Building photovoltaic integrated sun shield
The integration of a photovoltaic shading system with aluminum components addresses the challenge of limited roof space by incorporating solar panels into the building facade, achieving energy generation and aesthetic integration.
Patent Information
- Application Number
- CN202421735964.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-22
AI Technical Summary
In the prior art, the combination of photovoltaic panels and building facades is not enough to meet the demand area and affect the roof space utilization rate, and it is impossible to achieve an effective combination of renewable energy utilization and architectural aesthetics.
The combined design of aluminum alloy columns, beams, connecting plates, profiles, photovoltaic panel components and closed structures is adopted to form an integrated building photovoltaic sun visor, combining the architectural aesthetics and functional requirements to achieve an effective combination of photovoltaic panels and the building facade.
It realizes the effective combination of photovoltaic panels and building facades, meets the requirements of energy conservation, sunshade, waterproofing and corrosion protection, and improves the aesthetics of the building and space utilization.
Smart Images

Figure CN223104007U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building outdoor decoration, and particularly relates to a building photovoltaic integrated sunshade board. Background Technique
[0002] In modern society, in order to improve the utilization rate of renewable energy and reduce the carbon emissions of buildings, sometimes in some building designs, a scheme of combining solar photovoltaic panels with the outer facade of the building design is adopted, so as to effectively utilize renewable energy.
[0003] The existing conventional scheme is to place the photovoltaic panels on the building roof. However, this approach has two limitations. Firstly, it is limited by the limited roof area. A house has only one roof, so it is not sufficient to meet the required area. Secondly, due to the increasing requirements of designers for the utilization rate of roof space, they hope to have more roof garden space to improve the space quality.
[0004] In view of the above situation, a new scheme is currently needed to effectively combine the photovoltaic panels with the facade elements. Content of the Utility Model
[0005] The utility model aims to provide a building photovoltaic integrated sunshade board to solve the above problems.
[0006] To achieve the above object, the utility model adopts the following technical scheme:
[0007] The utility model provides a building photovoltaic integrated sunshade board, which is characterized by comprising: aluminum alloy columns, aluminum alloy cross beams, connecting plates, aluminum alloy profiles, photovoltaic panel assemblies, and aluminum alloy cover plates. Among them, the aluminum alloy columns are fixed on the main structure of the building; both ends of the aluminum alloy cross beams are correspondingly connected to two aluminum alloy columns; there are at least two connecting plates. One end of the connecting plate is fixed to the aluminum alloy cross beam through stainless steel spring pins, and the other end of the connecting plate is connected to the aluminum alloy profile through stainless steel bolts; a fitting groove is arranged on the upper surface of the aluminum alloy profile, and the photovoltaic panel assembly is fitted and installed in the fitting groove; a sealing structure is arranged in the edge gap between the photovoltaic panel assembly and the aluminum alloy profile; a sealing structure is arranged outside the stainless steel spring pin; the aluminum alloy cover plate is buckled with the aluminum alloy profile, and the connection position between the aluminum alloy profile and the connecting plate and the stainless steel bolts are covered in the aluminum alloy cover plate.
[0008] Further, in the building photovoltaic integrated sunshade board provided by the utility model, it may also have the following characteristics: among them, the cross section of the aluminum alloy profile is spindle-shaped.
[0009] Further, in the building photovoltaic integrated sunshade board provided by the utility model, it may also have the following characteristics: among them, the photovoltaic panel assembly is connected to the bottom surface of the fitting groove through structural adhesive.
[0010] Further, in the building integrated photovoltaics sunshade panel provided by the present utility model, it may also have the following characteristics: among them, the connecting plate is a bent steel plate with a thickness of 8 mm.
[0011] Further, in the building integrated photovoltaics sunshade panel provided by the present utility model, it may also have the following characteristics: among them, the surface of the connecting plate has a fluorocarbon coating.
[0012] Further, in the building integrated photovoltaics sunshade panel provided by the present utility model, it may also have the following characteristics: among them, a rubber flexible gasket is provided between the connecting plate and the aluminum alloy cross beam.
[0013] Further, in the building integrated photovoltaics sunshade panel provided by the present utility model, it may also have the following characteristics: among them, the sealing structure is a foam rod and weather-resistant glue.
[0014] Advantages of the present utility model:
[0015] The building integrated photovoltaics sunshade panel of the present utility model realizes the combination of renewable energy utilization and the building facade effect. The overall structure of the building integrated photovoltaics sunshade panel takes into account the building aesthetics, and at the same time meets the requirements of energy conservation, sunshading, waterproofing, anti-corrosion, etc., achieving multiple benefits. The present utility model provides a new idea for solving the photovoltaic panel solution for the building facade, and can realize the wide application of building integrated photovoltaics materials. Description of the drawings
[0016] Figure 1 is the top plan structure diagram of the building integrated photovoltaics sunshade panel in the embodiment of the present utility model;
[0017] Figure 2 is the side sectional structure diagram of the building integrated photovoltaics sunshade panel in the embodiment of the present utility model;
[0018] Figure 3 is the overall building effect after the installation of the building integrated photovoltaics sunshade panel in the embodiment of the present utility model.
[0019] Markings in the figure: aluminum alloy profile 1, connecting plate 2, photovoltaic panel assembly 3, sealing structure 4, stainless steel bolt 5, stainless steel spring pin 6, rubber flexible gasket 7, aluminum alloy cross beam 8, cable 9, aluminum alloy cover 10, aluminum alloy column 11, building integrated photovoltaics sunshade panel 100. Detailed implementation manners
[0020] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the following embodiments will specifically elaborate on the technical solutions of the present utility model in conjunction with the accompanying drawings.
[0021] <Embodiment>
[0022] Refer toFigure 1 and Figure 2 , this embodiment provides a building photovoltaic integrated sunshade board, which includes: aluminum alloy columns 11, aluminum alloy cross beams 8, connecting plates 2, aluminum alloy profiles 1, photovoltaic panel assemblies 3, and aluminum alloy caps 10.
[0023] The aluminum alloy columns 11 are vertically arranged and fixed on the building main structure. The two ends of the aluminum alloy cross beam 8 are correspondingly connected to the two aluminum alloy columns 11. The connection method between the aluminum alloy cross beam 8 and the aluminum alloy columns 11 can adopt connection methods such as welding, direct bolt connection, and indirect connection through connectors according to the actual situation. The aluminum alloy cross beam 8 is the main load-bearing structure of this building photovoltaic integrated sunshade board.
[0024] There are at least two connecting plates 2. In this embodiment, as Figure 1 shown, two connecting plates 2 are adopted. The connecting plate 2 is an 8-mm bent steel plate with a fluorocarbon coating on the surface. One end of the connecting plate 2 is fixed to the aluminum alloy cross beam 8 through a stainless steel spring pin 6, and the other end of the connecting plate 2 is connected to the aluminum alloy profile 1 through a stainless steel bolt 5.
[0025] As Figure 2 shown, a rubber flexible gasket 7 is arranged between the connecting plate 2 and the aluminum alloy cross beam 8. In this embodiment, the rubber flexible gasket 7 adopts a 2-mm neoprene rubber flexible gasket. The gasket plays a blocking role to avoid corrosion caused by direct contact between steel and aluminum.
[0026] As Figure 1 and Figure 2 shown, a closed structure is arranged outside the stainless steel spring pin 6. Here, a foam rod and weather-resistant glue are used as the closed structure for closing, ensuring aesthetics and meeting the energy conservation, airtightness, and waterproofness requirements of the building interlayer part.
[0027] A fitting groove is arranged on the upper surface of the aluminum alloy profile 1, and the photovoltaic panel assembly 3 is fittingly installed in the fitting groove. In this embodiment, the photovoltaic panel assembly 3 adopts a commercially available 6-mm + 1.52PVB + 6-mm tempered laminated glass photovoltaic panel assembly. As Figure 2 shown, the cable 9 of the photovoltaic panel assembly 3 is hidden inside the profile. In addition, the photovoltaic panel assembly 3 is also connected to the bottom surface of the fitting groove through structural glue to ensure safety and stability. A closed structure is arranged at the edge gap between the photovoltaic panel assembly 3 and the aluminum alloy profile 1. Here, a foam rod and weather-resistant glue are used as the closed structure for closing. The foam rod and weather-resistant glue ensure the waterproof effect, avoid corrosion and water accumulation of the inner structure. At the same time, because it is a flexible material, it can avoid the photovoltaic module from failing due to excessive temperature of the aluminum alloy profile under the action of sunlight.
[0028] As Figure 2As shown, the cross-section of the aluminum alloy profile 1 is spindle-shaped, meeting the different shading requirements of the building under different solar incident angles in winter and summer. In addition, the overall appearance after installation of this structure is smooth, ensuring an aesthetic effect and reducing dust accumulation.
[0029] The aluminum alloy cover 10 is snap-connected to the aluminum alloy profile 1, and the connection positions of the aluminum alloy profile 1 and the connecting plate 2 and the stainless steel bolts 5 are covered in the aluminum alloy cover 10.
[0030] The building photovoltaic integrated sunshade panel of this embodiment can be installed on the windows or glass curtain walls of the building. The overall structure of this building photovoltaic integrated sunshade panel takes into account the architectural aesthetics, and at the same time meets the requirements of energy conservation, sunshading, waterproofing, and anti-corrosion. It is a building outdoor decoration solution that kills multiple birds with one stone. Figure 3 It is the overall effect of the building after the installation of the building photovoltaic integrated sunshade panel.
[0031] The above embodiments are only the preferred embodiments of the present invention and are not used to limit the protection scope of the present invention. For those skilled in the art, various changes and modifications can be made to the present invention. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention are all included in the protection scope of the present invention.
Claims
1. A building integrated photovoltaic sunshade board, characterized in that, Including: Aluminum alloy columns, aluminum alloy crossbeams, connection plates, aluminum alloy profiles, photovoltaic panel assemblies, and aluminum alloy cover plates Among them, the aluminum alloy columns are fixed on the main structure of the building; Both ends of the aluminum alloy crossbeam are correspondingly connected to the two aluminum alloy columns; There are at least two connection plates. One end of the connection plate is fixed to the aluminum alloy crossbeam through stainless steel spring pins, and the other end of the connection plate is connected to the aluminum alloy profile through stainless steel bolts; A fitting groove is provided on the upper surface of the aluminum alloy profile, and the photovoltaic panel assembly is fitted and installed in the fitting groove; A sealing structure is provided in the edge gap between the photovoltaic panel assembly and the aluminum alloy profile; A sealing structure is provided outside the stainless steel spring pin; The aluminum alloy cover plate is snap-connected to the aluminum alloy profile, and the connection position between the aluminum alloy profile and the connection plate and the stainless steel bolts are covered in the aluminum alloy cover plate.
2. The building photovoltaic integrated sunshade according to claim 1, characterized in that: Among them, The cross-section of the aluminum alloy profile is spindle-shaped.
3. The building photovoltaic integrated sunshade according to claim 1, characterized in that: Among them, The photovoltaic panel assembly is connected to the bottom surface of the fitting groove through structural adhesive.
4. The building photovoltaic integrated sunshade according to claim 1, characterized in that: Among them, The connection plate is an 8-mm bent steel plate.
5. The building photovoltaic integrated sunshade according to claim 1 or 4, characterized in that: Among them, The surface of the connection plate has a fluorocarbon coating.
6. The building photovoltaic integrated sunshade according to claim 1 or 4, characterized in that: Among them, A rubber flexible gasket is provided between the connection plate and the aluminum alloy crossbeam.
7. The building photovoltaic integrated sunshade according to claim 1, characterized in that: Among them, The sealing structure is a foam rod and weather-resistant adhesive.