Photovoltaic support with stable structure

By improving the structural design of the photovoltaic support system and adopting a combination of limit rods, stabilizing rods, and fixing mechanisms, the problem of photovoltaic support systems tipping over in complex environments has been solved, achieving stable support and safe use of photovoltaic panels.

CN224249612UActive Publication Date: 2026-05-15YIFENGDA (TIANJIN) NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YIFENGDA (TIANJIN) NEW ENERGY TECHNOLOGY CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing photovoltaic (PV) mounting systems are prone to tipping over in complex environments, leading to damage to the PV panels.

Method used

A photovoltaic support structure was designed, comprising a base rod, a support rod, a mounting plate, a limiting rod, a stabilizing rod, and a fixing mechanism. The stability of the support is improved by using elastic connections and threaded connections through the fixed connection between the limiting rod and the insertion slot, and the combination of the cross-shaped slot and the through slot of the stabilizing rod.

Benefits of technology

This enhances the stability of the photovoltaic support structure, preventing the photovoltaic panels from tipping over under external impact and ensuring their safe use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of photovoltaic supports, in particular to a photovoltaic support with a stable structure, and solves the problem that a photovoltaic panel is easily toppled and damaged due to insufficient stability of the photovoltaic support in the prior art. A photovoltaic support with a stable structure comprises two bottom rods, four supporting rods are fixedly connected to the tops of the bottom rods, a mounting plate is fixedly connected between the four supporting rods, a stable mechanism is arranged between the four supporting rods, two insertion grooves are formed in the tops of the bottom rods, and a U-shaped limiting rod is arranged between the two insertion grooves in a penetrating mode. Fixing mechanisms are arranged between the limiting rods and the inserting grooves, and an H-shaped separation prevention rod is fixedly connected between the two limiting rods. According to the utility model, the photovoltaic panel keeps stable all the time in the use process, and is not easy to topple over and damage.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic support technology, and in particular to a photovoltaic support with a stable structure. Background Technology

[0002] Photovoltaic (PV) brackets are metal structural supports designed for placing, installing, and fixing solar panels in a solar power generation system. They bear the main body of the PV power station and serve as its skeleton. As a crucial component of the PV power generation system, their design, materials, and installation methods directly affect the overall performance and lifespan of the PV system. They allow the PV array to receive solar radiation in a fixed manner. The design must be based on local geographical location, environment, climate, and other conditions to maintain the bracket at an angle that maximizes the area receiving solar radiation. Once the position is fixed, it is generally not frequently adjusted. The type and tilt angle of the bracket are selected based on the local longitude and seasonal angle to maximize solar energy utilization. Aluminum alloy is lightweight, corrosion-resistant, and easy to process, and can solve most roof load-bearing problems.

[0003] In existing technologies, when using photovoltaic panels, it is necessary to first install and place the photovoltaic support frame in a sunny location. After the photovoltaic support frame is assembled, the photovoltaic panels are then installed on the photovoltaic support frame to facilitate power generation through sunlight.

[0004] However, existing photovoltaic (PV) mounting systems typically use only four support rods to support the PV panels in order to meet the height requirements of the PV panels. When faced with the impact of complex environments, they are easily tilted by external forces, causing the PV panels to collide with the ground and become damaged and unable to continue to be used. Utility Model Content

[0005] The purpose of this invention is to provide a photovoltaic support structure with a stable structure, which solves the problem that the insufficient stability of existing photovoltaic supports easily leads to the tilting and damage of photovoltaic panels.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] A photovoltaic support structure with a stable structure includes two base poles, four support poles fixedly connected to the top of the base poles, mounting plates fixedly connected between the four support poles, a stabilizing mechanism between the four support poles, two insertion slots opened at the top of the base poles, a U-shaped limiting rod passing through the two insertion slots, a fixing mechanism between the limiting rod and the insertion slots, and an H-shaped anti-split rod fixedly connected between the two limiting rods.

[0008] Preferably, the stabilizing mechanism includes a cross-shaped stabilizing groove formed on the surface of the support rod, and a stabilizing rod passing through two adjacent stabilizing grooves, wherein both ends of the two stabilizing rods are U-shaped.

[0009] Preferably, each stabilizer bar has two through slots at its top, through rods are inserted through the slots, two fixing rods are inserted between two adjacent through rods, and anti-detachment rods are inserted at the top of the through rods, with one end of the anti-detachment rod inserted inside the two fixing rods.

[0010] Preferably, the top of the anti-detachment rod is elastically connected to the top of the through rod via a compression spring.

[0011] Preferably, the fixing mechanism includes a screw threaded to the side of the base rod, with one end of the screw passing through the interior of an adjacent limiting rod.

[0012] Preferably, the insertion groove is elastically connected to a T-shaped insertion rod by a compression spring, and one side of the insertion rod passes through the side of the limiting rod.

[0013] This utility model has the following beneficial effects:

[0014] When using a photovoltaic bracket to support photovoltaic panels, two base rods can be connected by a limiting rod. The anti-splitting rod on the limiting rod increases stability. The quadrilateral base formed by the base rod and the limiting rod further enhances the stability of the photovoltaic panel. Then, four stabilizing rods, together with the support rod, increase the stability of the support rod. The fixing rod serves as an auxiliary stabilizing rod, further increasing the stability of the support rod. This ensures that the mounting plate on the support rod can safely and stably support the photovoltaic panel, keeping it stable during use and preventing it from easily tipping over and being damaged. Attached Figure Description

[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 for Figure 1 Side view of the middle limit rod;

[0018] Figure 3 for Figure 1 Side view of the central fixing mechanism;

[0019] Figure 4 for Figure 1 Side view of the central stabilizing mechanism;

[0020] Figure 5 for Figure 4 A side view diagram showing the removal of the through rod.

[0021] In the diagram: 1. Base rod; 2. Support rod; 3. Mounting plate; 4. Stabilizing mechanism; 5. Insertion slot; 6. Limiting rod; 7. Fixing mechanism; 8. Anti-split rod; 401. Stabilizing slot; 402. Stabilizing rod; 403. Through slot; 404. Through rod; 405. Fixing rod; 406. Anti-detachment rod; 407. Compression spring; 701. Screw; 702. Compression spring; 703. Insertion rod. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0023] Reference Figure 1-5 A photovoltaic (PV) support structure with a stable configuration includes two base rods 1, which form the bottom support for the PV panel and stabilize it on the ground. Four support rods 2 are fixedly connected to the top of the base rods 1, and a mounting plate 3 is fixedly connected between the four support rods 2. The PV panel is fixed to the mounting plate 3 for use. The mounting plate 3 is supported by the four support rods 2, raising the PV panel and allowing it to receive sunlight more effectively. A stabilizing mechanism 4 is provided between the four support rods 2 to increase the stability of the support rods 2. This mechanism enhances the stability of the support rods 2 in extreme weather or under external impact, thereby increasing the stability of the PV panel. Two insertion slots 5 are formed at the top of the base rods 1, and a U-shaped limiting rod 6 passes between the two insertion slots 5. After the base rod 1 is placed on the ground, the two ends of the limiting rod 6 can be inserted into the slots. The two bottom rods 1 and the two limiting rods 6 form a quadrilateral base inside the insertion slot 5, which increases the stability of the photovoltaic panel and provides better stable support when subjected to external forces. A fixing mechanism 7 is provided between the limiting rods 6 and the insertion slot 5. The fixing mechanism 7 can fix the limiting rods 6 to the insertion slot 5 after they enter it, so that the limiting rods 6 can be fixed to the bottom rods 1 and will not easily tip over. This ensures the safety of the support rods 2, the mounting plate 3 and the bottom rods 1, thus ensuring the safety of the mounting plate 3. An H-shaped anti-split rod 8 is fixedly connected between the two limiting rods 6. The anti-split rod 8 can easily fix the two limiting rods 6 together, thereby increasing the stability of the limiting rods 6 and further improving the stability of the bottom rods 1. This allows the base formed between the bottom rods 1 and the limiting rods 6 to better support the photovoltaic panel and prevent it from tipping over.

[0024] Furthermore, the stabilizing mechanism 4 includes a cross-shaped stabilizing groove 401 formed on the surface of the support rod 2. A stabilizing rod 402 passes through two adjacent stabilizing grooves 401. Both ends of the two stabilizing rods 402 are U-shaped. When it is necessary to fix the support rods 2 together to stabilize the photovoltaic panel on the mounting plate 3, the stabilizing rods 402 can be inserted into the stabilizing groove 401. The four stabilizing rods 402 form a quadrilateral, which can easily stabilize the four support rods 2. The U-shaped ends of two of the stabilizing rods 402 can easily allow the other two stabilizing rods 402 to be inserted into them, so that the two stabilizing rods 402 can easily pass through the same stabilizing groove 401. In this way, the four stabilizing rods 402 can form a loop between the four support rods 2 to assist the support rods 2 in providing stable support for the mounting plate 3.

[0025] Furthermore, each stabilizer bar 402 has two through slots 403 at its top. A through rod 404 passes through the inside of each through slot 403. Two fixing rods 405 pass between two adjacent through rods 404. An anti-detachment rod 406 passes through the top of each through rod 404, with one end of the anti-detachment rod 406 passing through the inside of the two fixing rods 405. After the stabilizer bar 402 is inserted into the stabilizer slot 401, the through rod 404 is placed into the corresponding through slot 403. Then, the two fixing rods 405 are inserted into the through rod 404, and the fixing rods 405 pass through two adjacent through rods 404. This process... The fixing rod 405 assists in restricting the through rod 404, preventing the through rod 404 from easily leaving the through slot 403. Thus, the cooperation between the fixing rod 405 and the through rod 404 restricts the four stabilizing rods 402, increasing the stability among the four stabilizing rods 402, thereby further improving the stability of the four support rods 2. This ensures that the support rods 2 stably support the photovoltaic panels on the mounting plate 3. Then, the anti-detachment rod 406 passes through the interior of the through rod 404 to restrict the position of the fixing rod 405, preventing the fixing rod 405 from detaching from the through rod 404 and thus failing to restrict the stabilizing rods 402.

[0026] Furthermore, the top of the anti-detachment rod 406 is elastically connected to the top of the through rod 404 via a compression spring 407. When it is necessary to restrict the fixing rod 405 through the anti-detachment rod 406 to prevent the fixing rod 405 from detaching from the through rod 404, the elastic force of the compression spring 407 can make the anti-detachment rod 406 always have a downward force, so that the anti-detachment rod 406 will not easily leave the through rod 404, thereby continuously restricting the fixing rod 405 and ensuring that the fixing rod 405 will not detach from the through rod 404.

[0027] Furthermore, the fixing mechanism 7 includes a screw 701 threaded to the side of the base rod 1. One end of the screw 701 passes through the interior of the adjacent limiting rod 6. After the end of the limiting rod 6 is inserted into the insertion groove 5, the screw 701 on the side of the base rod 1 is rotated, causing the end of the screw 701 to move toward the insertion groove 5 and enter the interior of the limiting rod 6, thus fixing the limiting rod 6 inside the insertion groove 5. This allows the limiting rod 6 to fix the base rod 1, ensuring the stability of the base rod 1 and enabling the photovoltaic panel on the mounting plate 3 to be used stably.

[0028] Furthermore, a T-shaped insertion rod 703 is elastically connected inside the insertion groove 5 via a compression spring 702. One side of the insertion rod 703 passes through the side of the limiting rod 6. Before the limiting rod 6 is inserted into the insertion groove 5, the insertion rod 703 needs to be compressed to prevent it from interfering with the limiting rod 6 entering the insertion groove 5. After the limiting rod 6 enters the insertion groove 5, the insertion rod 703 is released to allow it to move. One side of the insertion rod 703 enters the side of the limiting rod 6, thereby better restricting the limiting rod 6 and ensuring its restrictive effect. One end of the insertion rod 703 passes through the inside of the insertion groove 5 to prevent it from detaching from the insertion groove 5.

[0029] In summary:

[0030] When using the photovoltaic bracket, the photovoltaic bracket and photovoltaic panels can be easily placed using the base rod 1. The support rod 2 supports the photovoltaic panels on the mounting plate 3, ensuring the stable use of the photovoltaic panels. After the base rod 1 is in place, align the two ends of the limiting rod 6 with the insertion slots 5 on the two base rods 1 respectively. Then, pull the insertion rod 703 outward to insert one end of the limiting rod 6 into the adjacent insertion slot 5. Then, release the insertion rod 703. The insertion rod 703 will then be pushed towards the limiting position by the elastic force of the compression spring 702. The rod 6 moves, causing one side of the insertion rod 703 to enter the interior of the side of the limiting rod 6, thus restricting the limiting rod 6. Then, the bolt is rotated, allowing one end of the screw 701 to enter the interior of the adjacent limiting rod 6. Through the cooperation of the screw 701 and the insertion rod 703, the limiting rod 6 is fixed in the insertion slot 5, so that the two limiting rods 6, together with the base rod 1, form a stable base, enabling the photovoltaic panel on the mounting plate 3 to be placed stably. Then, the stabilizing rod 402 is inserted into the stabilizing slot 401, and the four stabilizing rods are used to stabilize the photovoltaic panel on the mounting plate 3. The fixed rod 402 connects and restricts the four support rods 2, thus ensuring the stable support of the mounting plate 3. The through rod 404 is then inserted into the through slot 403. After pulling the anti-detachment rod 406 upwards, the fixing rod 405 is inserted into the through rod 404, preventing it from leaving the through slot 403. The anti-detachment rod 406 is then released, allowing it to pass through the two fixing rods 405, thus securing the fixing rods 405 to the through rod 404 and ensuring the stability of the four support rods 404. The stability of 02 allows the support rod 2 to support the mounting plate 3 more stably. The anti-splitting rod 8 between the two limit rods 6 improves the stability between the limit rods 6 and prevents the limit rods 6 from being misaligned and deformed, thus affecting stability. Through the above structure, when it is necessary to support the photovoltaic panel with the photovoltaic bracket to facilitate the use of the photovoltaic panel, the limit rods 6 and the stabilizing rod 402 can be used to increase the stability of the bottom rod 1 and the support rod 2, so that the photovoltaic panel will not easily tip over even if it is subjected to external force during use, thus ensuring the safety and stability of the photovoltaic panel.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A photovoltaic support structure with a stable structure, comprising two base rods (1), characterized in that, The top of the base rod (1) is fixedly connected to four support rods (2), and an mounting plate (3) is fixedly connected between the four support rods (2). A stabilizing mechanism (4) is provided between the four support rods (2). The top of the base rod (1) has two insertion slots (5). A U-shaped limiting rod (6) is inserted between the two insertion slots (5). A fixing mechanism (7) is provided between the limiting rod (6) and the insertion slots (5). An H-shaped anti-split rod (8) is fixedly connected between the two limiting rods (6).

2. A photovoltaic support structure with a stable structure according to claim 1, characterized in that, The stabilizing mechanism (4) includes a cross-shaped stabilizing groove (401) formed on the surface of the support rod (2), and a stabilizing rod (402) is provided between two adjacent stabilizing grooves (401), wherein both ends of the two stabilizing rods (402) are U-shaped.

3. A photovoltaic support structure with a stable structure according to claim 2, characterized in that, The top of each stabilizer bar (402) has two through slots (403), through rods (404) are inserted inside the through slots (403), and two fixing rods (405) are inserted between two adjacent through rods (404). An anti-detachment rod (406) is inserted at the top of each through rod (404), and one end of the anti-detachment rod (406) is inserted inside the two fixing rods (405).

4. A photovoltaic support structure with a stable structure according to claim 3, characterized in that, The top of the anti-detachment rod (406) is elastically connected to the top of the through rod (404) by a compression spring (407).

5. A photovoltaic support structure with a stable structure according to claim 1, characterized in that, The fixing mechanism (7) includes a screw (701) threaded to the side of the bottom rod (1), and one end of the screw (701) passes through the interior of the adjacent limiting rod (6).

6. A photovoltaic support structure with a stable structure according to claim 1, characterized in that, The insertion groove (5) is elastically connected to a T-shaped insertion rod (703) by a compression spring (702), and one side of the insertion rod (703) passes through the side of the limiting rod (6).