Oblique beam structure of photovoltaic support

By designing a fixing mechanism in the inclined beam structure of the photovoltaic bracket, and using the cooperation of springs and stops, the rapid installation of purlins is achieved, solving the problem of low installation efficiency of existing photovoltaic brackets.

CN222884575UActive Publication Date: 2025-05-16HUBEI LIANYUNGANG ELECTRIC POWER DESIGN CO LTD
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Patent Information

Application Number
CN202421834772.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-16
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

During the installation process, the purlins of existing photovoltaic brackets have a slow installation efficiency due to the large installation area of ​​the brackets.

Method used

A oblique beam structure of a photovoltaic bracket is designed, and a fixing mechanism includes mounting blocks, mounting holes, T-bars, stops, slide chutes and springs. Through the compression of the spring and the movement of the stops, the rapid installation of the purlins can be achieved.

Benefits of technology

Through this design, the purlin can be quickly installed on the inclined beam, significantly improving the installation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oblique beam structure of a photovoltaic support, which comprises a first upright post, a second upright post, an oblique beam, a purline and a fixing mechanism, the fixing mechanism comprises a mounting block, one side of the mounting block is provided with a mounting hole, and two sides of the interior of the mounting hole are respectively provided with a T-shaped strip. A spring is arranged in the mounting hole, one end of the spring is connected with a check block, sliding grooves are formed in the two sides of the check block respectively, and the T-shaped strip is arranged in the sliding grooves. According to the utility model, the purline is placed between the mounting blocks, then the purline is pressed downwards, so that the purline extrudes the baffle block, and after being extruded, the baffle block begins to move into the mounting hole and exert pressure on the spring, so that the spring is shrunk, and therefore, the baffle block enters the mounting hole, then the purline is clamped between the mounting blocks, and the insertion rod is inserted into the insertion hole; and then, the stop block pops out under the action of the spring and is clamped above the purline to limit the purline, so that the purline can be quickly mounted on the oblique beam, and the mounting efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic brackets, in particular to an inclined beam structure of a photovoltaic bracket. Background Art

[0002] The inclined beam structure of the photovoltaic support is one of the important structures supporting the photovoltaic modules, and its design can be adjusted according to the specific installation site and requirements. The inclined beam structure is usually made of aluminum alloy or galvanized steel, and has certain strength and corrosion resistance to ensure that the support system can operate stably for a long time in outdoor environments. The inclined beam of the photovoltaic support is usually a triangular structure, including an inclined beam and two vertical pillars. Among them, the inclined beam is responsible for supporting the photovoltaic modules, bearing the weight and wind pressure of the modules, and at the same time, the tilt angle enables the modules to better receive sunlight. The vertical pillars are fixed to the ground or the support base to support and fix the entire support structure.

[0003] However, during the installation process, the existing purlins are fixed on the inclined beams by bolts. Since the installation area of ​​the bracket is large, the installation efficiency is slow. Therefore, a photovoltaic bracket inclined beam structure is proposed to overcome the above problems. Utility Model Content

[0004] The purpose of the utility model is to solve the problem in the prior art that the existing purlins are fixed on the inclined beams by bolts during installation, and the installation efficiency is slow due to the large installation area of ​​the bracket, and to propose an inclined beam structure for a photovoltaic bracket.

[0005] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0006] A photovoltaic support inclined beam structure comprises a first column, a second column, an inclined beam, a purlin and a fixing mechanism, wherein the fixing mechanism comprises a mounting block, a mounting hole is provided on one side of the mounting block, and T-shaped bars are respectively provided on both sides of the mounting hole.

[0007] A spring is arranged inside the mounting hole, one end of the spring is connected with a stopper, two sides of the stopper are respectively provided with sliding grooves, and the T-shaped bars are arranged in the sliding grooves.

[0008] A pair of mounting blocks are evenly arranged on the inclined beam, and insertion rods are evenly arranged on the inclined beam, and the insertion rods are located between the mounting blocks.

[0009] The purlin is provided with a plug hole, the purlin is arranged between the mounting blocks, and the plug rod is inserted into the plug hole.

[0010] Preferably, the oblique beam is arranged on the first column and the second column.

[0011] Preferably, a reinforcing rod is provided between the first column and the oblique beam.

[0012] Preferably, a triangular structure is formed between the first column, the reinforcing rod and the oblique beam.

[0013] Preferably, the slide groove is divided into a first slide section and a second slide section, the thin end of the T-shaped bar is arranged in the first slide section, and the thick end of the T-shaped bar is arranged in the second slide section.

[0014] Preferably, one end of the stopper is configured as a slope structure.

[0015] The utility model has the following beneficial effects:

[0016] The utility model places the purlin between the installation blocks and then presses the purlin downward so that the purlin squeezes the stopper. After being squeezed, the stopper starts to move into the installation hole, exerts pressure on the spring, causing the spring to contract, thereby allowing the stopper to enter the installation hole. The purlin is then stuck between the installation blocks, the insertion rod is inserted into the insertion hole, and then the stopper pops outward under the action of the spring and is stuck above the purlin, limiting the position of the purlin, so that the purlin can be quickly installed on the inclined beam, thereby accelerating the installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure;

[0018] Figure 2 It is a schematic diagram of the side structure;

[0019] Figure 3 It is a schematic diagram of the fixed mechanism structure;

[0020] Figure 4 Schematic diagram of the purlin structure.

[0021] In the figure: 1. first column; 2. second column; 3. reinforcing rod; 4. oblique beam; 5. purlin; 501. socket; 6. fixing mechanism; 601. mounting block; 602. mounting hole; 603. T-shaped bar; 604. stopper; 605. slide groove; 606. spring; 7. plug rod. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0023] Reference Figure 1-4 A slanted beam structure of a photovoltaic support includes a first column 1, a second column 2, a slanted beam 4, a purlin 5 and a fixing mechanism 6, wherein the fixing mechanism 6 includes a mounting block 601, a mounting hole 602 is provided on one side of the mounting block 601, and T-shaped bars 603 are respectively provided on both sides of the interior of the mounting hole 602.

[0024] A spring 606 is provided inside the mounting hole 602, one end of the spring 606 is connected to a stopper 604, one end of the stopper 604 is provided with an inclined structure, both sides of the stopper 604 are provided with slide grooves 605, a T-shaped bar 603 is provided in the slide groove 605, the slide groove 605 is divided into a first slide section and a second slide section, the thin end of the T-shaped bar 603 is provided in the first slide section, and the thick end of the T-shaped bar 603 is provided in the second slide section.

[0025] By placing the purlin 5 between the mounting blocks 601 and then pressing the purlin 5 downward, the purlin 5 squeezes the stopper 604. After being squeezed, the stopper 604 slides on the T-shaped bar 603 and starts to move toward the mounting hole 602, exerting pressure on the spring 606, causing the spring 606 to contract, thereby allowing the stopper 604 to enter the mounting hole 602.

[0026] A pair of mounting blocks 601 are evenly arranged on the inclined beam 4 , and insertion rods 7 are evenly arranged on the inclined beam 4 , and the insertion rods 7 are located between the mounting blocks 601 .

[0027] The purlin 5 is provided with an insertion hole 501 . The purlin 5 is arranged between the mounting blocks 601 . The insertion rod 7 is inserted into the insertion hole 501 .

[0028] Then the purlin 5 is stuck between the mounting blocks 601, and the insertion rod 7 is inserted into the insertion hole 501, and the lateral movement of the purlin 5 is limited by the insertion rod 7. Then the stopper 604 pops outward under the action of the spring 606 and is stuck above the purlin 5 to limit the purlin 5, so that the purlin 5 can be quickly installed on the inclined beam 4, thereby speeding up the installation efficiency.

[0029] The oblique beam 4 is arranged on the first column 1 and the second column 2 , a reinforcing rod 3 is arranged between the first column 1 and the oblique beam 4 , and a triangular structure is formed between the first column 1 , the reinforcing rod 3 and the oblique beam 4 .

[0030] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An inclined beam structure of a photovoltaic support, comprising a first column (1), a second column (2), an inclined beam (4), a purlin (5) and a fixing mechanism (6), characterized in that: The fixing mechanism (6) comprises a mounting block (601), a mounting hole (602) is provided on one side of the mounting block (601), and T-shaped bars (603) are provided on both sides of the interior of the mounting hole (602); A spring (606) is provided inside the mounting hole (602), one end of the spring (606) is connected to a stopper (604), two sides of the stopper (604) are respectively provided with slide grooves (605), and the T-shaped bar (603) is arranged in the slide groove (605); A pair of mounting blocks (601) are evenly arranged on the inclined beam (4), and insertion rods (7) are evenly arranged on the inclined beam (4), wherein the insertion rods (7) are located between the mounting blocks (601); The purlin (5) is provided with an insertion hole (501), the purlin (5) is arranged between the mounting blocks (601), and the insertion rod (7) is inserted into the insertion hole (501).

2. The oblique beam structure of a photovoltaic support according to claim 1, characterized in that: The inclined beam (4) is arranged on the first column (1) and the second column (2).

3. The oblique beam structure of a photovoltaic support according to claim 2, characterized in that: A reinforcing rod (3) is provided between the first upright column (1) and the inclined beam (4).

4. The oblique beam structure of a photovoltaic support according to claim 3, characterized in that: A triangular structure is formed between the first column (1), the reinforcing rod (3) and the inclined beam (4).

5. The oblique beam structure of a photovoltaic support according to claim 1, characterized in that: The sliding groove (605) is divided into a first sliding section and a second sliding section. The thin end of the T-shaped bar (603) is arranged in the first sliding section, and the thick end of the T-shaped bar (603) is arranged in the second sliding section.

6. The oblique beam structure of a photovoltaic support according to claim 1, characterized in that: One end of the stopper (604) is configured as a slope structure.