Photovoltaic fence support and photovoltaic fence
By designing a photovoltaic fence bracket with component installation slots, the problems of complexity, stability and durability of existing photovoltaic fences are solved, and the effects of simplifying installation, improving stability and reducing maintenance costs are achieved.
Patent Information
- Application Number
- CN202421962702.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The installation process of existing photovoltaic fences is complicated, with insufficient stability and durability, and high maintenance costs.
A photovoltaic fence bracket is designed, including a support member and a connector, which extends in the first direction, and the connector is equipped with a component installation groove, allowing the bottom edge of the frame of the photovoltaic component to be directly loaded into the groove through the installation inlet, simplifying the installation process.
Simplifies the installation process of photovoltaic modules, improves installation efficiency and fence stability and durability, and reduces maintenance costs.
Smart Images

Figure CN222976566U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of photovoltaic equipment installation, and particularly relates to a photovoltaic fence bracket and a photovoltaic fence. Background Art
[0002] As an innovative product that combines photovoltaic power generation and fence functions, a photovoltaic fence can not only effectively utilize solar energy for power production, but also be used as a physical barrier to protect and isolate specific areas. The application scope of photovoltaic fences is extensive, including but not limited to fields such as agriculture, industry, residential, and public facilities. A photovoltaic fence usually consists of photovoltaic modules and a photovoltaic fence bracket.
[0003] In practice, the inventor found that the existing photovoltaic fences have the following defects. A major problem is that the installation process is complex and usually requires fixing methods such as self-tapping screws, corner codes, or rubber strips. These methods not only have low installation efficiency, but also the stability and durability of the fence may be affected in bad weather or after long-term use. In addition, the maintenance cost of existing photovoltaic fences is relatively high. Once a component is damaged or needs to be replaced, the entire fence repair process is often time-consuming and costly. Summary of the Utility Model
[0004] The purpose of this application is to provide a photovoltaic fence bracket, which simplifies the installation process of photovoltaic modules in a photovoltaic fence, improves the installation efficiency, and at the same time enhances the stability and durability of the fence, effectively solving the problems of complex installation, insufficient stability and durability in the prior art.
[0005] Another purpose of this application is to provide a photovoltaic fence.
[0006] To achieve the above purpose, this application provides a photovoltaic fence bracket, including:
[0007] A support member extending in a first direction;
[0008] A connecting member provided on the support member. The connecting member is provided with a component installation groove, and the component installation groove extends in the first direction. One end of the component installation groove in the first direction is an installation inlet, so as to realize loading the bottom edge of the frame of the photovoltaic module into the component installation groove along the first direction from the installation inlet.
[0009] In some embodiments, the first direction is the vertical direction, the support member is vertically arranged, and the installation inlet is located at the upper end of the component installation groove in the first direction, so as to realize the vertical installation of the photovoltaic module relative to the photovoltaic fence bracket.
[0010] In some embodiments, in a cross-section perpendicular to the first direction, the component installation groove includes:
[0011] A first groove body is extended in a second direction perpendicular to the first direction and is used to accommodate a bottom edge body of the bottom edge of the frame;
[0012] The second slot body is connected to the end of the second slot body in the second direction, and is extended in a third direction perpendicular to the first direction and the second direction, so as to accommodate the end hook of the bottom edge body.
[0013] In some embodiments, the support member is provided with a support surface, the connecting member is arranged on the support surface, and the component mounting groove is formed by clamping the support surface and the connecting member to achieve support of the bottom edge of the frame by the support surface.
[0014] In some embodiments, the connector is further provided with a card fixing slot; the photovoltaic fence bracket further comprises:
[0015] A component clamp is arranged in the clamp fixing groove, and the component clamp is used to support the lower end of the photovoltaic component in the first direction.
[0016] In some embodiments, the component card comprises:
[0017] A fixing member, provided with a mounting head and a mounting rod with threads, wherein the mounting head is arranged in the fixing groove of the fixing member, the mounting rod is connected to the mounting head, and the mounting rod extends out of the fixing groove of the fixing member;
[0018] An angle code, comprising a first wing plate and a second wing plate connected to each other, wherein the first wing plate is arranged on the fixing member, and the second wing plate is used to support the lower end of the photovoltaic module in the first direction;
[0019] The mounting piece is provided with a through hole with a thread, and the mounting piece is connected to the fixing piece to fix the angle code.
[0020] In some embodiments, the connector is further provided with a protective mounting groove; the photovoltaic fence support further comprises:
[0021] A protective member, disposed in the protective mounting groove, wherein the protective member is located on the outside of the photovoltaic fence support in a third direction perpendicular to the first direction;
[0022] Wherein, the support member is located on the inner side of the photovoltaic fence bracket in the third direction.
[0023] In some embodiments, the support member is provided with a hollow support cavity, and the support cavity is arranged through in the first direction.
[0024] The present application also provides a photovoltaic fence, comprising a photovoltaic component and the above-mentioned photovoltaic fence bracket, wherein the photovoltaic component is arranged on the photovoltaic fence bracket.
[0025] In some embodiments, the number of the photovoltaic fence brackets is multiple, and the multiple photovoltaic fence brackets are arranged at intervals, and the photovoltaic modules are fixed between the photovoltaic fence brackets; the photovoltaic fence brackets are provided with a plurality of component mounting grooves to enable fixing a plurality of the photovoltaic modules on one photovoltaic fence bracket.
[0026] Compared with the above-mentioned background art, the photovoltaic fence bracket provided by the present application mainly includes a support member and a connecting member. The support member extends in a first direction; the connecting member is arranged on the support member, and the connecting member is provided with a component mounting groove which extends in the first direction. One end of the component mounting groove in the first direction is an installation inlet to enable the bottom edge of the frame of the photovoltaic module to be inserted into the component mounting groove along the first direction from the installation inlet.
[0027] Through its unique design, the photovoltaic fence bracket of this technical solution provides an effective solution to the problems of complexity in the installation process and high maintenance cost of the photovoltaic fence in the prior art. First, the support member extends in the first direction, providing a structural foundation for the photovoltaic module. Then, the connecting member is arranged on the support member and is provided with a component mounting groove. This design allows the bottom edge of the frame of the photovoltaic module to be directly inserted into the groove along the first direction through the installation inlet, simplifying the installation process.
[0028] The advantage of this design is that it eliminates the need for fixing methods such as self-tapping screws, corner codes or rubber strips in traditional installation methods. These traditional methods not only have low installation efficiency, but may also lead to a decrease in the stability and durability of the fence in bad weather or after long-term use. Through the direct insertion method of the component mounting groove, the installation of the photovoltaic module becomes faster and simpler, reducing the installation time and labor cost.
[0029] At the same time, since the design of the component mounting groove allows the photovoltaic module to be tightly fixed on the bracket, the stability of the entire fence structure is enhanced. The end of the component mounting groove serves as the installation inlet, ensuring that the photovoltaic module can be correctly positioned and fixed, reducing the risk of damage caused by improper installation, and thus improving the durability of the fence.
[0030] In addition, the design of the component mounting groove may also allow for quick replacement or maintenance of the photovoltaic module because the insertion and removal of the component become easier. This easy-to-maintain feature further reduces the maintenance cost during long-term operation, making the photovoltaic fence more economical and practical.
[0031] Combined with the above structural and process descriptions, it can be seen that the photovoltaic fence bracket has at least the following beneficial effects: The photovoltaic fence bracket simplifies the installation process of photovoltaic modules in the photovoltaic fence, improves the installation efficiency, and at the same time enhances the stability and durability of the fence, effectively solving the problems of complex installation, insufficient stability and durability in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0033] Figure 1 Schematic diagrams of the photovoltaic fence bracket and the photovoltaic fence provided by the embodiment of the present application;
[0034] Figure 2 Schematic diagram of the photovoltaic fence bracket provided by the embodiment of the present application;
[0035] Figure 3 is Figure 2 Schematic diagram of the photovoltaic fence bracket in a cross-section perpendicular to the first direction;
[0036] Figure 4 Schematic diagram of the component card and the protective part provided by the embodiment of the present application.
[0037] Wherein:
[0038] Photovoltaic fence bracket 100,
[0039] Support member 1, support surface 11, support cavity 12,
[0040] Connecting member 2, component installation groove 21, first groove body 211, second groove body 212, installation inlet 2101, card fixing groove 22, protective installation groove 23,
[0041] Component card 3, fixing member 31, installation head 311, installation rod 312, angle code 32, first wing plate 321, second wing plate 322, installation member 33,
[0042] Protective part 4,
[0043] Photovoltaic module 200, bottom edge of the frame 5, bottom edge main body 51, end hook 52. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0044] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0045] In order to enable those skilled in the art of this technology to better understand the solution of the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific implementation manners.
[0046] In Figures 1 to 4 , the coordinate axes are marked, and the indicated directions of the coordinate axes are consistent with the description directions of the content of the present application. The coordinate axes X, Y, and Z are perpendicular to each other. The coordinate axis Z represents the first direction, which is also the height direction and the up-down direction. The coordinate axis X represents the second direction, which is also the length direction and the left-right direction. The coordinate axis Y represents the third direction, which is also the width direction and the front-back direction.
[0047] Please refer to Figures 1 to 3 , where Figure 1 is a schematic diagram of the photovoltaic fence support and the photovoltaic fence provided by the embodiment of the present application, Figure 2 is a schematic diagram of the photovoltaic fence support provided by the embodiment of the present application, Figure 3 is Figure 2 a schematic diagram of the photovoltaic fence support in the cross-section perpendicular to the first direction in
[0048] In the first specific implementation manner, the photovoltaic fence support 100 provided by the embodiment of the present application mainly includes a support member 1 and a connecting member 2. The support member 1 extends in the first direction; the connecting member 2 is arranged on the support member 1. The connecting member 2 is provided with a component installation groove 21, and the component installation groove 21 extends in the first direction. One end of the component installation groove 21 in the first direction is an installation inlet 2101, so as to realize loading the bottom edge 5 of the frame of the photovoltaic module 200 into the component installation groove 21 along the first direction from the installation inlet 2101.
[0049] During the process of installing the photovoltaic module 200 on the photovoltaic fence support 100, the operator first needs to fix the photovoltaic fence support 100 at a predetermined position and ensure its stability. Referring to Figures 1 to 3 , the operator aligns the bottom edge 5 of the frame of the photovoltaic module 200 with the installation inlet 2101 of the component installation groove 21 on the photovoltaic fence support 100. The component installation groove 21 extends along the first direction, that is, the height direction, and the installation inlet 2101 is located at its upper end.
[0050] The operator inserts the bottom edge 5 of the frame of the photovoltaic module 200 along the Z-axis, i.e., the height direction, into the module installation groove 21. The design of the module installation groove 21 ensures that the photovoltaic module 200 can slide in smoothly and be fixed. After the bottom edge 5 of the frame completely enters the module installation groove 21, the photovoltaic module 200 is stably fixed on the photovoltaic fence bracket 100.
[0051] Through this series of steps, the photovoltaic module 200 can be quickly and stably installed on the photovoltaic fence bracket 100, reducing the installation time and cost, while improving the stability and durability of the entire structure.
[0052] The photovoltaic fence bracket 100 of this technical solution provides an effective solution to the problems of complexity in the installation process and high maintenance costs in the existing photovoltaic fence technology through its unique design. First, the support member 1 extends along the first direction, providing a structural foundation for the photovoltaic module 200. Then, the connecting member 2 is arranged on the support member 1, and the module installation groove 21 is provided thereon. This design allows the bottom edge 5 of the frame of the photovoltaic module 200 to be directly inserted into the groove along the first direction through the installation inlet 2101, simplifying the installation process.
[0053] The advantage of this design is that it eliminates the need for fixing methods such as self-tapping screws, corner codes, or rubber strips in traditional installation methods. These traditional methods not only have low installation efficiency but may also lead to a decrease in the stability and durability of the fence after exposure to harsh weather or long-term use. Through the direct insertion method of the module installation groove 21, the installation of the photovoltaic module 200 becomes faster and simpler, reducing the installation time and labor costs.
[0054] At the same time, since the design of the module installation groove 21 allows the photovoltaic module 200 to be tightly fixed on the bracket 100, this enhances the stability of the entire fence structure. The end of the module installation groove 21 serves as the installation inlet 2101, ensuring that the photovoltaic module 200 can be correctly positioned and fixed, reducing the risk of damage caused by improper installation, thereby improving the durability of the fence.
[0055] In addition, the design of the module installation groove 21 may also allow for the quick replacement or maintenance of the photovoltaic module 200 because the insertion and removal of the module become easier. This easy-to-maintain feature further reduces the maintenance costs during long-term operation, making the photovoltaic fence more economical and practical.
[0056] Combined with the above structure and process description, it can be seen that the photovoltaic fence bracket 100 has at least the following beneficial effects: The photovoltaic fence bracket 100 simplifies the installation process of the photovoltaic module 200 in the photovoltaic fence, improves the installation efficiency, while enhancing the stability and durability of the fence, effectively solving the problems of complex installation, insufficient stability and durability in the existing technology.
[0057] Please continue to refer to Figure 1 , in some embodiments, the first direction is the vertical direction, the support member 1 is vertically arranged, and the installation inlet 2101 is located at the upper end of the component installation groove 21 in the first direction, so as to realize the vertical installation of the photovoltaic module 200 relative to the photovoltaic fence bracket 100.
[0058] In this embodiment, the design of the photovoltaic fence bracket 100 allows the photovoltaic module 200 to be vertically installed, which mainly benefits from the specific settings of the support member 1 and the component installation groove 21. The support member 1 is arranged along the vertical direction, that is, the first direction, which provides support perpendicular to the ground for the photovoltaic module 200. The component installation groove 21 also extends along the first direction, and an installation inlet 2101 is specially designed at its upper end. This installation inlet 2101 is the entrance for the bottom edge 5 of the frame of the photovoltaic module 200 to enter the component installation groove 21.
[0059] Through this design, the photovoltaic module 200 can be inserted into the component installation groove 21 from the upper end to achieve vertical installation. This installation method not only simplifies the installation process, but also enables the photovoltaic module 200 to be fixed more stably on the photovoltaic fence bracket 100. The vertical installation also helps to improve the overall aesthetics of the photovoltaic fence and increase the stability of the fence.
[0060] In addition, the vertically installed photovoltaic module 200 can receive sunlight better, especially in high-latitude regions. Such an installation angle helps to maximize the solar energy collection efficiency. At the same time, the design of the component installation groove 21 and the installation inlet 2101 ensures the precise positioning of the photovoltaic module 200 during the installation process, reduces the installation error, and improves the overall installation quality and efficiency.
[0061] Please continue to refer to Figure 2 and Figure 3 , in some embodiments, in the cross-section perpendicular to the first direction, the component installation groove 21 includes:
[0062] The first groove body 211, which extends in the second direction perpendicular to the first direction and is used to accommodate the bottom main body 51 of the bottom edge 5;
[0063] The second groove body 212, which is connected to the end of the second groove body 212 in the second direction and extends in the third direction perpendicular to the first direction and the second direction, and is used to accommodate the end hook 52 of the bottom main body 51.
[0064] In this embodiment, the design of the component installation groove 21 has a specific geometric structure to adapt to the specific shape of the bottom edge 5 of the frame of the photovoltaic module 200. The component installation groove 21 is composed of two main parts: the first groove body 211 and the second groove body 212.
[0065] The first groove body 211 extends along the second direction, which is perpendicular to the first direction (i.e., the vertical direction), and can generally be understood as the horizontal direction or the left - right direction. The first groove body 211 is provided to accommodate the bottom - edge main body 51 of the frame of the photovoltaic module 200, which means it provides a space matching the shape of the bottom - edge main body 51 to ensure that the photovoltaic module 200 can be stably placed in the groove.
[0066] The second groove body 212 is connected to the end of the first groove body 211 and extends along the third direction, which is perpendicular to the first direction and the second direction, and can be understood as the depth direction or the front - back direction. The second groove body 212 is designed to accommodate the end hook 52 of the bottom - edge main body 51. The end hook 52 may be a protruding part of the bottom edge of the photovoltaic - module frame 5 and requires special support or fixation to ensure the stability of the module.
[0067] Through such a design, the component mounting groove 21 not only provides support for the main - body part of the bottom edge 5 of the frame of the photovoltaic module 200, but also provides a suitable fixing position for the end hook 52 of the bottom edge 5. This design enables the photovoltaic module 200 to be more stably installed on the photovoltaic fence support 100, and can adapt to different - shaped bottom edges 5 of the photovoltaic - module frame, improving the flexibility and adaptability of installation. At the same time, this structure also helps to improve the overall stability and durability of the photovoltaic fence.
[0068] In some cases, the photovoltaic module 200 uses an S - frame module. The frame of the S - frame module is in an S shape, and its bottom edge 5 includes a bottom - edge main body 51 and an end hook 52. The S - frame module can be inserted into the component mounting groove 21. Optionally, the S - frame module is inserted into the component mounting groove 21 from top to bottom, which has high installation efficiency and effectively prevents loosening.
[0069] Please continue to refer to Figure 2 and Figure 3 , in some embodiments, the support member 1 is provided with a support surface 11, and a connecting member 2 is arranged on the support surface 11. The component mounting groove 21 is formed by clamping between the support surface 11 and the connecting member 2 to realize the support of the support surface 11 for the bottom edge 5.
[0070] In this embodiment, the design of the photovoltaic fence support 100 further optimizes the installation and support methods of the photovoltaic module 200. The support member 1 not only extends along the first direction to provide vertical support, but also is specially designed with a support surface 11. This support surface 11 is a part of the support member 1 and provides a platform for the arrangement of the connecting member 2.
[0071] The connecting member 2 is arranged on the supporting surface 11 and acts together with the supporting surface 11 to form a component installation groove 21. The component installation groove 21 does not exist independently, but is a space formed by the clamping of the supporting surface 11 and the connecting member 2. This design enables the component installation groove 21 to be adapted to the size of the bottom edge 5 of the frame of the photovoltaic module 200, providing more precise and stable support.
[0072] Through the cooperation of the supporting surface 11 and the connecting member 2, in the Y-axis direction, the component installation groove 21 can support the bottom edge 5 of the frame of the photovoltaic module 200. This support method not only ensures the stability of the photovoltaic module 200 in the vertical direction, but also improves the installation efficiency and space utilization rate of the entire photovoltaic fence bracket 100 due to its compact structure.
[0073] In addition, this design also allows the photovoltaic fence bracket 100 to more flexibly adapt to photovoltaic modules of different sizes and shapes when installing the photovoltaic module 200, enhancing the versatility and applicability of the photovoltaic fence bracket 100. Therefore, the combined use of the supporting surface 11 and the connecting member 2 provides a stable and reliable installation platform for the photovoltaic module 200.
[0074] It should be noted that this embodiment does not limit the setting method of the support member 1 and the connecting member 2 in the photovoltaic fence bracket 100. For example, the support member 1 and the connecting member 2 can be the assembled photovoltaic fence bracket 100, and the support member 1 and the connecting member 2 can also be in an integrally formed manner, which should also belong to the scope of the description of this application.
[0075] In addition, the quantitative relationship between the support member 1 and the connecting member 2 is not limited either. It can be in a one-to-one form, or in a form where one support member 1 corresponds to multiple connecting members 2, or in a form where multiple support members 1 correspond to one connecting member 2, which should also belong to the scope of the description of this application.
[0076] Please refer to Figure 4 , Figure 4 which is a schematic diagram of the component clamping member and the protective member provided by the embodiment of this application.
[0077] In some embodiments, the connecting member 2 is further provided with a clamping member fixing groove 22; the photovoltaic fence bracket 100 further includes:
[0078] A component clamping member 3, which is arranged in the clamping member fixing groove 22, and the component clamping member 3 is used to support the lower end of the photovoltaic module 200 in the first direction.
[0079] In this embodiment, the design of the photovoltaic fence bracket 100 takes into account the flexibility of installation and the adaptability to different height positions. A card fixing groove 22 is specially designed on the connecting member 2, which is a dedicated slot for placing the component card 3. The component card 3 is arranged in the card fixing groove 22, and its main function is to provide support for the lower end of the photovoltaic module 200 in the first direction, that is, the vertical direction.
[0080] During use, the bottom edge 5 of the frame of the photovoltaic module 200 is first inserted into the component installation groove 21 starting from the installation inlet 2101, which is usually a top-down installation process. Once the bottom edge 5 is correctly inserted into the component installation groove 21, the component card 3 can be used to further fix the photovoltaic module 200. The component card 3 interacts with the lower end of the bottom edge 5 of the frame through the card fixing groove 22 to provide the necessary supporting force.
[0081] In addition, the design of the component card 3 allows for position adjustment in the first direction, which means that the photovoltaic module 200 can be fixed at different height positions as needed. This adjustment ability greatly improves the applicability of the photovoltaic fence bracket 100, enabling it to adapt to different installation environments and design requirements.
[0082] Through the support and adjustment of the component card 3, the photovoltaic module 200 can not only be stably installed on the photovoltaic fence bracket 100, but also be optimized and adjusted according to the sunlight angle or other factors to achieve the best energy collection effect. This design reflects that while ensuring the stability of the components, the photovoltaic fence bracket 100 also provides flexibility in installation and use.
[0083] Please continue to refer to Figure 3 , in some embodiments, the component card 3 includes:
[0084] A fixing member 31, provided with a mounting head 311 and a threaded mounting rod 312. The mounting head 311 is arranged in the card fixing groove 22, the mounting rod 312 is connected to the mounting head 311, and the mounting rod 312 extends out of the card fixing groove 22;
[0085] An angle code 32, provided with a connected first wing plate 321 and a second wing plate 322. The first wing plate 321 is arranged on the fixing member 31, and the second wing plate 322 is used to support the lower end of the photovoltaic module 200 in the first direction;
[0086] A mounting member 33, provided with a threaded through hole, and the mounting member 33 is connected to the fixing member 31 to fix the angle code 32.
[0087] In this embodiment, the structural design of the component card 3 provides an effective mechanism to ensure the stability and adjustability of the photovoltaic module 200 on the photovoltaic fence bracket 100. The component card 3 consists of several key parts: the fixing part 31, the angle code 32, and the mounting part 33.
[0088] The fixing part 31 is the basic part of the component card 3. It is designed with a mounting head 311 and a threaded mounting rod 312. The mounting head 311 is placed in the card fixing groove 22. The mounting head 311 cannot rotate in the card fixing groove 22, while the mounting rod 312 is connected to the mounting head 311 and extends out of the card fixing groove 22. Such a design allows the fixing part 31 to be stably positioned in the card fixing groove 22 and provides an adjustable support point.
[0089] The angle code 32 is another important part of the component card 3. It includes two connected wing plates: the first wing plate 321 and the second wing plate 322. The first wing plate 321 is connected to the fixing part 31, and the second wing plate 322 is used to support the lower end of the photovoltaic module 200 in the first direction, that is, the vertical direction. This design enables the angle code 32 to firmly support the photovoltaic module 200 and allows the installation position of the photovoltaic module 200 to be adjusted by selecting different specifications of the angle code 32.
[0090] The mounting part 33 is the last part of the component card 3. It has a threaded through hole. The mounting part 33 is connected to the fixing part 31 to press and fix the first wing plate 321, and can fix the angle code 32 in place. This fixing mechanism not only ensures the stability of the component card 3 but also allows adjustment when needed to adapt to photovoltaic modules 200 of different sizes or shapes.
[0091] In some embodiments, the connecting piece 2 is further provided with a protective mounting groove 23; the photovoltaic fence bracket 100 further includes:
[0092] A protective piece 4, arranged in the protective mounting groove 23, and the protective piece 4 is located outside the photovoltaic fence bracket 100 in a third direction perpendicular to the first direction;
[0093] Wherein, the support piece 1 is located inside the photovoltaic fence bracket 100 in the third direction.
[0094] In this embodiment, the design of the photovoltaic fence bracket 100 takes into account the possible impact of environmental factors on the photovoltaic module 200. For this reason, a protective mounting groove 23 is specially added to the connecting piece 2. Such a design allows the photovoltaic fence bracket 100 to be equipped with the protective piece 4 to provide additional protection.
[0095] The protective member 4 is disposed within the protective installation groove 23, and its position is in the third direction perpendicular to the first direction, that is, on the outer side of the photovoltaic fence bracket 100. Such a layout enables the protective member 4 to effectively cover the connecting member 2 and the front surface of the photovoltaic module 200, thereby providing necessary protection effects such as waterproofing and windproofing for the photovoltaic module 200.
[0096] The support member 1 is located on the inner side of the photovoltaic fence bracket 100 in the third direction, forming a complementary layout with the protective member 4. This design not only enhances the overall protection ability of the photovoltaic fence bracket 100 but also helps to improve the environmental adaptability and durability of the photovoltaic module 200.
[0097] Optionally, the protective member 4 can be in the form of a cover plate. Such a design further enhances its covering effect, ensuring that the front surface of the photovoltaic module 200, especially the border area between the photovoltaic module 200 and the photovoltaic fence bracket 100, is fully protected. The cover plate - shaped protective member 4 is easy to install and maintain, and can also be replaced or upgraded as needed to adapt to different environmental conditions or protection requirements.
[0098] Please continue to refer to Figure 2 In some embodiments, the support member 1 is provided with a hollow support cavity 12, and the support cavity 12 is arranged to penetrate in the first direction.
[0099] In this embodiment, the support cavity 12 is a hollow cavity structure inside the support member 1, and it penetrates along the first direction, that is, the vertical direction. This design not only reduces the weight of the support member 1 but also may provide additional functions.
[0100] The existence of the support cavity 12 can bring several potential advantages to the photovoltaic fence bracket 100. First, the hollow design can reduce the use of materials, thereby reducing the weight and cost of the overall structure. Second, the support cavity 12 may allow the support member 1 to provide greater strength and stability without increasing additional weight. In addition, the penetrating support cavity 12 can also serve as a channel for cables or pipes, facilitating wiring and maintenance work.
[0101] In practical applications, the support cavity 12 can also be used to adjust the thermal performance of the support member 1 because the hollow structure can provide a certain heat insulation effect. This is especially important in environments where the photovoltaic module 200 needs to operate at extreme temperatures, protecting the photovoltaic module 200 from the influence of excessive or low temperatures.
[0102] This application also provides a photovoltaic fence, including the photovoltaic module 200 and the above - mentioned photovoltaic fence bracket 100, and the photovoltaic module 200 is disposed on the photovoltaic fence bracket 100.
[0103] In this embodiment, the photovoltaic fence should have all the beneficial effects of the above-mentioned photovoltaic fence bracket 100, which will not be elaborated one by one here.
[0104] In some embodiments, the number of the photovoltaic fence brackets 100 is multiple, and the multiple photovoltaic fence brackets 100 are arranged at intervals. The photovoltaic modules 200 are fixed between the photovoltaic fence brackets 100. The photovoltaic fence brackets 100 are provided with multiple component installation grooves 21 to enable fixing multiple photovoltaic modules 200 on one photovoltaic fence bracket 100.
[0105] As Figure 1 shown, the multiple photovoltaic fence brackets 100 are arranged at intervals in the X-axis direction. Taking the number of the photovoltaic fence brackets 100 being four as an example, the right side of the first photovoltaic module 200 is fixed to the first photovoltaic fence bracket 100, the left side of the first photovoltaic module 200 is fixed to the second photovoltaic fence bracket 100, the right side of the second photovoltaic module 200 is fixed to the second photovoltaic fence bracket 100, the left side of the second photovoltaic module 200 is fixed to the third photovoltaic fence bracket 100, the right side of the third photovoltaic module 200 is fixed to the third photovoltaic fence bracket 100, and the left side of the third photovoltaic module 200 is fixed to the fourth photovoltaic fence bracket 100, forming a continuous layout of three photovoltaic modules 200 in the X-axis direction.
[0106] It should be noted that many components mentioned in this application are all common standard components or components known to those skilled in the art. Their structures and principles can be learned by those skilled in the art through technical manuals or by conventional experimental methods.
[0107] It should be noted that in this specification, relational terms such as first and second are only used to distinguish one entity from several other entities, and do not necessarily require or imply any actual relationship or order between these entities.
[0108] The above has introduced the photovoltaic fence bracket and the photovoltaic fence provided by this application in detail. Specific examples are used in this article to elaborate on the principle and implementation manner of this application. The description of the above embodiments is only used to help understand the method and its core idea of this application. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of this application, several improvements and modifications can still be made to this application, and these improvements and modifications also fall within the protection scope of the claims of this application.
Claims
1. A photovoltaic fence bracket, characterized in that: include: A support member, extending in a first direction; A connecting member is arranged on the supporting member, and the connecting member is provided with a component mounting groove, and the component mounting groove is extended in the first direction, and one end of the component mounting groove in the first direction is an installation inlet, so as to realize that the bottom edge of the frame of the photovoltaic component can be installed into the component mounting groove through the installation inlet along the first direction.
2. The photovoltaic fence support according to claim 1, characterized in that: The first direction is a vertical direction, the support member is vertically arranged, and the installation inlet is located at the upper end of the component installation groove in the first direction to realize the vertical installation of the photovoltaic component relative to the photovoltaic fence bracket.
3. The photovoltaic fence support according to claim 1, characterized in that: On a cross section perpendicular to the first direction, the component mounting groove includes: A first groove body is extended in a second direction perpendicular to the first direction and is used to accommodate a bottom edge body of the bottom edge of the frame; The second slot body is connected to the end of the second slot body in the second direction, and is extended in a third direction perpendicular to the first direction and the second direction, so as to accommodate the end hook of the bottom edge body.
4. The photovoltaic fence support according to claim 1, characterized in that: The support member is provided with a support surface, the connecting member is arranged on the support surface, and the component installation groove is formed by clamping the support surface and the connecting member, so as to realize the support of the support surface to the bottom edge of the frame.
5. The photovoltaic fence support according to claim 1, characterized in that: The connecting piece is also provided with a card fixing groove; the photovoltaic fence bracket also includes: A component clamp is arranged in the clamp fixing groove, and the component clamp is used to support the lower end of the photovoltaic component in the first direction.
6. The photovoltaic fence support according to claim 5, characterized in that: The component card comprises: A fixing member, provided with a mounting head and a mounting rod with threads, wherein the mounting head is arranged in the fixing groove of the fixing member, the mounting rod is connected to the mounting head, and the mounting rod extends out of the fixing groove of the fixing member; An angle code, comprising a first wing plate and a second wing plate connected to each other, wherein the first wing plate is arranged on the fixing member, and the second wing plate is used to support the lower end of the photovoltaic module in the first direction; The mounting piece is provided with a through hole with a thread, and the mounting piece is connected to the fixing piece to fix the angle code.
7. The photovoltaic fence support according to claim 1, characterized in that: The connecting piece is also provided with a protective installation groove; the photovoltaic fence bracket also includes: A protective member, disposed in the protective mounting groove, wherein the protective member is located on the outside of the photovoltaic fence support in a third direction perpendicular to the first direction; Wherein, the support member is located on the inner side of the photovoltaic fence bracket in the third direction.
8. The photovoltaic fence support according to claim 1, characterized in that: The support member is provided with a hollow support cavity, and the support cavity is arranged to penetrate in the first direction.
9. A photovoltaic fence, characterized in that: It comprises a photovoltaic component and a photovoltaic fence bracket as described in any one of claims 1 to 8, wherein the photovoltaic component is arranged on the photovoltaic fence bracket.
10. The photovoltaic fence according to claim 9, characterized in that: There are multiple photovoltaic fence brackets, and the multiple photovoltaic fence brackets are arranged at intervals, and the photovoltaic components are fixed between the photovoltaic fence brackets; the photovoltaic fence bracket is provided with multiple component mounting grooves to realize fixing of multiple photovoltaic components on one photovoltaic fence bracket.