Zinc-aluminum-magnesium support for photovoltaic accessories
By designing zinc-aluminum-magnesium brackets for photovoltaic accessories for components such as lifting columns and flip columns, the problems of low installation efficiency and limited support range of existing brackets are solved, and convenient installation and stable fixation of photovoltaic components are achieved.
Patent Information
- Application Number
- CN202422420492.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing brackets need to carry a variety of tools when installing, which affects the installation efficiency. The height of the supporting components is limited, making it difficult to support different types of photovoltaic accessories, and the scope of use is limited.
A zinc-aluminum-magnesium bracket for photovoltaic accessories is designed, including lifting columns, flip columns, anti-slip plates, reinforcement mechanisms and other components. The height of the lifting column is adjusted by rotating threaded columns, and the flip columns are fixed to the ground. The strengthening mechanism is used to improve stability, so as to achieve convenient installation and fixation of a variety of photovoltaic components.
It realizes convenient installation and height and angle adjustment of photovoltaic components, improves installation efficiency and stability, and expands the support range.
Smart Images

Figure CN223207039U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of brackets, in particular to a zinc-aluminum-magnesium bracket for photovoltaic accessories. Background Art
[0002] Solar panels are devices that absorb sunlight and convert solar radiation energy directly or indirectly into electrical energy through the photoelectric effect or photochemical effect. When installing solar panels, they are generally fixed by brackets, and then fixed by brackets. In the process of implementing this application, the applicant found that the existing brackets are usually set up on-site when in use. The problem caused by this is that many tools need to be carried for on-site setting up, which seriously affects the installation efficiency.
[0003] In the existing technology, such as the "A High-Strength Solar Magnesium-Aluminum-Zinc Photovoltaic Bracket" with Chinese Authorization Announcement No. CN 219918759 U, it includes a base plate and a support plate, a plurality of support rods are fixedly connected to the left side of the upper surface of the base plate, and a plurality of first U-shaped blocks are fixedly connected to the left side of the lower surface of the support plate, and the upper end of each support rod is rotatably connected to the inside of the corresponding first U-shaped block through a first axle pin. Two U-shaped rods are symmetrically fixedly connected to the upper surface of the base plate, and the rod walls of the two U-shaped rods are movably sleeved with a slider, and a plurality of through holes are opened inside the slider. The utility model provides a limiting mechanism, which can fix the support plate by rotating the angle of the support plate through the axis where the first axle pin is located, and then fix it by the movable plug-in between the limiting rod and the corresponding limiting groove, effectively ensuring the stability of the bracket. At the same time, the entire bracket is easy to carry and can be directly opened at the installation site, effectively ensuring installation efficiency.
[0004] In the existing technology, when photovoltaic accessories are installed and fixed, due to the limited height of the supporting components, it is difficult for the support frame to support different types of photovoltaic accessories, which leads to a problem that the scope of use of the support frame is greatly limited.
[0005] Therefore, it is necessary to provide a zinc-aluminum-magnesium bracket for photovoltaic accessories to solve the above technical problems. Utility Model Content
[0006] The utility model provides a zinc-aluminum-magnesium bracket for photovoltaic accessories, which solves the problem that the support frame is difficult to support different types of photovoltaic accessories due to the limited height of the support components, thereby greatly limiting the scope of use of the support frame.
[0007] The top of the lifting column is fixedly connected to the lifting column by the lifting link, and the lifting column is movably connected to the lifting column by the lifting link.
[0008] Preferably, the front shape of the lifting column is T-shaped, and the lifting column is adapted to the support sleeve.
[0009] Preferably, the turning columns and the bottom plate are perpendicular to each other, and there are four turning columns.
[0010] Preferably, the anti-skid plate is made of aluminum alloy, and there are several anti-skid plates.
[0011] Preferably, there are a plurality of sliding balls, which are evenly distributed on the sides of the lifting column.
[0012] Preferably, the spring is located directly below the lifting column, and the spring is adapted to the support sleeve.
[0013] Preferably, the adjustment mechanism includes an adjustment column, which is movably sleeved on the top of the No. 1 positioning sleeve, the internal thread of the No. 1 positioning sleeve is sleeved with a bolt, and the top of the adjustment column is movably sleeved with a flip seat.
[0014] Preferably, the reinforcing mechanism includes a No. 2 steel cable, which is movably sleeved on the side of the positioning plate, and one end of the No. 2 steel cable is movably sleeved on a connecting column.
[0015] Preferably, there are several anti-slip grooves, and the several anti-slip grooves are evenly distributed on the outside of the connecting sleeve.
[0016] Compared with the related art, the zinc-aluminum-magnesium bracket for photovoltaic accessories provided by the present invention has the following beneficial effects:
[0017] The utility model provides a zinc-aluminum-magnesium bracket for photovoltaic accessories. By arranging a lifting column, when adjusting the fixed height of the photovoltaic component, the threaded column is rotated so that the threaded column can be moved out of the interior of the support sleeve, that is, out of the interior of the positioning groove. At this time, the lifting column is lifted, so that the lifting column can drive the No. 1 positioning sleeve to move up and down, thereby achieving the effect of adjusting the installation height of the photovoltaic component, thereby bringing convenience to the installation and fixation of various photovoltaic components, that is, improving the practical effect of the photovoltaic bracket;
[0018] By setting up a reinforcement mechanism, when the photovoltaic bracket is installed and fixed, the positioning column is fixed to the ground. At this time, the connecting column is threaded into the inside of the connecting sleeve, so that the positioning column can stretch the support sleeve through the No. 1 steel cable and the No. 2 steel cable, thereby achieving the auxiliary reinforcement and fixing effect of the support sleeve, thereby improving the stability of the photovoltaic bracket after installation and fixation. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a structural schematic diagram of a preferred embodiment of a zinc-aluminum-magnesium bracket for photovoltaic accessories provided by the present invention;
[0020] Figure 2 for Figure 1 A front view of a zinc-aluminum-magnesium bracket for photovoltaic accessories is shown;
[0021] Figure 3 for Figure 1 A front view of a support sleeve in a zinc-aluminum-magnesium bracket for photovoltaic accessories is shown;
[0022] Figure 4 for Figure 1 A front view of a lifting column in a zinc-aluminum-magnesium bracket for photovoltaic accessories is shown.
[0023] Numbers in the figure: 1. Base plate; 2. Positioning column; 3. Support sleeve; 4. Positioning shaft; 5. Flip column; 6. Anti-skid plate; 7. Lifting column; 8. Positioning groove; 9. Threaded column; 10. Sliding ball; 11. Spring; 12. Positioning sleeve No. 1; 13. Positioning plate; 14. Positioning sleeve No. 2; 15. Adjusting mechanism; 151. Adjusting column; 152. Bolt; 153. Flip seat; 16. Steel cable No. 1; 17. Connecting sleeve; 18. Reinforcement mechanism; 181. Steel cable No. 2; 182. Connecting column; 19. Anti-skid groove. DETAILED DESCRIPTION
[0024] The following will be combined with 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.
[0025] like Figure 1-4As shown, this embodiment proposes a zinc-aluminum-magnesium bracket for photovoltaic accessories, including a base plate 1 and a positioning column 2, the top of the base plate 1 is fixedly connected to a support sleeve 3, the interior of the base plate 1 is fixedly sleeved with a positioning shaft 4, the outer movably sleeved with a flip column 5, the side of the flip column 5 is fixedly connected to an anti-skid plate 6, the inner movably sleeved with a lifting column 7 of the support sleeve 3, the front of the lifting column 7 is provided with a positioning groove 8, the inner thread of the support sleeve 3 is sleeved with a threaded column 9, the side of the lifting column 7 is movably sleeved with a sliding ball 10, the inner movably sleeved with a spring 11, the top of the lifting column 7 is fixedly sleeved with a No. 1 positioning sleeve 12, the outer fixed sleeve of the support sleeve 3 is sleeved with a positioning plate 13, the top of the lifting column 7 is fixedly sleeved with a No. 2 positioning sleeve 14, the No. 1 positioning sleeve 1 2 is provided with an adjustment mechanism 15 at the top of the positioning column 2, and a No. 1 steel cable 16 is fixedly connected to the top of the positioning column 2. One end of the No. 1 steel cable 16 is movably connected with a connecting sleeve 17. A reinforcing mechanism 18 is provided on the side of the positioning plate 13, and an anti-slip groove 19 is provided on the outside of the connecting sleeve 17. The front shape of the lifting column 7 is T-shaped, and the lifting column 7 is adapted to the support sleeve 3. By setting the lifting column 7, when adjusting the fixed height of the photovoltaic component, the threaded column 9 is rotated so that the threaded column 9 can be moved out from the inside of the support sleeve 3, that is, moved out from the inside of the positioning groove 8. At this time, the lifting column 7 is lifted, so that the lifting column 7 can drive the No. 1 positioning sleeve 12 to move up and down, thereby achieving the effect of adjusting the installation height of the photovoltaic component, thereby bringing convenience to the installation and fixation of various photovoltaic components, that is, improving The practical effect of the photovoltaic bracket is achieved. The flip column 5 and the base plate 1 are perpendicular to each other, and the number of the flip columns 5 is four. By setting the flip column 5, when the support sleeve 3 is installed and fixed, the flip column 5 is flipped so that the flip column 5 can be rotated to the bottom of the base plate 1. At this time, the base plate 1 is pressed so that the base plate 1 can drive the flip column 5 to be inserted into the soil, so that the flip column 5 can fix the base plate 1 on the ground, thereby achieving the installation and fixing effect of the support sleeve 3. The material of the anti-skid plate 6 is aluminum alloy, and the number of the anti-skid plate 6 is several. By setting the anti-skid plate 6, when the support sleeve 3 is installed and fixed, the anti-skid plate 6 can greatly increase the contact area between the soil and the flip column 5, that is, increase the friction between the flip column 5 and the soil, thereby improving The stability of the flip column 5 after being fixed is improved, so that the problem of the flip column 5 moving out from the soil when shaking is avoided. The number of sliding balls 10 is several, and the sliding balls 10 are evenly distributed on the sides of the lifting column 7. By setting the sliding balls 10, when the height of the lifting column 7 is adjusted, the sliding balls 10 are able to limit the lifting column 7 moving up and down, so that the problem of friction between the lifting column 7 and the inner wall of the support sleeve 3 when moving up and down is avoided, thereby improving the smoothness of the lifting column 7 when moving up and down. The spring 11 is located directly below the lifting column 7, and the spring 11 is adapted to the support sleeve 3. By setting the spring 11, when the height of the lifting column 7 is adjusted, the spring 11 is able to push the lifting column 7 to move upward, that is, drive the No. 1 positioning sleeve 12 to move upward.The lifting column 7 and the first positioning sleeve 12 are both secured to the bottom of the lifting column 7. The lifting column 7 and the first positioning sleeve 12 are both secured to the bottom of the lifting column 7. The lifting column 7 and the first positioning sleeve 12 are both secured to the bottom of the lifting column 7. The movably sleeve is connected to the side of the positioning plate 13, and one end of the No. 2 steel cable 181 is movably sleeved with a connecting column 182. By setting a reinforcing mechanism 18, when the photovoltaic bracket is installed and fixed, the positioning column 2 is fixed to the ground. At this time, the connecting column 182 is threadedly sleeved inside the connecting sleeve 17, so that the positioning column 2 can stretch the support sleeve 3 through the No. 1 steel cable 16 and the No. 2 steel cable 181, thereby achieving the auxiliary strengthening and fixing effect of the support sleeve 3, thereby improving the stability of the photovoltaic bracket after installation and fixation. The number of anti-skid grooves 19 is several, and the several anti-skid grooves 19 are evenly distributed on the outside of the connecting sleeve 17. By setting the anti-skid grooves 19, when the connecting sleeve 17 is installed and connected, the connecting sleeve 17 is rotated, so that the anti-skid grooves 19 can greatly improve the roughness of the surface of the connecting sleeve 17, thereby avoiding the problem that the surface of the connecting sleeve 17 is relatively smooth and difficult to rotate manually, thereby improving the convenience of manual installation and connection of the connecting sleeve 17.
[0026] In this embodiment, when in use, by setting the lifting column 7, when adjusting the fixed height of the photovoltaic component, the threaded column 9 is rotated so that the threaded column 9 can be moved out from the inside of the support sleeve 3, that is, from the inside of the positioning groove 8. At this time, the lifting column 7 is lifted, so that the lifting column 7 can drive the No. 1 positioning sleeve 12 to move up and down, thereby achieving the effect of adjusting the installation height of the photovoltaic component, thereby bringing convenience to the installation and fixation of various photovoltaic components, that is, improving the practical effect of the photovoltaic bracket. When installing and fixing the support sleeve 3, the flip column 5 is flipped so that the flip column 5 can be rotated to the bottom of the base plate 1. At this time, the base plate 1 is pressed so that the base plate 1 can drive the flip column 5 to be inserted into the soil, so that the flip column 5 can fix the bottom plate 1 on the ground, thereby achieving the installation and fixing effect of the support sleeve 3. When the support sleeve 3 is installed and fixed, the anti-skid plate 6 can greatly increase the contact area between the soil and the turning column 5, that is, increase the friction between the turning column 5 and the soil, thereby improving the stability of the turning column 5 after fixation, and avoiding the problem of the turning column 5 moving out of the soil when shaking. When the height of the lifting column 7 is adjusted, the sliding ball 10 can limit the lifting column 7 moving up and down, so as to avoid the problem of friction between the lifting column 7 and the inner wall of the support sleeve 3 when moving up and down, thereby improving the smoothness of the lifting column 7 when moving up and down, and the height adjustment of the lifting column 7 is carried out. When the lifting column 7 is lifted, the spring 11 pushes the lifting column 7 to move upward, that is, drives the No. 1 positioning sleeve 12 to move upward, thereby avoiding the problem that the lifting column 7 and the No. 1 positioning sleeve 12 are heavy and the lifting column 7 is difficult to push up manually, thereby bringing convenience to the height adjustment of the lifting column 7. When adjusting the installation angle of the photovoltaic component, the bolt 152 is rotated so that the bolt 152 can be moved out from the inside of the adjusting column 151. At this time, the adjusting column 151 is lifted, so that the adjusting column 151 can drive the flip seat 153 to move up and down, thereby achieving the height adjustment effect of the two flip seats 153, so that the two flip seats 153 can drive the photovoltaic component to tilt and flip, thereby adjusting the installation angle of the photovoltaic component. The section brings convenience. When installing and fixing the photovoltaic bracket, the positioning column 2 is fixed to the ground. At this time, the connecting column 182 is threadedly sleeved on the inside of the connecting sleeve 17, so that the positioning column 2 can stretch the support sleeve 3 through the No. 1 steel cable 16 and the No. 2 steel cable 181, thereby achieving the auxiliary strengthening fixation effect of the support sleeve 3, thereby improving the stability of the photovoltaic bracket after installation and fixation. When installing and connecting the connecting sleeve 17, the connecting sleeve 17 is rotated so that the anti-slip groove 19 can greatly improve the roughness of the surface of the connecting sleeve 17, thereby avoiding the problem that the surface of the connecting sleeve 17 is relatively smooth and difficult to rotate manually, thereby improving the convenience of manual installation and connection of the connecting sleeve 17.
[0027] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A zinc-aluminum-magnesium bracket for photovoltaic accessories, comprising a base plate (1) and a positioning column (2), characterized in that: The top of the base plate (1) is fixedly connected to a support sleeve (3), the interior of the base plate (1) is fixedly sleeved with a positioning shaft (4), the exterior of the positioning shaft (4) is movably sleeved with a flip column (5), the side of the flip column (5) is fixedly connected to an anti-slide plate (6), the interior of the support sleeve (3) is movably sleeved with a lifting column (7), the front of the lifting column (7) is provided with a positioning groove (8), the interior of the support sleeve (3) is threadedly sleeved with a threaded column (9), the side of the lifting column (7) is movably sleeved with a sliding ball (10), the interior of the support sleeve (3) is movably sleeved with a spring (11 ), the top of the lifting column (7) is fixedly sleeved with a No. 1 positioning sleeve (12), the outside of the support sleeve (3) is fixedly sleeved with a positioning plate (13), the top of the lifting column (7) is fixedly sleeved with a No. 2 positioning sleeve (14), the top of the No. 1 positioning sleeve (12) is provided with an adjustment mechanism (15), the top of the positioning column (2) is fixedly connected with a No. 1 steel cable (16), one end of the No. 1 steel cable (16) is movably sleeved with a connecting sleeve (17), the side of the positioning plate (13) is provided with a reinforcing mechanism (18), and the outside of the connecting sleeve (17) is provided with an anti-slip groove (19).
2. A zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The front shape of the lifting column (7) is T-shaped, and the lifting column (7) is compatible with the support sleeve (3).
3. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The turning columns (5) and the bottom plate (1) are perpendicular to each other, and there are four turning columns (5).
4. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The anti-skid plate (6) is made of aluminum alloy material, and there are several anti-skid plates (6).
5. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The number of the sliding balls (10) is several, and the several sliding balls (10) are evenly distributed on the side of the lifting column (7).
6. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The spring (11) is located directly below the lifting column (7), and the spring (11) is adapted to the support sleeve (3).
7. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The adjusting mechanism (15) comprises an adjusting column (151), the adjusting column (151) being movably sleeved on the top of the No. 1 positioning sleeve (12), the inner thread of the No. 1 positioning sleeve (12) being sleeved with a bolt (152), and the top of the adjusting column (151) being movably sleeved with a flip seat (153).
8. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The reinforcing mechanism (18) comprises a No. 2 steel cable (181), the No. 2 steel cable (181) being movably sleeved on the side of the positioning plate (13), and one end of the No. 2 steel cable (181) being movably sleeved on a connecting column (182).
9. The zinc-aluminum-magnesium bracket for photovoltaic accessories according to claim 1, characterized in that: The number of the anti-slip grooves (19) is several, and the several anti-slip grooves (19) are evenly distributed outside the connecting sleeve (17).
Citation Information
Patent Citations
High-strength solar magnesium-aluminum-zinc plated photovoltaic support
CN219918759U