Distributed photovoltaic installation structure
By adopting the design of mounting frames, slide frames and adjustment components in the distributed photovoltaic installation structure, the problems of large footprint and non-adjustable angles of photovoltaic panels are solved, and efficient installation and flexible angle adjustment of photovoltaic panels are achieved.
Patent Information
- Application Number
- CN202422413495.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing distributed photovoltaic panel installation method occupies a large area, and the installation structure can only install photovoltaic panels of a specific size, and cannot adjust the tilt angle of several photovoltaic panels at the same time.
The mounting frame and mounting components welded to the ground are used. The mounting components are equipped with a slide frame and a connecting component. The adjustable installation and angle adjustment of the photovoltaic panel are achieved through the connecting rod and the adjustment component. The stable fixation and angle adjustment of the photovoltaic panel are achieved by using the L-shaped buckle block and the adjustment sleeve.
It realizes efficient space utilization and angle adjustment of photovoltaic panels, adapts to the installation of photovoltaic panels of different sizes, and improves the practicality and flexibility of the installation structure.
Smart Images

Figure CN223348590U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of installation structures, and in particular to a distributed photovoltaic installation structure. Background Art
[0002] A distributed photovoltaic installation structure is a system that installs solar photovoltaic panels on buildings, ground, or other structures to convert solar energy into electricity. This structure is of great significance in energy conservation, emission reduction, and renewable energy utilization. Common distributed photovoltaic installation structures consist of mounting frames, mounting components, and distributed photovoltaic panels. The following shortcomings have been observed in their use:
[0003] 1. Each of the existing distributed photovoltaic panels is installed on the ground. This installation method occupies a large area and cannot reasonably utilize the ground space;
[0004] 2. The existing installation structure can only install distributed photovoltaic panels of a specific size, which results in poor practicality of the installation structure and the inclination angle of several distributed photovoltaic panels cannot be adjusted at the same time.
[0005] Therefore, in view of this, the existing structure was studied and improved, and a distributed photovoltaic installation structure was proposed. Utility Model Content
[0006] The technical problem to be solved by the present invention is that the installation method of distributed photovoltaic panels occupies a large area, the installation structure can only install distributed photovoltaic panels of a specific size, and the inclination angles of several distributed photovoltaic panels cannot be adjusted at the same time.
[0007] In order to solve the above technical problems, the technical solution adopted by the present invention is: a distributed photovoltaic mounting structure, comprising two mounting frames welded to the ground, a mounting assembly is arranged above the two mounting frames, and a distributed photovoltaic panel is movably mounted on the mounting assembly, and a number of distributed photovoltaic panels are installed on the mounting assembly, the mounting assembly comprises two slide frames, and the two slide frames are respectively arranged above the two mounting frames, and a number of connecting assemblies are arranged between the two slide frames, two L-shaped buckle blocks are fixedly arranged on one side of the distributed photovoltaic panel, and the two L-shaped buckle blocks are movably buckled on the connecting assembly, and an adjustment assembly for adjusting the angle of the mounting assembly is arranged between the corresponding slide frames and the mounting frames.
[0008] As a further solution of the present invention: the connecting assembly includes a connecting rod 1 fixedly arranged between the two slide frames and a connecting rod 2 slidably arranged between the two slide frames, and both ends of the connecting rod 2 are fixedly provided with a T-shaped slider 1, and the T-shaped slider 1 is slidably connected to the slide frame, and the slide frame and the T-shaped slider 1 are connected by a bolt 1, and two movable grooves are provided on the connecting rod 2, and a limiting ring is provided in the movable groove for limiting sliding, and a spring is fixedly provided between the limiting ring and one side of the movable groove, and the connecting rod 2 is connected to the slide frame by a bolt 2, and one end of the bolt 2 passes through the limiting ring, the spring, the connecting rod 2 in sequence and is rotatably connected to the slide frame thread.
[0009] As a further solution of the present invention: the slide frame is provided with a T-shaped slide frame for sliding connection with a T-shaped slider frame, and the slide frame and the T-shaped slider frame are both provided with a threaded hole frame for threaded rotation of a bolt frame.
[0010] As a further solution of the present invention: the bolt 2 is slidably connected to the limiting ring, and a slider is provided on the bolt 2, and an annular slide groove for the sliding connection of the slider is provided on the limiting ring, a through hole 1 for the bolt 2 to pass through is provided on the connecting rod 2, and a plurality of threaded holes 2 for the bolt 2 to rotate are provided on the slide groove frame.
[0011] As a further solution of the present invention: the two L-shaped buckle blocks on the distributed photovoltaic panel are buckled onto the connecting rod 1 and the connecting rod 2 respectively.
[0012] As a further solution of the present invention: the adjustment assembly includes a support block fixedly arranged on the top of the mounting frame and two connecting clips fixedly arranged on the bottom of the slide frame, one of the connecting clips and the support block is hinged to each other, and an adjustment rod is hingedly arranged on the other connecting clip, and an adjustment sleeve is sleeved on the outside of the adjustment rod, the adjustment sleeve and the adjustment rod are fixed by a number of bolts three, the adjustment sleeve is slidably connected to the mounting frame through a T-shaped slider two, and the T-shaped slider two and the mounting frame are fixed by a number of bolts four.
[0013] As a further solution of the present invention: the adjusting sleeve is provided with a through hole 2 for the three bolts to pass through, and the adjusting rod is provided with a plurality of threaded holes 3 for the three bolts to be threadedly connected.
[0014] As a further solution of the present invention: the mounting frame is provided with a T-shaped groove 2 for sliding connection of the T-shaped slider 2, the mounting frame is provided with a plurality of through holes 3 for the bolts 4 to pass through, and the T-shaped slider 2 is provided with a plurality of threaded holes 4 for threaded rotation connection of the bolts 4.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] 1. The utility model forms a tripod-shaped mounting structure through the coordinated arrangement of the mounting frame, the mounting assembly, and the adjustment assembly. At the same time, the distributed photovoltaic panels are installed on the mounting assembly, so that the distributed photovoltaic panels do not occupy much ground space, and the space from the mounting assembly to the ground can be reasonably utilized.
[0017] 2. The utility model sets a sliding connection between the connecting rod 2 on the connecting assembly and the slide frame, so that the position of the connecting rod 2 can be adjusted on the slide frame, so that the position of the connecting rod 2 can be adjusted according to the size of the distributed photovoltaic panel, thereby facilitating the installation of distributed photovoltaic panels of different sizes. By adjusting the setting of the assembly, the angle of the installation assembly can be adjusted, so that the angle of the distributed photovoltaic panel can be adjusted according to the usage. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0019] Figure 1 This is a schematic diagram of the overall structure of a distributed photovoltaic installation structure of the present utility model.
[0020] Figure 2 This is a schematic diagram of the connection structure of distributed photovoltaic panels and L-shaped buckle blocks in a distributed photovoltaic installation structure of the utility model.
[0021] Figure 3 This is a schematic diagram of the connection structure of the mounting frame, mounting components, and adjustment components of a distributed photovoltaic mounting structure of the present invention.
[0022] Figure 4 This is a partial cross-sectional view of a distributed photovoltaic installation structure of the present utility model.
[0023] In the attached figure:
[0024] 1. Mounting frame; 2. Mounting assembly; 3. Distributed photovoltaic panel; 4. Adjustment assembly; 201. Slide frame; 202. Connecting rod one; 203. Connecting rod two; 204. T-slide one; 205. Bolt one; 206. Limiting ring; 207. Spring; 208. Bolt two; 301. L-shaped buckle block; 401. Support block; 402. Adjustment rod; 403. Adjustment sleeve; 404. Bolt three; 405. T-slide two; 406. Bolt four. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0026] See also Figure 1 、 Figure 3-4 , a distributed photovoltaic installation structure, including two mounting frames 1 welded on the ground, a mounting assembly 2 is provided above the two mounting frames 1, and a distributed photovoltaic panel 3 is movably installed on the mounting assembly 2, and a plurality of distributed photovoltaic panels 3 are installed on the mounting assembly 2, the mounting assembly 2 includes two slide frames 201, and the two slide frames 201 are respectively arranged above the two mounting frames 1, and a plurality of connecting assemblies are provided between the two slide frames 201. The connecting assembly includes a connecting rod 1 202 fixedly arranged between the two slide frames 201 and a connecting rod 203 slidably arranged between the two slide frames 201, and both ends of the connecting rod 203 are fixedly provided with a T-shaped slider 1, and the T-shaped slider 1 is slidably connected to the slide frame 201, and the slide frame 201 is provided with a T-shaped slide 1 204 for sliding connection of the T-shaped slider 1, and the T-shaped slider 1 is slidably connected to the T-shaped slide 1 204, so that the position of the connecting rod 203 on the slide frame 201 can be adjusted, and the slide frame 201 and the T-shaped slider 1 are connected by screws. The first bolt 205 is connected, and the slide frame 201 and the T-shaped slider are both provided with a threaded hole 1 for the threaded rotation of the first bolt 205. The first bolt 205 is threadedly connected to the threaded hole 1, so that the position of the second connecting rod 203 on the slide frame 201 can be fixed. The second connecting rod 203 is provided with two movable grooves, and a limiting ring 206 is provided in the movable groove for limiting sliding. A spring 207 is fixed between the limiting ring 206 and one side of the movable groove. The second connecting rod 203 and the slide frame 201 are connected by bolts. The second bolt 208 is connected to the second rod 203. One end of the second bolt 208 sequentially passes through the limiting ring 206, the spring 207, and the second connecting rod 203, and is threadedly connected to the slide frame 201. The second bolt 208 is slidably connected to the limiting ring 206. The second bolt 208 is provided with a slider, and the limiting ring 206 is provided with an annular slide groove for the slider to slide. The second connecting rod 203 is provided with a first through-hole for the second bolt 208 to pass through. The slide frame 201 is provided with a plurality of second threaded holes for the second bolt 208 to threadably rotate. The connection between the second bolt 208 and the second threaded holes can strengthen the position of the second connecting rod 203 on the slide frame 201, thereby making the installation assembly 2 more stable.
[0027] See also Figure 1-2Two L-shaped buckles 301 are fixed to one side of the distributed photovoltaic panel 3 and are movably fastened to the connecting assembly. The two L-shaped buckles 301 on the distributed photovoltaic panel 3 are respectively fastened to connecting rod 1 202 and connecting rod 203. The fastening of the L-shaped buckles 301 to connecting rod 1 202 and connecting rod 2 203 allows the distributed photovoltaic panel 3 to be mounted on the mounting assembly 2 without drilling holes in the L-shaped buckles 301.
[0028] See also Figure 1 and Figure 3 , an adjustment component 4 for adjusting the angle of the mounting component 2 is provided between the corresponding slide frame 201 and the mounting frame 1. The adjustment component 4 includes a support block 401 fixedly provided on the top of the mounting frame 1 and two connecting clips fixedly provided at the bottom of the slide frame 201. One of the connecting clips is hinged to the support block 401, and an adjustment rod 402 is hingedly provided on the other connecting clip, and an adjustment sleeve 403 is provided on the outside of the adjustment rod 402. The adjustment sleeve 403 is fixed to the adjustment rod 402 by a number of bolts 404. There is a second through-hole for a third bolt 404 to pass through, and the adjusting rod 402 is provided with several threaded holes three for the third bolt 404 to be threadedly rotated. The adjusting sleeve 403 is slidably connected to the mounting frame 1 through the second T-shaped slider, and the mounting frame 1 is provided with a second T-shaped slide groove 405 for the second T-shaped slider to be slidably connected. The second T-shaped slider and the mounting frame 1 are fixed by several fourth bolts 406. The mounting frame 1 is provided with several through-holes three for the fourth bolt 406 to pass through, and the second T-shaped slider is provided with several threaded holes four for the fourth bolt 406 to be threadedly rotated. Since one of the connecting clips is hinged to the support block 401, the mounting assembly 2 can rotate around the support block 401. The position of the fixed adjusting rod 402 in the adjusting sleeve 403 can be adjusted through the sliding connection of the adjusting rod 402 in the adjusting sleeve 403 and the threaded rotation connection of the bolt three 404 and the threaded hole three. At the same time, the other connecting clip is hinged to the adjusting rod 402, so that the angle of the mounting assembly 2 can be adjusted. The sliding connection of the T-shaped slider two and the T-shaped slide groove two 405 and the threaded rotation connection of the bolt four 406 and the threaded hole four can adjust the position of the fixed adjusting sleeve 403 on the mounting frame 1.
[0029] The working principle of this utility model:
[0030] When it is necessary to install the distributed photovoltaic panel 3, first buckle one of the L-shaped buckle blocks 301 of the distributed photovoltaic panel 3 on the connecting rod 1 202, and then slide the connecting rod 203 to the side of the other L-shaped buckle block, so that the other L-shaped buckle block is buckled on the connecting rod 203, and then the T-shaped slider 1 can be connected to the slide frame 201 through the bolt 1 205, so that the position of the T-shaped slider 1 is fixed, and then the bolt 208 can be rotated to make the slider on the bolt 208 slide on the annular slide groove, so that the bolt 208 can be connected to the threaded hole 2, and then the limit ring 206 will slide in the movable groove, and the spring 207 will be squeezed, so that the connecting rod 203 is fixed at the position of the two slide frames 201, thereby installing the distributed photovoltaic panel 3 on the mounting assembly 2.
[0031] If it is necessary to adjust the inclination angle of the distributed photovoltaic panel 3, first remove the bolt three 404 and the bolt four 406 from the device. At this time, the adjusting rod 402 can be slid in the adjusting sleeve 403 to adjust the position of the adjusting rod 402 in the adjusting sleeve 403. When adjusting the position of the adjusting rod 402, one of the connecting clips will rotate on the support block 401, and the other connecting clip will also rotate on the adjusting rod 402. At the same time, the T-shaped slider 2 will slide on the T-shaped slide groove 2 405, so that the angle of the mounting assembly 2 is adjusted. After adjusting to the appropriate angle, the bolt three 404 and the bolt four 406 can be installed in the corresponding position, so that the position of the adjusting rod 402 is fixed, and the position of the T-shaped slider 2 is also fixed, thereby determining the inclination angle of the distributed photovoltaic panel 3.
[0032] The above description of the present invention and its embodiments is non-limiting. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by the above, and does not deviate from the purpose of the present invention, without inventive design, a structure and embodiment similar to the technical solution should fall within the scope of protection of the present invention.
Claims
1. A distributed photovoltaic installation structure, comprising two mounting frames (1) welded to the ground, a mounting assembly (2) being provided above the two mounting frames (1), and a distributed photovoltaic panel (3) being movably mounted on the mounting assembly (2), characterized in that: A plurality of distributed photovoltaic panels (3) are mounted on the mounting assembly (2). The mounting assembly (2) comprises two chute frames (201), and the two chute frames (201) are respectively arranged above the two mounting frames (1). A plurality of connection assemblies are arranged between the two chute frames (201). Two L-shaped buckle blocks (301) are fixedly arranged on one side of the distributed photovoltaic panel (3), and the two L-shaped buckle blocks (301) are movably buckled on the connection assemblies. An adjustment assembly (4) for adjusting the angle of the mounting assembly (2) is arranged between the corresponding chute frames (201) and the mounting frames (1).
2. A distributed photovoltaic installation structure according to claim 1, characterized in that: The connecting assembly comprises a connecting rod 1 (202) fixedly arranged between the two slide frames (201) and a connecting rod 2 (203) slidably arranged between the two slide frames (201), a T-shaped slider 1 is fixedly arranged at both ends of the connecting rod 2 (203), and the T-shaped slider 1 is slidably connected to the slide frame (201), the slide frame (201) and the T-shaped slider 1 are connected by a bolt 1 (205), two movable grooves are provided on the connecting rod 2 (203), and a limiting ring (206) is provided in the movable groove for limiting sliding, a spring (207) is fixedly arranged between the limiting ring (206) and one side of the movable groove, the connecting rod 2 (203) is connected to the slide frame (201) by a bolt 2 (208), one end of the bolt 2 (208) passes through the limiting ring (206), the spring (207), the connecting rod 2 (203) in sequence and is threadedly connected to the slide frame (201).
3. A distributed photovoltaic installation structure according to claim 2, characterized in that: The slide frame (201) is provided with a T-shaped slide (204) for sliding connection with a T-shaped slider. The slide frame (201) and the T-shaped slider are both provided with a threaded hole for threading a bolt (205) to rotate.
4. A distributed photovoltaic installation structure according to claim 2, characterized in that: The second bolt (208) is slidably connected to the limiting ring (206), and a slider is provided on the second bolt (208), and an annular slide groove for the sliding connection of the slider is provided on the limiting ring (206), a through hole 1 for the second bolt (208) to pass through is provided on the second connecting rod (203), and a plurality of threaded holes 2 for the second bolt (208) to rotate threadedly are provided on the slide groove frame (201).
5. A distributed photovoltaic installation structure according to claim 2, characterized in that: The two L-shaped buckle blocks (301) on the distributed photovoltaic panel (3) are buckled onto the first connecting rod (202) and the second connecting rod (203) respectively.
6. A distributed photovoltaic installation structure according to claim 1, characterized in that: The adjustment assembly (4) comprises a support block (401) fixedly arranged on the top of the mounting frame (1) and two connecting clamps fixedly arranged on the bottom of the slide frame (201), wherein one connecting clamp is hingedly connected to the support block (401), and an adjustment rod (402) is hingedly arranged on the other connecting clamp, and an adjustment sleeve (403) is sleeved on the outside of the adjustment rod (402), and the adjustment sleeve (403) is fixed to the adjustment rod (402) by a plurality of bolts (404), and the adjustment sleeve (403) is slidably connected to the mounting frame (1) by a T-shaped slider (2), and the T-shaped slider (2) is fixed to the mounting frame (1) by a plurality of bolts (406).
7. A distributed photovoltaic installation structure according to claim 6, characterized in that: The adjusting sleeve (403) is provided with a second through-hole for the third bolt (404) to pass through, and the adjusting rod (402) is provided with a plurality of threaded holes (3) for the third bolt (404) to be threadedly connected.
8. A distributed photovoltaic installation structure according to claim 6, characterized in that: The mounting frame (1) is provided with a T-shaped slot 2 (405) for sliding connection of the T-shaped slider 2, the mounting frame (1) is provided with a plurality of through holes 3 for the bolts 4 (406) to pass through, and the T-shaped slider 2 is provided with a plurality of threaded holes 4 for the bolts 4 (406) to be threadedly connected.