New energy photovoltaic power generation panel fixing structure

By designing a photovoltaic panel fixing structure and using knobs and motors to achieve quick disassembly and assembly and angle adjustment, the inconvenience of photovoltaic panel installation and the difficulty of angle adjustment are solved, and the installation efficiency and power generation efficiency are improved.

CN223488149UActive Publication Date: 2025-10-28WUHAN SURVEYING GEOTECHN RES INST OF MCC
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Patent Information

Application Number
CN202422688768.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-10-28
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

Existing photovoltaic panels are inconvenient to install, difficult to disassemble and repair, and lack angle adjustment structures, which affects their use effect and power generation efficiency.

Method used

A fixed structure including a photovoltaic panel body, a base, a support frame, an angle adjustment bracket and a sliding mechanism was designed. The quick disassembly and assembly and angle adjustment were achieved through a knob and a motor. A bidirectional screw and a limit rod were used for stable fixation. The slider drove the angle adjustment bracket to rotate and adjust the angle of the photovoltaic panel.

Benefits of technology

It realizes the rapid disassembly and installation and angle adjustment of photovoltaic panels, reduces hard damage, improves installation and disassembly efficiency, and enhances the power generation efficiency of photovoltaic panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a new energy photovoltaic power generation panel fixing structure. The fixing structure comprises a photovoltaic panel body rotationally installed on one side of the base, an angle adjusting support is arranged between the photovoltaic panel body and the base, the lower end of the angle adjusting support is connected with the base through a sliding mechanism, and the upper end of the angle adjusting support is connected with the photovoltaic panel body through an installation base; a first clamping block and a second clamping block are symmetrically arranged in the mounting seat, a bidirectional lead screw and a protruding block are arranged in the mounting seat, the bidirectional lead screw is rotatably mounted in the mounting seat, and the first clamping block and the second clamping block are in threaded connection with two sections of threads, in different directions, of the bidirectional lead screw respectively. The first clamping block and the second clamping block are in sliding connection with the outer wall of the protruding block. And an I-shaped block is correspondingly arranged at the bottom of the photovoltaic panel body and is embedded between the clamping block I and the clamping block II in a sliding manner. The fixing structure provided by the utility model can ensure the rapid disassembly and assembly of the photovoltaic power generation panel, and does not cause rigid damage to the photovoltaic panel in the installation process.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic panel installation technology, and in particular to a fixing structure for a new energy photovoltaic panel. Background Technology

[0002] Photovoltaic panels are devices that directly convert light energy into electrical energy through the photoelectric effect or photochemical effect. Photovoltaic panels are generally installed in locations with good sunlight, such as rooftops, using fixed structural supports to ensure their stability and safety under various climatic conditions.

[0003] The current installation of photovoltaic panels mostly involves directly fixing them to the support frame using bolts and screws. This is not only inconvenient to install, but also makes subsequent disassembly and maintenance troublesome, thus affecting the performance. Moreover, fixing with screws often causes hard damage between the structures, and the fixing structure may loosen after long-term use.

[0004] In addition, existing photovoltaic panels need to allow for adjustment of their tilt angle during installation and use to optimize sunlight reception and improve power generation efficiency. Many existing photovoltaic panel installation structures lack angle adjustment mechanisms, and even those that exist have drawbacks such as complex structures. Utility Model Content

[0005] The purpose of this utility model is to overcome the shortcomings of the existing technology. This utility model provides a fixing structure for a new energy photovoltaic power generation panel. This fixing structure can ensure the quick installation and removal of the photovoltaic power generation panel, and will not cause hard damage to the photovoltaic panel during the installation process. It is also equipped with a photovoltaic panel angle adjustment mechanism. Its structure is simple and easy to adjust.

[0006] To achieve the above objectives, this utility model provides a fixing structure for a new energy photovoltaic power generation panel, including a photovoltaic panel body and a base. A support frame is provided at one end of the base. The photovoltaic panel body is rotatably mounted on the support frame on one side. The photovoltaic panel body is connected to the base via an angle adjustment bracket. The lower end of the angle adjustment bracket is connected to the base via a sliding mechanism, and the upper end is connected to the photovoltaic panel body via a mounting seat. The angle adjustment bracket and the mounting seat are rotatably connected. The mounting seat has two symmetrical clamping blocks inside, and a bidirectional lead screw and a protrusion are provided inside the mounting seat. The bidirectional lead screw is rotatably mounted inside the mounting seat. The first clamping block and the second clamping block are threadedly connected to two different threads of the bidirectional lead screw. The protrusion is fixed on the inner wall of the mounting seat at a position parallel to the bidirectional lead screw, and the first clamping block and the second clamping block are slidably connected to the outer wall of the protrusion. At the bottom of the photovoltaic panel body, there is an I-shaped block that matches the first clamping block and the second clamping block. The I-shaped block is slidably embedded between the first clamping block and the second clamping block.

[0007] The preferred technical solution of this utility model is as follows: the sliding mechanism includes a threaded rod rotatably supported on the base and a slider threadedly connected to the threaded rod. The threaded rod is arranged in a direction perpendicular to the photovoltaic panel body, and a motor is provided at one end of the threaded rod; the lower end of the angle adjustment bracket is rotatably connected to the slider.

[0008] The preferred technical solution of this utility model is as follows: the mounting base is a concave support, the bidirectional lead screw is laterally arranged in the concave area of ​​the mounting base, and a limiting rod parallel to the bidirectional lead screw is provided in the concave area of ​​the mounting base; the clamping block one and clamping block two are slidably connected to the outer wall of the limiting rod; the rotating rod of the angle adjustment bracket rotatably connected to the mounting base is parallel to the bidirectional lead screw.

[0009] The preferred technical solution of this utility model is as follows: the two sections of threads in different directions on the bidirectional lead screw are symmetrically distributed, and one end of the bidirectional lead screw extends out of the mounting seat, and a knob is provided at the extended end.

[0010] The preferred technical solution of this utility model is as follows: the photovoltaic panel body is rotatably connected to the support frame through a pin shaft, the two ends of the pin shaft are provided with threaded grooves, and the outer wall of the pin shaft is threaded with nuts, which are located at both ends of the outer wall of the pin shaft.

[0011] The preferred technical solution of this utility model is as follows: a sliding groove is provided on the base at the position corresponding to the movement of the slider. There are two sliding grooves, which are parallel to the threaded rod respectively. The bottom of the slider is slidably connected to the sliding groove.

[0012] The preferred technical solution of this utility model is as follows: each end of the threaded rod is provided with a vertical plate, the vertical plate is fixed on the base, the motor is installed on one of the vertical plates, its output shaft is fixedly connected to the threaded rod, and the other end of the threaded rod is rotatably connected to the other vertical plate.

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

[0014] (1) This utility model drives the bidirectional lead screw to rotate by rotating the knob. While the bidirectional lead screw rotates, it drives the clamping block one and clamping block two to move to both sides, so that the clamping block one and clamping block two slide out from the inside of the I-shaped block. Then, the nut is rotated to disassemble and the pin shaft is pulled out, so that the photovoltaic panel body can be quickly disassembled and assembled. The disassembly and assembly process is simple and convenient.

[0015] (2) This utility model drives the threaded rod to rotate by a motor. While the threaded rod rotates, it drives the slider to slide. During the sliding process of the slider, it drives the two angle adjustment brackets to rotate. Then, the angle adjustment brackets rotate to drive the mounting base to rotate, thereby driving the photovoltaic panel body to rotate. This allows the angle of the photovoltaic panel body to be adjusted according to the angle of sunlight, so as to fully absorb sunlight and improve power generation efficiency. Attached Figure Description

[0016] Figure 1 This is an overall structural diagram of the present invention;

[0017] Figure 2 This is a structural diagram of the slider of this utility model;

[0018] Figure 3 This is a structural diagram of the mounting base of this utility model;

[0019] Figure 4 This is a structural diagram of the clamping block of this utility model.

[0020] Legend: 1. Mounting base; 2. Knob; 3. Two-way lead screw; 4. Clamping block one; 5. Clamping block two; 6. Limiting rod; 7. Protrusion; 8. I-shaped block; 9. Photovoltaic panel body; 10. Pin shaft; 11. Support frame; 12. Nut; 13. Base; 14. Vertical plate; 15. Motor; 16. Threaded rod; 17. Slider; 18. Angle adjustment bracket; 19. Slide groove. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments. Figures 1 to 4 All accompanying drawings are simplified versions of embodiments and are intended solely for the purpose of clearly and concisely illustrating the embodiments of this utility model. The technical solutions shown in the drawings below are specific solutions of embodiments of this utility model and are not intended to limit the scope of the claimed utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.

[0022] In the description of this utility model, it should be understood that the terms "upper", "lower", "inner", "outer", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use, or the orientation or positional relationship that is commonly understood by those skilled in the art. They are only used to facilitate the description of this utility model and to simplify the description, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0023] The embodiment provides a fixing structure for a new energy photovoltaic power generation panel, such as Figures 1 to 4As shown, the device includes a photovoltaic panel body 9 and a base 13. A support frame 11 is provided at one end of the base 13. The photovoltaic panel body 9 is rotatably mounted on the support frame 11. The photovoltaic panel body 9 is connected to the base 13 via an angle adjustment bracket 18. The lower end of the angle adjustment bracket 18 is connected to the base 13 via a sliding mechanism, and the upper end is connected to the photovoltaic panel body 9 via a mounting seat 1. The angle adjustment bracket 18 and the mounting seat 1 are rotatably connected. The photovoltaic panel body 9 is rotatably connected to the support frame 11 via a pin shaft 10. The two ends of the pin shaft 10 are provided with threaded grooves, and nuts 12 are threadedly connected to the outer wall of the pin shaft 10. The nuts 12 are located at both ends of the outer wall of the pin shaft 10. The two nuts 12 limit the movement of the two ends of the pin shaft 10.

[0024] The embodiment provides a fixing structure for a new energy photovoltaic power generation panel, such as Figures 1 to 4 As shown, the mounting base 1 is symmetrically provided with clamping blocks 4 and 5, and a bidirectional lead screw 3 and a protrusion 7 are provided inside the mounting base 1. The mounting base 1 is a concave support. The bidirectional lead screw 3 is laterally arranged in the concave area of ​​the mounting base 1 and is rotatably installed inside the mounting base 1. Clamping blocks 4 and 5 are threadedly connected to two different threads on the bidirectional lead screw 3. The two different threads on the bidirectional lead screw 3 are symmetrically distributed, and one end of the bidirectional lead screw 3 extends out of the mounting base 1, with a knob 2 at the extended end. The protrusion 7 is fixed on the inner wall of the mounting base 1 at a position parallel to the bidirectional lead screw 3, and clamping blocks 4 and 5 are slidably connected to the outer wall of the protrusion 7. At the bottom of the photovoltaic panel body 9, there is an I-shaped block 8 that matches clamping blocks 4 and 5, and the I-shaped block 8 is slidably embedded between clamping blocks 4 and 5. A limiting rod 6 parallel to the bidirectional lead screw 3 is provided in the concave area of ​​the mounting base 1. The clamping block 1 4 and clamping block 2 5 are slidably connected to the outer wall of the limiting rod 6. The rotating rod of the angle adjusting bracket 18, which is rotatably connected to the mounting base 1, is parallel to the bidirectional lead screw 3.

[0025] The embodiment provides a fixing structure for a new energy photovoltaic power generation panel, such as Figure 1 and Figure 2As shown, the sliding mechanism includes a threaded rod 16 rotatably supported on a base 13 and a slider 17 threaded onto the threaded rod 16. The threaded rod 16 is positioned perpendicular to the photovoltaic panel body 9, and a motor 15 is located at one end of the threaded rod 16. The lower end of the angle adjustment bracket 18 is rotatably connected to the slider 17. Two grooves 19 are provided on the base 13 corresponding to the position where the slider 17 moves. These grooves are parallel to the threaded rod 16, and the bottom of the slider 17 is slidably connected to the grooves 19. Two upright plates 14 are located at both ends of the threaded rod 16. The upright plates 14 are fixed to the base 13. The motor 15 is mounted on one of the upright plates 14, and its output shaft is fixedly connected to the threaded rod 16. The other end of the threaded rod 16 is rotatably connected to the other upright plate 14. The motor 15 drives the threaded rod 16 to rotate. Simultaneously, the slider 17 slides, causing the two angle adjustment brackets 18 to rotate. The rotation of the angle adjustment brackets 18 causes the mounting base 1 to rotate, which in turn causes the photovoltaic panel body 9 to rotate, thus achieving angle adjustment.

[0026] In use, the photovoltaic panel body 9 is first placed in the middle of the two side support frames 11. The pin shaft 10 is passed through the support frame 11 and the photovoltaic panel body 9. Then, the nut 12 is rotated and fixed at both ends of the pin shaft 10. Finally, the I-shaped block 8 on the lower surface of the photovoltaic panel body 9 is placed between the clamping block 4 and the clamping block 5. Figure 3 As shown, rotating knob 2 drives the bidirectional lead screw 3 to rotate, causing clamping blocks 4 and 5 to slide towards the center simultaneously, clamping them onto both sides of the I-shaped block 8 for secure installation. Then, motor 15 is started to drive threaded rod 16 to rotate. During this rotation, slider 17 slides, causing two angle adjustment brackets 18 to slide and rotate, which in turn causes mounting base 1 to rotate, ultimately rotating the photovoltaic panel body 9. This achieves automatic angle adjustment, facilitating the absorption of sunlight from multiple angles and improving power supply efficiency. When disassembly and maintenance are required, rotating knob 2 drives the bidirectional lead screw 3 to rotate, causing clamping blocks 4 and 5 to slide away from the I-shaped block 8. Then, rotating the two nuts 12 removes them from both ends of the pin shaft 10, pulling the pin shaft 10 away from the photovoltaic panel body 9 and support frame 11, completing the disassembly. This facilitates quick disassembly and maintenance of the photovoltaic panel body 9, reducing disassembly time and improving work efficiency.

[0027] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A fixing structure for a new energy photovoltaic power generation panel, comprising a photovoltaic panel body (9) and a base (13), characterized in that: A support frame (11) is provided at one end of the base (13). The photovoltaic panel body (9) is rotatably mounted on the support frame (11) on one side. The photovoltaic panel body (9) is connected to the base (13) through an angle adjustment bracket (18). The lower end of the angle adjustment bracket (18) is connected to the base (13) through a sliding mechanism, and the upper end is connected to the photovoltaic panel body (9) through a mounting seat (1). The angle adjustment bracket (18) is rotatably connected to the mounting seat (1). The mounting seat (1) is symmetrically provided with a clamping block one (4) and a clamping block two (5). A bidirectional lead screw (3) and a screw rod are provided inside the mounting seat (1). The protrusion (7) is rotatably installed in the mounting base (1) and the first clamp (4) and the second clamp (5) are respectively threaded to the two different threads of the double-acting screw (3); the protrusion (7) is fixed in the inner wall of the mounting base (1) at a position parallel to the double-acting screw (3), and the first clamp (4) and the second clamp (5) are respectively slidably connected to the outer wall of the protrusion (7); at the bottom of the photovoltaic panel body (9), there is a corresponding I-shaped block (8) that matches the first clamp (4) and the second clamp (5), and the I-shaped block (8) is slidably embedded between the first clamp (4) and the second clamp (5).

2. The fixing structure for a new energy photovoltaic power generation panel according to claim 1, characterized in that: The sliding mechanism includes a threaded rod (16) rotatably supported on the base (13) and a slider (17) threadedly sleeved on the threaded rod (16). The threaded rod (16) is arranged in a direction perpendicular to the photovoltaic panel body (9), and a motor (15) is provided at one end of the threaded rod (16). The lower end of the angle adjustment bracket (18) is rotatably connected to the slider (17).

3. A fixing structure for a new energy photovoltaic power generation panel according to claim 1 or 2, characterized in that: The mounting base (1) is a concave support. The bidirectional lead screw (3) is horizontally arranged in the concave area of ​​the mounting base (1). A limiting rod (6) parallel to the bidirectional lead screw (3) is provided in the concave area of ​​the mounting base (1). The clamping block one (4) and clamping block two (5) are slidably connected to the outer wall of the limiting rod (6). The rotating rod of the angle adjustment bracket (18) rotatably connected to the mounting base (1) is parallel to the bidirectional lead screw (3).

4. A fixing structure for a new energy photovoltaic power generation panel according to claim 1 or 2, characterized in that: The two sections of threads in different directions on the bidirectional lead screw (3) are symmetrically distributed, and one end of the bidirectional lead screw (3) extends out of the mounting base (1) and a knob (2) is provided at the extended end.

5. A fixing structure for a new energy photovoltaic power generation panel according to claim 1 or 2, characterized in that: The photovoltaic panel body (9) is rotatably connected to the support frame (11) via a pin shaft (10). The pin shaft (10) has threaded grooves at both ends, and a nut (12) is threadedly connected to the outer wall of the pin shaft (10). The nut (12) is located at both ends of the outer wall of the pin shaft (10).

6. The fixing structure for a new energy photovoltaic power generation panel according to claim 2, characterized in that: The base (13) has a groove (19) at the position where the slider (17) moves. There are two grooves (19), which are parallel to the threaded rod (16) respectively. The bottom of the slider (17) is slidably connected to the groove (19).

7. The fixing structure for a new energy photovoltaic power generation panel according to claim 2, characterized in that: The threaded rod (16) has two upright plates (14) at its two ends. The upright plates (14) are fixed on the base (13). The motor (15) is installed on one of the upright plates (14), and its output shaft is fixedly connected to the threaded rod (16). The other end of the threaded rod (16) is rotatably connected to the other upright plate (14).