Color plate roof installation photovoltaic support

By designing fixed transverse insertion components and docking fixing components, the time-consuming and labor-intensive problem in the installation of photovoltaic brackets on the color steel plate roof is solved, and more stable connections and faster installation and disassembly are achieved, improving the installation and maintenance efficiency of photovoltaic panels.

CN222981457UActive Publication Date: 2025-06-13SHIJIAZHUANG FIRST CONSTR GRP
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Patent Information

Application Number
CN202421821793.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-13
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

In the construction plan for installing photovoltaic brackets on color steel plate roofs, glueing and nailing make installation and disassembly time-consuming and laborious, especially when the photovoltaic panels are damaged, the disassembly process is cumbersome.

Method used

A color steel plate roof mounted photovoltaic bracket is designed, using fixed transverse insertion components and docking fixing components. Through the interaction of structures such as horizontal plate, docking groove, fixed ears, rectangular sleeves, insertion blocks and positioning grooves, stable connection of the chassis and rapid installation of the photovoltaic panels are achieved.

Benefits of technology

By tightly fitting color steel plates, this technical solution improves support stability, simplifies the installation and disassembly process, reduces time-consuming and labor-intensive problems, and can quickly respond to the installation and maintenance needs of photovoltaic panels.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222981457U_ABST
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Abstract

The utility model relates to the technical field of photovoltaic support production, and provides a color steel plate roof installation photovoltaic support, which comprises a photovoltaic panel main body and a pair of underframes, the photovoltaic panel main body is arranged at the top of the underframes, a fixed transverse insertion assembly is arranged outside the underframes, a butt joint fixing assembly is arranged between the underframes, and butt joint grooves are arranged on two outer end faces of a transverse plate. The two ends of the surface of the transverse plate are each provided with a pair of mounting holes, the two opposite ends of the surface of the transverse plate are each provided with a pair of threaded holes, the side end face of the bottom frame is provided with a pair of fixing lugs, and fixing bolts are inserted and connected into the fixing lugs. By means of the technical scheme, the problems that according to the construction scheme, the photovoltaic support is fixed in the modes of gluing, nail penetrating and the like in common color steel plate roof construction in the related technology, time and labor are wasted in mounting and dismounting, and when the photovoltaic panel is damaged, dismounting of the photovoltaic panel is tedious are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic bracket production, and particularly relates to a photovoltaic bracket for installation on a color steel plate roof. Background Art

[0002] Color steel plate roofs are common factory building roof structures in China. Factory buildings generally have a large top floor area. Especially for factory buildings in industrial areas, the buildings in the industrial areas where they are located generally have a low building height and less shading, which is an ideal application occasion for photovoltaic panels. The power generation of solar photovoltaic panels has the advantages of safety, reliability, no noise, and no pollution emissions, and is widely used by people. In many cases, people will install photovoltaic panels on color steel roofs. However, because color steel roofs are uneven, when installing photovoltaic panels, brackets and clamps are required to hold the color steel plate roof for the installation of photovoltaic panels, and photovoltaic brackets are applied when installing on color steel roofs.

[0003] At present, the usual construction of color steel plate roofs uses methods such as caulking and nailing to fix photovoltaic brackets. Such construction plans are time-consuming and laborious for installation and disassembly. When the photovoltaic panel is damaged, it is rather cumbersome to disassemble the photovoltaic panel.

[0004] Therefore, improvements are made to the above problems. Content of the Utility Model

[0005] The utility model provides a photovoltaic bracket for installation on a color steel plate roof, which solves the problems in the related art that the usual construction of color steel plate roofs uses methods such as caulking and nailing to fix photovoltaic brackets, such construction plans are time-consuming and laborious for installation and disassembly, and when the photovoltaic panel is damaged, it is rather cumbersome to disassemble the photovoltaic panel.

[0006] The technical solution of the utility model is as follows: including

[0007] a photovoltaic panel main body and a pair of bottom frames, the photovoltaic panel main body is arranged on the top of the bottom frames;

[0008] a fixed horizontal insertion component, the fixed horizontal insertion component is arranged outside the bottom frames;

[0009] a docking and fixing component, the docking and fixing component is arranged between the bottom frames;

[0010] The fixed horizontal insertion component includes a plurality of horizontal plates. Docking grooves are opened on both outer end faces of the horizontal plates. A pair of mounting holes are opened at both ends of the surface of the horizontal plates. A pair of threaded holes are opened at both opposite ends of the surface of the horizontal plates. A pair of fixing ears are arranged on the side end faces of the bottom frames, and fixing bolts are inserted and connected in the fixing ears.

[0011] As a further technical solution, the fixing bolt is screwed and connected with the threaded hole. A plurality of rectangular socket openings are formed at the bottom of the chassis. Plug blocks are arranged on both end faces inside the rectangular socket openings. A plurality of positioning grooves are formed on the bottom surface of the chassis. The rectangular socket openings are sleeved on the chassis, and the plug blocks are slidably inserted and connected with the docking grooves.

[0012] As a further technical solution, the docking and fixing assembly includes a pair of fixing columns which are respectively fixed at both ends of the surface of the chassis. A connecting seat is arranged at the top of the fixing column. A sleeve block is sleeved and connected on the connecting seat. A docking frame is arranged at the top of the sleeve block.

[0013] As a further technical solution, the docking frame is sleeved on both sides of the main body of the photovoltaic panel. The bottom of the docking frame is fixedly connected with the top of the sleeve block. A plurality of jacks are formed on the side end face of the docking frame. Plug pins are arranged on the side end face of the main body of the photovoltaic panel.

[0014] As a further technical solution, a bottom hole is formed at the bottom of the docking frame. A pair of lock sleeves are arranged at both ends of the bottom of the main body of the photovoltaic panel. The lock sleeves are inserted into the bottom hole. A locking frame is inserted and connected inside the lock sleeve. The locking frame is fixedly connected with the bottom of the docking frame by threads.

[0015] As a further technical solution, the height of the fixing column at one end of the surface of the chassis is higher than that of the fixing column at the other end.

[0016] As a further technical solution, the installation hole is an inwardly concave countersunk head structure.

[0017] As a further technical solution, the cross section at the connection between the connecting seat and the sleeve block is in a T-shaped structure.

[0018] The working principle and beneficial effects of the present utility model are as follows:

[0019] In the present utility model, a fixed horizontal insertion assembly is provided. Through the interaction of structures such as a cross plate, a docking groove, a fixed ear, a rectangular socket opening, a plug block, and a positioning groove, a plurality of cross plates that are completely fitted to the surface can be installed on the top of the color steel plate, so that the chassis can be stably connected to the color steel plate. The overall connected structure can be fitted to the color steel plate over a larger area, and the supporting ability of the color steel plate can be improved through the tight fit, having a very good stabilizing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The following further describes the present utility model in detail with reference to the drawings and specific embodiments.

[0021] Figure 1 It is a schematic structural diagram of the present utility model;

[0022] Figure 2 Isometric view of the present utility model;

[0023] Figure 3 Isometric view of another perspective of the present utility model;

[0024] Figure 4 Attached to the present utility model Figure 2 Partial enlarged view of part A in the figure;

[0025] In the figure: 1, main body of photovoltaic panel; 2, chassis; 3, fixed horizontal insertion component; 3-1, horizontal plate; 3-2, docking groove; 3-3, mounting hole; 3-4, threaded hole; 3-5, fixed ear; 3-6, fixing bolt; 3-7, rectangular socket; 3-8, insertion block; 3-9, positioning groove; 4, docking and fixing component; 4-1, fixed column; 4-2, connecting seat; 4-3, sleeve block; 4-4, docking frame; 4-5, jack; 4-6, pin; 4-7, bottom hole; 4-8, lock sleeve; 4-9, locking frame. Specific implementation manner

[0026] Next, in combination with the embodiments of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present utility model.

[0027] As Figures 1 to 4 shown, this embodiment proposes a photovoltaic bracket installed on a color steel plate roof, including

[0028] The main body 1 of the photovoltaic panel and a pair of chassis 2, and the main body 1 of the photovoltaic panel is arranged on the top of the chassis 2;

[0029] The fixed horizontal insertion component 3 is arranged outside the chassis 2;

[0030] The docking and fixing component 4 is arranged between the chassis 2;

[0031] The fixed horizontal insertion component 3 includes several horizontal plates 3-1. Docking grooves 3-2 are formed on both outer end faces of the horizontal plate 3-1. A pair of mounting holes 3-3 are formed at both ends of the surface of the horizontal plate 3-1. A pair of threaded holes 3-4 are formed at both opposite ends of the surface of the horizontal plate 3-1. A pair of fixed ears 3-5 are provided on the side end face of the chassis 2. A fixed bolt 3-6 is inserted and connected in the fixed ear 3-5. The fixed bolt 3-6 is screwed and connected with the threaded hole 3-4. Several rectangular socket openings 3-7 are formed at the bottom of the chassis 2. Plug blocks 3-8 are provided on both inner end faces of the rectangular socket opening 3-7. Several positioning grooves 3-9 are formed on the bottom surface of the chassis 2. The rectangular socket opening 3-7 is sleeved on the chassis 2, and the plug block 3-8 is slidably inserted and connected with the docking groove 3-2.

[0032] In this embodiment, in order to achieve a firm fixing effect on the overall structure and the color steel plate roof, the fixed horizontal insertion component 3 is designed. There are multiple horizontal plates 3-1. Docking grooves 3-2 are formed on both sides of the horizontal plate 3-1. A pair of mounting holes 3-3 are formed at both ends of the surface of the horizontal plate 3-1. The mounting holes 3-3 are used to pass through bolts to connect and fix with the color steel plate. Rectangular socket openings 3-7 are formed at the bottom of the chassis 2. Plug blocks 3-8 are provided on both inner sides of the rectangular socket opening 3-7. The chassis 2 is sleeved on the horizontal plate 3-1 through the rectangular socket opening 3-7, and the inner plug block 3-8 is inserted and connected with the docking groove 3-2, and can be locked and cannot be pulled out upward. Fixed ears 3-5 with holes are provided on the end face of the chassis 2. After installation, the position of the fixed ear 3-5 corresponds to the threaded hole 3-4 on the surface of the horizontal plate 3-1. A fixed bolt 3-6 is inserted in the fixed ear 3-5. The fixed bolt 3-6 is screwed and connected with the threaded hole 3-4 to fixedly connect the chassis 2 and the horizontal plate 3-1, and is completely fixed on the color steel plate. Multiple positioning grooves 3-9 are formed at the bottom of the chassis 2. The positioning grooves 3-9 are wrapped and fitted with the convex parts of the color steel plate, which can improve the support and stability effect of the color steel plate.

[0033] Furthermore, the docking and fixing component 4 includes a pair of fixed columns 4-1. The fixed columns 4-1 are respectively fixed at both ends of the surface of the chassis 2. A connecting seat 4-2 is provided at the top of the fixed column 4-1. A sleeve block 4-3 is sleeved and connected on the connecting seat 4-2. A docking frame 4-4 is provided at the top of the sleeve block 4-3. The docking frame 4-4 is sleeved on both sides of the main body 1 of the photovoltaic panel. The bottom of the docking frame 4-4 is fixedly connected with the top of the sleeve block 4-3. Several jacks 4-5 are formed on the side end face of the docking frame 4-4. A plug pin 4-6 is provided on the side end face of the main body 1 of the photovoltaic panel. A bottom hole 4-7 is formed at the bottom of the docking frame 4-4. A pair of lock sleeves 4-8 are provided at both ends of the bottom of the main body 1 of the photovoltaic panel. The lock sleeves 4-8 are inserted into the bottom hole 4-7. A locking frame 4-9 is inserted and connected in the lock sleeve 4-8. The locking frame 4-9 is fixedly connected with the bottom of the docking frame 4-4 through threads.

[0034] In this embodiment, in order to achieve the effect of quickly installing the photovoltaic panel, a docking and fixing component 4 is designed. There are two fixing columns 4-1 arranged on the surface of the chassis 2. A connecting seat 4-2 is arranged at the top of the fixing column 4-1. It also includes two docking frames 4-4. The docking frame 4-4 matches the structure of the photovoltaic panel main body 1 and is used to be sleeved outside the photovoltaic panel main body 1. A sleeve block 4-3 is arranged at the bottom of the docking frame 4-4. The sleeve block 4-3 is horizontally inserted and connected with the connecting seat 4-2. When installing the chassis 2, the connection of the docking frame 4-4 can be completed simultaneously. A jack 4-5 is opened on the side end face of the docking frame 4-4. Plug pins 4-6 are arranged on both sides of the photovoltaic panel main body 1. The plug pins 4-6 are inserted into the jacks 4-5, so that the photovoltaic panel cannot be taken out after the docking frame 4-4 is installed. Bottom holes 4-7 are opened at both the upper and lower ends of the bottom of the docking frame 4-4. A lock sleeve 4-8 is arranged at the bottom of the photovoltaic panel main body 1. The lock sleeve 4-8 can be inserted into the bottom holes 4-7. A locking frame 4-9 is inserted and connected in the lock sleeve 4-8. The locking frame 4-9 is used to restrict the lock sleeve 4-8, further fixing the photovoltaic panel main body 1 and the docking frame 4-4, and at the same time tightening and fixing the two docking frames 4-4, having a very good installation firmness effect.

[0035] Further, the height of the fixing column 4-1 at one end of the surface of the chassis 2 is higher than that of the fixing column 4-1 at the other end.

[0036] In this embodiment, by setting the two fixing columns 4-1 to have different heights, the photovoltaic panel main body 1 can be inclined after installation and can face the sun's irradiation angle.

[0037] Further, the mounting hole 3-3 is a sunken countersunk head structure.

[0038] In this embodiment, through the mounting hole 3-3 with a countersunk head structure, after installing the bolt, the nut part can be sunk into the interior, which will not affect the installation of the chassis 2.

[0039] Further, the cross-section at the connection between the connecting seat 4-2 and the sleeve block 4-3 is in a T-shaped structure.

[0040] In this embodiment, through the T-shaped structure, the sleeve block 4-3 and the connecting seat 4-2 form a horizontally inserted connection method to cooperate with the installation of the chassis 2.

[0041] When installation is required, place multiple cross plates 3-1 on the color steel plate in sequence. The positioning groove 3-9 at the bottom is sleeved and fitted with the protruding part of the color steel plate. Then, install bolts at the installation holes 3-3 to fix them to the color steel plate. Take out the chassis 2 on one side, connect it with the cross plate 3-1 through the rectangular socket 3-7, and insert the insertion block 3-8 into the docking grooves 3-2 on both sides. Continue to push to move the fixing ear 3-5 to the threaded hole 3-4, and then install the fixing bolt 3-6 for fixation. Then, connect the docking frame 4-4 with the connecting seat 4-2 through the sleeve block 4-3. Subsequently, install the chassis 2 on the other side and the docking frame 4-4. After the fixation is completed, place the photovoltaic panel main body 1 obliquely between the docking frames 4-4. First, pre-insert the pin 4-6 into the jack 4-5, and then gradually lower it flat, so that the lock sleeve 4-8 is inserted into the bottom hole 4-7, and at the same time, the pin 4-6 is completely inserted into the jack 4-5. There is only one side of the photovoltaic panel main body 1 with the pin 4-6. After the installation of the photovoltaic panel main body 1 is completed, take out the locking frame 4-9 and insert it into the lock sleeve 4-8, and finally install bolts for fixation.

[0042] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A photovoltaic bracket installed on a color steel plate roof, characterized in that: include A photovoltaic panel body (1) and a pair of base frames (2), wherein the photovoltaic panel body (1) is arranged on top of the base frames (2); A fixed transverse insertion component (3), wherein the fixed transverse insertion component (3) is arranged outside the base frame (2); A docking and fixing assembly (4), wherein the docking and fixing assembly (4) is arranged between the base frames (2); The fixed transverse plug-in assembly (3) comprises a plurality of transverse plates (3-1), both end surfaces of the transverse plates (3-1) are provided with docking grooves (3-2), both ends of the surface of the transverse plates (3-1) are provided with a pair of mounting holes (3-3), both opposite ends of the surface of the transverse plates (3-1) are provided with a pair of threaded holes (3-4), and the side end surfaces of the base frame (2) are provided with a pair of fixing ears (3-5), and fixing bolts (3-6) are inserted and connected in the fixing ears (3-5).

2. A photovoltaic bracket mounted on a color steel plate roof according to claim 1, characterized in that: The fixing bolt (3-6) is screwedly connected to the threaded hole (3-4); a plurality of rectangular sleeves (3-7) are provided at the bottom of the base frame (2); both end surfaces of the rectangular sleeves (3-7) are provided with plug blocks (3-8); a plurality of positioning grooves (3-9) are provided on the bottom surface of the base frame (2); the rectangular sleeves (3-7) are sleeved on the base frame (2); and the plug blocks (3-8) are connected to the docking grooves (3-2) by sliding insertion.

3. The photovoltaic bracket installed on the color steel plate roof according to claim 1 is characterized in that: The docking fixing assembly (4) comprises a pair of fixing columns (4-1), the fixing columns (4-1) being fixed to two ends of the surface of the base frame (2) respectively, a connecting seat (4-2) being arranged on the top of the fixing column (4-1), a sleeve block (4-3) being sleeved and connected to the connecting seat (4-2), and a docking frame (4-4) being arranged on the top of the sleeve block (4-3).

4. A photovoltaic bracket mounted on a color steel plate roof according to claim 3, characterized in that: The docking frame (4-4) is sleeved on both sides of the photovoltaic panel body (1); the bottom of the docking frame (4-4) is fixedly connected to the top of the sleeve block (4-3); a plurality of plug holes (4-5) are provided on the side end surface of the docking frame (4-4); and a latch (4-6) is provided on the side end surface of the photovoltaic panel body (1).

5. The photovoltaic bracket installed on the color steel plate roof according to claim 4 is characterized in that: A bottom hole (4-7) is provided at the bottom of the docking frame (4-4); a pair of locking sleeves (4-8) are provided at both ends of the bottom of the photovoltaic panel body (1); the locking sleeves (4-8) are inserted into the bottom hole (4-7); a locking frame (4-9) is inserted and connected in the locking sleeve (4-8); the locking frame (4-9) is fixedly connected to the bottom of the docking frame (4-4) by means of threads.

6. The photovoltaic bracket installed on the color steel plate roof according to claim 3 is characterized in that: The fixing column (4-1) located at one end of the surface of the base frame (2) is higher than the fixing column (4-1) at the other end.

7. The photovoltaic bracket installed on the color steel plate roof according to claim 1, characterized in that: The mounting hole (3-3) is a concave countersunk structure.

8. The photovoltaic bracket installed on a color steel plate roof according to claim 3, characterized in that: The cross section of the connection between the connecting seat (4-2) and the sleeve block (4-3) is in a T-shaped structure.