Adjustable flexible photovoltaic support

By designing an adjustable flexible photovoltaic bracket, the problem that the existing photovoltaic flexible bracket cannot adjust the height of the photovoltaic panel is solved, and flexible adjustment of the height and sensitive angle of the photovoltaic panel is achieved, thereby enhancing the applicability and protection effect of the device.

CN223428402UActive Publication Date: 2025-10-10WESTERN GREEN ENERGY TECH (CHONGQING) CO LTD
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Patent Information

Application Number
CN202422886164.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-10-10
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

The existing photovoltaic flexible support structure cannot adjust the working height of the photovoltaic panel according to actual usage, resulting in great limitations in its use.

Method used

An adjustable flexible photovoltaic bracket was designed, which included an adjustment mechanism, a connecting device and an angle adjustment device. The height and photosensitivity angle of the photovoltaic panel could be adjusted through a driving device and a rotating assembly, and the movement stability was improved by combining with a guiding mechanism.

Benefits of technology

The flexible adjustment of the height and photosensitivity angle of the photovoltaic panels is achieved, which enhances the applicability and protection effect of the device and prolongs its service life.

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Abstract

The utility model relates to the technical field of photovoltaic power generation equipment, in particular to an adjustable flexible photovoltaic support. Comprising a bottom plate and an adjusting mechanism, the adjusting mechanism comprises a positioning table, a mounting bracket, a sliding block, a top plate, a connecting device and an angle adjusting device, a photovoltaic panel can be directly arranged on the angle adjusting device during mounting, and the angle adjusting device can quickly adjust the photosensitive angle of the photovoltaic panel during use; the driving device arranged on the side, close to the mounting support, of the top plate can drive the sliding block to vertically ascend and descend, so that the connecting device can be driven to vertically ascend and descend, and height adjustment of the photovoltaic panel is achieved. Therefore, the problem that when an existing photovoltaic flexible support structure is actually used, the working height of a photovoltaic panel cannot be adjusted according to the actual use condition, and the use of the device is greatly limited can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic power generation equipment, in particular to an adjustable flexible photovoltaic bracket. Background Art

[0002] The existing photovoltaic panel bracket lacks certain flexibility after the photovoltaic panel body is installed, which results in direct impact damage to the photovoltaic panel body when the outside world collides with the photovoltaic panel body and causes impact force. It is difficult to buffer and consume the impact force of the outside world on the photovoltaic panel body, resulting in the lack of flexibility of the device, and thus the protection effect of the device is poor, making it difficult to better facilitate long-term use of the device and reducing the service life of the device.

[0003] Prior art CN221767900U discloses a photovoltaic flexible support structure, which relates to the technical field of photovoltaic power generation equipment, including a photovoltaic panel body, wherein the bottom end of the photovoltaic panel body is provided with four flexible buffer mechanisms, and the bottom ends of the flexible buffer mechanisms are all provided with fixing mechanisms. The utility model provides a photovoltaic panel body that is better facilitated to buffer the photovoltaic panel body through the interaction between the installed flexible buffer mechanism and the fixing mechanism, so that the support has certain flexibility characteristics, increases the protection effect of the photovoltaic panel body against external impact forces, and improves the service life of the photovoltaic panel body. By having certain buffering and flexible characteristics, the impact force of the external collision on the photovoltaic panel body can be relieved after installation and use, avoiding the direct damage to the device caused by the impact force generated by the external collision due to the lack of flexibility of the support structure in the past, thereby better facilitating the use of a photovoltaic flexible support structure for users.

[0004] However, when the above-mentioned photovoltaic flexible support structure is actually used, it is impossible to adjust the working height of the photovoltaic panel according to the actual use situation, and the use of the device has great limitations. Utility Model Content

[0005] The purpose of the utility model is to provide an adjustable flexible photovoltaic bracket, which aims to solve the problem that the existing photovoltaic flexible bracket structure cannot adjust the working height of the photovoltaic panel according to actual usage conditions during actual use, resulting in great limitations in the use of the device.

[0006] To achieve the above-mentioned purpose, the utility model provides an adjustable flexible photovoltaic support, comprising a base plate and an adjustment mechanism;

[0007] The adjustment mechanism includes a positioning platform, a mounting bracket, a slider, a top plate, a connecting device and an angle adjustment device. The positioning platform is fixedly connected to the base plate and is located on the base plate. The mounting bracket is fixedly connected to the positioning platform and is located on the top of the positioning platform. The top plate is detachably mounted on the top of the mounting bracket. The slider is slidably connected to the mounting bracket and is driven to rise and fall by a driving device arranged on a side of the top plate close to the mounting bracket. The connecting device is arranged on the front side of the slider. The angle adjustment device is arranged on the top of the connecting device. A photovoltaic panel can be arranged on the angle adjustment device.

[0008] Wherein, the connecting device includes a connecting bracket and a fixing plate. The connecting bracket is fixedly connected to the slider and is located at the front side of the slider; the fixing plate is welded to the top of the connecting bracket.

[0009] Wherein, the connecting device further includes a pull rod, and the pull rod is welded to the connecting bracket.

[0010] The angle adjustment device includes a rotating assembly and a fixed bracket, and the rotating assembly is arranged on the fixed plate; the fixed bracket is driven to rotate by the rotating assembly, and a photovoltaic panel can be arranged on the fixed bracket.

[0011] In which, the adjustable flexible photovoltaic bracket also includes a guiding mechanism, which includes a rolling member and a retaining spring. The rolling member is detachably connected to the stepped shaft installed on both sides of the slider, and rolls with the mounting bracket, and is located on both sides of the slider; the retaining spring is clamped in the retaining spring groove of the stepped shaft installed on both sides of the slider, and abuts the rolling member.

[0012] The utility model provides an adjustable flexible photovoltaic bracket, which can be directly set on the angle adjustment device when the photovoltaic panel is installed. The angle adjustment device can quickly adjust the photosensitivity angle of the photovoltaic panel when in use, and then, a driving device arranged on the top plate close to the side of the mounting bracket can drive the slider to rise and fall vertically, thereby driving the connecting device to rise and fall vertically, and further driving the angle adjustment device arranged on the top of the connecting device to rise and fall vertically, thereby realizing the height adjustment of the photovoltaic panel. The present application can realize the adjustment of the height and photosensitivity angle of the photovoltaic panel when in use, thereby solving the problem that the existing photovoltaic flexible bracket structure cannot adjust the working height of the photovoltaic panel according to the actual use situation during actual use, resulting in great limitations in the use of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.

[0014] Figure 1It is a schematic diagram of the overall structure of the adjustable flexible photovoltaic bracket according to the first embodiment of the present invention.

[0015] Figure 2 It is a structural schematic diagram of the fixing bracket of the first embodiment of the present utility model.

[0016] Figure 3 It is a schematic diagram of the overall structure of the adjustable flexible photovoltaic bracket according to the second embodiment of the present invention.

[0017] Figure 4 This is a schematic diagram of the installation position of the rolling element of the second embodiment of the present utility model.

[0018] In the figure: 101-base plate, 102-positioning platform, 103-mounting bracket, 104-slider, 105-top plate, 106-driving device, 107-connecting bracket, 108-fixed plate, 109-pull rod, 110-rotating component, 111-fixed bracket, 201-rolling element, 202-circlip. DETAILED DESCRIPTION

[0019] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but should not be understood as limiting the present invention.

[0020] Example 1:

[0021] like Figure 1 and Figure 2 As shown, Figure 1 This is a schematic diagram of the overall structure of the adjustable flexible photovoltaic bracket. Figure 2 It is a structural diagram of a fixed bracket 111. The utility model provides an adjustable flexible photovoltaic bracket: comprising a base plate 101 and an adjustment mechanism, wherein the adjustment mechanism comprises a positioning platform 102, a mounting bracket 103, a slider 104, a top plate 105, a connecting device and an angle adjustment device, wherein the connecting device comprises a connecting bracket 107, a fixing plate 108 and a pull rod 109, and the angle adjustment device comprises a rotating assembly 110 and a fixed bracket 111. The aforementioned solution can solve the problem that the existing photovoltaic flexible bracket structure cannot adjust the working height of the photovoltaic panel according to the actual use situation during actual use, resulting in great limitations in the use of the device. It can be understood that the aforementioned solution can adjust the working height of the photovoltaic panel according to the actual use situation.

[0022] In this embodiment, a mounting hole is provided on the bottom plate 101 to facilitate the fixed installation of the bracket.

[0023] Among them, the positioning platform 102 is fixedly connected to the base plate 101 and is located on the base plate 101, the mounting bracket 103 is fixedly connected to the positioning platform 102 and is located on the top of the positioning platform 102, the top plate 105 is detachably installed on the top of the mounting bracket 103, the slider 104 is slidably connected to the mounting bracket 103, and is driven to rise and fall by a driving device 106 arranged on the side of the top plate 105 close to the mounting bracket 103, the connecting device is arranged on the front side of the slider 104, the angle adjustment device is arranged on the top of the connecting device, and a photovoltaic panel can be arranged on the angle adjustment device. The positioning platform 102 is fixed to the base plate 101 by bolts, and the mounting bracket 103 is fixed to the positioning platform 102 by positioning pins and bolts. The positioning pins and bolts are respectively countersunk from bottom to top. A slide groove is provided on the mounting bracket 103 to facilitate the sliding of the slider 104. The slider 104 is cross-shaped and can slide and move in the slide grooves and internal matching cavities on the front and back, left and right sides of the mounting bracket 103. The top plate 105 is fixed to the top of the mounting bracket 103 by bolts for easy positioning. A driving device 106 is provided on the side of the top plate 105 close to the mounting bracket 103. The driving device 106 consists of a servo motor, a screw and a T-nut. The servo motor drives the clamping rod. The brake mechanism and encoder are convenient for stopping the locking shaft and position control, and are installed on the mounting frame of the top plate 105 by bolts. The mounting ends on both sides of the screw rod are respectively installed on the top plate 105 and the bottom of the mounting bracket 103 through rotating bearings. The T-nut is fixed in the mounting hole of the slider 104 by bolts and cooperates with the screw rod thread. The screw rod is close to the shaft end of the servo motor output shaft and is connected to the servo motor output shaft through a rigid coupling. During adjustment, the servo motor drives the screw rod to rotate, so that the slider 104 can be lifted and slid vertically on the mounting bracket 103. The connecting device is used for setting the angle adjustment device, and the angle adjustment device is used for setting the photovoltaic panel and adjusting the photosensitivity angle.

[0024] Secondly, the connecting bracket 107 is fixedly connected to the slider 104 and is located on the front side of the slider 104; the fixing plate 108 is welded to the top of the connecting bracket 107. The connecting plate of the connecting bracket 107 is connected to the slider 104 by bolts, and the fixing plate 108 is welded to the top of the L-shaped bracket of the connecting bracket 107.

[0025] Then, the pull rod 109 is welded to the connecting bracket 107. After the pull rod 109 is welded and fixed, the stability of the connecting bracket 107 is improved.

[0026] Finally, the rotating assembly 110 is set on the fixed plate 108; the fixed bracket 111 is driven to rotate by the rotating assembly 110, and a photovoltaic panel can be set on the fixed bracket 111. The rotating assembly 110 is composed of side panels, a servo motor and a rotating shaft. The side panels are fixed to both sides of the fixed plate 108 by bolts. An L-shaped mounting bracket is set on one side panel to facilitate the fixing of the servo motor. The servo motor is equipped with a brake mechanism and an encoder to facilitate stopping and locking the shaft and controlling the rotation angle. The two sides of the rotating shaft are respectively mounted on the side panels through rotating bearings. The rotating shaft is close to the shaft end of the servo motor and is connected to the servo motor output shaft through a rigid coupling. The fixed bracket 111 is welded to the top of the rotating shaft. A photovoltaic panel can be installed on the fixed bracket 111. When the angle is adjusted, the servo motor is activated to drive the rotating shaft to rotate, thereby realizing the rotation of the fixed bracket 111 to adjust the photosensitivity angle of the photovoltaic panel.

[0027] When using the present invention to solve the problem that the existing photovoltaic flexible bracket structure cannot adjust the working height of the photovoltaic panel according to the actual usage conditions in actual use, resulting in great limitations in the use of the device, first, the bracket can be installed and fixed through the bottom plate 101, and then the photovoltaic panel can be directly installed on the fixed bracket 111, and the driving device 106 arranged on the top plate 105 close to the side of the mounting bracket 103 can drive the slider 104 to move vertically, thereby driving the vertical lifting and movement of the connecting device, and further driving the vertical lifting and movement of the angle adjustment device arranged on the top of the connecting device to achieve height adjustment of the photovoltaic panel. After the rotating component 110 is actuated, it can drive the fixed bracket 111 to rotate to adjust the photosensitivity angle of the photovoltaic panel. The present application can achieve height and photosensitivity angle adjustment of the photovoltaic panel when in use, thereby solving the problem that the existing photovoltaic flexible bracket structure cannot adjust the working height of the photovoltaic panel according to the actual usage conditions in actual use, resulting in great limitations in the use of the device.

[0028] Example 2:

[0029] like Figure 3 and Figure 4 As shown, Figure 3 This is a schematic diagram of the overall structure of the adjustable flexible photovoltaic bracket. Figure 4 It is a schematic diagram of the installation position of the rolling element 201. Based on the first embodiment, the utility model provides an adjustable flexible photovoltaic bracket, and the adjustable flexible photovoltaic bracket also includes a guiding mechanism, and the guiding mechanism includes a rolling element 201 and a retaining spring 202.

[0030] The rolling member 201 is detachably connected with the stepped shafts installed on both sides of the sliding block 104 and is in rolling cooperation with the mounting bracket 103 and is located on both sides of the sliding block 104; the snap spring 202 is clamped in the snap spring groove of the stepped shafts installed on both sides of the sliding block 104 and abuts against the rolling member 201. The stepped shafts are arranged on both sides of the sliding block 104 and are located in the left and right sliding grooves of the mounting bracket 103; the snap spring groove is arranged on the stepped shaft; the rolling member 201 can be a rolling bearing and is directly sleeved on the stepped shafts arranged on both sides of the sliding block 104 during installation, then the snap spring 202 is installed to limit, and the rolling bearing can roll in the left and right rectangular sliding grooves of the mounting bracket 103 after installation.

[0031] In the embodiment, the rolling member 201 and the snap spring 202 are arranged, so that the stability of the vertical lifting movement of the sliding block 104 is further improved.

[0032] The above only discloses one or more preferred embodiments of the application and cannot limit the scope of the right of the application. Those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the application still belong to the scope covered by the application.

Claims

1. An adjustable flexible photovoltaic support, comprising a base plate, characterized in that: Also includes a regulating mechanism; The adjustment mechanism includes a positioning platform, a mounting bracket, a slider, a top plate, a connecting device and an angle adjustment device. The positioning platform is fixedly connected to the base plate and is located on the base plate. The mounting bracket is fixedly connected to the positioning platform and is located on the top of the positioning platform. The top plate is detachably mounted on the top of the mounting bracket. The slider is slidably connected to the mounting bracket and is driven to rise and fall by a driving device arranged on a side of the top plate close to the mounting bracket. The connecting device is arranged on the front side of the slider. The angle adjustment device is arranged on the top of the connecting device. A photovoltaic panel can be arranged on the angle adjustment device.

2. The adjustable flexible photovoltaic support according to claim 1, characterized in that: The connecting device includes a connecting bracket and a fixing plate. The connecting bracket is fixedly connected to the slider and is located at the front side of the slider. The fixing plate is welded to the top of the connecting bracket.

3. The adjustable flexible photovoltaic support according to claim 2, characterized in that: The connecting device further comprises a pull rod, and the pull rod is welded to the connecting bracket.

4. The adjustable flexible photovoltaic support according to claim 2, characterized in that: The angle adjustment device includes a rotating component and a fixed bracket. The rotating component is arranged on the fixed plate. The fixed bracket is driven to rotate by the rotating component. A photovoltaic panel can be arranged on the fixed bracket.

5. The adjustable flexible photovoltaic support according to claim 1, characterized in that : The adjustable flexible photovoltaic bracket also includes a guiding mechanism, which includes a rolling member and a retaining spring. The rolling member is detachably connected to the stepped shaft installed on both sides of the slider, and rolls with the mounting bracket and is located on both sides of the slider; the retaining spring is clamped in the retaining spring groove of the stepped shaft installed on both sides of the slider, and abuts the rolling member.

Citation Information

Patent Citations

  • Photovoltaic flexible support structure

    CN221767900U