A stable new energy solar power generation photovoltaic panel

Through the driving mechanism and buffer mechanism, the "bumping" problem of photovoltaic panels caused by wave impact is solved, the stable installation and protection of photovoltaic panels are achieved, damage and water splashing are prevented, and the service life and working stability of photovoltaic panels are improved.

CN120034099BActive Publication Date: 2025-09-30SHANDONG JIACHI NEW ENERGY AUTOMOBILE TECH CO LTD
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Patent Information

Application Number
CN202510217157.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-09-30
Estimated Expiration
2045-02-26

AI Technical Summary

Technical Problem

When the existing new energy solar power generation photovoltaic panels are impacted by waves, the photovoltaic panels on the floating platform are impacted, causing the height of the photovoltaic panels to change instantly, resulting in "bumping" and damage.

Method used

A driving mechanism and a buffer mechanism are adopted, including a first gear ring assembly, an active assembly, a buffer rod and a damping assembly. The impact force is reduced by tooth plate engagement and damping fluid, the installation of the photovoltaic panel is stabilized and the protective mechanism prevents water splashing, ensuring the stability and protection of the photovoltaic panel.

Benefits of technology

It effectively prevents photovoltaic panels from being damaged by wave impact, ensures the stable connection between the mounting frame and the mounting platform, prevents water from splashing on the photovoltaic panels, and ensures the stable operation of the photovoltaic panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a stable new energy solar power generation photovoltaic panel, specifically relating to the field of solar power generation photovoltaic panels, including a photovoltaic panel body, a mounting frame installed on the photovoltaic panel body, the photovoltaic panel body being installed on a floating platform through the mounting frame, a support seat being provided between the mounting frame and the floating platform, a mounting plate being provided at the bottom of the support seat, a driving mechanism being provided between the support seat and the mounting plate, the driving mechanism including a first gear ring assembly and an active assembly, the first gear ring assembly including two sets of sector-shaped gear plates, the first gear ring assembly being installed at the output end of the active assembly. The present invention offsets the influence of the upward stroke of the mounting plate on the support rod, so that the height of the mounting platform remains unchanged or changes slightly, thereby preventing waves from impacting the floating platform and transmitting the impact force to the photovoltaic panel body on the floating platform. This not only prevents the photovoltaic panel body from being damaged due to momentary "bumping", but also ensures the stable connection between the mounting frame and the mounting platform.
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Description

Technical Field

[0001] The present invention relates to the technical field of solar power generation photovoltaic panels, and more specifically, to a stable new energy solar power generation photovoltaic panel. Background Art

[0002] Photovoltaic panels, also known as solar panels, are the core equipment for converting solar energy into electrical energy. Photovoltaic panels are composed of multiple photovoltaic cells, which use the photovoltaic effect to directly convert sunlight into electrical energy. Water-based solar photovoltaic panels not only save land and improve power generation efficiency, but also reduce evaporation and inhibit algae growth. They are also easy to maintain and eco-friendly, making them an efficient and sustainable way of generating electricity.

[0003] The water solar photovoltaic system mainly consists of the following core parts:

[0004] Floating support structure: usually made of corrosion-resistant and UV-resistant lightweight materials such as high-density polyethylene (HDPE) or composite plastics;

[0005] Buoy / Floating platform: Modular buoys are assembled into a platform to provide buoyancy and support photovoltaic panels;

[0006] Connection structure: The floating bodies are fixed by flexible or rigid connectors to adapt to water surface fluctuations;

[0007] Photovoltaic modules: Similar to traditional photovoltaic panels, they are composed of monocrystalline silicon, polycrystalline silicon or thin-film cells, but they must have a higher waterproof level (such as IP68) and are fixed to the floating body with tilting brackets, and the angle can be adjusted to optimize light reception.

[0008] Referring to the current technical disclosure number CN112448662B, a water solar power generation device is disclosed, which includes a water platform floating on the water surface for installing equipment, a solar photovoltaic panel for receiving solar energy, and a water walkway for locating the positions of multiple solar photovoltaic panels, and the water platform is equipped with a power storage device for receiving and storing power generated by the solar photovoltaic panel. A plurality of limit coupling mechanisms are equidistantly connected on both sides of the water platform, and the water platform is equipped with a plurality of cross mounting platforms for supporting the solar photovoltaic panel to float on the water through the limit coupling mechanisms; by installing two types of air bags for floating around the floating device supporting the photovoltaic panel, and controlling the overall height of the photovoltaic panel by controlling the two front and rear air bags, and controlling the left and right inclination of the photovoltaic panel by controlling the left and right air bags, the photovoltaic panel is driven to tilt in real time with the direct direction of the sun, thereby enhancing the efficiency of photovoltaic panel power generation.

[0009] When large waves appear in the water, the waves hit the floating platform, causing the photovoltaic panels on the floating platform to be impacted. The height of the photovoltaic panels changes instantly, causing "bumps" and damage, which affects the installation stability of the photovoltaic panels. Summary of the Invention

[0010] The present invention provides a stable new energy solar power generation photovoltaic panel, which aims to solve the problem that: the existing new energy solar power generation photovoltaic panels are impacted by waves hitting the floating platform, causing the photovoltaic panels on the floating platform to change in height instantly, resulting in "bumping" and damage.

[0011] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a stable new energy solar power generation photovoltaic panel, comprising a photovoltaic panel body, a mounting frame being installed on the photovoltaic panel body, the photovoltaic panel body being installed on a floating platform through the mounting frame, a support seat being provided between the mounting frame and the floating platform, a mounting plate being provided at the bottom of the support seat, a driving mechanism being provided between the support seat and the mounting plate, the driving mechanism comprising a first gear ring assembly and an active assembly, the first gear ring assembly comprising two groups of sector gear plates, the first gear ring assembly being installed at the output end of the active assembly, a buffer rod being installed on the sector gear plate, the top end of the buffer rod being rotatably connected to the support rod, a mounting platform being fixed on the top of the support rod, the mounting frame being detachably connected to the mounting platform, a transmission assembly being provided between the mounting plate and the active assembly, and when the floating platform moves upward, the transmission assembly is driven by the mounting plate to drive the active assembly to rotate, so that the sector gear plates of the first gear ring assembly drive the bottom ends of the corresponding buffer rods to move away from each other. The photovoltaic panel body on the floating platform is provided with several groups, the support seat is movably connected to the mounting plate, the toothed edges of the two groups of sector-shaped tooth plates of the first gear ring assembly are meshed and connected, and the bottom end of the buffer rod is connected to the eccentric point of the corresponding sector-shaped tooth plate.

[0012] In a preferred embodiment, the active assembly includes a rotating block having a fixed shaft fixedly mounted at its center, the first gear ring assembly fixedly connected to the fixed shaft, a push block fixedly disposed on the outer periphery of the rotating block, and the transmission assembly includes a drive rod rotatably connected to the top end of the drive rod. When the drive rod moves upward, it drives the push block to rotate upward, causing the rotating block to rotate the first gear ring assembly via the fixed shaft, thereby driving the bottom ends of the two sets of buffer rods away from each other.

[0013] In a preferred embodiment, a slot is defined within the push block, and a connector is fixedly mounted on the top of the drive rod. The connector slides within the slot, and when the connector slides toward the end of the slot away from the rotating block, the push block drives the rotating block to rotate. The slot guides and limits the connector, allowing the push block to drive the rotating block to rotate about the support shaft.

[0014] In a preferred embodiment, a damping assembly is provided between the two groups of buffer rods, and the damping assembly is located in the middle of the buffer rods. When the bottom ends of the two groups of buffer rods move away from each other, the damping assembly slows down the movement of the buffer rods. When the bottom ends of the two groups of buffer rods move away from each other, the damping assembly starts to work to slow down the movement of the buffer rods.

[0015] In a preferred embodiment, the damping assembly includes a damping seat, wherein piston plates are slidably disposed within the damping seat. The piston plates are provided in two groups, and piston rods are fixedly disposed on both groups of piston plates. The piston rods extend through the interior of the damping seat, and a connecting groove is defined within the buffer rod, with the end of the piston rod distal to the piston plates being rotatably connected to the connecting groove. The interior of the damping seat is filled with a damping fluid, which is located on opposite sides of the two groups of piston plates. When the two groups of piston plates move away from each other, the damping fluid slows the movement of the piston plates.

[0016] In a preferred embodiment, a central groove is defined in the center of the support base, a central post is fixedly disposed in the center of the mounting plate, and the top end of the central post slides within the central groove. The central post slides within the central groove, aligning the mounting plate with the support base, thereby stably transmitting upward force.

[0017] In a preferred embodiment, buffer columns are fixedly mounted at both ends of the mounting plate, buffer grooves are defined at both ends of the support base, and a buffer assembly is fixedly mounted between the top ends of the buffer columns and the top ends of the buffer grooves. The buffer assembly is a spring element that connects the support base and the mounting plate and acts as a buffer when the mounting plate approaches the support base, preventing strong collisions between the support base and the mounting plate.

[0018] In a preferred embodiment, the support base has an internal shaft hole, and support shafts are fixedly provided at both ends of the rotating block, and the support shafts are rotatably arranged inside the corresponding shaft holes. The support shafts are installed through the shaft holes to facilitate maintaining the position of the rotating block inside the support base.

[0019] In a preferred embodiment, a passive component is mounted between the top ends of the two sets of buffer rods, and a protective mechanism is mounted on the support rod. When the bottom ends of the two sets of buffer rods move away from each other, the passive component drives the protective mechanism to flip upward toward the photovoltaic panel body. The protective mechanism is a water barrier that prevents large amounts of water from splashing onto the photovoltaic panel body.

[0020] In a preferred embodiment, the passive component includes a first connecting block, a second gear ring assembly is mounted on the first connecting block, the protective mechanism includes a protective plate, a second connecting block is fixedly mounted on the support rod, the second connecting block is rotatably connected to one end of the protective plate, and a pulling assembly is connected between one end of the protective plate and the second gear ring assembly. The connection point between the protective plate and the second connecting block is located below the connection point between the protective plate and the pulling assembly. When the bottom ends of the two groups of buffer rods move away from each other, the top ends of the two groups of buffer rods rotate, driving the second gear ring assembly to rotate via the first connecting block, causing the pulling assembly to pull the protective plate upward.

[0021] The beneficial effects of the present invention are:

[0022] The present invention rotates the fan-shaped tooth plate of the first gear ring assembly through the output end of the active component, so that the bottom ends of the two groups of buffer rods move away from each other, that is, the bottom ends of the buffer rods rotate with the connection point between the buffer rods and the support rods as the center, thereby offsetting the influence of the upward stroke of the mounting plate on the support rods, so that the height of the mounting platform remains unchanged or changes slightly, avoiding waves impacting the floating platform and causing the impact force to be transmitted to the photovoltaic panel body on the floating platform. It can not only prevent the photovoltaic panel body from being damaged due to momentary "bumps", but also ensure the stable connection between the mounting frame and the mounting platform.

[0023] The present invention pulls the corresponding piston plates to move by the piston rod, so that the two groups of piston plates move away from each other, slows down the movement speed of the piston plates by the damping fluid, adapts to the movement of the piston rod by the connecting groove, makes the piston rod corresponding to the damping seat move laterally, slows down the impact at the connection between the buffer rod and the support rod, and ensures the stability of the connection.

[0024] The present invention pulls the corresponding piston plates to move by the piston rod, so that the two groups of piston plates move away from each other, slows down the movement speed of the piston plates by the damping fluid, adapts to the movement of the piston rod by the connecting groove, makes the piston rod corresponding to the damping seat move laterally, slows down the impact at the connection between the buffer rod and the support rod, and ensures the stability of the connection.

[0025] The present invention aligns the center of the mounting plate with the support base by sliding the center column inside the center groove, stably transmitting the upward force, connecting the support base and the mounting plate through the buffer component, and playing a buffering role when the mounting plate approaches the support base, thereby preventing the support base and the mounting plate from being damaged by a strong collision.

[0026] The present invention drives the second gear ring assembly to rotate through the first connecting block. Under the connection support of the second connecting block, the pulling assembly pulls the protective plate to flip upward, so that the protective mechanism is blocked on the outside of the photovoltaic panel body, preventing a large amount of water from splashing on the photovoltaic panel body, and ensuring the stable operation of the photovoltaic panel body. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0028] Figure 2 It is a side view of the photovoltaic panel body of the present invention.

[0029] Figure 3 It is a schematic diagram of the internal structure of the support base of the present invention.

[0030] Figure 4 It is a schematic structural diagram of the buffer rod of the present invention.

[0031] Figure 5 Schematic diagram of the active component structure of the present invention.

[0032] Figure 6 Schematic diagram of the connector structure of the present invention.

[0033] Figure 7 Schematic diagram of the driving rod structure of the present invention.

[0034] Figure 8 It is a schematic diagram of the internal structure of the damping seat of the present invention.

[0035] Figure 9 It is a schematic diagram of the cross-sectional structure of the bottom of the support base of the present invention.

[0036] Figure 10 It is a schematic structural diagram of the protection mechanism of the present invention.

[0037] The accompanying drawings are marked as follows: 1. Photovoltaic panel body; 2. Mounting frame; 3. Floating platform; 4. Support seat; 41. Center groove; 42. Buffer groove; 43. Buffer assembly; 44. Axis hole; 5. Mounting plate; 51. Center column; 52. Buffer column; 6. Driving mechanism; 61. First gear ring assembly; 62. Active assembly; 621. Rotating block; 622. Fixed shaft; 623. Support shaft; 624. Push block; 625. Slide groove; 626. Drive rod; 627. Connecting piece; 7. Buffer rod; 71. Connecting groove; 72. First connecting block; 73. Second gear ring assembly; 8. Damping seat; 81. Piston plate; 82. Piston rod; 9. Support rod; 91. Mounting platform; 10. Protective mechanism; 101. Protective plate; 102. Second connecting block; 103. Pulling assembly. DETAILED DESCRIPTION

[0038] The present application is described in further detail below in conjunction with the accompanying drawings. It is necessary to point out that the following specific implementation methods are only used to further illustrate the present application and cannot be understood as limiting the scope of protection of the present application. Technicians in this field can make some non-essential improvements and adjustments to the present application based on the above application content.

[0039] Refer to the instruction manual Figures 1 to 7, a stable new energy solar power generation photovoltaic panel, including a photovoltaic panel body 1, a mounting frame 2 is installed on the photovoltaic panel body 1, and the photovoltaic panel body 1 is installed on the floating platform 3 through the mounting frame 2, a support seat 4 is provided between the mounting frame 2 and the floating platform 3, a mounting plate 5 is provided at the bottom of the supporting seat 4, and a driving mechanism 6 is provided between the supporting seat 4 and the mounting plate 5. The driving mechanism 6 includes a first gear ring assembly 61 and an active assembly 62. The first gear ring assembly 61 includes two sets of fan-shaped tooth plates. The first gear ring assembly 61 is installed at the output end of the active assembly 62, and a buffer rod 7 is installed on the fan-shaped tooth plate. The top of the buffer rod 7 is rotatably connected to the support rod 9, and the top of the support rod 9 is fixedly provided with a mounting platform 91. The mounting frame 2 and the mounting platform 91 are detachably connected, and a transmission assembly is provided between the mounting plate 5 and the active assembly 62. When the floating platform 3 moves upward, the transmission assembly is driven by the mounting plate 5 to drive the active assembly 62 to rotate, so that the fan-shaped tooth plates of the first gear ring assembly 61 drive the bottom ends of the corresponding buffer rods 7 to move away from each other.

[0040] It should be noted that there are several groups of photovoltaic panel bodies 1 on the floating platform 3, the support seat 4 is movably connected to the mounting plate 5, the edges of the two groups of fan-shaped tooth plates of the first gear ring assembly 61 are meshed and connected, and the bottom end of the buffer rod 7 is connected to the eccentric point of the corresponding fan-shaped tooth plate.

[0041] Furthermore, the active component 62 includes a rotating block 621, a fixed shaft 622 is fixedly installed at the center of the rotating block 621, the first gear ring component 61 is fixedly connected to the fixed shaft 622, a push block 624 is fixedly provided on the outer periphery of the rotating block 621, and the transmission component includes a driving rod 626, and the push block 624 is rotatably connected to the top end of the driving rod 626.

[0042] It should be noted that when the driving rod 626 moves upward, it drives the push block 624 to rotate upward, so that the rotating block 621 drives the first gear ring assembly 61 to rotate through the fixed shaft 622, and then drives the bottom ends of the two groups of buffer rods 7 away from each other.

[0043] Furthermore, a sliding groove 625 is opened inside the push block 624, and a connecting piece 627 is fixed on the top of the driving rod 626. The connecting piece 627 is slidably arranged inside the sliding groove 625. When the connecting piece 627 slides toward the end of the sliding groove 625 away from the rotating block 621, the push block 624 drives the rotating block 621 to rotate.

[0044] It should be noted that, through the guide and limitation of the connecting member 627 by the sliding groove 625 , the pushing block 624 drives the rotating block 621 to rotate around the supporting shaft 623 .

[0045] In this embodiment, the implementation scenario is specifically as follows: use bolts to install the mounting frame 2 on the mounting platform 91, and use bolts to fix the mounting plate 5 on the floating platform 3 to complete the installation of the photovoltaic panel body 1. During use, when waves hit the floating platform 3 and cause it to rise suddenly, the mounting plate 5 first drives the active component 62 to rotate through the transmission component, and the fan-shaped tooth plate of the first gear ring component 61 is rotated through the output end of the active component 62, so that the bottom ends of the two groups of buffer rods 7 are moved away from each other, that is, the bottom ends of the buffer rods 7 rotate around the connection point between the buffer rods 7 and the support rods 9, thereby offsetting the influence of the upward stroke of the mounting plate 5 on the support rods 9, so that the height of the mounting platform 91 remains unchanged or changes slightly, avoiding waves hitting the floating platform 3 and transmitting the impact force to the photovoltaic panel body 1 on the floating platform 3, which not only prevents the photovoltaic panel body 1 from being damaged due to momentary "bumps", but also ensures the stability of the connection between the mounting frame 2 and the mounting platform 91.

[0046] When the bottom ends of the two groups of buffer rods 7 move away from each other, an impact will be caused on the connection between the buffer rod 7 and the support rod 9, affecting the stability of the connection.

[0047] Refer to the instruction manual Figure 3 、 Figure 4 and Figure 8 In order to solve this problem, the following technical solution is also provided: a damping assembly is provided between the two groups of buffer rods 7, and the damping assembly is located in the middle of the buffer rod 7. When the bottom ends of the two groups of buffer rods 7 move away from each other, the damping assembly slows down the movement speed of the buffer rod 7.

[0048] It should be noted that when the bottom ends of the two groups of buffer rods 7 move away from each other, the damping assembly starts to act to slow down the moving speed of the buffer rods 7 .

[0049] Furthermore, the damping assembly includes a damping seat 8, a piston plate 81 is slidingly provided inside the damping seat 8, and two groups of piston plates 81 are provided. A piston rod 82 is fixed on both groups of piston plates 81. The piston rod 82 passes through the interior of the damping seat 8, and a connecting groove 71 is opened inside the buffer rod 7. The end of the piston rod 82 away from the piston plate 81 is rotatably connected to the connecting groove 71.

[0050] It should be noted that the damping seat 8 is filled with damping fluid, which is located on opposite sides of the two groups of piston plates 81. When the two groups of piston plates 81 move away from each other, the damping fluid slows down the movement speed of the piston plates 81.

[0051] In this embodiment, the implementation scenario is specifically as follows: when the bottom ends of the two groups of buffer rods 7 move away from each other, the corresponding piston plates 81 are pulled by the piston rod 82 to move, so that the two groups of piston plates 81 move away from each other, and the movement speed of the piston plates 81 is slowed down by the damping fluid. The movement of the piston rod 82 is adapted by the connecting groove 71, so that the piston rod 82 moves laterally corresponding to the damping seat 8, thereby slowing down the impact at the connection between the buffer rod 7 and the support rod 9 and ensuring the stability of the connection.

[0052] When the mounting plate 5 approaches the support base 4 at a high speed, the support base 4 and the mounting plate 5 may collide violently, causing damage to the support base 4 or the mounting plate 5 .

[0053] Refer to the accompanying drawings Figure 3 and Figure 9 In order to solve this problem, the following technical solution is also provided: a center groove 41 is opened in the middle of the support seat 4, a center column 51 is fixedly provided in the middle of the mounting plate 5, and the top end of the center column 51 is slidably arranged inside the center groove 41.

[0054] It should be noted that, by sliding the center column 51 inside the center groove 41 , the center of the mounting plate 5 is aligned with the support base 4 , thereby stably transmitting the upward force.

[0055] Furthermore, buffer columns 52 are fixedly provided at both ends of the mounting plate 5 , buffer grooves 42 are provided at both ends of the support base 4 , and a buffer assembly 43 is fixedly provided between the top of the buffer column 52 and the top of the buffer groove 42 .

[0056] It should be noted that the buffer component 43 is a spring component, which connects the support seat 4 and the mounting plate 5 and plays a buffering role when the mounting plate 5 approaches the support seat 4 to avoid strong collision between the support seat 4 and the mounting plate 5.

[0057] Furthermore, a shaft hole 44 is opened inside the support base 4 , and support shafts 623 are fixedly provided at both ends of the rotating block 621 , and the support shafts 623 are rotatably arranged inside the corresponding shaft hole 44 .

[0058] It should be noted that the support shaft 623 is installed through the shaft hole 44 to facilitate maintaining the position of the rotating block 621 inside the support base 4.

[0059] In this embodiment, the implementation scenario is specifically as follows: the center column 51 slides inside the center groove 41 to align the center of the mounting plate 5 with the support seat 4, stably transmitting the upward force, and installing the support shaft 623 through the shaft hole 44 to facilitate maintaining the position of the rotating block 621 inside the support seat 4. The support seat 4 and the mounting plate 5 are connected by the buffer assembly 43, and play a buffering role when the mounting plate 5 is close to the support seat 4, thereby avoiding damage caused by strong collision between the support seat 4 and the mounting plate 5.

[0060] When the waves hit the floating platform 3 , a large amount of water will splash toward the photovoltaic panel body 1 , causing the photovoltaic panel body 1 to come into contact with a large amount of water and affecting normal operation.

[0061] Refer to the instruction manual Figure 3 and Figure 10In order to solve this problem, the following technical solution is also provided: a passive component is installed between the top ends of the two groups of buffer rods 7, and a protective mechanism 10 is installed on the support rod 9. When the bottom ends of the two groups of buffer rods 7 move away from each other, the passive component drives the protective mechanism 10 to flip upward close to the photovoltaic panel body 1.

[0062] It should be noted that the protection mechanism 10 is a water baffle to prevent a large amount of water from splashing onto the photovoltaic panel body 1 .

[0063] Furthermore, the passive component includes a first connecting block 72, a second gear ring component 73 is installed on the first connecting block 72, the protective mechanism 10 includes a protective plate 101, a second connecting block 102 is fixedly installed on the support rod 9, the second connecting block 102 is rotatably connected to one end of the protective plate 101, and a pulling component 103 is connected between one end of the protective plate 101 and the second gear ring component 73.

[0064] It should be noted that the connection point between the protective plate 101 and the second connecting block 102 is located below the connection point between the protective plate 101 and the pulling assembly 103. When the bottom ends of the two groups of buffer rods 7 move away from each other, the top ends of the two groups of buffer rods 7 rotate, driving the second gear ring assembly 73 to rotate through the first connecting block 72, so that the pulling assembly 103 pulls the protective plate 101 to flip upward.

[0065] In this embodiment, the implementation scenario is specifically as follows: when the bottom ends of the two groups of buffer rods 7 move away from each other, the top ends of the two groups of buffer rods 7 rotate, driving the second gear ring assembly 73 to rotate through the first connecting block 72, and under the connection support of the second connecting block 102, the pulling assembly 103 pulls the protective plate 101 to flip upward, so that the protective mechanism 10 is blocked on the outside of the photovoltaic panel body 1, preventing a large amount of water from splashing on the photovoltaic panel body 1, and ensuring the stable operation of the photovoltaic panel body 1.

[0066] The above embodiments merely illustrate several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the scope of the present invention, all of which fall within the scope of protection of the present invention.

Claims

1. A stable new energy solar power generation photovoltaic panel, comprising a photovoltaic panel body (1), a mounting frame (2) mounted on the photovoltaic panel body (1), and the photovoltaic panel body (1) being mounted on a floating platform (3) via the mounting frame (2), characterized in that: A support seat (4) is provided between the mounting frame (2) and the floating platform (3); a mounting plate (5) is provided at the bottom of the support seat (4); and a driving mechanism (6) is provided between the support seat (4) and the mounting plate (5); The driving mechanism (6) comprises a first gear ring assembly (61) and a driving assembly (62), wherein the first gear ring assembly (61) comprises two sets of sector-shaped tooth plates, the first gear ring assembly (61) is mounted on the output end of the driving assembly (62), and a buffer rod (7) is mounted on the sector-shaped tooth plates; The top end of the buffer rod (7) is rotatably connected to a support rod (9), a mounting platform (91) is fixedly provided on the top of the support rod (9), the mounting frame (2) is detachably connected to the mounting platform (91), and a transmission component is provided between the mounting plate (5) and the active component (62); When the floating platform (3) moves upward, the mounting plate (5) drives the transmission assembly to drive the active assembly (62) to rotate, so that the fan-shaped tooth plates of the first gear ring assembly (61) drive the bottom ends of the corresponding buffer rods (7) to move away from each other; The active component (62) includes a rotating block (621), a fixed shaft (622) is fixedly installed at the center of the rotating block (621), the first gear ring component (61) is fixedly connected to the fixed shaft (622), a push block (624) is fixedly provided on the periphery of the rotating block (621), and the transmission component includes a driving rod (626), and the push block (624) is rotatably connected to the top end of the driving rod (626); A sliding groove (625) is provided inside the push block (624), and a connecting member (627) is fixedly provided on the top of the driving rod (626). The connecting member (627) is slidably provided inside the sliding groove (625). When the connecting member (627) slides toward the end of the sliding groove (625) away from the rotating block (621), the push block (624) drives the rotating block (621) to rotate. An axial hole (44) is provided inside the support seat (4), and support shafts (623) are fixedly provided at both ends of the rotating block (621), and the support shafts (623) are rotatably arranged inside the corresponding axial holes (44); A passive component is installed between the top ends of the two groups of buffer rods (7), and a protective mechanism (10) is installed on the support rod (9). When the bottom ends of the two groups of buffer rods (7) move away from each other, the passive component drives the protective mechanism (10) to move closer to the photovoltaic panel body (1) and flip upward. The passive component includes a first connecting block (72), a second gear ring component (73) is installed on the first connecting block (72), the protective mechanism (10) includes a protective plate (101), a second connecting block (102) is fixedly installed on the support rod (9), the second connecting block (102) is rotatably connected to one end of the protective plate (101), and a pulling component (103) is connected between one end of the protective plate (101) and the second gear ring component (73).

2. A stable new energy solar power generation photovoltaic panel according to claim 1, characterized in that: A damping assembly is provided between the two groups of buffer rods (7), and the damping assembly is located in the middle of the buffer rods (7). When the bottom ends of the two groups of buffer rods (7) move away from each other, the movement speed of the buffer rods (7) is slowed down by the damping assembly.

3. A stable new energy solar power generation photovoltaic panel according to claim 2, characterized in that: The damping assembly includes a damping seat (8), a piston plate (81) is slidably provided inside the damping seat (8), and two groups of piston plates (81) are provided. A piston rod (82) is fixed on each of the two groups of piston plates (81), and the piston rod (82) passes through the inside of the damping seat (8). A connecting groove (71) is provided inside the buffer rod (7), and one end of the piston rod (82) away from the piston plate (81) is rotatably connected to the connecting groove (71).

4. The stable new energy solar power generation photovoltaic panel according to claim 3, characterized in that: A central groove (41) is provided in the middle of the support seat (4), a central column (51) is fixedly provided in the middle of the mounting plate (5), and the top end of the central column (51) is slidably arranged inside the central groove (41).

5. The stable new energy solar power generation photovoltaic panel according to claim 4, characterized in that: Buffer columns (52) are fixedly provided at both ends of the mounting plate (5), buffer grooves (42) are provided at both ends of the support seat (4), and a buffer assembly (43) is fixedly provided between the top end of the buffer column (52) and the top end of the buffer groove (42).

Citation Information

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