Photovoltaic support and photovoltaic module
By designing an adjustable-angle photovoltaic bracket, the problem of easy deformation and loosening of portable photovoltaic panel brackets was solved, achieving efficient support and convenient installation, and improving the stability and service life of photovoltaic panels.
Patent Information
- Application Number
- CN202423177971.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The back support of portable photovoltaic panels is prone to deformation, loosening, or wear during frequent deployment and storage, affecting its support capacity and service life.
A photovoltaic support structure is designed, including a fixed base, a rotating base, and a support body. Through plug-in mating and locking components, the photovoltaic panel angle can be adjusted and easily assembled. The hollow structure reduces weight and enhances connection strength and stability.
It improves the photoelectric conversion efficiency of photovoltaic panels, reduces installation costs and wear risks, enhances the stability and portability of the support structure, and extends its service life.
Smart Images

Figure CN223584101U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of photovoltaic devices, in particular to a photovoltaic support and a photovoltaic module. BACKGROUND
[0002] When the portable photovoltaic panel is working, it needs to maintain a certain inclination to better accept solar radiation, so a back support needs to be installed to support the photovoltaic panel.
[0003] However, in actual use, the back support is prone to deformation, loosening or wear due to the frequent unfolding and storage of the portable photovoltaic panel and the use in outdoor sun exposure environment, thereby affecting its supporting capacity and service life. CONTENT OF THE UTILITY MODEL
[0004] The present application aims to at least solve one of the technical problems in the related art.
[0005] To this end, the first aspect of the present application provides a photovoltaic support.
[0006] The second aspect of the present application provides a photovoltaic module.
[0007] Therefore, according to the first aspect of the present application, a photovoltaic support is provided, comprising: a fixing seat, the fixing seat being provided with a mounting slot; a rotating seat, comprising a body, a rotating shaft and a plug-in connector; the rotating shaft being rotatably connected in the mounting slot, the body being connected with the rotating shaft, and the plug-in connector being arranged on the side of the body away from the rotating shaft; a support body, at least one end of the support body being provided with a plug-in slot; and the plug-in slot and the plug-in connector being plug-in matched.
[0008] In use, the photovoltaic support is connected with the photovoltaic panel through the fixing seat and can be rotated through the rotating seat, which can not only adjust the angle of the photovoltaic panel to improve the photoelectric conversion efficiency, but also facilitate the support of the photovoltaic panel without complex disassembly and reinstallation process; at the same time, the assembly of the support body and the rotating seat is completed through plug-in matching, which not only simplifies the operation, greatly shortens the assembly time and reduces the installation cost, but also can easily separate the two when wear or damage occurs, so as to facilitate subsequent maintenance and replacement.
[0009] In some technical solutions, optionally, one side of the support body is provided with a groove; the groove extends along the length direction of the support body and penetrates through the support body.
[0010] Compared with the traditional solid structure, the support body is provided with a groove, and this hollow structure design can significantly reduce the weight of the support body, not only reducing the cost of the photovoltaic support, but also improving the portability of the photovoltaic support.
[0011] In some embodiments, the plug-in slot is at least two, and the at least two plug-in slots are arranged on both sides of the groove, respectively; and the plug-in head is at least two, and the at least two plug-in heads are respectively plugged into the at least two plug-in slots.
[0012] In practical applications, by designing multiple plug-in slots, the connection strength between the support body and the rotating seat can be significantly improved, so that the photovoltaic support can withstand greater load, thereby helping to enhance the stability of the entire photovoltaic support and reduce failures.
[0013] In some embodiments, the plug-in slot extends along the length direction of the support body and penetrates through the support body. In this way, the plug-in head can be more easily inserted into the support body, thereby making the installation more convenient, and the weight of the support body can be further reduced.
[0014] In some embodiments, the body is at least partially inserted into the groove.
[0015] In the above embodiments, the body is at least partially inserted into the groove for hiding, which not only keeps the appearance of the photovoltaic support consistent, thereby helping to improve the overall aesthetic appearance and improve the user's experience, but also enhances the stability of the connection between the support body and the rotating seat, thereby helping to prolong the service life of the photovoltaic support.
[0016] In some embodiments, the photovoltaic support further comprises a fixing member; the support body is provided with a first fixing hole, the first fixing hole is in communication with the plug-in slot, and the fixing member is in contact with the plug-in head through the first fixing hole.
[0017] In the above technical solution, by introducing the fixing member, the connection point between the rotating seat and the support body is increased, thereby enhancing the stability of the connection; further, the fixing member can ensure that the support body and the rotating seat will not be loose or fall off due to external force, thereby ensuring the stability of the photovoltaic support.
[0018] In some embodiments, the photovoltaic support further comprises an anti-skid member; the anti-skid member is arranged on the side of the support body away from the rotating seat.
[0019] In the above technical solution, by designing the anti-skid member, the friction between the support body and the supporting surface is increased, thereby preventing the photovoltaic support from sliding or moving during use, ensuring that the photovoltaic support remains in a fixed position, thereby helping to improve the safety and reliability of the photovoltaic support.
[0020] In some embodiments, the photovoltaic support further comprises a locking member; the side of the support body away from the rotating seat is provided with a second fixing hole; and in the supporting state, the locking member passes through the second fixing hole to fix the photovoltaic support at the target position.
[0021] In practical application, the fixing effect of the locking member makes the whole photovoltaic support more stable when being supported, thereby improving the reliability of the photovoltaic support.
[0022] In some technical solutions, optionally, the photovoltaic support further comprises an elastic member; the elastic member is connected with the support body; and in use, the elastic member is arranged on the supported object.
[0023] By designing the elastic member, in use, one end of the elastic member is connected with the support body, and the other end is connected with the photovoltaic panel; so that the user can adjust the placement angle of the photovoltaic panel by adjusting the support body, and the elastic member is not limited by the fixed angle adjustment, thereby realizing stepless adjustment of the photovoltaic panel and making the storage more convenient.
[0024] According to a second aspect of the present application, the present application provides a photovoltaic assembly, comprising a photovoltaic panel and a photovoltaic support according to any one of the above technical solutions; wherein the fixing seat is arranged on the photovoltaic panel. Therefore, the photovoltaic assembly has all the beneficial effects of any one of the above technical solutions, which will not be repeated here.
[0025] Additional aspects and advantages of the present application will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0026] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0027] Figure 1 Fig. 1 shows a structural schematic diagram of a photovoltaic support in an embodiment of the present application;
[0028] Figure 2 Fig. 2 shows a structural schematic diagram of a photovoltaic support in an embodiment of the present application;
[0029] Figure 3 Fig. 3 shows a structural schematic diagram of a photovoltaic assembly in an embodiment of the present application;
[0030] Figure 4 Fig. 4 shows a structural schematic diagram of a photovoltaic assembly in an embodiment of the present application;
[0031] Figure 5 Fig. 5 shows a structural schematic diagram of a photovoltaic assembly in an embodiment of the present application.
[0032] Correspondence between reference signs and component names in the drawings is as follows: Figures 1 to 5 Correspondence between reference signs and component names in the drawings is as follows:
[0033] 100 photovoltaic support; 110 fixing seat; 111 mounting notch; 120 rotating seat; 121 body; 122 rotating shaft; 123 plug connector; 130 support body; 131 plug slot; 132 groove; 133 first fixing hole; 134 second fixing hole; 135 third fixing hole; 136 magic tape two; 140 fixing piece; 150 anti-skid piece; 160 locking piece; 170 elastic piece; 171 first end; 172 second end; 173 third end; 174 magic tape one; 180 first fastener;
[0034] 200 photovoltaic module; 210 photovoltaic panel. DETAILED DESCRIPTION
[0035] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0036] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and therefore the scope of protection of the present application is not limited to the specific embodiments disclosed below.
[0037] The photovoltaic support and the photovoltaic module provided by the embodiments of the present application will be described in detail below with reference to specific embodiments and application scenarios. Figures 1 to 5
[0038] With reference to Figure 1 , Figure 2 and Figure 4 , the embodiments of the present application provide a photovoltaic support 100, the structure of which comprises a fixing seat 110, a rotating seat 120 and a support body 130.
[0039] Specifically, the fixing seat 110 is provided with a mounting notch 111. The rotating seat 120 comprises a body 121, a rotating shaft 122 and a plug connector 123; wherein the rotating shaft 122 is rotatably connected in the mounting notch 111, the body 121 is connected with the rotating shaft 122, and the plug connector 123 is arranged on the side of the body 121 away from the rotating shaft 122. The support body 130 is provided with a plug slot 131 at least at one end, and the plug slot 131 and the plug connector 123 are plug-connected to realize the connection between the support body 130 and the rotating seat 120.
[0040] In use, the photovoltaic bracket 100 is connected to the photovoltaic panel 210 via the fixed base 110 and can rotate via the rotating base 120. This allows for adjustment of the angle of the photovoltaic panel 210 to improve photoelectric conversion efficiency and facilitates support of the photovoltaic panel 210 without the need for complex disassembly and reinstallation. At the same time, the bracket body 130 and the rotating base 120 are assembled by plug-in connection, which not only simplifies operation and greatly shortens assembly time and reduces installation costs, but also allows for easy separation of the two in case of wear or damage, facilitating subsequent maintenance and replacement.
[0041] In some embodiments, the body 121 and the rotating shaft 122 can be integrally formed from all-metal materials, or the rotating shaft 122 made of metal and the body 121 made of soft rubber can be integrally formed.
[0042] In practical applications, the use of an all-metal unibody construction gives the rotating base 120 high strength and durability. The unibody construction of the metal rotating shaft 122 and the soft rubber body 121 gives the body 121 strong toughness. When the photovoltaic bracket 100 is subjected to external impact or vibration, the soft rubber material can absorb some of the energy, thereby reducing the risk of damage.
[0043] In some embodiments, a groove 132 is provided on one side of the support body 130. The groove 132 is along the length direction of the support body 130 (e.g., Figure 1 The center (A indicates the direction) extends and penetrates the main body 130 of the bracket. Compared with the traditional solid structure, the main body 130 of the bracket has a groove 132. This hollow structure design can significantly reduce the weight of the main body 130 of the bracket, which not only reduces the cost of the photovoltaic bracket 100, but also improves the portability of the photovoltaic bracket 100.
[0044] In the above embodiments, the main body 121 is at least partially inserted into the groove 132 for concealment. This not only keeps the appearance of the photovoltaic bracket 100 consistent, thereby improving the overall aesthetics and user experience, but also enhances the stability of the connection between the bracket body 130 and the rotating seat 120 through the cooperation of the main body 121 and the groove 132, thereby helping to extend the service life of the photovoltaic bracket 100.
[0045] In some embodiments, there are at least two insertion slots 131, which are respectively disposed on both sides of the recess 132. Correspondingly, there are at least two insertion connectors 123, which are respectively inserted into at least two insertion slots 131.
[0046] In practical applications, by designing multiple plug-in grooves 131, the connection strength between the support body 130 and the rotating seat 120 can be significantly improved, so that the photovoltaic support 100 can withstand greater load, thereby helping to enhance the stability of the entire photovoltaic support 100 and reduce failures.
[0047] In some embodiments, the plug-in groove 131 extends along the length direction of the support body 130 and penetrates the support body 130. In this way, not only does it make it easier for the plug-in head 123 to be inserted into the support body 130, thereby making installation more convenient, but it also further reduces the weight of the support body 130.
[0048] Referring to Figure 1 , Figure 3 and Figure 4 , in some embodiments, in order to further improve the stability of the connection between the rotating seat 120 and the support body 130, the photovoltaic support 100 further comprises a fixing piece 140 for connecting the rotating seat 120 and the support body 130. Specifically, the support body 130 is provided with a first fixing hole 133, and the first fixing hole 133 is in communication with the plug-in groove 131; the fixing piece 140 passes through the first fixing hole 133 and contacts the plug-in head 123.
[0049] In the above embodiments, by introducing the fixing piece 140, the connection points between the rotating seat 120 and the support body 130 are increased, thereby enhancing the stability of the connection; further, the fixing piece 140 can ensure that the support body 130 and the rotating seat 120 will not loosen or fall off due to external force, thereby ensuring the stability of the photovoltaic support 100.
[0050] In some embodiments, the photovoltaic support 100 further comprises an anti-skid piece 150. The anti-skid piece 150 is arranged on the side of the support body 130 away from the rotating seat 120.
[0051] In the above embodiments, by designing the anti-skid piece 150 to increase the friction between the support body 130 and the supporting surface, the photovoltaic support 100 is prevented from sliding or shifting during use, ensuring that the photovoltaic support 100 remains in a fixed position, thereby helping to improve the safety and reliability of the photovoltaic support 100.
[0052] In practical applications, the anti-skid piece 150 and the support body 130 are plug-in matched. This design not only makes the operation simple, greatly shortens the assembly time and reduces the installation cost, but also allows the two to be easily separated in case of wear and tear or damage, so as to facilitate subsequent maintenance and replacement.
[0053] Specifically, the plug-in groove 131 penetrates the support body 130 along the length direction of the support body 130, and the anti-skid piece 150 and the plug-in groove 131 are plug-in matched. This design makes installation more convenient.
[0054] In some embodiments, the photovoltaic support 100 further comprises a locking member 160. Specifically, the second fixing hole 134 is arranged on the side of the support body 130 away from the rotating base 120. In the supporting state, the locking member 160 passes through the second fixing hole 134 to fix the photovoltaic support 100 at the target position.
[0055] In the above embodiments, the fixing effect of the locking member 160 makes the entire photovoltaic support 100 more stable in the supporting state, thereby improving the reliability of the photovoltaic support 100.
[0056] In actual applications, the locking member 160 passes through the support body 130 vertically, i.e., the locking member 160 and the support body 130 are arranged vertically. In this way, the forces from various directions can be effectively dispersed and resisted, and the photovoltaic support 100 can be prevented from falling, thereby improving the stability and reliability of the photovoltaic support 100.
[0057] Exemplarily, the locking member 160 is a fixing nail. As a common fixing member, the fixing nail usually has a sharp head and can easily penetrate various materials to achieve quick fixing. The fixing nail has a simple structure and is easy to install.
[0058] In some embodiments, the photovoltaic support 100 further comprises an elastic member 170. The elastic member 170 is connected to the support body 130. By designing the elastic member 170, in use, one end of the elastic member 170 is connected to the support body 130, and the other end is connected to the photovoltaic panel 210. Therefore, the user can adjust the placement angle of the photovoltaic panel 210 by adjusting the support body 130, and the elastic member 170 is not limited by the fixed angle adjustment, thereby achieving stepless adjustment of the photovoltaic panel 210 and making the photovoltaic panel 210 more convenient to store.
[0059] Exemplarily, the elastic member 170 is a flexible material such as a woven tape, a nylon tape, or a cloth tape.
[0060] In the above embodiments, the middle part of the support body 130 is provided with a third fixing hole 135. The elastic member 170 is connected to the support body 130 through the first fastener 180 arranged in the third fixing hole 135, i.e., one end of the elastic member 170 is connected to the middle part of the support body 130.
[0061] In some embodiments, the elastic member 170 comprises a first end 171, a second end 172, and a third end 173. The first end 171 is connected to the support body 130. In use, the second end 172 is connected to the fixing base 110 and is fixed together with the upper part of the photovoltaic panel 210, and the third end 173 is connected to the lower part of the photovoltaic panel 210.
[0062] In the above embodiments, the elastic member 170 achieves multi-point support and fixation of the photovoltaic panel 210 through its three different connection ends, forming a stable triangular support structure. This structure is very stable in mechanics and can ensure that the photovoltaic panel 210 maintains its position in various environments, thereby improving the stability of the photovoltaic panel 210.
[0063] In the above embodiments, the third end 173 of the elastic member 170 is provided with a magic tape I 174. Correspondingly, the bracket body 130 is provided with a magic tape II 136 that cooperates with the magic tape I 174. In use, the bracket body 130 can be quickly fixed on the elastic member 170 through the magic tape to achieve storage without the need for complex tools or steps, greatly improving the efficiency of storage, and also avoiding the photovoltaic bracket 100 from being scattered during transportation, affecting the transportation and transfer.
[0064] In actual application, to improve the stability of the connection between the elastic member 170 and the photovoltaic panel 210, the third end 173 of the elastic member 170 is provided with a mounting hole, and the photovoltaic panel 210 is provided with a fixing hole adapted to communicate with the mounting hole. In this way, the elastic member 170 and the photovoltaic panel 210 can be connected into one body through the detachable second fastener, thereby helping to improve the stability of the elastic member 170.
[0065] Reference Figures 1 to 5 In some embodiments, the present application also provides a photovoltaic assembly 200, comprising a photovoltaic panel 210 and the photovoltaic bracket 100 provided in any of the above embodiments; wherein the fixing seat 110 of the photovoltaic bracket 100 is connected with the photovoltaic panel 210. Therefore, the photovoltaic assembly 200 has all the beneficial effects of any of the above embodiments, which will not be repeated here.
[0066] In some embodiments, there are multiple photovoltaic panels 210, and the multiple photovoltaic panels 210 are foldably connected. The folded photovoltaic panel 210 occupies less space, facilitating carrying and storage.
[0067] In the above embodiments, there are at least two photovoltaic brackets 100, and the at least two photovoltaic brackets 100 are arranged at intervals.
[0068] In actual application, by arranging multiple photovoltaic brackets 100, not only can more uniform support force be provided to reduce deformation or damage of the photovoltaic panel 210 caused by excessive force on a single point, but also the photovoltaic assembly 200 can be more effectively resistant to external forces, maintaining the stability of the photovoltaic assembly 200.
[0069] It should be noted that, in the claims, the specification and the drawings of the application, the terms "multiple" refers to two or more, unless otherwise specifically defined, the terms "upper", "lower" and the like indicate the orientation or position relationship based on the orientation or position relationship shown in the drawings, only for more convenient description of the application and make the description process more simple, and not for indicating or implying that the device or element must have the described specific orientation, constructed and operated in a particular orientation, therefore these descriptions can not be understood as a limitation of the application; the terms "connection", "installation", "fixed" and the like should be understood broadly, for example, "connection" can be fixed connection between multiple objects, can also be detachable connection between multiple objects, or integrally connected; can be direct connection between multiple objects, can also be indirect connection between multiple objects through intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances of the above data.
[0070] In the claims, the specification and the drawings of the application, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the application. In the claims, the specification and the drawings of the application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0071] The above is only the preferred embodiment of the application, and is not used to limit the application. For those skilled in the art, the application can have various modifications and changes. Any modification, equivalent replacement, improvement and the like within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. A photovoltaic mount, characterized by, The utility model relates to a photovoltaic support, comprising: a fixing base provided with a mounting slot; a rotating base comprising a body, a rotating shaft and a plug-in head; the rotating shaft is rotatably connected in the mounting slot, the body is connected with the rotating shaft, and the plug-in head is arranged on the side of the body away from the rotating shaft; a support body is provided with at least one plug-in slot at one end; the plug-in slot and the plug-in head are plug-in matched.
2. The photovoltaic mount of claim 1, wherein, one side of the support body is provided with a groove; the groove extends along the length direction of the support body and penetrates through the support body.
3. The photovoltaic mount of claim 2, wherein, the plug-in slot has at least two, and the at least two plug-in slots are arranged on the two sides of the groove respectively; wherein the plug-in head has at least two, and the at least two plug-in heads are respectively plug-in matched with the at least two plug-in slots.
4. The photovoltaic mount of claim 3, wherein, the plug-in slot extends along the length direction of the support body and penetrates through the support body.
5. The photovoltaic mount of claim 2, wherein, the body at least partially extends into the groove.
6. The photovoltaic mount of any one of claims 1 to 5, wherein, further comprising a fixing member; wherein the support body is provided with a first fixing hole, the first fixing hole is communicated with the plug-in slot; the fixing member passes through the first fixing hole and contacts the plug-in head.
7. The photovoltaic mount of any one of claims 1 to 5, wherein, the photovoltaic support further comprises an antiskid member; the antiskid member is arranged on the side of the support body away from the rotating base.
8. The photovoltaic mount of any one of claims 1 to 5, wherein, further comprising a locking member; wherein the side of the support body away from the rotating base is provided with a second fixing hole; in the supporting state, the locking member passes through the second fixing hole to fix the photovoltaic support at the target position.
9. The photovoltaic mount of any one of claims 1 to 5, wherein, further comprising an elastic member; the elastic member is connected with the support body; in use, the elastic member is arranged on the supported target.
10. A photovoltaic module, characterized by, comprising a photovoltaic panel and the photovoltaic support according to any one of claims 1 to 9; wherein the fixing base is arranged on the photovoltaic panel.
Citation Information
Cited By
Photovoltaic support and photovoltaic module
WO2026130100A1