Double-row-pile K-support photovoltaic support
By using the adjustment and equalization mechanism of the double-row pile K-braced photovoltaic bracket, the angle of the photovoltaic bracket can be automatically adjusted under severe weather conditions, which solves the problem of easy damage to the photovoltaic bracket, ensures that the bracket works normally under different weather conditions and facilitates the installation of solar panels.
Patent Information
- Application Number
- CN202423080639.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing photovoltaic mounting systems are easily damaged under severe weather conditions, affecting their normal use.
The photovoltaic support system adopts a double-row pile K-bracing mechanism. Through the adjustment mechanism and the equal division mechanism, the elevation angle is adjusted by the synchronous cylinder, which automatically adapts to different weather conditions. Combined with the limit rod and worm gear mechanism, the angle adjustment and fixation of the photovoltaic support system are realized.
It effectively protects the photovoltaic mounting system from damage in severe weather, ensures that the photovoltaic mounting system works normally under different weather conditions, and facilitates the installation and fixing of solar panels.
Smart Images

Figure CN223553263U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic support technology, specifically a double-row pile K-braced photovoltaic support. Background Technology
[0002] Solar photovoltaic (PV) mounting brackets are specialized supports designed for placing, installing, and securing solar panels in a solar photovoltaic power generation system. They are typically made of aluminum alloy, carbon steel, or stainless steel. The structure of the PV mounting bracket must be robust and reliable, able to withstand atmospheric corrosion, wind loads, and other external effects. It should offer safe and reliable installation, achieve maximum performance with minimal installation cost, require virtually no maintenance, and have reliable repair capabilities.
[0003] An existing patent application (CN201120493536.3) discloses a K-type bracket with an adjustable support surface angle. By designing a groove on the support column for placing a connector, allowing the connector to move within the groove, the two supports of the device can slide relative to each other to the desired position before being fixed, without disassembling any parts of the device. This allows for adjustment of the bracket's support surface inclination according to different angle requirements. However, photovoltaic brackets are easily damaged by severe weather conditions such as strong winds, rain, and snow, affecting their normal use.
[0004] It should be noted that the above content falls within the inventor's technical knowledge and does not necessarily constitute prior art. Utility Model Content
[0005] To address the above deficiencies, this utility model provides a double-row pile K-braced photovoltaic support system to solve the problems in the use of photovoltaic support systems.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A double-row pile K-braced photovoltaic support includes a set of pile bases and a set of strip mounting plates movably installed on the upper end of the set of pile bases. An adjustment mechanism is connected to the bottom of the set of strip mounting plates, and an equal division mechanism is provided on the set of strip mounting plates.
[0008] The adjustment mechanism includes a set of hinge seat one, a set of hinge seat two, a set of synchronous cylinders, a set of K-braces, and a set of hinge seat three. The set of hinge seat one is installed on the left side of a set of pile foundations, the set of hinge seat two is installed at the bottom of a set of strip mounting plates, the set of synchronous cylinders is hinged at one end to the corresponding hinge seat one and at the other end to the corresponding hinge seat two, the set of K-braces is installed on the right side of a set of pile foundations, and the set of hinge seat three is installed at the upper end of the set of K-braces.
[0009] Furthermore, the dividing mechanism includes a set of fixed slide rails, a set of fixed plates, a fixed keel frame, several sets of sliding plates, several movable keel frames, a set of vertical plates, a set of rotating threaded sleeves, a set of threaded rods, and a set of worm gears. The set of fixed slide rails is mounted on a set of strip mounting plates, and the set of fixed plates is fixedly mounted at the center of the set of fixed slide rails. The fixed keel frames are mounted between the set of fixed plates. The bottom of several sets of sliding plates is slidably mounted on both sides of the set of fixed slide rails. Several movable keel frames are respectively mounted between opposite sets of sliding plates. A set of vertical plates is mounted on the right side of a set of strip mounting plates. A set of rotating threaded sleeves is movably inserted into a set of vertical plates. A set of threaded rods is threadedly inserted into a set of rotating threaded sleeves, and its left end is connected to the corresponding sliding plate. A set of worm gears is mounted on a set of rotating threaded sleeves.
[0010] Furthermore, several sets of sliding plates are connected to a set of fixed plates via a set of diamond-shaped telescopic frames.
[0011] Furthermore, a set of worms that mesh with a worm gear are movably installed on one side of a set of vertical plates, and a rotating handle is installed on the upper end of each set of worms.
[0012] Furthermore, a set of limit rods is installed on a set of pile foundations, and the set of limit rods is installed alternately with a set of synchronous cylinders.
[0013] Furthermore, the bottom right side of a set of strip mounting plates is movably hinged to a set of hinge seats three via a set of pins.
[0014] This utility model provides a double-row K-braced photovoltaic bracket with the following advantages: an adjustment mechanism is connected to the bottom of a set of strip mounting plates, and a set of synchronous cylinders are used to adjust the elevation angle of the photovoltaic bracket to track the sun's movement. In windy weather, it automatically flattens, and in rainy or snowy weather, it rotates to the maximum tilt angle to prevent damage to the photovoltaic bracket from severe weather. The equal-division mechanism can adjust the distance between the fixed keel frame and several movable keel frames at equal intervals by rotating a set of rotating handles, which facilitates the installation of solar panels. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of a double-row pile K-braced photovoltaic support according to the present invention.
[0016] Figure 2 This is a schematic diagram of the automatic leveling of a double-row pile K-braced photovoltaic support according to the present invention.
[0017] Figure 3 This is a schematic diagram of the dividing mechanism of this utility model.
[0018] Figure 4 This is a schematic diagram of the threaded rod adjustment described in this utility model.
[0019] In the diagram: 1. Pile base; 2. Strip mounting plate; 3. Hinge seat one; 4. Hinge seat two; 5. Synchronous cylinder; 6. K-bracing frame; 7. Hinge seat three; 8. Fixed slide rail; 9. Fixed plate; 10. Fixed keel frame; 11. Sliding plate; 12. Movable keel frame; 13. Vertical plate; 14. Rotating threaded sleeve; 15. Threaded rod; 16. Worm gear; 17. Diamond-shaped telescopic frame; 18. Worm; 19. Rotating handle; 20. Limiting rod; 21. Pin. Detailed Implementation
[0020] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figure 1-4 As shown: A double-row pile K-braced photovoltaic support includes a set of pile bases 1 and a set of strip mounting plates 2 movably installed on the upper end of the set of pile bases 1. An adjustment mechanism is connected to the bottom of the set of strip mounting plates 2, and an equalizing mechanism is provided on the set of strip mounting plates 2. The adjustment mechanism includes a set of hinge seats 1 3, a set of hinge seats 2 4, a set of synchronous cylinders 5, a set of K-braced supports 6, and a set of hinge seats 3 7. The set of hinge seats 1 3 is installed on the left side of the set of pile bases 1, the set of hinge seats 2 4 is installed at the bottom of the set of strip mounting plates 2, and the set of synchronous cylinders... 5. One end of each component is hinged to the corresponding hinge seat 3, and the other end is hinged to the corresponding hinge seat 4. A set of K-bracing frames 6 is installed on the right side of a set of pile foundation 1, and a set of hinge seats 3 7 is installed on the upper end of the set of K-bracing frames 6. The equal-division mechanism includes a set of fixed slide rails 8, a set of fixed plates 9, a fixed keel frame 10, several sets of sliding plates 11, several movable keel frames 12, a set of vertical plates 13, a set of rotating threaded sleeves 14, a set of threaded rods 15, and a set of worm gears 16. A set of fixed slide rails 8 is installed on a set of strip mounting plates 2, and a set of fixed... A fixed plate 9 is fixedly installed at the center of a set of fixed slide rails 8. The fixed keel frame 10 is installed between the set of fixed plates 9. Several sets of sliding plates 11 are slidably installed on both sides of the set of fixed slide rails 8. Several movable keel frames 12 are respectively installed between the corresponding sets of sliding plates 11. A set of vertical plates 13 is installed on the right side of a set of strip mounting plates 2. A set of rotating threaded sleeves 14 are movably inserted into a set of vertical plates 13. A set of threaded rods 15 are threadedly inserted into a set of rotating threaded sleeves 14, and their left ends are connected to the corresponding sliding plates 11. A set of worm gears 16 are mounted on a set of rotating threaded sleeves 14; several sets of sliding plates 11 are connected to a set of fixed plates 9 by a set of diamond-shaped telescopic frames 17; a set of worms 18 that mesh with worm gears 16 are movably mounted on one side of a set of vertical plates 13, and a rotating handle 19 is mounted on the upper end of each set of worms 18; a set of limiting rods 20 are mounted on a set of pile bases 1, and the set of limiting rods 20 are alternately mounted with a set of synchronous cylinders 5; the bottom right side of a set of strip mounting plates 2 is movably hinged to a set of hinge seats 7 by a set of pins 21.
[0021] The working principle of this implementation plan is as follows: The electrical equipment used by the photovoltaic bracket is controlled by an external controller. When using it, the user first fixes a set of pile base 1 in a suitable position.
[0022] During adjustment: A set of hinge seats 1 (3) is installed on the left side of a set of pile foundation 1; a set of hinge seats 2 (4) is installed at the bottom of a set of strip mounting plates 2; a set of synchronous cylinders 5 are hinged at one end to the corresponding hinge seat 1 (3) and at the other end to the corresponding hinge seat 2 (4); a set of K-braces 6 is installed on the right side of a set of pile foundation 1; a set of hinge seats 3 (7) is installed on the upper end of a set of K-braces 6; a set of limit rods 20 is installed on a set of pile foundation 1, and the limit rods 20 and the set of synchronous cylinders 5 are installed alternately; the bottom right side of a set of strip mounting plates 2 is movably hinged to a set of hinge seats 3 (7) via a set of pins 21. Figure 1 As shown, a set of synchronous cylinders 5 extends or retracts to adjust the elevation angle of the photovoltaic bracket, thus tracking the sun's movement. In windy conditions, the retracting ends of the synchronous cylinders 5 automatically level the photovoltaic bracket, while a set of limit rods 20 provides support. Figure 2 As shown, when encountering rainy or snowy weather, a set of synchronous cylinders 5 extend their telescopic ends, causing the photovoltaic bracket to rotate to the maximum tilt angle to prevent damage to the photovoltaic bracket caused by severe weather.
[0023] When divided equally: a set of fixed slide rails 8 are installed on a set of strip mounting plates 2; a set of fixed plates 9 are fixedly installed at the center of a set of fixed slide rails 8; fixed keel frames 10 are installed between a set of fixed plates 9; several sets of sliding plates 11 are slidably installed on both sides of a set of fixed slide rails 8 at their bottoms; several movable keel frames 12 are respectively installed between a set of opposite sliding plates 11; a set of vertical plates 13 are installed on the right side of a set of strip mounting plates 2; a set of rotating threaded sleeves 14 are movably inserted into a set of vertical plates 13 through fastening bearings; a set of threaded rods 15 are threadedly inserted into a set of rotating threaded sleeves 14, and their left ends are respectively connected to the corresponding sliding plates 11; a set of worm gears 16 are installed on a set of rotating threaded sleeves 14; several sets of sliding plates 11 are connected to a set of fixed plates 9 through a set of diamond-shaped telescopic frames 17; a set of worms 18 that mesh with worm gears 16 are movably installed on one side of a set of vertical plates 13, and a rotating handle 19 is installed on the upper end of each set of worms 18. Figure 3 and Figure 4 As shown, the user can adjust the distance between the fixed keel frame 10 and the several movable keel frames 12 by rotating a set of rotating handles 19, a set of threaded rods 15, several sets of sliding plates 11 and a set of diamond telescopic frames 17, so as to facilitate the installation of solar panels.
[0024] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.
Claims
1. A double-row pile K-braced photovoltaic support, comprising a set of pile bases (1) and a set of strip mounting plates (2) movably mounted on the upper end of the set of pile bases (1), characterized in that, An adjustment mechanism is connected to the bottom of a set of strip mounting plates (2), and an equal division mechanism is provided on the set of strip mounting plates (2); The adjustment mechanism includes a set of hinge seat one (3), a set of hinge seat two (4), a set of synchronous cylinders (5), a set of K-braces (6) and a set of hinge seat three (7). The set of hinge seat one (3) is installed on the left side of a set of pile foundations (1), the set of hinge seat two (4) is installed at the bottom of a set of strip mounting plates (2), the set of synchronous cylinders (5) is hinged at one end to the corresponding hinge seat one (3) and at the other end to the corresponding hinge seat two (4), the set of K-braces (6) is installed on the right side of a set of pile foundations (1), and the set of hinge seat three (7) is installed at the upper end of the set of K-braces (6).
2. The double-row pile K-braced photovoltaic support according to claim 1, characterized in that, The dividing mechanism includes a set of fixed slide rails (8), a set of fixed plates (9), a fixed keel frame (10), several sets of sliding plates (11), several movable keel frames (12), a set of vertical plates (13), a set of rotating threaded sleeves (14), a set of threaded rods (15), and a set of worm gears (16). The set of fixed slide rails (8) is mounted on a set of strip mounting plates (2), and the set of fixed plates (9) is fixedly mounted at the center of the set of fixed slide rails (8). The fixed keel frames (10) are installed between the set of fixed plates (9), and the several sets of sliding plates (11) are mounted on the set of fixed plates (9). The bottom of the movable plate (11) is slidably mounted on both sides of a set of fixed slide rails (8). Several movable keel frames (12) are respectively mounted between a set of sliding plates (11). A set of vertical plates (13) is mounted on the right side of a set of strip mounting plates (2). A set of rotating threaded sleeves (14) is movably inserted into a set of vertical plates (13). A set of threaded rods (15) is threadedly inserted into a set of rotating threaded sleeves (14), and the left end is connected to the corresponding sliding plates (11). A set of worm gears (16) is mounted on a set of rotating threaded sleeves (14).
3. A double-row pile K-braced photovoltaic support according to claim 2, characterized in that, Several sets of sliding plates (11) are connected to a set of fixed plates (9) by a set of diamond telescopic frames (17).
4. A double-row pile K-braced photovoltaic support according to claim 2, characterized in that, A set of worms (18) that mesh with worm gears (16) are movably installed on one side of a set of vertical plates (13), and a rotating handle (19) is installed on the upper end of each set of worms (18).
5. A double-row pile K-braced photovoltaic support according to claim 1, characterized in that, A set of limit rods (20) are installed on a set of pile foundations (1), and the set of limit rods (20) and a set of synchronous cylinders (5) are installed alternately.
6. A double-row pile K-braced photovoltaic support according to claim 1, characterized in that, A set of strip mounting plates (2) are hinged to a set of hinge seats (7) on the bottom right side by a set of pins (21).
Citation Information
Patent Citations
Supporting surface angle adjustable K-shaped support
CN202394990U