Solar photovoltaic panel aluminum profile guide bracket
By introducing a sliding base plate, a support plate and a driving mechanism into the aluminum profile guide bracket of the solar photovoltaic panel, two-way transportation and angle adjustment of the photovoltaic panel are achieved, which solves the flexibility and applicability problems of the existing device and improves the use effect of the guide bracket.
Patent Information
- Application Number
- CN202510859543.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-09-16
AI Technical Summary
The existing solar photovoltaic panel aluminum profile guide bracket device adopts a one-way conveying structure design, which cannot flexibly adjust the conveying angle and position of the photovoltaic panel and cannot be used for photovoltaic panels of different specifications, thereby reducing its use effect.
A guide bracket is designed, which includes components such as a sliding base plate, a lower support plate, an upper support plate, a feed roller and a cylinder. Through driving mechanisms such as screw rods, cylinders and motors, bidirectional transportation, angle adjustment and fixation of photovoltaic panels are achieved, which is suitable for the installation of photovoltaic panels of different specifications.
It realizes the two-way transportation and angle adjustment of photovoltaic panels, improves the flexibility and stability of guided transportation, can adapt to the installation of photovoltaic panels of different specifications, and improves the use effect.
Smart Images

Figure CN120646389A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of photovoltaic panel related technologies, and more specifically relates to an aluminum profile guide bracket for a solar photovoltaic panel. Background Art
[0002] The solar photovoltaic panel aluminum profile guide bracket is a bracket structure used in the photovoltaic panel transportation process to guide and convey the photovoltaic panels. After the photovoltaic panels leave the factory, the sheet-shaped photovoltaic panels need to be loaded into a wooden box. Specifically, the box has a side socket. The photovoltaic panel needs to be moved horizontally to one side of the socket and finally loaded into the box through the socket.
[0003] Patent document CN112389732A describes a solar photovoltaic panel aluminum profile guide bracket device, comprising: a bracket body; a guide plate disposed above the bracket body; a guide roller mechanism mounted on the bracket body and located below the guide plate; the guide roller mechanism comprising a plurality of rollers arranged in sequence; a drive mechanism for driving the plurality of rollers to rotate; and a guide groove formed on the top of the guide plate. The plurality of rollers are used to support the photovoltaic panel, with the upper side of the photovoltaic panel located in the guide groove; the rotation of the plurality of rollers causes the photovoltaic panel to move from one side of the guide plate to the other. Furthermore, the device ensures stable transport of the photovoltaic panel, thereby preventing the panel from colliding with the socket of the box.
[0004] The above-mentioned photovoltaic panel aluminum profile guide bracket device has certain shortcomings when in use. The above-mentioned guide bracket device adopts a one-way conveying structure design, so that the guide bracket device can only complete the conveying operation of one photovoltaic panel at a time when in use, and the conveying angle and conveying position of the photovoltaic panel cannot be flexibly adjusted, which reduces its flexibility in guiding and conveying. At the same time, it cannot be used for photovoltaic panels of different specifications, reducing its use effect. Summary of the Invention
[0005] The purpose of the present invention is to provide a solar photovoltaic panel aluminum profile guide bracket, which can solve the existing problems.
[0006] The problems solved by the present invention are:
[0007] 1. The above-mentioned guide bracket device adopts a one-way conveying structure design, so that the guide bracket device can only complete the conveying operation of one photovoltaic panel at a time when in use, and the conveying angle and conveying position of the photovoltaic panel cannot be flexibly adjusted, which reduces its flexibility in guiding and conveying. At the same time, it cannot be used for photovoltaic panels of different specifications, which reduces its use effect.
[0008] The purpose of the present invention can be achieved through the following technical solutions:
[0009] The lifting mechanism is a kind of lifting mechanism that lifts up and down of upper sprocket wheel, and the lifting mechanism is a kind of lifting mechanism that lifts up and down of lower sprocket wheel, the lifting mechanism being that lifts up and down of lower sprocket.
[0010] As a further technical solution of the present invention, the upper support plate and the lifting card strip are driven by a screw rod, and the screw rod is movably installed in the middle position of the inner side of the upper support plate. The sliding base plate and the movable card plate are driven by a cylinder, and the cylinder is installed inside the sliding base plate. The movement of the two groups of sliding base plates can be used to adjust the installation position of the photovoltaic panel on the sliding base plate. At the same time, when the photovoltaic panel completes the position adjustment, the position of the lifting card strip on the upper support plate can be adjusted. By moving the lifting card strip downward, the upper ends of the two groups of photovoltaic panels are limited and fixed at the same time.
[0011] As a further technical solution of the present invention, telescopic rods are movably installed at both ends of the cylinder, one end of the telescopic rod is docked and fixed with the movable pallet, and a guide wheel is movably installed on the outer surface of one side of the movable pallet. The interior of the cylinder is a double-cavity structure, so that the cylinder can drive the two sets of telescopic rods to move synchronously at the same time. When the user places the two sets of photovoltaic panels obliquely on both sides of the lower support plate and the upper support plate, the cylinder is used to drive the two sets of telescopic rods, so that the two sets of telescopic rods drive the movable pallet to move, and the photovoltaic panels are driven by the movable pallet, thereby adjusting the inclination angle of the photovoltaic panels.
[0012] As a further technical solution of the present invention, the sliding base plate and the feed roller are movably connected by a rotating rod. An electric motor for use with the rotating rod is installed inside the sliding base plate. Several groups of rotating rods and the motor are driven by chains and gears. A partition plate is provided in the middle of the sliding base plate. When in use, the motor is used to drive the gear, so that the gear drives the chain, and the chain drives several groups of rotating rods, thereby driving several groups of feed rollers to rotate, and the feed rollers are used to guide and convey the photovoltaic panels placed on the sliding base plate.
[0013] As a further technical solution of the present invention, a threaded sleeve for use with a screw rod is fixedly installed in the middle position of the inner side of the lifting strip, and docking sliders are fixedly installed on both sides of the threaded sleeve on the inner side of the lifting strip. Because the height of the upper end of the photovoltaic panel is different in different tilt states, the screw rod can be used to drive the lifting strip to move up and down through the threaded sleeve. The lifting strip is sleeved on the outer surface of the upper support plate, so that the lifting strip can limit and fix the upper ends of the photovoltaic panels on both sides of the upper support plate to avoid tipping over of the photovoltaic panels during transfer.
[0014] As a further technical solution of the present invention, both ends of the telescopic plate are provided with several groups of limit slots, and the limit slots and the lower support plate are fixed by connecting rods. The outer surfaces of both sides of the upper support plate are provided with docking grooves for use with the support frame. The telescopic plate can be used to adjust the use height between the lower support plate and the upper support plate, so that the guide bracket can be suitable for the installation operation of solar photovoltaic panels of different heights. The setting of the support frame can improve the stability of the lower support plate and the upper support plate during use, and play a reinforcement role.
[0015] As a further technical solution of the present invention, the support frame has an L-shaped structure as a whole, and a lifting rod is movably installed inside the support frame. Several sets of side pulleys are movably installed on both sides of the lower support plate and the upper support plate. By utilizing the setting of the side pulleys, the friction force on the lower support plate and the upper support plate can be reduced when the photovoltaic panel moves, so that the photovoltaic panel can be moved out from both sides of the lower support plate and the upper support plate. The setting of the lifting rod gives the support frame a lifting adjustment structure, so that the support frame can be adjusted arbitrarily according to the use height of the upper support plate.
[0016] As a further technical solution of the present invention, the inner side of the upper support plate is provided with a vertical slide groove used to cooperate with the threaded sleeve and the docking slider, and the inner side of the telescopic plate is provided with a docking card groove used to cooperate with the vertical slide groove. When the upper support plate is reset, the vertical slide groove and the docking card groove overlap with each other. By utilizing the setting of the docking card groove, the threaded sleeve and the docking slider can move up and down on the inner side of the upper support plate.
[0017] As a further technical solution of the present invention, a movable base plate is movably installed on the outer surface of the lower end of the sliding base plate, and the sliding base plate and the movable base plate are slidably connected through a second slide groove. A slide buckle is provided in the middle part of the outer surface of the lower end of the sliding base plate for use with the second slide groove. The second slide groove is used in conjunction with the slide buckle structure at the bottom of the movable base plate, so that the sliding base plate can be translated to both sides, thereby improving the guiding flexibility of the photovoltaic panels on the sliding base plate.
[0018] As a further technical solution of the present invention, the upper end of the sliding base is provided with a first sliding groove used in conjunction with the moving pallet, and the bottom of the moving base is provided with moving casters.
[0019] Beneficial effects of the present invention:
[0020] 1. By setting up a movable card plate and a sliding bottom plate, the solar photovoltaic panel aluminum profile guide bracket has a two-way feeding structure when in use. With the use of the lower support plate and the upper support plate, it can complete the guided transportation of two groups of solar photovoltaic panel aluminum profiles at the same time, thereby improving its use effect;
[0021] During operation, because the lower support plate and the upper support plate are arranged in the middle position of the sliding base plate, a T-shaped structure is formed between the lower support plate, the upper support plate and the sliding base plate, so that photovoltaic panels can be placed on both sides of the lower support plate and the upper support plate. The user places the photovoltaic panel obliquely on both sides of the lower support plate and the upper support plate, so that the lower end of the photovoltaic panel contacts the feed roller, and the upper end of the photovoltaic panel contacts the side pulley. When in use, the motor drives the gear, so that the gear drives the chain, and the chain drives several sets of rotating rods, thereby driving several sets of feed rollers to rotate, and the feed rollers are used to guide and convey the photovoltaic panels placed on the sliding base plate, so that the two sets The photovoltaic panels extend from both sides of the lower support plate and the upper support plate respectively. Secondly, the telescopic plate can be used to adjust the use height between the lower support plate and the upper support plate, so that the guide bracket can be suitable for the installation operation of solar photovoltaic panels of different heights. The setting of the support frame can improve the stability of the lower support plate and the upper support plate during use, and play a reinforcement role. The setting of the side pulleys can reduce the friction on the lower support plate and the upper support plate when the photovoltaic panels move, so that the photovoltaic panels can be moved out from both sides of the lower support plate and the upper support plate. The setting of the lifting rod gives the support frame a lifting adjustment structure, so that the support frame can be adjusted arbitrarily according to the use height of the upper support plate.
[0022] 2. By setting up the movable card plate and the lifting card strip, the solar photovoltaic panel aluminum profile guide bracket has a double-plate auxiliary adjustment and fixing structure when in use, optimizing the use of the movable card plate and the sliding bottom plate, making it flexibly applicable to the installation operation of photovoltaic panels of different specifications;
[0023] When the lift is in use, the installation position of the photovoltaic panel can be adjusted on the sliding base plate by using the movement of the two sets of sliding base plates, and the inclination angle of the two sets of photovoltaic panels can be adjusted at the same time. At the same time, when the photovoltaic panel has completed the position adjustment, the position of the lifting card strip on the upper support plate can be adjusted, and the upper ends of the two sets of photovoltaic panels can be limited and fixed by moving the lifting card strip downward, thereby preventing the two sets of photovoltaic panels from tipping over. The interior of the cylinder has a double-cavity structure, which enables the cylinder to drive the two sets of telescopic rods to move synchronously at the same time. When the user obliquely places the two sets of photovoltaic panels on both sides of the lower support plate and the upper support plate, the cylinder drives the two sets of telescopic rods, so that the two sets of telescopic rods drive the moving card plate to move, and the photovoltaic panel is driven by the moving card plate to adjust the inclination angle of the photovoltaic panel. Secondly, the screw rod can drive the lifting card strip up and down through the threaded sleeve, and the lifting card strip is sleeved on the outer surface of the upper support plate, so that the lifting card strip can limit and fix the upper ends of the photovoltaic panels on both sides of the upper support plate. Figure 8 As shown, the double fixing operation of the two groups of photovoltaic panels is completed, thereby improving their structural stability.
[0024] 3. By setting up a sliding bottom plate, when the solar photovoltaic panel aluminum profile guide bracket is used, the flexibility of the mobile card plate and the sliding bottom plate is improved, so that it can complete the horizontal movement of two groups of photovoltaic panels at the same time;
[0025] During operation, the second slide groove is used in conjunction with the sliding buckle structure at the bottom of the movable base plate, so that the sliding base plate can be moved horizontally to both sides, thereby improving the guiding flexibility of the photovoltaic panels on the sliding base plate, thereby moving the photovoltaic panels placed on the sliding base plate to a horizontal position. At the same time, in order to meet any installation angle of the photovoltaic panels, the position of the lower end of the photovoltaic panel can be adjusted by using the movable card plate, and the inclination angle of the photovoltaic panel can be adjusted. When performing guiding operations on large-area photovoltaic panels, the inclination angle of the photovoltaic panel can be increased by using the movable card plate, thereby improving the stability of the photovoltaic panel during transfer. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The present invention will be further described below with reference to the accompanying drawings.
[0027] Figure 1 This is a schematic diagram of the overall structure of a solar photovoltaic panel aluminum profile guide bracket of the present invention;
[0028] Figure 2 This is a planar structural diagram of an aluminum profile guide bracket for a solar photovoltaic panel according to the present invention;
[0029] Figure 3 This is an overall structural diagram of a movable card in a solar photovoltaic panel aluminum profile guide bracket of the present invention;
[0030] Figure 4This is a diagram showing the internal structure of a sliding base plate in a guide bracket for aluminum profiles of a solar photovoltaic panel according to the present invention;
[0031] Figure 5 This is the overall structural diagram of the lifting clip in the aluminum profile guide bracket of a solar photovoltaic panel of the present invention;
[0032] Figure 6 This is an overall structural diagram of the lower support plate and the upper support plate in a solar photovoltaic panel aluminum profile guide bracket of the present invention;
[0033] Figure 7 This is a planar structural diagram of a sliding base plate in a solar photovoltaic panel aluminum profile guide bracket of the present invention;
[0034] Figure 8 This is a state change diagram of a solar photovoltaic panel aluminum profile guide bracket of the present invention.
[0035] In the figure: 1. Moving caster; 2. Moving card plate; 3. Sliding base plate; 4. Feed roller; 5. Moving base plate; 6. Lower support plate; 7. Upper support plate; 8. Side pulley; 9. Lifting card bar; 10. Support frame; 11. Cylinder; 12. Lifting rod; 13. Screw rod; 14. Motor; 15. Telescopic rod; 16. Guide wheel; 17. Chain; 18. Threaded sleeve; 19. Partition plate; 20. Docking slider; 21. Telescopic plate; 22. Limiting slot; 23. Docking groove; 24. Vertical slide; 25. Docking card slot; 26. First slide; 27. Second slide; 28. Photovoltaic panel. DETAILED DESCRIPTION
[0036] In order to further illustrate the technical means and effects adopted by the present invention to achieve the predetermined purpose of the invention, the specific implementation methods, structures, features and effects of the present invention are described in detail below in conjunction with the accompanying drawings and preferred embodiments.
[0037] like Figure 1 As shown, a solar photovoltaic panel aluminum profile guide bracket includes a sliding base plate 3 and a lower support plate 6. The lower support plate 6 is fixedly installed in the middle position of the outer surface of the upper end of the sliding base plate 3. An upper support plate 7 is movably installed above the lower support plate 6. The upper end of the sliding base plate 3 is located on both sides of the lower support plate 6 and several groups of feed rollers 4 are movably installed. The upper end of the sliding base plate 3 is located between the several groups of feed rollers 4 and a movable card plate 2 is movably installed. The outer surface of the upper support plate 7 is movably installed with a lifting card strip 9 used in conjunction with the sliding base plate 3. The lower support plate 6 and the upper support plate 7 are movably connected by a telescopic plate 21. A support frame 10 is provided between the upper support plate 7 and the sliding base plate 3.
[0038] To solve the problem of fixing two sets of photovoltaic panels, such as Figure 2As shown, the upper support plate 7 and the lifting card strip 9 are driven by a screw rod 13, and the screw rod 13 is movably installed in the inner middle position of the upper support plate 7. The sliding base plate 3 and the movable card plate 2 are driven by a cylinder 11, and the cylinder 11 is installed inside the sliding base plate 3. By utilizing the movement of the two groups of sliding base plates 3, the installation position of the photovoltaic panel 28 on the sliding base plate 3 can be adjusted. At the same time, when the photovoltaic panel 28 completes the position adjustment, the position of the lifting card strip 9 on the upper support plate 7 can be adjusted. By moving the lifting card strip 9 downward, the upper ends of the two groups of photovoltaic panels 28 are limited and fixed at the same time.
[0039] like Figure 3 As shown, telescopic rods 15 are movably installed at both ends of the cylinder 11, one end of the telescopic rod 15 is docked and fixed with the movable card plate 2, and a guide wheel 16 is movably installed on the outer surface of one side of the movable card plate 2. The interior of the cylinder 11 is a double-cavity structure, so that the cylinder 11 can drive the two groups of telescopic rods 15 to move synchronously at the same time. When the user places the two groups of photovoltaic panels 28 obliquely on both sides of the lower support plate 6 and the upper support plate 7, the cylinder 11 is used to drive the two groups of telescopic rods 15, so that the two groups of telescopic rods 15 drive the movable card plate 2 to move, and the photovoltaic panel 28 is driven by the movable card plate 2, thereby adjusting the inclination angle of the photovoltaic panel 28.
[0040] To solve the problem of transporting two sets of photovoltaic panels, such as Figure 4 As shown, the sliding base plate 3 and the feed roller 4 are movably connected by a rotating rod. An electric motor 14 for use with the rotating rod is installed inside the sliding base plate 3. Several groups of rotating rods and the motor 14 are driven by chains 17 and gears. A partition plate 19 is provided in the middle of the sliding base plate 3. When in use, the motor 14 is used to drive the gear, so that the gear drives the chain 17, and the chain 17 drives several groups of rotating rods, thereby driving several groups of feed rollers 4 to rotate, and the feed rollers 4 are used to guide and convey the photovoltaic panels 28 placed on the sliding base plate 3.
[0041] like Figure 5 As shown, a threaded sleeve 18 used in conjunction with the screw rod 13 is fixedly installed on the inner middle position of the lifting strip 9, and docking sliders 20 are fixedly installed on both sides of the threaded sleeve 18 on the inner side of the lifting strip 9. Because the height of the upper end of the photovoltaic panel 28 is different in different tilt states, the screw rod 13 can be used to drive the lifting strip 9 to move up and down through the threaded sleeve 18. The lifting strip 9 is sleeved on the outer surface of the upper support plate 7, so that the lifting strip 9 can limit and fix the upper ends of the photovoltaic panels 28 on both sides of the upper support plate 7 to prevent the photovoltaic panels 28 from tipping over during transfer.
[0042] To solve the problem of fixing photovoltaic panels of different sizes, such as Figure 6As shown, both ends of the telescopic plate 21 are provided with several groups of limit slots 22, and the limit slots 22 and the lower support plate 6 are fixed by connecting rods, and the outer surfaces of both sides of the upper support plate 7 are provided with docking grooves 23 used to cooperate with the support frame 10. The telescopic plate 21 can be used to adjust the use height between the lower support plate 6 and the upper support plate 7, so that the guide bracket can be suitable for the installation operation of solar photovoltaic panels of different heights. The setting of the support frame 10 can improve the stability of the lower support plate 6 and the upper support plate 7 during use, and play a reinforcing role.
[0043] The overall support frame 10 is an L-shaped structure, and a lifting rod 12 is movably installed inside the support frame 10. Several sets of side pulleys 8 are movably installed on both sides of the lower support plate 6 and the upper support plate 7. By utilizing the setting of the side pulleys 8, the friction force on the lower support plate 6 and the upper support plate 7 can be reduced when the photovoltaic panel 28 moves, so that the photovoltaic panel 28 can be moved out from both sides of the lower support plate 6 and the upper support plate 7. The setting of the lifting rod 12 gives the support frame 10 a lifting and adjusting structure, so that the support frame 10 can be adjusted arbitrarily according to the use height of the upper support plate 7.
[0044] The inner side of the upper support plate 7 is provided with a vertical slide groove 24 used to cooperate with the threaded sleeve 18 and the docking slider 20, and the inner side of the telescopic plate 21 is provided with a docking card groove 25 used to cooperate with the vertical slide groove 24. When the upper support plate 7 is reset, the vertical slide groove 24 and the docking card groove 25 overlap with each other. By utilizing the setting of the docking card groove 25, the threaded sleeve 18 and the docking slider 20 can move up and down on the inner side of the upper support plate 7.
[0045] like Figure 7 As shown, a movable base plate 5 is movably installed on the outer surface of the lower end of the sliding base plate 3, and the sliding base plate 3 and the movable base plate 5 are slidingly connected through a second slide groove 27. A slide buckle is provided in the middle of the outer surface of the lower end of the sliding base plate 3 for use with the second slide groove 27. The second slide groove 27 is used in conjunction with the slide buckle structure at the bottom of the movable base plate 5, so that the sliding base plate 3 can be translated to both sides, thereby improving the guiding flexibility of the photovoltaic panel 28 on the sliding base plate 3.
[0046] The upper end of the sliding base plate 3 is provided with a first sliding groove 26 used in conjunction with the moving card plate 2, and the bottom of the moving base plate 5 is provided with a moving caster 1.
[0047] When in use, the guide bracket device adopts a one-way conveying structure design, so that the guide bracket device can only complete the conveying operation of one photovoltaic panel at a time, and the conveying angle and conveying position of the photovoltaic panel cannot be flexibly adjusted, which reduces its flexibility in guiding and conveying. At the same time, it cannot be used for photovoltaic panels of different specifications, which reduces its use effect;
[0048] To this end, by providing a movable card plate 2 and a sliding bottom plate 3, when the solar photovoltaic panel aluminum profile guide bracket is used, it has a two-way feeding structure, and with the use of the lower support plate 6 and the upper support plate 7, it can simultaneously complete the guided transportation of two groups of solar photovoltaic panel aluminum profiles, thereby improving its use effect;
[0049] During operation, because the lower support plate 6 and the upper support plate 7 are arranged in the middle position of the sliding base plate 3, a T-shaped structure is formed between the lower support plate 6, the upper support plate 7 and the sliding base plate 3, so that the photovoltaic panels 28 can be placed on both sides of the lower support plate 6 and the upper support plate 7. The user places the photovoltaic panels 28 obliquely on both sides of the lower support plate 6 and the upper support plate 7, so that the lower ends of the photovoltaic panels 28 are in contact with the feed roller 4, and at the same time, the upper ends of the photovoltaic panels 28 are in contact with the side pulleys 8. When in use, the motor 14 is used to drive the gear, so that the gear drives the chain 17, and the chain 17 drives several groups of rotating rods, thereby driving several groups of feed rollers 4 to rotate, and the feed rollers 4 are used to guide and convey the photovoltaic panels 28 placed on the sliding base plate 3, so that the two The photovoltaic panels 28 are respectively extended from both sides of the lower support plate 6 and the upper support plate 7. Secondly, the telescopic plate 21 can be used to adjust the use height between the lower support plate 6 and the upper support plate 7, so that the guide bracket can be suitable for the installation operation of solar photovoltaic panels of different heights. The setting of the support frame 10 can improve the stability of the lower support plate 6 and the upper support plate 7 when in use, and play a reinforcing role. The setting of the side pulleys 8 can reduce the friction force on the lower support plate 6 and the upper support plate 7 when the photovoltaic panel 28 moves, so that the photovoltaic panel 28 can be moved out from both sides of the lower support plate 6 and the upper support plate 7. The setting of the lifting rod 12 makes the support frame 10 have a lifting adjustment structure, so that the support frame 10 can be arbitrarily adjusted according to the use height of the upper support plate 7;
[0050] By providing the movable card plate 2 and the lifting card strip 9, the solar photovoltaic panel aluminum profile guide bracket has a double-plate auxiliary adjustment and fixing structure when in use, optimizes the use of the movable card plate 2 and the sliding base plate 3, and makes it flexible for the installation operation of photovoltaic panels 28 of different specifications;
[0051] When in use, the movement of the two sets of sliding base plates 3 can be used to adjust the installation position of the photovoltaic panels 28 on the sliding base plates 3, and at the same time, the inclination angles of the two sets of photovoltaic panels 28 can be adjusted. At the same time, when the photovoltaic panels 28 have completed the position adjustment, the position of the lifting card strips 9 on the upper support plate 7 can be adjusted. By moving the lifting card strips 9 downward, the upper ends of the two sets of photovoltaic panels 28 are limited and fixed at the same time, thereby preventing the two sets of photovoltaic panels 28 from tipping over. The interior of the cylinder 11 is a double-cavity structure, so that the cylinder 11 can simultaneously drive the two sets of telescopic rods 15 at the same time. When the user places the two sets of photovoltaic panels 28 obliquely on both sides of the lower support plate 6 and the upper support plate 7, the cylinder 11 is used to drive the two sets of telescopic rods 15, so that the two sets of telescopic rods 15 drive the mobile card plate 2 to move, and the photovoltaic panels 28 are driven by the mobile card plate 2 to adjust the inclination angle of the photovoltaic panels 28. Secondly, the screw rod 13 can be used to drive the lifting card strip 9 to move up and down through the threaded sleeve 18. The lifting card strip 9 is sleeved on the outer surface of the upper support plate 7, so that the lifting card strip 9 can limit and fix the upper ends of the photovoltaic panels 28 on both sides of the upper support plate 7. Figure 8 As shown, the double fixing operation of the two sets of photovoltaic panels 28 is completed, thereby improving the structural stability thereof;
[0052] By providing the sliding base plate 3, when the solar photovoltaic panel aluminum profile guide bracket is used, the flexibility of the movable card plate 2 and the sliding base plate 3 is improved, so that the horizontal movement of the two groups of photovoltaic panels 28 can be completed at the same time;
[0053] During operation, the second slide groove 27 is used in conjunction with the sliding buckle structure at the bottom of the movable base plate 5, so that the sliding base plate 3 can be translated to both sides, thereby improving the guiding flexibility of the photovoltaic panel 28 on the sliding base plate 3, thereby moving the photovoltaic panel 28 placed on the sliding base plate 3 to a horizontal position. At the same time, in order to meet any installation angle of the photovoltaic panel 28, the position of the lower end of the photovoltaic panel 28 can be adjusted by using the movable card plate 2 to adjust the inclination angle of the photovoltaic panel 28. When performing the guiding operation of the large-area photovoltaic panel 28, the movable card plate 2 can be used to increase the inclination angle of the photovoltaic panel 28, thereby improving the stability of the photovoltaic panel 28 during transfer.
[0054] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as above in terms of a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can, without departing from the scope of the technical solution of the present invention, make some changes or modifications to equivalent embodiments using the technical contents disclosed above. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. A solar photovoltaic panel aluminum profile guide bracket, characterized in that: The invention comprises a sliding base plate (3) and a lower support plate (6), wherein the lower support plate (6) is fixedly mounted on the middle position of the outer surface of the upper end of the sliding base plate (3), an upper support plate (7) is movably mounted above the lower support plate (6), the upper end of the sliding base plate (3) is located on both sides of the lower support plate (6) and a plurality of groups of feed rollers (4) are movably mounted thereon, the upper end of the sliding base plate (3) is located between the plurality of groups of feed rollers (4) and a movable card plate (2) is movably mounted thereon, the outer surface of the upper support plate (7) is movably mounted with a lifting card strip (9) used in conjunction with the sliding base plate (3), the lower support plate (6) and the upper support plate (7) are movably connected via a telescopic plate (21), and a support frame (10) is provided between the upper support plate (7) and the sliding base plate (3).
2. A solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: The upper support plate (7) and the lifting clamping strip (9) are driven by a screw rod (13), and the screw rod (13) is movably installed at the inner middle position of the upper support plate (7). The sliding base plate (3) and the movable clamping plate (2) are driven by a cylinder (11), and the cylinder (11) is installed inside the sliding base plate (3).
3. A solar photovoltaic panel aluminum profile guide bracket according to claim 2, characterized in that: Telescopic rods (15) are movably mounted on both ends of the cylinder (11), one end of the telescopic rod (15) is fixedly docked with the movable card plate (2), and a guide wheel (16) is movably mounted on the outer surface of one side of the movable card plate (2).
4. A solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: The sliding base plate (3) and the feeding roller (4) are movably connected via a rotating rod. An electric motor (14) used in conjunction with the rotating rod is installed inside the sliding base plate (3). Several groups of rotating rods and the electric motor (14) are driven by chains (17) and gears. A partition plate (19) is provided in the middle of the sliding base plate (3).
5. The solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: A threaded sleeve (18) used in conjunction with the screw rod (13) is fixedly installed at the middle position of the inner side of the lifting clip (9), and docking sliders (20) are fixedly installed on both sides of the threaded sleeve (18) on the inner side of the lifting clip (9).
6. A solar photovoltaic panel aluminum profile guide bracket according to claim 5, characterized in that: Both ends of the telescopic plate (21) are provided with a plurality of groups of limiting slots (22), and the limiting slots (22) and the lower support plate (6) are fixed by connecting rods, and the outer surfaces of both sides of the upper support plate (7) are provided with connecting grooves (23) used in conjunction with the support frame (10).
7. The solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: The support frame (10) is an L-shaped structure as a whole. A lifting rod (12) is movably installed inside the support frame (10). Both sides of the lower support plate (6) and the upper support plate (7) are movably installed with a plurality of side pulleys (8).
8. The solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: The inner side of the upper support plate (7) is provided with a vertical sliding groove (24) used to cooperate with the threaded sleeve (18) and the docking slider (20), and the inner side of the telescopic plate (21) is provided with a docking slot (25) used to cooperate with the vertical sliding groove (24).
9. The solar photovoltaic panel aluminum profile guide bracket according to claim 1, characterized in that: A movable base plate (5) is movably mounted on the outer surface of the lower end of the sliding base plate (3), and the sliding base plate (3) and the movable base plate (5) are slidably connected via a second sliding groove (27). A sliding buckle for cooperating with the second sliding groove (27) is provided in the middle of the outer surface of the lower end of the sliding base plate (3).
10. A solar photovoltaic panel aluminum profile guide bracket according to claim 9, characterized in that: The upper end of the sliding base plate (3) is provided with a first sliding groove (26) used in conjunction with the moving card plate (2), and the bottom of the moving base plate (5) is provided with a moving caster (1).
Citation Information
Patent Citations
Solar photovoltaic panel aluminum profile guide bracket device
CN112389732A