A fixing structure for a base station wrapped solar panel stand

Through the innovative design of components such as support platforms, ear plates, limit plates and bolts, the problem of laborious sliding assembly between the reinforcement members and the solar panel stand structure has been solved, achieving a stable and convenient installation process and seismic-resistant connection.

CN119496442BActive Publication Date: 2025-09-30BEIJING XINGSHENG JUYI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411651474.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-30
Estimated Expiration
2044-11-19

AI Technical Summary

Technical Problem

In the prior art, the sliding assembly between the reinforcing member and the structural frame of the solar panel stand is laborious and requires the cooperation of multiple people, which is inconvenient to operate.

Method used

The fixed structure design adopts components such as support platform, ear plate, limit plate, block and bolt. The rotation and locking mechanism of the limit plate simplifies the installation process, and the double nut and gasket design enhances stability and shock resistance.

Benefits of technology

It achieves stable installation between the reinforcement member and the platform structure frame, simplifies the operation process, improves installation efficiency, enhances the stability and seismic resistance of the connection, and reduces the risk of nut loosening.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a fixing structure for a base station-wrapped solar panel stand, which relates to the technical field of solar panel fixing structures and includes a base and a support platform. The support platform is arranged at the upper end of the base, and the upper end of the support platform is used for assembly and connection with the frame structure of the solar panel stand. Ear plates are symmetrically provided on both sides of the lower end of the support platform. The ear plates are rotatably arranged on both sides of the upper end of the base and assembled and connected by first bolts. Fixed plates are symmetrically provided on both sides of the upper end of the support platform, and a reinforcement mechanism is provided between the upper end of the support platform and the lower end of the frame structure. The present invention moves the frame structure downward and installs it between two limit plates. During the downward movement, the two limit plates are driven close to the frame structure until the blocks on the limit plates engage with the slots on the frame structure to limit the position, thereby effectively ensuring the stability of the installation between the frame structure and the support platform. The installation operation is simple, and the problem of installation difficulty caused by large friction during sliding installation is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of solar panel fixing structures, and in particular to a fixing structure of a base station wrapped solar panel stand. Background Art

[0002] Base station-wrapped solar panels are a solar power generation solution designed specifically for communication base stations. Their characteristic is the integration of solar panels with base station equipment, optimizing space utilization and energy efficiency. This design aims to provide renewable energy, reduce operating costs, and enhance the independence of base stations. "Base station-wrapped" means that the solar panels are integrated or covered with the base station equipment, making it an integral part of the whole. This design saves space while ensuring that the base station can be powered by solar energy without relying on external power sources.

[0003] A reinforcing member of a solar panel stand, such as "CN106936380A", can fully ensure the surface pressure between the stand and the base even when the area of ​​the upper surface of the base is small, and the workability when fixing the frame structure of the solar panel stand to the base is excellent. The reinforcing member (5) of the solar panel stand includes a reinforcing member main body (17), which is fixed to the frame structure (1) of the solar panel stand by a first fastening member (15) and is fixed to the base (8) by a second fastening member (16). The reinforcing member main body (17) has: a first receiving portion (18), which receives at least a portion of the frame structure (1); and a second receiving portion (19), which receives at least a portion of the second fastening member (16);

[0004] However, in the prior art, such as the above-mentioned patent, since the installation between the reinforcing member and the structural frame of the upper solar panel stand is achieved through sliding cooperation, and there are many sliding cooperation structures between the two groups of structures, the friction force is relatively large, which makes it more laborious to slide and assemble the reinforcing member and the structural frame of the stand. It requires the cooperation of multiple people, at least one person to lift the structural frame of the stand, and the other person to work hard to slide the reinforcing member to the designated installation position of the structural frame, which makes the operation more inconvenient. Summary of the Invention

[0005] The purpose of the present invention is to solve the problem in the prior art that it is laborious to slide and assemble the reinforcing member and the structural frame of the platform.

[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a fixing structure of a base station wrapped solar panel stand, comprising a base and a support platform, the support platform is arranged at the upper end of the base, the upper end of the support platform is used to be assembled and connected with the frame structure of the solar panel stand, ear plates are symmetrically provided on both sides of the lower end of the support platform, the ear plates are rotatably arranged on both sides of the upper end of the base and are assembled and connected through a first bolt, fixed plates are symmetrically provided on both sides of the upper end of the support platform, a reinforcement mechanism is provided between the top of the support platform and the bottom of the frame structure, the reinforcement mechanism comprises a bottom plate, a rotating shaft, a limit plate and a clamping block, the two ends of the bottom plate are respectively slidably arranged with the inner walls of the two fixed plates, and the upper and lower sides of the bottom plate are respectively adapted to the bottom of the frame structure and the top of the support platform The two ends above the bottom plate are respectively connected to the limit plate by a rotating shaft, and the outer sleeve of the rotating shaft is provided with a torsion spring, and the blocking block is arranged above the side of the limit plate facing the frame structure, and the frame structure is symmetrically provided with a blocking slot that matches the blocking block. The spacing between the fixing plate and the outer wall of the frame structure is adapted to the width of the limiting plate. The support platform and the frame structure are assembled and connected by a long bolt, and the lower end of the long bolt passes through the first nut, the first gasket, the second nut, the second gasket, the frame structure, the bottom plate and the support platform in sequence and extends to the bottom of the support platform. The long bolt is arranged at one end below the support platform and is assembled and connected with the third nut through a third gasket. The outer wall of the first nut and the second nut is provided with a nut sleeve that is slidably arranged with the inner wall of the frame structure.

[0007] As a preferred embodiment, the edge of the nut sleeve is set as a square structure, and the nut sleeve includes an upper sleeve and a lower sleeve, and the upper sleeve and the lower sleeve are symmetrically provided with grooves at the center position, and the grooves are adapted to the edges of the first nut and the second nut. The upper sleeve and the lower sleeve are clamped together, and the edge of the nut sleeve is set to slide up and down on both sides of the inner wall of the frame structure. When the nut sleeve is used, the upper sleeve and the lower sleeve are respectively sleeved on the upper and lower sides of the first nut or the second nut, and the hole in the center for passing the long bolt is exposed to the outside, and then the upper sleeve and the lower sleeve are buckled together to ensure stability. The nut sleeve is placed in the frame structure, and the first nut and the second nut will not rotate, which is more convenient for twisting the long bolt.

[0008] As a preferred embodiment, a cannula is provided at the lower edge of the upper sleeve, and a slot that matches the cannula card is provided above the lower sleeve. A small bolt is passed through the cannula, and the lower end of the small bolt passes through the cannula and is rotatably connected to the slot thread. The positioning of the upper sleeve and the lower sleeve is achieved through the cooperation of the cannula and the slot, and then the small bolt is used to fix it to ensure the stability of the nut sleeve.

[0009] As a preferred embodiment, side grooves are symmetrically provided on both sides above the support platform, the lower sides of the base plate are snap-fitted with the side grooves, a structural groove is provided below the frame structure, and a structural plate snap-fitted with the structural groove is provided at the center position above the base plate. Through the mutual snap-fitting between the base plate, the support platform and the frame structure, the three components of the base plate, the support platform and the frame structure are more stable to each other and are less likely to shake or slide.

[0010] As a preferred embodiment, the lower end of the limit plate is rotatably connected to the top of the base plate through a rotating shaft away from the frame structure. An assembly groove is provided at the bottom of the limit plate, and the two ends of the torsion spring are respectively squeezed with the top of the base plate and the assembly groove. When the base plate is lifted, the limit plate automatically expands outward under the action of the torsion spring, so that the card block and the card slot are automatically separated, which is convenient for the dismantling of the frame structure and also convenient for the installation of the frame structure.

[0011] As a preferred embodiment, limit blocks are provided in the assembly groove and above both ends of the base plate. The two limit blocks are respectively used to limit the two ends of the torsion spring. The limit blocks are used to limit the two ends of the torsion spring to prevent the torsion spring from deflecting.

[0012] As a preferred embodiment, a slope is provided on the upper end of the fixed plate. The slope is arranged on the side close to the frame structure and is adapted to the outer wall of the limit plate in the expanded state. By setting the slope, the support area of ​​the large limit plate is increased when it is in the expanded and inclined state.

[0013] As a preferred embodiment, an inner block is provided in the card slot, and an inner groove is provided on the card block to fit the inner block. The sliding fit between the inner block and the inner groove prevents the frame structure and the support platform from being offset forward and backward after assembly.

[0014] As a preferred embodiment, a slide groove is provided on the inner side of the fixed plate, and sliders that are symmetrically adapted to the slide groove are provided at both ends of the base plate. Through the sliding adaptation of the slider and the slide groove, the base plate can be easily moved up and down between the two fixed plates for the installation of the frame structure.

[0015] As a preferred embodiment, the ear plate is arranged in a triangular structure, and the inner side of the ear plate is assembled and connected to the upper end of the base through a reinforcement pad. One end of the first bolt passes through the fourth gasket, one ear plate, one reinforcement pad, the base, another reinforcement pad, another ear plate and the fifth gasket and is assembled and connected through the fourth nut thread. Through the cooperation of the reinforcement pad, the fourth gasket and the fifth gasket, the friction force of the first bolt during assembly is enhanced, and the firmness is stronger.

[0016] Compared with the prior art, the advantages and positive effects of the present invention are:

[0017] 1. The present invention lifts the bottom plate together with the limit plate upward. When the limit plate is at the top, the two limit plates can be driven to rotate outward and open under the action of the torsion spring. The lower end of the frame structure squeezes the bottom plate to move downward, driving the limit plate to move downward. Under the limiting action of the two fixed plates, the limit plate pushes the two limit plates to rotate and move to both sides of the frame structure until the block on the limit plate is engaged with the slot on the frame structure to limit the position, effectively ensuring the stability of the installation between the frame structure and the support platform, and then fixing the support platform and the frame structure by long bolts. The installation operation is simple, and the problem of installation difficulty caused by large friction during sliding installation is solved.

[0018] 2. The present invention can provide a better locking effect through the arrangement of the first nut and the second nut, prevent the nut from loosening due to vibration or other external forces, and after locking, can effectively reduce the risk of the nut loosening due to vibration or temperature changes during use. When subjected to large loads or extreme conditions, the double nut design can provide additional safety and reduce the risk of connection failure. Using two gaskets to separate the two nuts can increase the friction between the nuts, further reduce the possibility of loosening, reduce direct contact between the nuts, and reduce wear and damage.

[0019] 3. In the present invention, after the long bolt is tightened with the first nut and the second nut, the third gasket and the third nut are tightened with the end face of the long bolt, thereby further reinforcing the frame structure and the support platform, making the connection tighter and enhancing the locking effect.

[0020] 4. The present invention arranges the upper sleeve and the lower sleeve on the upper and lower sides of the first nut or the second nut respectively, and exposes the hole in the center for passing the long bolt, and then buckles the upper sleeve and the lower sleeve to ensure stability. The nut sleeve is placed in the frame structure, and the first nut and the second nut will not rotate, which makes it easier to screw the long bolt. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A three-dimensional diagram of a fixing structure of a base station-wrapped solar panel stand provided by the present invention;

[0022] Figure 2 A schematic diagram of the assembly of a base and a support platform for a fixed structure of a base station wrapped solar panel stand provided by the present invention;

[0023] Figure 3 A schematic diagram of a support platform and a frame structure of a fixed structure of a base station wrapped solar panel stand provided by the present invention in a state of separation;

[0024] Figure 4A schematic diagram of a limit plate of a fixed structure of a base station wrapped solar panel stand provided by the present invention in an unfolded state;

[0025] Figure 5 A schematic diagram of the assembly state of a support platform and a frame structure of a fixed structure of a base station wrapped solar panel stand provided by the present invention;

[0026] Figure 6 A schematic diagram of a nut sleeve for fixing a base station-wrapped solar panel stand provided by the present invention;

[0027] Figure 7 A schematic diagram of a frame structure of a fixed structure of a base station wrapped solar panel stand provided by the present invention;

[0028] Figure 8 A schematic diagram of the assembly of a limiting plate and a bottom plate of a fixed structure of a base station wrapped solar panel stand provided by the present invention;

[0029] Figure 9 A schematic diagram of a fixing plate of a fixing structure of a base station-wrapped solar panel stand provided by the present invention.

[0030] Legend:

[0031] 1. Base; 2. Support platform; 3. Frame structure; 4. Ear plate; 5. First bolt; 6. Fixing plate; 711. Bottom plate; 712. Rotating shaft; 713. Limiting plate; 714. Block; 715. Torsion spring; 716. Slot; 811. Long bolt; 812. First nut; 813. First washer; 814. Second nut; 815. Second washer; 816. Third washer; 817. Third nut; 9. Nut sleeve; 101. Upper sleeve; 102. Lower sleeve; 103. Ridge; 111. Insert; 112. Slot; 113. Small bolt; 121. Side groove; 122. Structural groove; 123. Structural plate; 13. Assembly groove; 14. Limit block; 15. Slope; 161. Inner block; 162. Inner groove; 171. Slide; 172. Slider; 181. Reinforcement pad; 182. Fourth gasket; 183. Fifth gasket; 184. Fourth nut. DETAILED DESCRIPTION

[0032] The following will provide a clear and complete description of the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0033] See also Figures 1-9The present invention provides a technical solution: a fixing structure of a base station wrapped solar panel stand, comprising a base 1 and a support platform 2, the support platform 2 is arranged at the upper end of the base 1, the upper end of the support platform 2 is used to be assembled and connected with the frame structure 3 of the solar panel stand, and ear plates 4 are symmetrically provided on both sides of the lower end of the support platform 2, the ear plates 4 are rotatably arranged on both sides of the upper end of the base 1 and assembled and connected through first bolts 5, and fixing plates 6 are symmetrically provided on both sides of the upper end of the support platform 2, and a reinforcement mechanism is provided between the upper end of the support platform 2 and the lower end of the frame structure 3. The reinforcement mechanism comprises a bottom plate 711, a rotating shaft 712, a limiting plate 713 and a clamping block 714, and the two ends of the bottom plate 711 are respectively slidably arranged with the inner walls of the two fixing plates 6, and the upper and lower sides of the bottom plate 711 are respectively adapted to the lower side of the frame structure 3 and the upper side of the support platform 2, and the upper two ends of the bottom plate 711 are respectively connected to the limiting plate 7 by the rotating shaft 712 13 rotation connection, the outer side of the rotating shaft 712 is provided with a torsion spring 715, the blocking block 714 is arranged above the side of the limit plate 713 facing the frame structure 3, and the frame structure 3 is symmetrically provided with a card groove 716 that matches the blocking block 714. The distance between the fixing plate 6 and the outer wall of the frame structure 3 is adapted to the width of the limit plate 713. The support platform 2 and the frame structure 3 are assembled and connected by a long bolt 811. The lower end of the long bolt 811 passes through the first nut 812, the first gasket 813, the second nut 814, the second gasket 815, the frame structure 3, the base plate 711 and the support platform 2 in sequence and extends to the bottom of the support platform 2. The long bolt 811 is arranged at one end below the support platform 2 and is assembled and connected with the third nut 817 through the third gasket 816. The outer walls of the first nut 812 and the second nut 814 are provided with a nut sleeve 9 that is slidably arranged with the inner wall of the frame structure 3.

[0034] like Figures 1-9 As shown, the edge of the nut sleeve 9 is a square structure. The nut sleeve 9 includes an upper sleeve 101 and a lower sleeve 102. The upper sleeve 101 and the lower sleeve 102 are symmetrically provided with ribs 103 at the center position. The ribs 103 are adapted to the edges of the first nut 812 and the second nut 814. The upper sleeve 101 and the lower sleeve 102 are clamped together. The edge of the nut sleeve 9 is slid up and down on both sides of the inner wall of the frame structure 3. When the nut sleeve 9 is used, the upper sleeve 101 and the lower sleeve 102 are respectively sleeved on the upper and lower sides of the first nut 812 or the second nut 814, and the hole in the center for passing the long bolt 811 is exposed to the outside, and then the upper sleeve 101 and the lower sleeve 102 are buckled together to ensure stability. The nut sleeve 9 is placed in the frame structure 3, and the first nut 812 and the second nut 814 will not rotate, which is more convenient for screwing the long bolt 811.

[0035] like Figures 1-9As shown, a plug 111 is provided at the lower edge of the upper sleeve 101, and a slot 112 is provided above the lower sleeve 102 to fit with the plug 111. A small bolt 113 is passed through the plug 111, and the lower end of the small bolt 113 passes through the plug 111 and is threadedly connected to the slot 112. Through the cooperation of the plug 111 and the slot 112, the upper sleeve 101 and the lower sleeve 102 are positioned, and then fixed with the small bolt 113 to ensure the stability of the nut sleeve 9.

[0036] like Figures 1-9 As shown, side grooves 121 are symmetrically provided on both sides above the support platform 2, the lower sides of the bottom plate 711 are snap-fitted with the side grooves 121, a structural groove 122 is provided below the frame structure 3, and a structural plate 123 that is snap-fitted with the structural groove 122 is provided at the center position above the bottom plate 711. Through the mutual snap-fitting between the bottom plate 711, the support platform 2 and the frame structure 3, the three components of the bottom plate 711, the support platform 2 and the frame structure 3 are more stable to each other and are less likely to shake or slide.

[0037] like Figures 1-9 As shown, the lower end of the limit plate 713 is rotatably connected to the upper part of the bottom plate 711 through the rotating shaft 712 away from the frame structure 3. The bottom of the limit plate 713 is provided with an assembly groove 13, and the two ends of the torsion spring 715 are respectively squeezed with the upper part of the bottom plate 711 and the assembly groove 13. When the bottom plate 711 is lifted, the limit plate 713 automatically expands outward under the action of the torsion spring 715, so that the block 714 is automatically separated from the slot 716, which is convenient for taking out the frame structure 3 and also convenient for installing the frame structure 3.

[0038] like Figures 1-9 As shown, limit blocks 14 are provided in the assembly groove 13 and above both ends of the base plate 711. The two limit blocks 14 are respectively used to limit the two ends of the torsion spring 715. The limit blocks 14 are used to limit the two ends of the torsion spring 715 to prevent the torsion spring 715 from deflecting.

[0039] like Figures 1-9 As shown, a slope 15 is provided at the upper end of the fixed plate 6. The slope 15 is arranged on the side close to the frame structure 3 and is adapted to the outer wall of the limit plate 713 in the expanded state. By setting the slope 15, the support area of ​​the large limit plate 713 is increased when it is expanded and tilted.

[0040] like Figures 1-9 As shown, an inner block 161 is provided in the slot 716, and an inner groove 162 that fits the inner block 161 is provided on the block 714. The sliding fit between the inner block 161 and the inner groove 162 prevents the frame structure 3 and the support platform 2 from being offset forward and backward after assembly.

[0041] like Figures 1-9As shown, a slide groove 171 is provided on the inner side of the fixed plate 6, and sliders 172 that are slidably adapted to the slide groove 171 are symmetrically provided at both ends of the bottom plate 711. Through the sliding adaptation of the slider 172 and the slide groove 171, the bottom plate 711 is conveniently moved up and down between the two fixed plates 6 for the installation of the frame structure 3.

[0042] like Figures 1-9 As shown, the ear plate 4 is arranged in a triangular structure, and the inner side of the ear plate 4 is assembled and connected to the upper end of the base 1 through the reinforcement pad 181. One end of the first bolt 5 passes through the fourth gasket 182, an ear plate 4, a reinforcement pad 181, the base 1, another reinforcement pad 181, another ear plate 4 and the fifth gasket 183 and is threadedly assembled and connected through the fourth nut 184. Through the cooperation of the reinforcement pad 181, the fourth gasket 182 and the fifth gasket 183, the friction force of the first bolt 5 during assembly is enhanced, and the firmness is stronger.

[0043] Working principle: When installing the stand, first assemble the support platform 2 with the upper end of the base 1, and then lift the bottom plate 711 together with the limit plate 713 upward. When the limit plate 713 is at the top, the torsion spring 715 can drive the two limit plates 713 to rotate outward and open. At this time, the slot 716 on the frame structure 3 is aligned with the block 714 and moves vertically downward. The lower end of the frame structure 3 squeezes the bottom plate 711 downward, driving the limit plate 713 downward. Under the limiting action of the two fixed plates 6, the limit plate 713 pushes the two limit plates 713 to rotate and move to both sides of the frame structure 3 until the block 714 on the limit plate 713 is aligned with the block 714 on the frame structure 3. The card slot 716 is engaged and limited, and the frame structure 3 continues to move downward until the upper and lower sides of the bottom plate 711 are firmly fitted with the frame structure 3 and the top of the support platform 2 respectively. At this time, the frame structure 3 can only be taken out upward on the support platform 2, and it is difficult to shake back and forth, left and right, which effectively ensures the stability of the installation between the frame structure 3 and the support platform 2, and then fixes the support platform 2 and the frame structure 3 through the long bolt 811. Specifically, the second gasket 815, the second nut 814, the first gasket 813 and the first nut 812 are stacked in the frame structure 3 in sequence, and the long bolt 811 is used to penetrate them in sequence, and then continue to penetrate the frame structure 3 and the bottom plate downward. 711 and support platform 2, after tightening the long bolt 811, a third gasket 816 and a third nut 817 are provided on the threaded sleeve at one end of the long bolt 811 extending to the bottom of the support platform 2 and tightened, which can effectively ensure the assembly firmness between the long bolt 811 and the support platform 2 and the frame structure 3, wherein the outer wall of the first nut 812 and the second nut 814 is provided with a nut sleeve 9, so that it will not rotate with the frame structure 3, which is convenient for the screwing and tightening of the long bolt 811, and the operation is simple and convenient to use. The setting of the first nut 812 and the second nut 814 can provide a better locking effect to prevent the nut from loosening due to vibration or other external forces. After locking, it can effectively reduce the nut There is a risk of loosening due to vibration or temperature changes during use. When subjected to large loads or extreme conditions, the double nut design can provide additional safety and reduce the risk of connection failure. Using two washers to separate the two nuts can increase the friction between the nuts, further reduce the possibility of loosening, reduce direct contact between the nuts, and reduce wear and damage. At the same time, after the long bolt 811 is tightened with the first nut 812 and the second nut 814, the third washer 816 and the third nut 817 are tightened with the end face of the long bolt 811 to further reinforce the frame structure 3 and the support platform 2, making the connection tighter and enhancing the locking effect.

[0044] The above description is merely a preferred embodiment of the present invention and does not constitute any other form of limitation to the present invention. Any person skilled in the art may utilize the technical contents disclosed above to change or modify them into equivalent embodiments with equivalent changes for application in other fields. However, any simple modification, equivalent change, and modification of the above embodiments made in accordance with the technical essence of the present invention without departing from the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A fixed structure for a base station wrapped solar panel stand, comprising a base (1) and a support platform (2), wherein the support platform (2) is arranged at the upper end of the base (1), and the upper end of the support platform (2) is used for assembly and connection with a frame structure (3) of the solar panel stand, characterized in that: The support platform (2) is symmetrically provided with ear plates (4) on both sides of the lower end, and the ear plates (4) are rotatably arranged on both sides of the upper end of the base (1) and assembled and connected by first bolts (5). The support platform (2) is symmetrically provided with fixed plates (6) on both sides of the upper end, and a reinforcement mechanism is provided between the upper end of the support platform (2) and the lower end of the frame structure (3), and the reinforcement mechanism includes a bottom plate (711), a rotating shaft (712), a limit plate (713) and a clamping block (714). The two ends of the bottom plate (711) are respectively slidably arranged with the inner walls of the two fixed plates (6). The bottom plate (711) The upper and lower sides are respectively adapted to the lower side of the frame structure (3) and the upper side of the support platform (2); the upper ends of the bottom plate (711) are respectively rotatably connected to the limit plate (713) through a rotating shaft (712); a torsion spring (715) is sleeved on the outer side of the rotating shaft (712); the clamping block (714) is arranged above the side of the limit plate (713) facing the frame structure (3); the frame structure (3) is symmetrically provided with a clamping groove (716) that is adapted to be clamped with the clamping block (714); the distance between the fixing plate (6) and the outer wall of the frame structure (3) is the same as that between the fixing plate (6) and the outer wall of the limit plate (3); The width of the plate (713) is adapted, and the support platform (2) and the frame structure (3) are assembled and connected by a long bolt (811). The lower end of the long bolt (811) sequentially passes through the first nut (812), the first washer (813), the second nut (814), the second washer (815), the frame structure (3), the bottom plate (711) and the support platform (2) and extends to the bottom of the support platform (2). The long bolt (811) is arranged at one end below the support platform (2) and is assembled and connected to the third nut (817) through the third washer (816). The first nut ( 812) and the outer wall of the second nut (814) is provided with a nut sleeve (9) which is slidably arranged with the inner wall of the frame structure (3), the ear plate (4) is arranged in a triangular structure, the inner side of the ear plate (4) is assembled and connected with the upper end of the base (1) through the reinforcement pad (181), and one end of the first bolt (5) passes through the fourth gasket (182), one of the ear plates (4), one of the reinforcement pads (181), the base (1), another of the reinforcement pads (181), another of the ear plates (4) and the fifth gasket (183) and is threadedly assembled and connected through the fourth nut (184).

2. The fixing structure of a base station encapsulated solar panel stand according to claim 1, characterized in that: The edge of the nut sleeve (9) is arranged in a square structure. The nut sleeve (9) comprises an upper sleeve (101) and a lower sleeve (102). Ribbons (103) are symmetrically provided at the center of the upper sleeve (101) and the lower sleeve (102). The ribs (103) are adapted to the edges of the first nut (812) and the second nut (814). The upper sleeve (101) and the lower sleeve (102) are engaged with each other. The edge of the nut sleeve (9) is arranged to slide up and down on both sides of the inner wall of the frame structure (3).

3. The fixing structure of a base station encapsulated solar panel stand according to claim 2, characterized in that: A plug (111) is provided at the lower edge of the upper sleeve (101), and a slot (112) is provided above the lower sleeve (102) to fit the plug (111). A small bolt (113) is inserted into the plug (111), and the lower end of the small bolt (113) passes through the plug (111) and is threadedly connected to the slot (112).

4. The fixing structure of a base station encapsulated solar panel stand according to claim 1, characterized in that: Side grooves (121) are symmetrically provided on both sides above the support platform (2), and the lower sides of the bottom plate (711) are snap-fitted with the side grooves (121). A structural groove (122) is provided below the frame structure (3), and a structural plate (123) adapted to the structural groove (122) is provided at the center position above the bottom plate (711).

5. The fixing structure of a base station wrapped solar panel stand according to claim 4, characterized in that: The lower end of the limiting plate (713) is rotatably connected to the upper side of the bottom plate (711) via a rotating shaft (712) away from the frame structure (3). An assembly groove (13) is provided at the bottom of the limiting plate (713). The two ends of the torsion spring (715) are respectively extruded and arranged on the upper side of the bottom plate (711) and the assembly groove (13).

6. The fixing structure of a base station encapsulated solar panel stand according to claim 5, characterized in that: Limit blocks (14) are provided in the assembly groove (13) and above both ends of the bottom plate (711), and the two limit blocks (14) are respectively used to limit the two ends of the torsion spring (715).

7. The fixing structure of a base station wrapped solar panel stand according to claim 5, characterized in that: A slope (15) is provided at the upper end of the fixing plate (6); the slope (15) is arranged on a side close to the frame structure (3) and is adapted to the outer wall of the limit plate (713) in the expanded state.

8. The fixing structure of a base station encapsulated solar panel stand according to claim 1, characterized in that: An inner block (161) is provided in the card slot (716), and an inner slot (162) that fits snugly with the inner block (161) is provided on the card block (714).

9. The fixing structure of a base station encapsulated solar panel stand according to claim 1, characterized in that: A sliding groove (171) is provided on the inner side of the fixed plate (6), and sliding blocks (172) that are symmetrically arranged at both ends of the bottom plate (711) and are slidably adapted to the sliding groove (171).

Citation Information

Patent Citations

  • Reinforcing member of stand used for solar panel and fixing structure of stand used for solar panel

    CN106936380A

  • Wireless on -vehicle charging bracket

    CN207360246U