Rapid installation structure of photovoltaic support

By designing a photovoltaic bracket quick installation structure including a stable right-angle triangle structure, the problems of complex, time-consuming and error of existing photovoltaic brackets are solved, and fast and simple installation is achieved, cost reduction, and system stability and efficiency are improved.

CN223007514UActive Publication Date: 2025-06-20ANHUI YIHE SOLAR POWER CO LTD
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Patent Information

Application Number
CN202421931724.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-20
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The installation process of existing photovoltaic brackets is complicated and time-consuming, resulting in high installation costs and installation error problems, which affects the fixing effect of the photovoltaic panel and the overall stability of the system.

Method used

A quick installation structure of a photovoltaic bracket is designed, and the installation steps are simplified by providing a stable right-angle triangle structure including a first support rod, an adjustment assembly, a vertical rod and a second support rod, reducing the use of fasteners, and quickly and firmly locking the assembly position through the design of threaded columns and locking plates.

Benefits of technology

It realizes the rapid and simple installation of photovoltaic brackets, significantly reduces installation time and labor costs, ensures the stable fixation of photovoltaic panels and the overall stability of the system, and improves the efficiency of the photovoltaic power generation system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of photovoltaic supports, and particularly relates to a rapid installation structure of a photovoltaic support, which comprises two first supporting rods arranged in parallel, two adjusting assemblies arranged at the tops of the first supporting rods, a vertical rod connected to one adjusting assembly, and a second supporting rod connected to the top end of the vertical rod. One end of the second supporting rod is connected with the other adjusting assembly, third supporting rods parallel to each other are arranged on the upper end face of the second supporting rod, a bearing piece is arranged between the second supporting rod and the third supporting rods, and a bearing plate used for placing a photovoltaic panel is connected between the two third supporting rods; the adjusting assembly comprises a connecting plate, a pin joint plate and a threaded column, a locking plate is fixedly connected to the bottom of the threaded column, and anti-skid convex particles are distributed on the locking plate and can effectively prevent the connecting plate from sliding; the bearing piece comprises a bearing plate and pipe clamping pieces, locking holes are formed in one sides of the tops of the pipe clamping pieces in a penetrating mode, and the second supporting rods can be fixed between the pipe clamping pieces.
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Description

Technical Field

[0001] The utility model belongs to the technical field of photovoltaic brackets, and in particular relates to a quick installation structure of a photovoltaic bracket. Background Art

[0002] With the continuous growth of global energy demand and the improvement of environmental protection awareness, photovoltaic power generation has been widely used as a clean and renewable energy source. As an important part of the photovoltaic power generation system, the photovoltaic bracket has the main function of supporting and fixing the photovoltaic panels to ensure that the photovoltaic panels can receive the maximum sunlight at a specific angle and position, thereby improving the efficiency of photovoltaic power generation. However, the installation process of existing photovoltaic brackets is usually complicated and time-consuming, resulting in high installation costs, and there are some technical problems that need to be solved in practical applications.

[0003] In the prior art, the installation of photovoltaic brackets usually requires multiple steps, including assembly, position adjustment and fixing of bracket components. Traditional installation methods usually rely on a large number of bolts, nuts and other fasteners, which not only increases the installation time, but also requires high labor costs. In addition, due to the large number of adjustment and fixing steps during the installation process, the operation is complicated and easily leads to installation errors, thus affecting the fixing effect of the photovoltaic panels and the overall stability of the system. Utility Model Content

[0004] In view of the problems existing in the prior art, the purpose of the utility model is to provide a quick installation structure of a photovoltaic bracket, which can realize a photovoltaic bracket structure that is quickly and easily installed, which can not only effectively reduce installation time and labor costs, but also ensure the stable fixation of photovoltaic panels and improve the overall efficiency of photovoltaic power generation systems.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] A quick installation structure of a photovoltaic support, comprising two first support rods arranged in parallel, two adjustment components are arranged on the top of the first support rods, one of the adjustment components is connected to a vertical rod, the top of the vertical rod is connected to a second support rod, and one end of the second support rod is connected to the other adjustment component;

[0007] The upper end surface of the second support rod is provided with a third support rod parallel to each other, and a receiving member is provided between the second support rod and the third support rod;

[0008] A load-bearing plate for placing the photovoltaic panel is connected between the two third support rods.

[0009] Furthermore, one end of the first support rod is mirror-imaged and penetrated with a locking groove;

[0010] The adjusting assembly includes a connecting plate, and pin-connecting plates are symmetrically and fixedly connected to the upper end face of the connecting plate; a threaded column is inserted into the connecting plate, and a locking plate is fixedly connected to the bottom of the threaded column.

[0011] Further, positioning holes are symmetrically and penetratingly formed in the upper end face of the connecting plate;

[0012] Anti-slip convex grains are evenly distributed on the upper end face of the locking plate.

[0013] Further, pin-connecting holes are penetratingly formed in the side surface of the pin-connecting plate.

[0014] Further, the receiving member includes a receiving plate, clamping pipe members are mirror-symmetrically arranged at the top and bottom of the receiving plate, the shape of the clamping pipe member is L-shaped, and locking holes are symmetrically and penetratingly formed in one side of the top of the clamping pipe member;

[0015] And the clamping pipe members arranged at the top and bottom are perpendicular to each other.

[0016] Further, first connection holes are symmetrically and penetratingly formed in the upper end face of the receiving plate;

[0017] Second connection holes are symmetrically and penetratingly formed in the upper end face of the load-bearing plate, and through grooves are evenly and penetratingly formed in the upper end face of the load-bearing plate.

[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0019] First of all, by arranging the first support rod, the adjusting assembly, the vertical rod and the second support rod, a stable right-angled triangle structure is formed in the present utility model; this design not only improves the stability of the photovoltaic bracket, but also simplifies the installation process; compared with the traditional photovoltaic bracket structure, the installation steps of the present utility model are more convenient, the use amount of fasteners is reduced, and thus the installation time and labor cost are significantly reduced; through the design of the threaded column and the locking plate, the positions of each component can be quickly and firmly locked, avoiding the problem of poor fixing effect caused by position adjustment error in the traditional installation method.

[0020] Secondly, by arranging the connecting plate, the pin-connecting plate and the threaded column in the adjusting assembly, the installation and adjustment of the adjusting assembly are more flexible; the anti-slip convex grains distributed on the locking plate can increase the friction between the locking plate and the clamping groove, thereby effectively preventing the connecting plate from sliding and displacing during use; this design greatly improves the installation stability and safety of the photovoltaic bracket; compared with the traditional method, the present utility model not only improves the installation efficiency, but also ensures the stable connection of each component, avoiding the problem of structural instability caused by installation error.

[0021] Again, the design of the receiving member makes the connection between the second support rod and the third support rod more stable; the receiving member includes a receiving plate and a clamping pipe member, and the second support rod can be conveniently fixed between the clamping pipe members through the locking holes; this design not only increases the bearing capacity of the photovoltaic bracket, but also effectively disperses the force on the support rod, improving the stability of the overall structure; at the same time, the perpendicular arrangement of the receiving plate and the clamping pipe member ensures the stability of the photovoltaic bracket in all directions, avoiding problems such as the inclination or collapse of the bracket caused by wind or other external forces.

[0022] Finally, through the fixation of the second connection hole and the first connection hole, the load-bearing plate can be stably installed between the third support rods; the uniformly distributed through grooves on the load-bearing plate can not only be used for wiring or drainage, but also further enhance the functionality and practicality of the photovoltaic bracket; this design solves the problem of the single function of traditional photovoltaic brackets during the installation process, making the photovoltaic bracket of the present utility model more flexible and efficient in practical applications.

[0023] In summary, the quick installation structure of a photovoltaic bracket of the present utility model, through optimized design and reasonable layout, not only simplifies the installation process, improves the installation efficiency, but also significantly enhances the stability and functionality of the photovoltaic bracket, solving the problems of complex installation, installation errors, and high labor costs existing in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is a schematic structural diagram of the present utility model;

[0025] Figure 2 is a schematic structural diagram of the first support rod of the present utility model;

[0026] Figure 3 is a schematic structural diagram of the adjusting assembly of the present utility model;

[0027] Figure 4 is a schematic structural diagram of the receiving member of the present utility model;

[0028] Figure 5 is a schematic structural diagram of the load-bearing plate of the present utility model.

[0029] In the drawings, the list of components represented by each reference numeral is as follows:

[0030] 1. First support rod; 11. Card slot;

[0031] 2. Adjusting assembly;

[0032] 21. Connecting plate; 211. Positioning hole; 22. Pin-connected plate; 221. Pin-connected hole; 23. Locking plate; 231. Anti-slip convex particles; 24. Threaded column;

[0033] 3. Second support rod;

[0034] 4. Connecting piece

[0035] 41. Connecting plate; 411. First connection hole; 42. Clamping pipe fitting; 421. Locking hole

[0036] 5. Third support rod

[0037] 6. Load-bearing plate; 61. Second connection hole; 62. Through groove; 7. Vertical rod Specific implementation mode

[0038] In order to make the purpose and advantages of the present utility model clearer, the present utility model will be specifically described below in conjunction with embodiments. It should be understood that the following text is only used to describe one or several specific implementation modes of the present utility model, and does not strictly limit the scope of protection specifically claimed by the present utility model.

[0039] Refer to Figures 1-5 , a quick installation structure of a photovoltaic bracket, including two first support rods 1 arranged in parallel; two adjusting components 2 are arranged at the top of the first support rod 1; a vertical rod 7 is connected to one adjusting component 2; the top end of the vertical rod 7 is connected to a second support rod 3; one end of the second support rod 3 is connected to the other adjusting component 2; the upper end surface of the second support rod 3 is provided with parallel third support rods 5; a connecting piece 4 is arranged between the second support rod 3 and the third support rod 5; a load-bearing plate 6 for placing a photovoltaic panel is connected between the two third support rods 5; a stable right triangle structure is formed among the first support rod 1, the vertical rod 7 and the second support rod 3, thereby ensuring the stability of the overall bracket and the efficient installation of the photovoltaic panel.

[0040] Refer to Figures 2-3 , a positioning groove 11 is mirror-penetrated and opened at one end of the first support rod 1; the adjusting component 2 includes a connecting plate 21; symmetrically fixed connection plates 22 are arranged on the upper end surface of the connecting plate 21; a threaded column 24 is inserted into the connecting plate 21; a locking plate 23 is fixedly connected to the bottom of the threaded column 24; by inserting the threaded column 24 from the bottom of the positioning hole 211 and screwing a nut onto the threaded column 24; after the adjusting component 2 is adjusted to a suitable position, the nut is tightened to make the locking plate 23 closely fit inside the positioning groove 11; thereby locking the position of the connecting plate 21, and thus ensuring the stability and position accuracy of the adjusting component 2.

[0041] Refer to Figure 3 , positioning holes 211 are symmetrically penetrated and opened on the upper end surface of the connecting plate 21; anti-slip convex grains 231 are evenly distributed on the upper end surface of the locking plate 23; the anti-slip convex grains 231 can increase the friction between the locking plate 23 and the positioning groove 11, thereby effectively preventing the connecting plate 21 from sliding and displacing during use; through this design, the installation stability and safety of the photovoltaic bracket can be significantly improved.

[0042] Refer to Figure 3 On the side of the pin-connecting plate 22, a pin-connecting hole 221 is penetrated. The pin-connecting hole 221 is used to connect other components or fix pins, so as to further improve the structural stability of the entire photovoltaic bracket. The pin-connecting plate 22 cooperates with the threaded column 24 through the pin-connecting hole 221, making the connection of the adjusting component 2 tighter and more firm.

[0043] Refer to Figure 4 The receiving member 4 includes a receiving plate 41. On the top and bottom of the receiving plate 41, card tube members 42 are mirror-symmetrically arranged. The shape of the card tube member 42 is set to be L-shaped. On one side of the top of the card tube member 42, a locking hole 421 is symmetrically penetrated. Through the locking hole 421, bolts or other fasteners can be inserted to fix the second support rod 3 between the two card tube members 42. And the card tube members 42 arranged on the top and bottom are perpendicular to each other. This design can effectively disperse the force on the support rod, thereby increasing the stability and load-bearing capacity of the entire photovoltaic bracket.

[0044] Refer to Figures 4-5 On the upper end face of the receiving plate 41, first connection holes 411 are symmetrically penetrated. On the upper end face of the load-bearing plate 6, second connection holes 61 are symmetrically penetrated. On the upper end face of the load-bearing plate 6, through grooves 62 are uniformly penetrated. The load-bearing plate 6 is firmly installed between the two third support rods 5 by using bolts through the second connection holes 61 and the first connection holes 411. The through grooves 62 can be used for wiring or drainage, thereby further improving the functionality and practicality of the photovoltaic bracket.

[0045] The working principle of the present utility model is as follows:

[0046] During assembly, first insert the threaded column 24 from the bottom of the positioning hole 211 and screw a nut onto the threaded column 24. At this time, the nut does not need to be tightened. Then insert the locking plate 23 into the clamping groove 11. After adjusting the adjusting component 2 to a suitable position, tighten the nut installed on the threaded column 24. As the nut is tightened, the locking plate 23 will closely fit inside the clamping groove 11, thereby locking the position of the connecting plate 21.

[0047] Then install the vertical rod 7 on the adjusting component 2, and there is an adjusting component 2 between the top of the vertical rod 7 and the second support rod 3. At the same time, connect the other end of the second support rod 3 to another adjusting component 2 arranged on the first support rod 1.

[0048] A stable right triangle is formed among the first support rod 1, the vertical rod 7 and the second support rod 3.

[0049] Next, install the receiving member 4 on the second support rod 3. When installing the receiving member 4, only need to pass the second support rod 3 through between the clamping pipe members 42 provided at the bottom of the receiving plate 41, and install bolts in the locking holes 421. By tightening the bolts, the second support rod 3 can be fixed between the two clamping pipe members 42;

[0050] Similarly, install the third support rod 5 on the upper end surface of the receiving plate 41;

[0051] Finally, install the load-bearing plate 6 between the two third support rods 5. When installing the load-bearing plate 6, only need to pass bolts through the second connection holes 61 and the first connection holes 411, and use nuts to fix them.

[0052] The above is only the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A quick installation structure of a photovoltaic bracket, characterized in that: The invention comprises two first support rods (1) arranged in parallel, two adjustment components (2) being arranged on the top of the first support rods (1), one of the adjustment components (2) being connected to a vertical rod (7), the top of the vertical rod (7) being connected to a second support rod (3), and one end of the second support rod (3) being connected to the other adjustment component (2); The upper end surface of the second support rod (3) is provided with a third support rod (5) parallel to each other, and a receiving member (4) is provided between the second support rod (3) and the third support rod (5); A load-bearing plate (6) for placing a photovoltaic panel is connected between the two third support rods (5).

2. A quick installation structure of a photovoltaic bracket according to claim 1, characterized in that: A locking groove (11) is formed through one end of the first support rod (1) in a mirror-like manner; The adjustment assembly (2) comprises a connecting plate (21), the upper end surface of which is symmetrically fixedly connected to a pin-connecting plate (22); a threaded column (24) is inserted into the connecting plate (21), and the bottom of the threaded column (24) is fixedly connected to a locking plate (23).

3. A quick installation structure of a photovoltaic bracket according to claim 2, characterized in that: The upper end surface of the connecting plate (21) is symmetrically penetrated with a positioning hole (211); The upper end surface of the locking plate (23) is evenly distributed with anti-skid protrusions (231).

4. A quick installation structure of a photovoltaic bracket according to claim 2, characterized in that: A pin connection hole (221) is formed through the side surface of the pin connection plate (22).

5. The quick installation structure of a photovoltaic bracket according to claim 1, characterized in that: The receiving member (4) comprises a receiving plate (41), the top and bottom of the receiving plate (41) are both mirror-imaged with pipe clamps (42), the pipe clamps (42) are L-shaped, and a locking hole (421) is symmetrically provided on one side of the top of the pipe clamps (42); The pipe clamping parts (42) arranged at the top and the bottom are perpendicular to each other.

6. A quick installation structure of a photovoltaic bracket according to claim 5, characterized in that: The upper end surface of the receiving plate (41) symmetrically passes through the first connecting hole (411); The upper end surface of the load-bearing plate (6) is symmetrically penetrated with a second connection hole (61), and the upper end surface of the load-bearing plate (6) is evenly penetrated with a through groove (62).

Citation Information

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