 102. The two side telescopic plates 102 are mirror-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 baffles 103. When the unit cover 100 is covered on the movable guide rail 3, the cover baffles 103 are adapted to the grooves 32, so that the unit cover 100 completely covers the movable guide rail 3 to prevent debris from entering the movable guide rail 3; the bottom surface of the top support plate 101 is provided with two transversely extending guide grooves 1011, and the top surface of the side telescopic plate 102 is provided with two guide strips for one-to-one adaptation to the two guide grooves 1011. 1021. The two side telescopic plates 102 are slidably connected to the top support plate 101 based on the cooperation of the guide bars 1021 and the guide grooves 1011. A transversely extending mounting groove 1012 is provided in the middle of the bottom surface of the top support plate 101. The inner sides of the two side telescopic plates 102 are provided with mounting protrusions 1022 that slidably fit into the mounting grooves 1012. A pressure spring 104 is embedded in the mounting grooves 1012. The ends of the pressure spring 104 are respectively fixed to the mounting protrusions 1022 on the inner sides of the two side telescopic plates 102. The pressure spring 104 provides elastic force for the two side telescopic plates 102 to expand outward, allowing the two side telescopic plates 102 to expand outward in a natural state. The horizontal length of the top support plate 101 is equal to the horizontal length of the movable guide rail 3.
[0027] Furthermore, the transverse length of the interior of the cover plate storage box 16 is greater than the transverse length of the movable guide rail 3, and the longitudinal length of the interior of the cover plate storage box 16 is greater than the longitudinal length of the unit cover plate 100. A guide plate 162 is provided inside the cover plate storage box 16, extending inward from the front end of the movable guide rail 3 and gradually expanding. When the unit cover plate 100 enters the cover plate storage box 16 from the movable 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 transverse space at the bottom of the two side telescopic plates 102 increases to accommodate the entry of the next unit cover plate 100, thereby achieving the effect of plugging and stacking multiple unit cover plates 100 and reducing the space required to store multiple unit cover plates 100. When the unit cover 100 is pulled out from the cover storage box 16 and covered on the movable guide rail 3, the unit cover 100 is pulled out along the guide plate 162. Under the pressure of the gradually narrowing guide plate 162, the two side telescopic plates 102 gradually shrink inward until the unit cover 100 is completely pulled out. At this time, the unit cover 100 is adapted to the movable guide rail 3 and completely covers the movable guide rail 3.
[0028] 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, and the connecting plate 1013 is adapted to the connecting groove 1014. When the adjacent unit cover plates 100 are in the extended state, the connecting strip of the previous unit cover plate 100 enters the connecting groove 1014 of the subsequent unit cover plate 100, thereby completing the end-to-end connection of the two connecting plates 1013; when the adjacent unit cover plates 100 are in the retracted state, the connecting strip of the previous unit cover plate 100 is detached from the connecting groove 1014 of the subsequent unit cover plate 100. In addition, in order to make the adjacent unit cover plates 100 more stably connected end to end when in the extended state and avoid the problem of separation and fault, a magnet is installed at the bottom of the connecting groove 1014, and the top support plate 101 is made of iron, or magnets with opposite magnetic properties are installed at the bottom of the connecting groove 1014 and the bottom of the connecting plate 1013 respectively, so that when the connecting plate 1013 is close to the connecting groove 1014, under the action of the magnetic adsorption force, the connecting plate 1013 enters the connecting groove 1014, so that the adjacent unit cover plates 100 can maintain a stable connection in the extended state.
[0029] The above descriptions are merely preferred embodiments of the present invention. Any technical solution that achieves the purpose of the present invention by substantially the same means shall fall within the scope of protection of the present invention.
Claims
1. Photovoltaic energy storage retractable mobile garage, characterized by: The invention comprises a fixed garage frame (1) and a plurality of mobile garage frames (2), wherein the fixed garage frame (1) is installed on the ground, and the plurality of mobile garage frames (2) are fitted in sequence from the inside to the outside, and the bottom of each mobile garage frame (2) is provided with a movable guide rail (3), and each mobile garage frame (2) can move along the movable guide rail (3) into the fixed garage frame (1); the tops of the fixed garage frame (1) and the mobile garage frame (2) are both paved with photovoltaic panels (4), an energy storage battery is installed under the ground at the bottom of the mobile garage, and a charging pile is installed in 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 Two groups of moving rollers (5) are provided at the bottom of the mobile garage frame (2), and two groups of rails (6) for cooperating with the two groups of moving rollers (5) are installed on the moving guide rail (3); a double-axis motor (7) is installed at the rear end of the mobile garage frame (2), and driving gears (8) are installed on the two output shafts of the double-axis motor (7), and two groups of racks (9) for meshing with the driving gears (8) on the two output shafts are installed on the mobile guide rail (3); the two groups of racks (9) are respectively located on the outside of the two groups of rails (6), and the mobile garage frame (2) drives the driving gear (8) to rotate based on the double-axis motor (7), and the driving gear (8) meshes with the racks (9) to achieve forward and backward movement.
2. The photovoltaic energy storage telescopic mobile garage according to claim 1 is characterized by: The movable guide rail (3) is provided with a slide groove (31), a conductive slide rail (10) is installed in the slide groove (31), a conductive rod (11) is provided at the bottom of the mobile garage frame (2) and extends downward into the slide groove (31), a conductive slider (12) is connected to the bottom of the conductive rod (11), the conductive slider (12) is in sliding engagement with the conductive slide rail (10), and the top of the conductive rod (11) is connected to the photovoltaic panel (4) via a wire.
3. The photovoltaic energy storage telescopic mobile garage according to claim 2 is characterized by: Grooves (32) are provided on both sides of the movable guide rail (3), downwardly extending baffles (21) are provided on both sides of the bottom of the movable garage frame (2), the baffles (21) are adapted to the grooves (32), and the front and rear ends of the movable garage frame (2) are both 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).
4. The photovoltaic energy storage telescopic mobile garage according to claim 1, characterized in that: The bottom of the mobile garage frame (2) is further provided with two groups of limiting wheel groups (14), which are respectively arranged on the outside of the two groups of racks (9). The movable guide rail (3) is provided with two downwardly concave limiting grooves (33), and limiting strips (15) for matching the two groups of limiting wheel groups (14) are installed in the two limiting grooves (33). The limiting strips (15) are located on the inner side of the limiting wheel groups (14). The lateral limitation of the mobile garage frame (2) on the movable guide rail (3) is achieved by the cooperation between the limiting wheel groups (14) and the limiting strips (15).
5. The photovoltaic energy storage telescopic mobile garage according to claim 4 is characterized in that: The limiting wheel group (14) comprises a mounting plate (141), a plurality of mounting shafts (142) and a plurality of limiting wheels (143). The mounting plate (141) is mounted on the bottom of the mobile garage frame (2) and extends in the front-to-rear direction of the mobile garage frame (2). The plurality of mounting shafts (142) extend downward and are evenly spaced and mounted on the bottom of the mounting plate (141). The limiting wheels (143) are mounted on the bottom of the mounting shafts (142) in a one-to-one correspondence. The side walls of the limiting wheels (143) are adapted to the limiting bars (15).
6. The photovoltaic energy storage telescopic mobile garage according to claim 1, characterized in that: The front end of the front-most mobile garage frame (2) is equipped with an obstacle detection radar.
7. The photovoltaic energy storage telescopic mobile garage according to claim 1, characterized in that: A cover plate storage box (16) is installed at the front end of the movable guide rail (3), and a cover plate inlet and outlet (161) is provided on a side of the cover plate storage box (16) facing the movable guide rail (3), and 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 a plurality of unit cover plates (100) connected end to end, and the unit cover plates (100) can be plugged into and telescoped with each other, and the rearmost unit cover plate (100) is connected to the front end of the movable garage frame (2).
8. The photovoltaic energy storage telescopic mobile garage according to claim 7, characterized in that: The unit cover plate (100) comprises a top support plate (101) and two side telescopic plates (102), wherein the two side telescopic plates (102) are distributed on both sides of the bottom surface of the top support plate (101) in a mirror-symmetrical manner, and the outer sides of the two side telescopic plates (102) are provided with downwardly extending cover plate baffles (103), and when the unit cover plate (100) is covered on the movable guide rail (3), the cover plate baffles (103) are adapted to the grooves (32).
9. The photovoltaic energy storage telescopic mobile garage according to claim 8, characterized in that: The bottom surface of the top support plate (101) is provided with two transversely extending guide grooves (1011), and the top surface of the side telescopic plate (102) is provided with two guide bars (1021) for matching the two guide grooves (1011) one by one. The two side telescopic plates (102) and the top support plate (101) are both slidably connected based on the matching of the guide bars (1021) and the guide grooves (1011); the middle of the bottom surface of the top support plate (101) is provided with a transversely extending guide groove (1011). The two side telescopic plates (102) are provided with mounting protrusions (1022) that are slidably adapted to the mounting grooves (1012) on the inner sides thereof, and a pressure spring (104) is embedded in the mounting grooves (1012). The two ends of the pressure spring (104) are respectively fixed to the mounting protrusions (1022) on the inner sides of the two side telescopic plates (102). The pressure spring (104) provides elastic force for the two side telescopic plates (102) to expand outwards.
10. The photovoltaic energy storage telescopic mobile garage according to claim 9, characterized in that: The lateral length of the top support plate (101) is equal to the lateral length of the movable guide rail (3).
Citation Information
Patent Citations
Retractable mobile garage
CN203321004U