Photovoltaic panel mounting bracket for roof
The multi-directional limit of the photovoltaic panels is solved by fixing the problem of cumbersome installation of photovoltaic panels, improving installation efficiency and space utilization, and adapting to photovoltaic panels of different sizes and widths.
Patent Information
- Application Number
- CN202421648523.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-07-12
AI Technical Summary
In the prior art, the photovoltaic panel mounting brackets have complicated fixing operations on multiple photovoltaic panels, resulting in low installation efficiency and insufficient space utilization.
The fixed assembly is used to limit multiple photovoltaic panels simultaneously, including the first square column and the second square column to limit the bottom and top of the photovoltaic module, and the length, width and thickness directions of the photovoltaic module are limited through the limit plate and the moving block, so as to improve the limit stability by using springs.
The efficiency of photovoltaic panel installation is improved, space utilization is enhanced, photovoltaic panels of different sizes and widths are adapted to photovoltaic panels, and the stability is improved.
Smart Images

Figure CN223285774U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of photovoltaic panel mounting brackets, in particular to a photovoltaic panel mounting bracket for a roof. Background Art
[0002] Photovoltaic panel mounting brackets are brackets designed for placing, installing, and fixing solar panels in solar photovoltaic power generation systems. The roof, as the external structure of a building, usually has a large, underutilized flat area and is an ideal location for installing photovoltaic panels.
[0003] Photovoltaic panels on roofs are usually installed through mounting brackets, and generally multiple photovoltaic panels are laid on the mounting brackets. In the prior art, when multiple photovoltaic panels are assembled with mounting brackets, the photovoltaic panels generally need to be positioned on the mounting brackets one by one. For example, the announcement number is CN117155225B, and the patent name is a photovoltaic panel assembly installation device for a sloping roof. The device fixes the photovoltaic panels one by one by setting a guide rail and setting a plurality of clamping blocks and pressing pieces on the guide rails for pressing the photovoltaic panels. When fixing the photovoltaic panels, it is necessary to operate each clamping block and pressing piece that fixes the corresponding photovoltaic panel one by one, which is cumbersome to operate and the overall installation efficiency is low. Utility Model Content
[0004] The utility model provides a photovoltaic panel mounting bracket for a roof, which can overcome the defect of the prior art that it is difficult to quickly install multiple photovoltaic panels.
[0005] According to the utility model, a photovoltaic panel mounting bracket for a roof includes a bracket main body arranged on the roof, a photovoltaic component is installed on the upper part of the bracket main body, the photovoltaic component is composed of multiple photovoltaic panels, and a fixing component is provided on the bracket main body. The fixing component and the bracket main body jointly limit the length, width and thickness directions of the photovoltaic component.
[0006] Compared with the existing technology, multiple photovoltaic panels are limited at the same time by fixing the components, and there is no need to limit the photovoltaic panels individually, which improves the installation efficiency of the device for photovoltaic panels; at the same time, multiple photovoltaic panels are used to form a photovoltaic assembly, which reduces the distance between photovoltaic panels and improves the space utilization rate of installing photovoltaic panels on the bracket body.
[0007] Preferably, the fixing assembly includes a first square column fixed to the bracket body for limiting the bottom of the photovoltaic assembly and a second square column for limiting the top of the photovoltaic assembly.
[0008] In the present invention, the arrangement of the first square column and the second square column can limit the bottom and top of the photovoltaic assembly, thereby preventing the photovoltaic assembly from moving in the length direction.
[0009] Preferably, the bracket body has a vertical beam, and a plurality of reserved holes for fixing the first square column and the second square column are opened in the extension direction of the outer wall of the vertical beam.
[0010] In the present invention, by providing the vertical beams, the first square column and the second square column can support and limit photovoltaic panels of different sizes, thereby improving the adaptability of the length direction limitation of the fixed component.
[0011] Preferably, the upper part of the two side walls of the first square column and the second square column are respectively provided with a first limiting cavity and a second limiting cavity, and the inside of the first limiting cavity and the second limiting cavity are respectively slid with a first limiting plate and a second limiting plate, and the first limiting plate and the second limiting plate and the bracket body jointly limit the thickness direction of the photovoltaic component.
[0012] In the present invention, the first limiting plate and the second limiting plate are provided to limit the collecting surface of the photovoltaic component, and the bracket body is used to limit the opposite surface of the photovoltaic component, thereby limiting the thickness direction of the photovoltaic component.
[0013] Preferably, a moving block is provided at the top of the first square column and the second square column, a locking piece is slidably provided at the top of the moving block, a positioning groove is provided at the top of the first limiting plate and the second limiting plate, and the locking piece has a positioning portion that slides and engages with the positioning groove.
[0014] In the present invention, the positioning portion is provided to limit the sliding directions of the first limiting plate and the second limiting plate, thereby improving the limiting stability of the first limiting plate and the second limiting plate on the photovoltaic assembly.
[0015] Preferably, two moving blocks are arranged relative to each other, and the lower parts of the two side walls of the first square column and the second square column are provided with through grooves connected to the two moving blocks, and the two moving blocks have limiting parts passing through the through grooves for limiting the width direction of the photovoltaic module.
[0016] In the present invention, the two movable blocks are provided so that the limiting portion can limit the width direction of the photovoltaic component.
[0017] Preferably, the tops of the first square column and the second square column are provided with adjustment slots for the moving block to slide along the width direction, and a plurality of positioning slots are equidistantly provided at the first limiting plate and the second limiting plate along the extending direction of the adjustment slot.
[0018] In the present invention, a plurality of positioning grooves are equidistantly provided, so that the limiting portion can limit photovoltaic modules of different widths, thereby improving the adaptability of the fixing component to the width direction limitation of the photovoltaic module.
[0019] Preferably, a sliding cavity is provided on the top of the moving block for the engaging member to slide, and guide columns are provided on both sides of the sliding cavity for sliding with the engaging member. The outer wall of the guide column is sleeved with a spring for pressing the engaging member in the opposite direction of the sliding cavity opening.
[0020] In the present invention, the spring is provided so that the spring on the guide column presses the engaging member in the direction opposite to the opening of the sliding cavity, thereby improving the stability of the positioning portion and the positioning groove. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a schematic diagram of the bracket body in Example 1;
[0022] Figure 2 is a schematic diagram of the photovoltaic module in Example 1;
[0023] Figure 3 Schematic diagram of the first square column and the second square column in Example 1;
[0024] Figure 4 Schematic diagram of the through slot in Example 1;
[0025] Figure 5 This is a schematic diagram of a top cross-sectional view of the first limiting cavity and the second limiting cavity in Example 1;
[0026] Figure 6 This is a schematic diagram of a side cross-section of the moving block in Example 1. DETAILED DESCRIPTION
[0027] In order to further understand the content of the present invention, the present invention is described in detail with reference to the embodiments. It should be understood that the embodiments are merely for explanation of the present invention and are not intended to limit the present invention.
[0028] Example 1
[0029] like Figure 1-2 As shown, this embodiment provides a photovoltaic panel mounting bracket for a roof, which includes a bracket main body 100 arranged on the roof, a photovoltaic component 110 is installed on the upper part of the bracket main body 100, and the photovoltaic component 110 is composed of a plurality of photovoltaic panels. A fixing component 120 is provided at the bracket main body 100, and the fixing component 120 and the bracket main body 100 jointly limit the length, width and thickness directions of the photovoltaic component 110.
[0030] Through the above structure, multiple photovoltaic panels are installed on the bracket body 100, and the photovoltaic assembly 110 is formed between the multiple photovoltaic panels. The length, width and thickness of the photovoltaic assembly 110 are limited by the fixing assembly 120 and the bracket body 100. Compared with the existing technology, the fixing assembly 120 can simultaneously limit the position of multiple photovoltaic panels, eliminating the need to limit the position of each photovoltaic panel individually, thereby improving the installation efficiency of the device for photovoltaic panels.
[0031] At the same time, the photovoltaic assembly 110 is composed of multiple photovoltaic panels, which reduces the distance between the photovoltaic panels and improves the space utilization rate of the photovoltaic panels installed on the bracket body 100.
[0032] Combine Figure 1-2 As shown, in this embodiment, the fixing component 120 includes a first square column 121 fixed to the bracket body 100 for limiting the bottom of the photovoltaic component 110 and a second square column 122 for limiting the top of the photovoltaic component 110; the bracket body 100 has a vertical beam 130, and a plurality of reserved holes for fixing the first square column 121 and the second square column 122 are opened in the extension direction of the outer wall of the vertical beam 130.
[0033] Through the above structure, the first square column 121 and the second square column 122 in the fixing component 120 will limit the bottom and the top of the photovoltaic component 110 to prevent the photovoltaic component 110 from moving in the length direction; at the same time, in conjunction with the reserved holes of the vertical beam 130, the distance between the first square column 121 and the second square column 122 can be adjusted, so that the first square column 121 and the second square column 122 can support and limit photovoltaic panels of different sizes, thereby improving the adaptability of the length direction limitation of the fixing component 120.
[0034] Combine Figure 3-6 As shown, in this embodiment, the upper part of the two side walls of the first square column 121 and the second square column 122 is respectively provided with a first limiting cavity 331 and a second limiting cavity 332, and the first limiting plate 311 and the second limiting plate 312 are respectively slid inside the first limiting cavity 331 and the second limiting cavity 332, and the first limiting plate 311 and the second limiting plate 312 and the bracket body 100 jointly limit the thickness direction of the photovoltaic component 110; a moving block 350 is provided on the top of the first square column 121 and the second square column 122, and a locking part 620 is slid on the top of the moving block 350, and a positioning groove 360 is provided at the top of the first limiting plate 311 and the second limiting plate 312, and the locking part 620 has a positioning part 630 that slides and engages with the positioning groove 360.
[0035] Through the above structure, the first limiting plate 311 and the second limiting plate 312 in the first limiting cavity 331 and the second limiting cavity 332 in the fixing component 120 are pulled out, which will limit the collecting surface of the photovoltaic component 110, and then the opposite surface of the photovoltaic component 110 is limited by the bracket body 100, thereby achieving the limitation of the thickness direction of the photovoltaic component 110; at the same time, the engaging member 620 on the moving block 350 is pulled so that the positioning portion 630 is engaged with the positioning groove 360, thereby limiting the sliding direction of the first limiting plate 311 and the second limiting plate 312, thereby improving the limiting stability of the first limiting plate 311 and the second limiting plate 312 on the photovoltaic component 110.
[0036] Combine Figure 1-3 As shown, in this embodiment, there are two moving blocks 350 arranged relatively to each other, and the lower parts of the two side walls of the first square column 121 and the second square column 122 are provided with through grooves 370 connected to the two moving blocks 350, and the two moving blocks 350 have a limiting portion 380 passing through the through grooves 370 for limiting the width direction of the photovoltaic component 110; the tops of the first square column 121 and the second square column 122 are provided with adjustment grooves 390 for the moving blocks 350 to slide along the width direction, and a plurality of positioning grooves 360 are equidistantly provided at the first limiting plate 311 and the second limiting plate 312 along the extension direction of the adjustment grooves 390.
[0037] Through the above structure, two movable blocks 350 are relatively arranged in the fixed component 120, so that the limiting part 380 can limit the width direction of the photovoltaic component 110; at the same time, the movable block 350 slides in the adjustment groove 390, so that the limiting part 380 changes its position through the through groove 370, and then uses a plurality of positioning grooves 360 to limit the position of the limiting part 380, so that the limiting part 380 can limit photovoltaic components 110 of different widths, thereby improving the adaptability of the fixed component 120 to limiting the width direction of the photovoltaic component 110.
[0038] Combine Figure 5-6 As shown, in this embodiment, a sliding cavity 610 is provided on the top of the moving block 350 for the engaging member 620 to slide, and guide columns 640 are provided on both sides of the sliding cavity 610 for sliding with the engaging member 620. The outer wall of the guide column 640 is sleeved with a spring 650 for pressing the engaging member 620 in the opposite direction of the opening of the sliding cavity 630.
[0039] With the above structure, the spring 650 on the guide column 640 presses the engaging member 620 in the direction opposite to the opening of the sliding cavity 610 , thereby improving the stability of the positioning portion 630 and the positioning groove 360 .
[0040] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application based on one or several embodiments provided in the present application to obtain other embodiments, and these embodiments do not exceed the scope of protection of the present application.
[0041] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The embodiments shown are only part of the embodiments of the present invention, and the actual structure is not limited to them. Therefore, if a person skilled in the art is inspired by the above and designs a structure and embodiment similar to the technical solution without creatively designing it without departing from the inventive purpose of the present invention, it shall fall within the scope of protection of the present invention.
Claims
1. A photovoltaic panel mounting bracket for a roof, characterized in that: The invention comprises a support body (100) provided on a roof, a photovoltaic assembly (110) being installed on the upper portion of the support body (100), the photovoltaic assembly (110) being composed of a plurality of photovoltaic panels, a fixing assembly (120) being provided on the support body (100), the fixing assembly (120) and the support body (100) jointly limiting the length, width and thickness directions of the photovoltaic assembly (110); The fixing assembly (120) comprises a first square column (121) fixed to the support body (100) for limiting the bottom of the photovoltaic assembly (110) and a second square column (122) for limiting the top of the photovoltaic assembly (110); The bracket body (100) has a vertical beam (130), and a plurality of reserved holes for fixing the first square column (121) and the second square column (122) are provided in the extending direction of the outer wall of the vertical beam (130).
2. A rooftop photovoltaic panel mounting bracket according to claim 1, characterized in that: A first limiting cavity (331) and a second limiting cavity (332) are respectively provided on the upper portions of the two side walls of the first square column (121) and the second square column (122); a first limiting plate (311) and a second limiting plate (312) are respectively slidably disposed inside the first limiting cavity (331) and the second limiting cavity (332); the first limiting plate (311) and the second limiting plate (312) together with the bracket body (100) limit the photovoltaic assembly (110) in a thickness direction.
3. The photovoltaic panel mounting bracket for a roof according to claim 2, characterized in that: A moving block (350) is provided at the top of the first square column (121) and the second square column (122), a locking member (620) is slidably provided at the top of the moving block (350), a positioning groove (360) is provided at the top of the first limiting plate (311) and the second limiting plate (312), and the locking member (620) has a positioning portion (630) that is slidably engaged with the positioning groove (360).
4. The photovoltaic panel mounting bracket for a roof according to claim 3, characterized in that: Two movable blocks (350) are arranged opposite to each other, and through slots (370) communicating with the two movable blocks (350) are provided at the lower portions of the two side walls of the first square column (121) and the second square column (122). The two movable blocks (350) have limiting portions (380) passing through the through slots (370) for limiting the width direction of the photovoltaic assembly (110).
5. A rooftop photovoltaic panel mounting bracket according to claim 3 or 4, characterized in that: The tops of the first square column (121) and the second square column (122) are provided with adjustment slots (390) for the moving block (350) to slide along the width direction, and a plurality of positioning slots (360) are provided at equal intervals on the first limiting plate (311) and the second limiting plate (312) along the extending direction of the adjustment slots (390).
6. The photovoltaic panel mounting bracket for a roof according to claim 3, characterized in that: A sliding cavity (610) is provided on the top of the moving block (350) for the engaging member (620) to slide, and guide posts (640) are provided on both sides of the sliding cavity (610) for sliding with the engaging member (620), and a spring (650) is sleeved on the outer wall of the guide post (640) for pressing the engaging member (620) in the opposite direction of the opening of the sliding cavity (630).
Citation Information
Patent Citations
Photovoltaic panel assembly installation device for sloping roof
CN117155225B