Photovoltaic solar panel engineering installation support frame

By designing a photovoltaic solar panel installation support frame, and utilizing a combination of sleeve rods and bolts, the problem of limited photovoltaic panel installation in existing technologies has been solved, enabling flexible installation adjustment and stable support to meet the needs of different roof areas.

CN223584086UActive Publication Date: 2025-11-21DONGFANG YAONENG NEW ENERGY ENGINEERING (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202423105632.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-21
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing photovoltaic solar panel installation mechanisms are mostly planar support structures, which are difficult to adapt to the structure of large-area factory roofs, and are difficult to adjust and assemble, resulting in limited installation.

Method used

A photovoltaic solar panel installation support frame was designed, including a first set of rods, a second set of rods, a third set of rods, and a support ring. Through the combination of horizontal and vertical mounting holes and mounting bolts, the structure can be flexibly spliced ​​and adjusted to adapt to the installation needs of different roof areas.

Benefits of technology

It enables convenient adjustment and stable support for photovoltaic panel installation, adapts to installation on roofs of different sizes, and increases convenience and structural stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photovoltaic solar panel engineering installation support frame, which comprises a first sleeve rod, a second sleeve rod, a third sleeve rod and a support ring, the top of the first sleeve rod is provided with a plurality of transverse installation holes I, the two sides of the first sleeve rod are provided with vertical installation holes I, the vertical installation holes I are internally and movably inserted with installation bolts III, and the vertical installation holes I are provided with vertical installation bolts II. A mounting bolt II is movably inserted into the transverse mounting hole I; the length of the sleeve and the length of the screw rod are changed by rotating the sleeve to promote threaded connection of the nut and the screw rod, the support corresponds to the first vertical mounting hole and the second vertical mounting hole, and the first mounting bolt extends to the fixed position in the support through threads, so that transverse tension is generated between the first sleeve rod and the third sleeve rod at the blank position; and in cooperation with supporting of the second sleeve rods and the second inner rods, the stability between the first sleeve rods and the first inner rods which are horizontally laid is improved, the structural strength is conveniently improved, and the relative stability of the structure is kept.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic solar panel engineering installation mechanism technical field, concretely is a kind of photovoltaic solar panel engineering installation support frame. BACKGROUND

[0002] Solar photovoltaic system, also known as photoelectricity, is referred to as photovoltaic, which refers to the facility for converting solar energy into direct-current electric energy by using the photovoltaic effect of photovoltaic semiconductor materials. The core of photovoltaic facility is solar panel. At present, the main semiconductor materials used for power generation are: single crystal silicon, polycrystalline silicon, amorphous silicon and cadmium telluride, etc. In recent years, as countries are actively promoting the application of renewable energy, the development of photovoltaic industry is very rapid, and photovoltaic system can be installed on the ground on a large scale to become a photovoltaic power station, or placed on the roof or outer wall of building to form a photovoltaic building integration.

[0003] As a kind of clean energy, photovoltaic has developed rapidly in recent years, and photovoltaic solar panel power generation can be integrated into power grid and generate benefits for installation users. Most of the large-area roof of factory building is idle. In the process of photovoltaic solar panel engineering installation, the existing photovoltaic solar panel installation mechanism is mostly plane support structure, which cannot well adapt to the large-area roof structure of factory building, and it is difficult to assemble and adjust when installing on a large area, and provide support for photovoltaic panel, so that the installation is limited. Therefore, a photovoltaic solar panel engineering installation support frame is proposed. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a photovoltaic solar panel engineering installation support frame to solve the problems raised in the above background technology.

[0005] To achieve the above object, the utility model provides following technical scheme: a photovoltaic solar panel engineering installation support frame, including first sleeve rod, second sleeve rod, third sleeve rod and support ring, the top of first sleeve rod is equipped with a plurality of horizontal installation hole no.

[0006] Preferably, the horizontal installation hole no. 1 is linearly and uniformly distributed on the top of the first sleeve rod, the vertical installation hole no. 1 is linearly and uniformly distributed on the two sides of the first sleeve rod, the size of the sliding strip no. 1 is matched with the size of the sliding groove no. 1, the installation bolt no. 3 is threadedly extended to the inside of one end of the second sleeve rod, the installation bolt no. 2 is threadedly connected to the inside of the first inner rod, and the size of the installation bolt no. 3 is matched with the size of the bolt hole no. 1.

[0007] Preferably, the horizontal installation hole no. 2 is linearly and uniformly distributed on the top of the second sleeve rod, the sliding strip no. 2 is slidingly installed in the sliding groove no. 2, and the installation bolt no. 4 is threadedly extended to the inside of the horizontal installation hole no. 5.

[0008] Preferably, the third horizontal mounting hole is linearly and uniformly distributed on the top of the third sleeve rod, the second vertical mounting hole is linearly and uniformly distributed on the two sides of the third sleeve rod, the fifth mounting bolt is threadedly extended to the inside of the end of the second inner rod, the third horizontal mounting hole is matched with the fourth horizontal mounting hole in size, the first sliding strip is matched with the third sliding groove in size, and the fifth mounting bolt is matched with the bolt hole in size.

[0009] Preferably, the plug-in ring is linearly and uniformly arranged on the outside of the third sleeve rod.

[0010] Preferably, the inside of the nut is threadedly sleeved with the outside of the screw rod, the first mounting bolt is matched with the second vertical mounting hole and the first vertical mounting hole in size, and the first vertical mounting hole is matched with the second vertical mounting hole in size.

[0011] Compared with the prior art, the utility model has the advantages that: when the structure is used, the user slides the first inner rod to the two ends of the first sleeve rod and the third sleeve rod, adjusts the length, inserts the second mounting bolt into the inside of the first horizontal mounting hole and the third horizontal mounting hole and extends to the inside of the fourth horizontal mounting hole, fixes the first sleeve rod, the third sleeve rod and the first inner rod, stretches the length of the second sleeve rod and the second inner rod, inserts the fourth mounting bolt into the second horizontal mounting hole and extends to the inside of the fifth horizontal mounting hole, fixes the length of the second sleeve rod and the second inner rod, places the second sleeve rod and the second inner rod on the opposite side of the first sleeve rod and the third sleeve rod, inserts the first vertical mounting hole into the third mounting bolt and threadedly extends to the inside of the second sleeve rod, inserts the second vertical mounting hole into the fifth mounting bolt and extends to the inside of the second inner rod, and the structure is spliced, the first sleeve rod and the first inner rod are arranged transversely, the second sleeve rod and the second inner rod are placed on the opposite side, the installation area is changed according to the installation area, the mounting hole position is provided for the photovoltaic panel installation and the bolt fixed on the roof, the overall splicing and adjustment are convenient, the structural member is simple, the use is convenient, different roof areas can be installed, and the convenience is increased.

[0012] The utility model discloses a first sleeve rod and third sleeve rod are placed with screw rod and sleeve on the opposite side of first sleeve rod and first sleeve rod, and rotate sleeve, make the length of nut and screw rod change with the thread connection of screw rod, and the support is corresponding vertical mounting hole one and vertical mounting hole two, and the first sleeve rod and third sleeve rod are generated transverse tension between the blank position of first sleeve rod and third sleeve rod through the thread extension of first mounting bolt to the inside fixed position of support, cooperate the support of second sleeve rod and second inner rod, increase the stability between multiple first sleeve rod and first inner rod of horizontal paving, facilitate the increase of structural strength, keep the relative stability of structure. Attached Figure Description

[0013] Figure 1 This is a front-view stereoscopic structural diagram of the present utility model.

[0014] Figure 2 This is a schematic diagram of the three-dimensional appearance structure of the present invention from a rear-view or upward-looking perspective.

[0015] Figure 3 This is a schematic diagram of the right-side cross-sectional structure of this utility model.

[0016] Figure 4 This utility model Figure 3 Enlarged structural diagram at point A in the middle.

[0017] In the diagram: 1. First sleeve rod; 101. Vertical mounting hole one; 102. Horizontal mounting hole one; 103. Mounting bolt three; 104. Sliding groove one; 2. Second sleeve rod; 201. Horizontal mounting hole two; 202. Mounting bolt four; 203. Sliding groove two; 3. Third sleeve rod; 301. Vertical mounting hole two; 302. Horizontal mounting hole three; 303. Insert ring; 304. Mounting bolt five; 305. Sliding groove three; 4. Sealing block; 5. First inner rod; 501. Bolt hole one; 502. Sliding strip one; 503. Horizontal mounting hole four; 6. Second inner rod; 601. Sliding strip two; 602. Horizontal mounting hole five; 7. Support ring; 701. T-shaped ring groove; 8. Screw; 9. Sleeve; 10. Nut; 11. Support; 12. Mounting bolt one; 13. T-shaped slider; 14. Sliding clip; 15. Mounting bolt two. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0019] Please see Figures 1-4The utility model provides a technical scheme: a photovoltaic solar panel engineering installation support frame, including first sleeve rod 1, second sleeve rod 2, third sleeve rod 3 and support ring 7, the top of first sleeve rod 1 is set up with a plurality of horizontal installation hole one 102, the both sides of first sleeve rod 1 are set up with vertical installation hole one 101, and the inside swing plug connection of vertical installation hole one 101 has installation bolt three 103, and the inside swing plug connection of horizontal installation hole one 102 has installation bolt two 15, and the bottom of first sleeve rod 1 is set up with sliding groove one 104, and the top of second sleeve rod 2 is set up with horizontal installation hole two 201, and the inside swing plug connection of horizontal installation hole two 201 has installation bolt four 202, and the bottom of second sleeve rod 2 is set up with sliding groove two 203, and the inside swing plug connection of second sleeve rod 2 has second inner rod 6, and the bottom of second inner rod 6 is fixedly installed with sliding strip two 601, and the inside of second inner rod 6 and sliding strip two 601 is set up with a plurality of horizontal installation hole five 602, and the top of third sleeve rod 3 is set up with a plurality of horizontal installation hole three 302, and the both sides of third sleeve rod 3 are set up with a plurality of vertical installation hole two 301, and the bottom of third sleeve rod 3 is set up with sliding groove three 305, and the inside swing plug connection of vertical installation hole two 301 has installation bolt five 304, and the outside of third sleeve rod 3 is fixedly installed with a plurality of plug-in rings 303, and one end of first sleeve rod 1 and third sleeve rod 3 is swingedly connected with blocking block 4, and the inside of the end of first sleeve rod 1 and third sleeve rod 3 away from first inner rod 5 is swingingly sleeved with first inner rod 5, and the bottom of first inner rod 5 is fixedly installed with sliding strip one 502, and the top of first inner rod 5 and the bottom of sliding strip one 502 are set up with a plurality of horizontal installation hole four 503, and horizontal installation hole four 503 is linearly and evenly distributed on the top of first inner rod 5 and the bottom of sliding strip one 502, and the both ends of first inner rod 5 are set up with bolt hole one 501, and the inside of support ring 7 is set up with T-shaped ring groove 701, four T-shaped sliding blocks 13 are slidably installed in the inside of T-shaped ring groove 701, the opposite ends of four T-shaped sliding blocks 13 are fixedly installed with sliding card 14, screw rod 8 is fixedly installed on the outside of sliding card 14, sleeve 9 is swingingly sleeved on the outside of screw rod 8, support 11 is hinged on the end of sleeve 9 away from screw rod 8, installation bolt one 12 is screwly connected in the inside of support 11, and nut 10 is fixedly installed on the outside of the end of sleeve 9 away from support 11.

[0020] The working principle of the above technical solution is as follows: In use, the first inner rod 5 is slidably installed at both ends of the first sleeve rod 1 and the third sleeve rod 3 using a manhole. After adjusting to an appropriate length, the second mounting bolt 15 is inserted into the horizontal mounting hole 102 and the third horizontal mounting hole 302 and extends into the horizontal mounting hole 403 to fix the first sleeve rod 1, the third sleeve rod 3, and the first inner rod 5. Then, the length of the second sleeve rod 2 and the second inner rod 6 is stretched, and the fourth mounting bolt 202 is inserted into the horizontal mounting hole 201 and extends into the horizontal mounting hole 502 to fix the length of the second sleeve rod 2 and the second inner rod 6. The second sleeve rod 2 and the second inner rod 6 are then placed on opposite sides of the first sleeve rod 1 and the third sleeve rod 3, causing the vertical mounting hole 101 to be inserted. Install bolt 3103 and thread it into the interior of the second sleeve rod 2, while install bolt 5304 is inserted into the interior of the vertical mounting hole 2301 and extends into the interior of the second inner rod 6, thus splicing the structure. By arranging multiple first sleeve rods 1 and first inner rods 5 laterally and placing the second sleeve rods 2 and second inner rods 6 on opposite sides, the installation area can be changed according to the installation area. Finally, the extra horizontal mounting holes 1102, 201, 302, 503, and 602 provide mounting holes for photovoltaic panels and bolts fixed to the roof. The overall splicing and adjustment is convenient, the structural components are simple, and it is easy to use and can adapt to different roof areas, increasing convenience.

[0021] In another implementation scheme, such as Figure 1 and Figure 2 As shown, horizontal mounting holes 102 are linearly and evenly distributed on the top of the first sleeve rod 1, and vertical mounting holes 101 are linearly and evenly distributed on both sides of the first sleeve rod 1. The specifications and dimensions of sliding strip 502 are adapted to the specifications and dimensions of sliding groove 104. Mounting bolt 3 103 is threaded through and extends into the interior of one end of the second sleeve rod 2. Mounting bolt 2 15 is threaded through and extends into the interior of the first inner rod 5. The specifications and dimensions of mounting bolt 3 103 are adapted to the specifications and dimensions of bolt hole 501.

[0022] The first inner rod 5 is inserted into both ends of the first sleeve rod 1 to facilitate length adjustment. It is fixed by inserting mounting bolts 15 into the horizontal mounting holes 102 and 503 to facilitate length adjustment and then fixing the length. The sliding bar 502 and sliding groove 104 maintain a horizontal support position, so that the bottom of the first sleeve rod 1 and the first inner rod 5 are on the same plane, which helps to increase the stability of the structural support and reduce structural damage caused by support imbalance.

[0023] In another implementation scheme, such as Figure 1 and Figure 2As shown, the horizontal mounting holes two 201 are linearly and uniformly distributed on the top of the second sleeve rod 2, the sliding bar two 601 is slidingly installed inside the sliding groove two 203, and the mounting bolt four 202 is threadedly extended to the inside of the horizontal mounting hole five 602.

[0024] The horizontal mounting hole two 201 and the horizontal mounting hole five 602 are correspondingly inserted with the mounting bolt four 202, so as to adjust and fix the second sleeve rod 2 and the second inner rod 6, and the sliding of the sliding bar two 601 and the sliding groove two 203 makes the second sleeve rod 2 and the second inner rod 6 in the same plane, thereby facilitating the stability of the structural support.

[0025] In another embodiment, as shown in Figure 1 and Figure 2 As shown, the horizontal mounting holes three 302 are linearly and uniformly distributed on the top of the third sleeve rod 3, the vertical mounting holes two 301 are linearly and uniformly distributed on the two sides of the third sleeve rod 3, the mounting bolt five 304 is threadedly extended to the inside of one end of the second inner rod 6, the specification size of the horizontal mounting hole three 302 is adapted to the specification size of the horizontal mounting hole four 503, the specification size of the sliding bar one 502 is adapted to the specification size of the sliding groove three 305, and the specification size of the mounting bolt five 304 is adapted to the specification size of the bolt hole one 501.

[0026] The horizontal mounting hole three 302 is correspondingly inserted with the mounting bolt two 15, so as to adjust and fix the third sleeve rod 3 and the first inner rod 5, thereby facilitating the relative stability of the structure and the use convenience, the vertical mounting hole two 301 is inserted with the mounting bolt five 304 and is threadedly extended to the inside of the second inner rod 6, so as to fix the mounting structure, the sliding bar one 502 and the sliding groove three 305 are sliding, so as to make the first inner rod 5 and the third sleeve rod 3 in the same plane, thereby facilitating the stability of the structural support.

[0027] In another embodiment, as shown in Figure 1 and Figure 2 As shown, the plug-in rings 303 are linearly and uniformly arranged on the outside of the third sleeve rod 3.

[0028] When the plug-in rings 303 are positioned at the fixed points of the roof, the plug-in rings 303 are correspondingly inserted with the pin shafts, so as to make the two third sleeve rods 3 in the form of hinged rotating support on the roof conic line position, thereby facilitating the combination, and the plug-in rings 303 can provide the bolted holes for the steel cables and the ropes, thereby increasing the anchoring effect of the bolted and further increasing the stability of the structure.

[0029] In another embodiment, as shown in Figures 1-4 As shown, the inside of the nut 10 is threadedly sleeved with the outside of the screw rod 8, the specification size of the mounting bolt one 12 is adapted to the specification size of the vertical mounting hole two 301 and the vertical mounting hole one 101, and the specification size of the vertical mounting hole one 101 is adapted to the specification size of the vertical mounting hole two 301.

[0030] By placing the screw rod 8 and the sleeve 9 on the opposite side of the first sleeve rod 1 and the third sleeve rod 3 or the first sleeve rod 1 and the first sleeve rod 1, and rotating the sleeve 9, the threaded connection of the nut 10 and the screw rod 8 changes the length of the sleeve 9 and the screw rod 8, and the support 11 corresponds to the vertical mounting hole one 101 and the vertical mounting hole two 301, and is fixed in the internal position of the support 11 through the threaded extension of the mounting bolt one 12, so as to generate a transverse tension between the first sleeve rod 1 and the third sleeve rod 3 in the blank position, cooperate with the support of the second sleeve rod 2 and the second inner rod 6, increase the stability between the multiple transversely laid first sleeve rods 1 and the first inner rods 5, facilitate to increase the structural strength, and keep the structure relatively stable.

[0031] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A photovoltaic solar panel installation support frame, comprising a first set of rods (1), a second set of rods (2), a third set of rods (3), and a support ring (7), characterized in that: The first sleeve rod (1) has several horizontal mounting holes (102) at its top, and vertical mounting holes (101) on both sides of the first sleeve rod (1). Mounting bolts (103) are movably inserted into the vertical mounting holes (101), and mounting bolts (15) are movably inserted into the horizontal mounting holes (102). A sliding groove (104) is provided at the bottom of the first sleeve rod (1). The second sleeve rod (2) has a horizontal mounting hole (201) at its top, and mounting bolts (202) are movably inserted into the horizontal mounting hole (201). A sliding groove (203) is provided at the bottom of the second sleeve rod (2). The second sleeve rod (2) is movably connected to the interior of the second inner rod (6). The bottom of the second inner rod (6) is fixedly installed with a sliding strip (601). The interior of the second inner rod (6) and the sliding strip (601) is provided with several horizontal mounting holes (602). The top of the third sleeve rod (3) is provided with several horizontal mounting holes (302). The sides of the third sleeve rod (3) are provided with several vertical mounting holes (301). The bottom of the third sleeve rod (3) is provided with a sliding groove (305). The interior of the vertical mounting holes (301) is movably connected with mounting bolts (304). The outer side of the third sleeve rod (3) is fixedly installed with... The device is equipped with several plug-in rings (303). A sealing block (4) is movably engaged at one end of both the first sleeve rod (1) and the third sleeve rod (3). A first inner rod (5) is movably sleeved inside the ends of the first sleeve rod (1) and the third sleeve rod (3) away from the first inner rod (5). A sliding strip (502) is fixedly installed at the bottom of the first inner rod (5). Several horizontal mounting holes (503) are opened through the top of the first inner rod (5) and the bottom of the sliding strip (502). The horizontal mounting holes (503) are linearly and evenly distributed at the top of the first inner rod (5) and the bottom of the sliding strip (502). Both ends of the first inner rod (5) are provided with... Bolt hole 1 (501), the inside of the support ring (7) is provided with a T-shaped ring groove (701), four T-shaped sliders (13) are slidably installed inside the T-shaped ring groove (701), and sliding clips (14) are fixedly installed on the opposite ends of the four T-shaped sliders (13). A screw (8) is fixedly installed on the outside of the sliding clip (14), and a sleeve (9) is movably sleeved on the outside of the screw (8). A support (11) is hinged to the end of the sleeve (9) away from the screw (8). A mounting bolt 1 (12) is threaded inside the support (11), and a nut (10) is fixedly installed on the outside of the end of the sleeve (9) away from the support (11).

2. The photovoltaic solar panel installation support frame according to claim 1, characterized in that: The horizontal mounting holes (102) are linearly and evenly distributed on the top of the first sleeve rod (1), the vertical mounting holes (101) are linearly and evenly distributed on both sides of the first sleeve rod (1), the size of the sliding strip (502) is adapted to the size of the sliding groove (104), the threaded mounting bolt (103) extends through to the interior of one end of the second sleeve rod (2), the threaded mounting bolt (15) extends through to the interior of the first inner rod (5), and the size of the mounting bolt (103) is adapted to the size of the bolt hole (501).

3. The photovoltaic solar panel installation support frame according to claim 1, characterized in that: The second horizontal mounting hole (201) is linearly and evenly distributed on the top of the second sleeve rod (2). The second sliding bar (601) is slidably installed inside the second sliding groove (203). The fourth mounting bolt (202) is threaded through and extends into the interior of the fifth horizontal mounting hole (602).

4. The photovoltaic solar panel installation support frame according to claim 1, characterized in that: The horizontal mounting holes three (302) are linearly and evenly distributed on the top of the third sleeve rod (3), the vertical mounting holes two (301) are linearly and evenly distributed on both sides of the third sleeve rod (3), the mounting bolt five (304) is threaded through and extends into the interior of one end of the second inner rod (6), the specifications and dimensions of the horizontal mounting holes three (302) are adapted to the specifications and dimensions of the horizontal mounting holes four (503), the specifications and dimensions of the sliding strip one (502) are adapted to the specifications and dimensions of the sliding groove three (305), and the specifications and dimensions of the mounting bolt five (304) are adapted to the specifications and dimensions of the bolt hole one (501).

5. The photovoltaic solar panel installation support frame according to claim 1, characterized in that: The insertion rings (303) are arranged linearly and uniformly on the outside of the third sleeve rod (3).

6. The photovoltaic solar panel installation support frame according to claim 1, characterized in that: The inner side of the nut (10) is threadedly connected to the outer side of the screw (8). The size of the mounting bolt (12) is compatible with the size of the vertical mounting hole (301) and the vertical mounting hole (101). The size of the vertical mounting hole (101) is compatible with the size of the vertical mounting hole (301).