Photovoltaic eaves board
By placing the photovoltaic panel in the connecting frame structure with an upward opening and connecting it with the building structure using fasteners and adapters, the problem of low wind load resistance of the photovoltaic eaves is solved, and the safety and aesthetics of the photovoltaic panel are improved.
Patent Information
- Application Number
- CN202422241307.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The installation of existing photovoltaic eaves is unreasonable, resulting in low wind load resistance and easy damage.
The photovoltaic panel is placed in the connecting frame structure with an upward opening, fixed by the upper eaves and the lower eaves connecting seats, strengthening the connection with the upper eaves cavity and the lower eaves groove are provided to arrange cables and light strips, and connected to the building structure through the adapter assembly.
It improves the wind load resistance of the photovoltaic panels, reduces the risk of wind-sun damage of the cables, and enhances the aesthetics and functionality of the photovoltaic eaves.
Smart Images

Figure CN223214853U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of photovoltaic power generation, relates to a technology for generating electricity by utilizing the eaves of a building, and is specifically a photovoltaic eaves board. Background Art
[0002] A photovoltaic eaves panel refers to a structure formed by installing photovoltaic modules above the eaves of a house. This allows for more photovoltaic modules to be attached to the building structure without occupying additional floor space, which is beneficial for promoting green buildings and achieving better energy conservation and emission reduction. For example, patent application document number 202320178149.X discloses a photovoltaic eaves sunshade system comprising a solar cell awning, a bracket for supporting the solar cell awning, a solar controller, a battery, and a microinverter. The solar cell awning is connected to the roof, the bracket is fixed to the wall, and the solar controller is electrically connected to the solar cell awning, the microinverter, and the battery, respectively. The photovoltaic eaves sunshade system described in this utility model combines ecological drive with architecture, not only providing shade but also converting solar energy into electrical energy, rectifying the generated current to output AC and DC power, and storing excess electricity. As can be seen, there are existing technologies for installing photovoltaic modules on eaves, but the photovoltaic eaves panels in such existing technologies suffer from improper installation, resulting in low wind load resistance and easy damage to the photovoltaic eaves. Utility Model Content
[0003] In response to the technical problem described in the above background technology that the installation of photovoltaic eaves panels in the existing technology is unreasonable, this installation method leads to low wind load resistance level of photovoltaic eaves panels and easy damage of photovoltaic eaves panels, this utility model proposes a photovoltaic eaves panel to solve this technical problem.
[0004] The photovoltaic eaves board of the present invention sets the connection frame as an upwardly open frame structure, and places the photovoltaic panel at the opening of the connection frame, which reduces the wind-exposed surface of the photovoltaic panel and makes the light-facing surface of the photovoltaic panel only bear the wind load, and the photovoltaic panel is not easily damaged.
[0005] In order to solve the above technical problems, the present invention adopts the following technical problems:
[0006] The utility model discloses a photovoltaic eaves panel, comprising a photovoltaic panel, a connecting frame, an upper eaves connecting seat and a lower eaves connecting seat, wherein the connecting frame is a frame structure which opens upward, the photovoltaic panel is placed at the opening of the connecting frame, the backlight surface of the photovoltaic panel close to the upper eave is fixedly connected to the upper eaves connecting seat, and the backlight surface of the photovoltaic panel close to the lower eave is fixedly connected to the lower eaves connecting seat; the upper eaves connecting seat and the lower eaves connecting seat are both connected to the connecting frame.
[0007] It is further defined that the photovoltaic eaves panel also includes a fastener, which is arranged at the connection between the connecting frame and the upper eaves connecting seat and / or the lower eaves connecting seat, and one end of the fastener is detachably connected to the connecting frame, and the other end of the fastener is in conflict with the surface of the upper eaves connecting seat and / or the lower eaves connecting seat.
[0008] It is further defined that the connection frame includes an upper eaves top adapter plate, and opposite ends of the upper eaves top adapter plate are respectively connected to the connection frame and the upper eaves connecting seat;
[0009] The fastener is arranged at the connection between the upper eaves top adapter plate and the upper eaves connecting seat, one end of the fastener is detachably connected to the upper eaves top adapter plate, and the other end of the fastener is in conflict with the surface of the upper eaves connecting seat.
[0010] It is further defined that a groove is provided on the surface of the upper eave connecting seat and / or the lower eave connecting seat, and the other end of the fastener extends into the groove and contacts the bottom surface of the groove.
[0011] It is further defined that the connection frame further includes an upper eaves frame, a bottom eaves board, a lower eaves frame and a side frame, and the upper eaves frame, the lower eaves frame and the side frame are all connected to the bottom eaves board and enclosed with the bottom eaves board to form a frame structure that opens upward;
[0012] The upper eaves connecting seat is connected to the upper eaves frame through the upper eaves top adapter plate, and the lower eaves connecting seat is connected to the lower eaves frame.
[0013] It is further defined that the upper eaves frame is provided with an upper eaves opening, and the upper eaves buckle cover is provided at the upper eaves opening; the upper eaves frame and the upper eaves buckle cover enclose an upper eaves cavity, and the upper eaves cavity is used to lay at least part of the cables of the photovoltaic panel;
[0014] The upper eaves frame is provided with an upper eaves wire hole, and the upper eaves wire hole is used to pass at least part of the cables of the photovoltaic panel.
[0015] It is further defined that the upper eaves connecting seats are distributed in a plurality along the length direction of the upper eaves;
[0016] The connection frame further comprises an upper eave buckle cover, wherein the upper eave buckle cover, the upper eave frame and two adjacent upper eave connection seats form an upper eave cavity, and the upper eave cavity is used for laying at least part of the cables of the photovoltaic panel.
[0017] It is further defined that a lower eaves groove is provided on the lower eaves frame, the opening of the lower eaves groove is set away from the upper eaves frame, the lower eaves groove is used to install the light strip, the lower eaves frame is provided with a lower eaves wire hole, and the lower eaves wire hole is located on one side wall of the lower eaves groove.
[0018] It is further defined that a lower eaves opening is provided on the lower eaves frame, and a lower eaves buckle cover is provided at the lower eaves opening; the lower eaves frame and the lower eaves buckle cover form a lower eaves cavity, and the lower eaves cavity is used to lay at least part of the cables of the light strip.
[0019] It is further defined that the photovoltaic eaves panel also includes an adapter assembly, and the upper eaves frame is connected to the building structure through the adapter assembly.
[0020] Compared with the prior art, the beneficial effects of the present invention are:
[0021] 1. The photovoltaic eaves panel of the present invention has a connection frame configured as an upwardly open frame structure, and the photovoltaic panel is placed at the opening of the connection frame. The photovoltaic panel is connected to the connection frame through an upper eaves connection seat and a lower eaves connection seat respectively; so that the light-facing side of the photovoltaic panel only bears wind load, and the photovoltaic panel is not easily damaged.
[0022] 2. A fastener is provided at the connection between the connection frame and the upper eaves connection seat and / or the lower eaves connection seat of the utility model. One end of the fastener is detachably connected to the connection frame, and the other end of the fastener contacts the surface of the upper eaves connection seat and / or the lower eaves connection seat, thereby strengthening the fixing strength between the photovoltaic panel and the connection frame through the fastener.
[0023] 3. The utility model is provided with an upper eaves opening on the upper eaves frame, and an upper eaves buckle cover is provided at the upper eaves opening; the upper eaves frame and the upper eaves buckle cover form an upper eaves cavity, which can allow part of the cables of the photovoltaic panel to be laid in the upper eaves cavity, reducing the damage of the cables to wind and sun, and improving electrical safety.
[0024] 4. The photovoltaic eaves panel of the present invention also includes an adapter assembly, and the upper eaves frame is connected to the building structure through the adapter assembly.
[0025] 5. The present invention provides a lower eaves groove on the lower eaves frame, which can be used to install light strips. The provision of the lower eaves groove not only improves the aesthetics of the photovoltaic eaves panel, but also allows for the installation of light strips, increasing the functionality of the photovoltaic eaves panel. Furthermore, the present invention provides a lower eaves opening on the lower eaves frame, which is provided with a lower eaves buckle cover. The lower eaves frame and the lower eaves buckle cover form a lower eaves cavity, allowing part of the light strip cables to be laid in the lower eaves cavity, reducing damage to the cables from wind and sun, and improving electrical safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 The longitudinal section of the photovoltaic eaves panel of the utility model Figure 1 ;
[0027] Figure 2 The longitudinal section of the photovoltaic eaves panel of the utility model Figure 2 ;
[0028] Figure 3This is a schematic structural diagram of the photovoltaic eaves panel of the utility model;
[0029] Figure 4 This is a schematic diagram of the structure of the photovoltaic eaves panel of the utility model (without the bottom eaves panel);
[0030] Figure 5 This is a schematic diagram of the end face of the photovoltaic eaves panel of the present invention along the longitudinal section, which is intended to clearly illustrate the upper eaves portion and the lower eaves portion;
[0031] Among them, 1-photovoltaic panel, 2-upper eaves top adapter plate, 3-upper eaves structural adhesive layer, 4-upper eaves rubber strip, 5-upper eaves connecting seat, 6-upper eaves buckle cover, 7-fastener, 8-upper eaves frame, 9-upper eaves bottom adapter plate, 10-bottom eaves plate, 11-lower eaves bottom adapter plate, 12-lower eaves buckle cover, 13-lower eaves wire hole, 14-lower eaves frame, 15-lower eaves structural adhesive layer, 16-lower eaves rubber strip, 17-lower eaves connecting seat, 18-adapter assembly, 19-building structure, 20-side frame, 21-upper eaves cavity, 22-lower eaves groove, 23-lower eaves cavity. DETAILED DESCRIPTION
[0032] The technical solution of the present invention will be further explained below with reference to the accompanying drawings and embodiments, but the present invention is not limited to the embodiments described below.
[0033] Example 1
[0034] See also Figure 1 、 Figure 2 and Figure 5 The present embodiment provides a photovoltaic eaves panel, which includes a photovoltaic panel 1, a connecting frame, an upper eaves connecting seat 5 and a lower eaves connecting seat 17. The connecting frame is a frame structure that opens upward. The photovoltaic panel 1 is arranged at the opening of the connecting frame. The backlight surface of the photovoltaic panel 1 close to the upper eaves is fixedly connected to the upper eaves connecting seat 5, and the backlight surface of the photovoltaic panel 1 close to the lower eaves is fixedly connected to the lower eaves connecting seat 17; the upper eaves connecting seat 5 and the lower eaves connecting seat 17 are both connected to the connecting frame.
[0035] The connection frame is a trapezoidal structure with a longitudinal cross-section that is higher near the upper eaves and lower near the lower eaves. The upper eaves connection seat 5 is located near the upper eaves, with one end of the upper eaves connection seat 5 fixedly connected to the connection frame and the other end of the upper eaves connection seat 5 fixedly connected to the backlight surface of the photovoltaic panel 1 near the upper eaves. The lower eaves connection seat 17 is located near the lower eaves, with one end of the lower eaves connection seat 17 fixedly connected to the connection frame and the other end of the lower eaves connection seat 17 fixedly connected to the backlight surface of the photovoltaic panel 1 near the lower eaves. The upper eave refers to the side near the building structure 19, and the lower eave refers to the side away from the building structure 19. Both the upper eaves connection seat 5 and the connection frame, as well as the lower eaves connection seat 17 and the connection frame, are detachably connected using latches, bolts, screws, and other connection methods, facilitating disassembly and installation.
[0036] Among them, an upper eaves structural adhesive layer 3 is arranged between the upper eaves connecting seat 5 and the photovoltaic panel 1, that is, the upper surface of the upper eaves structural adhesive layer 3 is bonded to the photovoltaic panel 1, and the lower surface of the upper eaves structural adhesive layer 3 is bonded to the upper eaves connecting seat 5; a lower eaves structural adhesive layer 15 is arranged between the lower eaves connecting seat 17 and the photovoltaic panel 1, that is, the upper surface of the lower eaves structural adhesive layer 15 is bonded to the photovoltaic panel 1, and the lower surface of the lower eaves structural adhesive layer 15 is bonded to the lower eaves connecting seat 17.
[0037] In this embodiment, an upper eaves rubber strip 4 is further provided between the upper eaves connecting seat 5 and the photovoltaic panel 1. The lower surface of the upper eaves rubber strip 4 is located in the same plane as the lower surface of the upper eaves structural adhesive layer 3. The upper surface of the upper eaves rubber strip 4 is also bonded to the photovoltaic panel 1, and the lower surface of the upper eaves rubber strip 4 is also bonded to the upper eaves structural adhesive layer 3. Preferably, the upper eaves rubber strip 4 is also bonded to the upper eaves structural adhesive layer 3. A lower eaves rubber strip 16 is further provided between the lower eaves connecting seat 17 and the photovoltaic panel 1. The lower surface of the lower eaves rubber strip 16 is located in the same plane as the lower surface of the lower eaves structural adhesive layer 15. That is, the upper surface of the lower eaves rubber strip 16 is also bonded to the photovoltaic panel 1, and the lower surface of the lower eaves rubber strip 16 is also bonded to the lower eaves structural adhesive layer 15. Preferably, the lower eaves rubber strip 16 is bonded to the lower eaves structural adhesive layer 15.
[0038] In this embodiment, there is no limitation on the specific materials of the lower eaves structural adhesive layer 15 , the lower eaves adhesive strip 16 , the upper eaves structural adhesive layer 3 and the upper eaves adhesive strip 4 . Any adhesive that can achieve adhesion between the photovoltaic panel 1 and the lower eaves connecting seat 17 and the upper eaves connecting seat 5 can be used.
[0039] This embodiment can ensure the firmness and stability of the connection between the photovoltaic panel 1 and the upper eaves connecting seat 5 and / or the lower eaves connecting seat 17 through the lower eaves structural adhesive layer 15, the lower eaves adhesive strip 16, the upper eaves structural adhesive layer 3 and the upper eaves adhesive strip 4 respectively.
[0040] Example 2
[0041] This embodiment provides a photovoltaic eaves panel. Based on embodiment 1, the photovoltaic eaves panel further includes a fastener 7, which is arranged at the connection between the connecting frame and the upper eaves connecting seat 5 and / or the lower eaves connecting seat 17, and one end of the fastener 7 is detachably connected to the connecting frame, and the other end of the fastener 7 is against the lower surface of the upper eaves connecting seat 5 and / or the lower eaves connecting seat 1.
[0042] Specifically, the fastener 7 can be set at the part close to the upper eaves, that is, the fastener 7 is set at the connection between the connecting frame and the upper eaves connecting seat 5; it can also be set at the part close to the lower eaves, that is, the fastener 7 is set at the connection between the connecting frame and the lower eaves connecting seat 17; the lower eaves and the upper eaves can also be set at the same time, that is, at the connection between the connecting frame and the upper eaves connecting seat 5 and the lower eaves connecting seat 17.
[0043] The fastener 7 may be a screw, a threaded rod, or the like. Preferably, in this embodiment, the fastener 7 is a threaded rod, i.e., the fastener 7 is threadedly connected to the connection frame. During installation, the fastener 7 contacts the surface of the upper eave connection seat 5 and / or the lower eave connection seat 17, thereby locking the photovoltaic panel 1 and the connection frame. Grooves are provided on the surface of the upper eave connection seat 5 and / or the lower eave connection seat 17, and the fastener 7 contacts the grooves, preventing the upper eave connection seat 5 and / or the lower eave connection seat 17 from slipping or falling off from the connection frame.
[0044] Example 3
[0045] The present embodiment provides a photovoltaic eaves panel, which, based on the embodiment 1 or 2, further includes an upper eaves top adapter plate 2, wherein the opposite ends of the upper eaves top adapter plate 2 are respectively connected to the connection frame and the upper eaves connection seat 5. Specifically, one end of the upper eaves top adapter plate 2 is fixedly connected to the connection frame, and the other end of the upper eaves top adapter plate 2 is fixedly connected to the upper eaves connection seat 5, wherein the upper eaves top adapter plate 2 and the connection frame, as well as the upper eaves top adapter plate 2 and the upper eaves connection seat 5, are both detachably connected to facilitate the installation and removal of the photovoltaic eaves panel, including connection methods such as latches, bolts, and screws. Specifically, the upper eaves top adapter plate 2 is arranged in a segmented manner, that is, a plurality of upper eaves top adapter plates 2 are arranged along the length direction of the photovoltaic panel 1, and the specific number can be 3, 4, or 5, etc., and the specific number is set according to the length of the photovoltaic eaves panel and the installation strength requirements. Different from Example 1 or 2, the fastener 7 is arranged at the connection between the upper eaves top adapter plate 2 and the upper eaves connecting seat 5, one end of the fastener 7 is detachably connected to the upper eaves top adapter plate 2, and the other end of the fastener 7 is in conflict with the surface of the upper eaves connecting seat 5.
[0046] Example 4
[0047] See also Figure 3 and Figure 4, this embodiment is a photovoltaic eaves panel, based on Example 3, the connecting frame includes an upper eaves frame 8, a bottom eaves panel 10, a lower eaves frame 14 and a side frame 20, the upper eaves frame 8, the lower eaves frame 14 and the side frame 20 are all connected above the bottom eaves panel 10, and are enclosed with the bottom eaves panel 10 to form a frame structure with an opening on the upper surface, the photovoltaic panel 1 is arranged at the opening on the upper surface, the upper eaves connecting seat 5 is connected to the upper eaves frame 8 through the upper eaves top adapter plate 2, and the lower eaves connecting seat 17 is connected to the lower eaves frame 14. Specifically, the bottom eaves panel 10 is arranged at the bottom and opposite to the photovoltaic panel 1, the upper eaves frame 8 is arranged close to the upper eaves, and the lower eaves frame 14 is arranged close to the lower eaves. Side frames 20 are arranged at both ends of the upper eaves frame 8. The bottom end of the upper eaves frame 8, the bottom end of the lower eaves frame 14 and the bottom end of the side frame 20 are all detachably connected to the bottom eaves panel 10, and the top end of the upper eaves frame 8, the top end of the lower eaves frame 14 and the top end of the side frame 20 all extend upward to form a trapezoidal structure with a longitudinal cross-section that is higher near the upper eaves and lower near the lower eaves. The opposite ends of the side frame 20 are detachably connected to the corresponding lower eaves frame 14 and upper eaves frame 8.
[0048] Preferably, in this embodiment, the upper eaves frame 8 , the lower eaves frame 14 and the side frame 20 are all hollow structures for wiring the cables of the photovoltaic panel 1 .
[0049] Preferably, in this embodiment, an upper eaves opening is provided on the upper eaves frame 8, and an upper eaves buckle cover 6 is provided at the upper eaves opening, wherein the upper eaves buckle cover 6 is snap-connected with the upper eaves frame 8; the upper eaves frame 8 is snap-connected with the upper eaves buckle cover 6, and the upper eaves frame 8 and the upper eaves buckle cover 6 form an upper eaves cavity 21, and an upper eaves wire hole is provided on the upper eaves frame 8 relative to the frame wall of the photovoltaic panel 1, and at least part of the cables of the photovoltaic panel 1 are passed through the upper eaves wire hole and arranged in the upper eaves cavity 21.
[0050] In this embodiment, an upper eaves bottom adapter plate 9 is provided at the connection between the upper eaves frame 8 and the bottom eaves board 10, one end of the upper eaves bottom adapter plate 9 is detachably connected to the upper eaves frame 8 by means of structures such as latches, screws, and threads, and the other end of the upper eaves bottom adapter plate 9 is detachably connected to the bottom eaves board 10 by means of structures such as latches, screws, and threads; a lower eaves bottom adapter plate 11 is provided at the connection between the lower eaves frame 14 and the bottom eaves board 10, one end of the lower eaves bottom adapter plate 11 is detachably connected to the lower eaves frame 14 by means of structures such as latches, screws, and threads, and the other end of the lower eaves bottom adapter plate 11 is detachably connected to the bottom eaves board 10 by means of structures such as latches, screws, and threads. The purpose of the detachable connection is to facilitate installation and disassembly. Specifically, the upper eaves bottom adapter plate 9 and the lower eaves bottom adapter plate 11 are both arranged in a segmented manner, that is, multiple upper eaves bottom adapter plates 9 and lower eaves bottom adapter plates 11 are arranged along the length direction of the photovoltaic panel 1. The specific number can be 3, 4 or 5, etc., and the specific number is set according to the length of the photovoltaic eaves panel and the installation strength requirements; and for the integrity of the force, the setting position of the upper eaves top adapter plate 2, the setting position of the upper eaves bottom adapter plate 9 and the setting of the lower eaves bottom adapter plate 11 are corresponding.
[0051] In this embodiment, the photovoltaic eaves panel also includes an adapter assembly 18, through which the upper eaves frame 8 is connected to the building structure 19. Adapter assembly 18 is a metal plate with threaded holes. One end of adapter assembly 18 is detachably connected to the building structure 19 via a latch, screw, thread, or other structure, and the other end is detachably connected to the upper eaves frame 8 via a latch, screw, thread, or other structure. Preferably, adapter assembly 18 is positioned near the upper eaves and connected to both ends of the photovoltaic eaves panel to facilitate installation when connected to the building structure 19.
[0052] In this embodiment, preferably, a lower eave groove 22 is provided on the lower eave frame 14. The opening of the lower eave groove 22 is located away from the upper eave frame 8. The lower eave groove 22 is used to mount a light bar, which is arranged along the length of the photovoltaic panel 1. The lower eave frame 14 is provided with a lower eave opening, and a lower eave buckle 12 is provided at the lower eave opening. The lower eave frame 14 and the lower eave buckle 12 enclose a lower eave cavity 23; wherein the lower eave buckle 12 is snap-fitted to the lower eave frame 14. The lower eave frame 14 is provided with a lower eave cable hole 13. The lower eave cable hole 13 is located on a side wall of the lower eave groove 22, so that at least part of the cable of the light bar passes through the lower eave cable hole 13 and is arranged in the lower eave cavity 23.
[0053] Example 5
[0054] Different from Example 4, there are multiple upper eaves connecting seats 5 distributed along the length direction of the upper eaves; the upper eaves buckle cover 6, the upper eaves frame 8 and the two adjacent upper eaves connecting seats 5 form an upper eaves cavity 21, and at least part of the cables of the photovoltaic panel 1 passes through the gap between the two adjacent upper eaves connecting seats 5 and is arranged in the upper eaves cavity 21.
[0055] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A photovoltaic eaves panel, characterized in that: The invention comprises a photovoltaic panel (1), a connection frame, an upper eave connection seat (5) and a lower eave connection seat (17); the connection frame is a frame structure that opens upward; the photovoltaic panel (1) is placed at the opening of the connection frame; the backlight surface of the photovoltaic panel (1) close to the upper eave is fixedly connected to the upper eave connection seat (5); the backlight surface of the photovoltaic panel (1) close to the lower eave is fixedly connected to the lower eave connection seat (17); and the upper eave connection seat (5) and the lower eave connection seat (17) are both connected to the connection frame.
2. The photovoltaic eaves panel according to claim 1, characterized in that: The photovoltaic eaves panel further comprises a fastener (7), wherein the fastener (7) is arranged at the connection between the connection frame and the upper eaves connection seat (5) and / or the lower eaves connection seat (17), and one end of the fastener (7) is detachably connected to the connection frame, and the other end of the fastener (7) contacts the surface of the upper eaves connection seat (5) and / or the lower eaves connection seat (17).
3. The photovoltaic eaves panel according to claim 2, characterized in that: The connection frame comprises an upper eave top adapter plate (2), and opposite ends of the upper eave top adapter plate (2) are respectively connected to the connection frame and the upper eave connection seat (5); The fastener (7) is arranged at the connection between the upper eave top adapter plate (2) and the upper eave connection seat (5), one end of the fastener (7) is detachably connected to the upper eave top adapter plate (2), and the other end of the fastener (7) contacts the surface of the upper eave connection seat (5).
4. The photovoltaic eaves panel according to claim 2, characterized in that: A groove is provided on the surface of the upper eaves connecting seat (5) and / or the lower eaves connecting seat (17), and the other end of the fastener (7) extends into the groove and contacts the bottom surface of the groove.
5. The photovoltaic eaves panel according to claim 4, characterized in that: The connection frame further comprises an upper eaves frame (8), a bottom eaves board (10), a lower eaves frame (14) and a side frame (20); the upper eaves frame (8), the lower eaves frame (14) and the side frame (20) are all connected to the bottom eaves board (10) and enclosed with the bottom eaves board (10) to form a frame structure that is open upwards; The upper eaves connecting seat (5) is connected to the upper eaves frame (8) via the upper eaves top adapter plate (2), and the lower eaves connecting seat (17) is connected to the lower eaves frame (14).
6. The photovoltaic eaves panel according to claim 5, characterized in that: The upper eaves frame (8) is provided with an upper eaves opening, and an upper eaves buckle cover (6) is provided at the upper eaves opening; the upper eaves frame (8) and the upper eaves buckle cover (6) enclose an upper eaves cavity (21), and the upper eaves cavity (21) is used for laying at least part of the cables of the photovoltaic panel (1); The upper eaves frame (8) is provided with an upper eaves wire hole, and the upper eaves wire hole is used to pass at least part of the cables of the photovoltaic panel (1).
7. The photovoltaic eaves panel according to claim 5, characterized in that: There are a plurality of upper eaves connecting seats (5) distributed along the length direction of the upper eaves; The connection frame further comprises an upper eave buckle cover (6); the upper eave buckle cover (6), the upper eave frame (8) and two adjacent upper eave connection seats (5) enclose an upper eave cavity (21); the upper eave cavity (21) is used for laying at least part of the cables of the photovoltaic panel (1).
8. The photovoltaic eaves panel according to claim 5, characterized in that: The lower eaves frame (14) is provided with a lower eaves groove (22), the opening of which is arranged away from the upper eaves frame (8), and the lower eaves groove is used to install a light bar; the lower eaves frame (14) is provided with a lower eaves wire hole (13), and the lower eaves wire hole (13) is located on a side wall of the lower eaves groove (22).
9. The photovoltaic eaves panel according to claim 8, characterized in that: The lower eaves frame (14) is provided with a lower eaves opening, and a lower eaves buckle cover (12) is provided at the lower eaves opening; the lower eaves frame (14) and the lower eaves buckle cover (12) enclose a lower eaves cavity (23), and the lower eaves cavity (23) is used for laying at least part of the cables of the light strip.
10. The photovoltaic eaves panel according to claim 5, characterized in that: The photovoltaic eaves panel further comprises an adapter assembly (18), and the upper eaves frame (8) is connected to the building structure (19) via the adapter assembly (18).
Citation Information
Patent Citations
Bimetal sheet forming machine
CN219131462U