Curtain wall structure with sunshade and photovoltaic power generation functions

By using a compactly arranged shading component and a rotating drive device, the problem of poor shading effect caused by loose shading components is solved, achieving a tight connection of the shading component and a high-efficiency shading effect, while improving photovoltaic power generation efficiency.

CN121556775APending Publication Date: 2026-02-24NINGBO DAHONGYING UNIV
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Patent Information

Application Number
CN202511533850.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-25
Publication Date
2026-02-24

AI Technical Summary

Technical Problem

The existing curtain wall structures with sunshade and photovoltaic power generation functions have loose sunshade components, resulting in poor sunshade performance.

Method used

The compactly designed shading assembly includes a shading frame, a conductive rail, a mounting slider, and unit shading photovoltaic panels. Adjacent unit shading photovoltaic panels are connected alternately through connecting and connecting ends. The mounting slider drives the photovoltaic panels to slide, and combined with a rotary drive device and a magnetic locking end, the photovoltaic panels are tightly connected and easily folded.

Benefits of technology

It improves the shading effect, enhances the tightness of the connection of the shading components and the ease of use, and strengthens the shading effect and photovoltaic power generation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a curtain wall structure with sunshade and photovoltaic power generation functions. The curtain wall structure comprises a unit floor and a sunshade assembly. The unit floors are provided with glass window bodies; the sunshade assembly is mounted on the unit floor; the sun-shading assembly comprises a sun-shading outer frame, a conduction guide rail, an installation sliding block and a unit sun-shading photovoltaic panel. The sunshade outer frame is provided with a conduction guide rail; the number of the installation sliding blocks is multiple, and the multiple installation sliding blocks are installed on the conduction guide rail in a sliding mode. The lighting surfaces of the unit sun-shading photovoltaic panels face outdoors, the number of the unit sun-shading photovoltaic panels is multiple, and each unit sun-shading photovoltaic panel is rotationally inserted into one mounting sliding block; the plurality of unit sun-shading photovoltaic panels are sequentially arranged in the length direction of the conduction guide rail, each unit sun-shading photovoltaic panel is provided with a connecting end and a joining end, and in every two adjacent unit sun-shading photovoltaic panels, the connecting end of one unit sun-shading photovoltaic panel is hinged to the joining end of the other unit sun-shading photovoltaic panel.
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Description

Technical Field

[0001] This invention relates to the field of photovoltaic curtain wall technology, and in particular to a curtain wall structure with sunshade and photovoltaic power generation functions. Background Technology

[0002] Photovoltaic shading integrated curtain walls replace traditional building exterior shading components (such as louvers, grilles, and baffles) with photovoltaic power generation modules, enabling them to provide shading for buildings and prevent excessive solar radiation while converting solar energy into electrical energy, achieving "one thing for two purposes" or even "one thing for multiple purposes".

[0003] The existing curtain wall structures with shading and photovoltaic power generation functions have loose shading components, resulting in poor shading performance. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, the purpose of this invention is to provide a curtain wall structure with sun shading and photovoltaic power generation functions, wherein the sun shading components are compactly arranged to improve the sun shading effect.

[0005] The objective of this invention is achieved by the following technical solution: a curtain wall structure with sun shading and photovoltaic power generation functions, comprising: unit floors and sun shading components;

[0006] The unit floor is equipped with glass windows;

[0007] The sunshade assembly is installed on the unit floor, and the sunshade assembly and the glass window are arranged sequentially in the direction from indoors to outdoors. The sunshade assembly includes a sunshade frame, a guide rail, a mounting slider, and a unit sunshade solar panel. The sunshade frame is provided with a guide rail, which extends along the horizontal length of the sunshade frame. Multiple mounting sliders are provided, and all of the multiple mounting sliders are slidably installed on the guide rail. The light-receiving surface of the unit sunshade solar panel faces outdoors, and there are multiple unit sunshade solar panels. Each unit sunshade solar panel is rotatably inserted into one of the mounting sliders and slides with the mounting slider. The multiple unit sunshade solar panels are arranged sequentially along the length of the guide rail. Each unit sunshade solar panel is provided with a connecting end and a connecting end. In two adjacent unit sunshade solar panels, the connecting end of one is hinged to the connecting end of the other, so that the two adjacent unit sunshade solar panels can be stacked together.

[0008] Furthermore, the unit solar photovoltaic panel includes a fixed blade and a movable following blade; one end of the conductive guide rail is provided with a positioning hole, the fixed blade is rotatably inserted into the positioning hole, and the fixed blade is provided with a connecting end; the movable following blade is provided with an adjustable photovoltaic panel assembly, the adjustable photovoltaic panel assembly is rotatably installed on the light-collecting surface of the movable following blade; the movable following blade is provided with multiple blades, each of the movable following blades is rotatably inserted into one of the mounting sliders and moves with the mounting slider, and the opposite ends of the movable following blades are respectively provided with a connecting end and a connecting end; the connecting end of the fixed blade is hinged to the connecting end of one of the movable following blades; in two adjacent movable following blades, the connecting end of one is hinged to the connecting end of the other.

[0009] Furthermore, the unit sunshade solar panel also includes an end blade, which is rotatably inserted into the mounting slider on the conductive guide rail that is furthest from the positioning hole; the end blade is provided with a connecting end, which is hinged to the connecting end of one of the movable follower blades.

[0010] Furthermore, the end of the end blade away from the connecting end is provided with a magnetically locked end; the side face of the sunshade frame away from the positioning hole is provided with a magnetic attractor to lock the magnetically locked end.

[0011] Furthermore, the adjustable photovoltaic panel assembly includes a unit photovoltaic panel and a rotation drive device; the movable follower blade is provided with a receiving groove, which is recessed inward from the light-receiving surface of the movable follower blade, and the bottom wall of the receiving groove is provided with a mounting hole; the unit photovoltaic panel is provided with a plug-in post, which extends along the length direction of the unit photovoltaic panel and is rotatably inserted into the mounting hole, and the light-receiving surface of the unit photovoltaic panel faces the glass window; the rotation drive device is installed in the receiving groove and drives the plug-in post so that the unit photovoltaic panel can rotate relative to the movable follower blade in a vertical plane.

[0012] Furthermore, the mounting holes are provided in multiple ways, and the multiple mounting holes are arranged at intervals along the width direction of the movable follower blade; the unit photovoltaic panels are provided in multiple ways, and the plug of each unit photovoltaic panel is rotatably inserted into one of the mounting holes.

[0013] Furthermore, the rotary drive device includes a driven gear, a synchronous belt, and a micro rotary stepper motor; the movable following blade is provided with a clearance space, the clearance space and the receiving groove are spaced apart along the length direction of the movable following blade, and the two ends of the mounting hole are respectively connected to the receiving groove and the clearance space; each of the plug-in pins is sequentially inserted into the mounting hole and the clearance space, each of the plug-in pins located in the clearance space is provided with a driven gear, and each of the driven gears is sequentially nested in the synchronous belt along the width direction of the movable following blade, the synchronous belt being supported by the bottom wall of the clearance space; the micro rotary stepper motor is disposed in the clearance space, and the output end of the micro rotary stepper motor is driven and connected to one of the plug-in pins.

[0014] Furthermore, the sunshade frame is provided with a receiving groove, which is recessed radially from the inner sidewall of the sunshade frame in a direction from the inside to the outside; the conductive guide rail is disposed on the bottom wall of the receiving groove, and the conductive guide rail includes a positioning guide rail and a power receiving guide rail; the positioning guide rail and the power receiving guide rail are spaced apart along the width direction of the receiving groove; the mounting slider is provided with a confined groove and a conductive pulley; the confined groove is recessed upward from the bottom wall of the mounting slider, and the confined groove is slidably inserted into the positioning guide rail; the conductive pulley is correspondingly disposed with the power receiving guide rail, and the conductive pulley slides in cooperation with the power receiving guide rail; the unit sunshade photovoltaic panel, the conductive pulley, and the power receiving guide rail are sequentially electrically connected.

[0015] Furthermore, the unit floor is provided with a cover and a battery. The cover is placed on one end face of the unit floor near the conductive rail and forms a pipe receiving space with the end face. The battery is housed in the pipe receiving space. The conductive rail also includes a cable pipe, the two ends of which are respectively connected to the pipe receiving space and the receiving groove, so that the power receiving rail is electrically connected to the battery.

[0016] Furthermore, at least two power receiving rails are provided, and the two power receiving rails are spaced apart on both sides of the positioning rail along the width direction of the receiving groove; at least two conductive pulleys are provided, and the two conductive pulleys are spaced apart along the length direction of the mounting slider and correspond one-to-one with each of the power receiving rails, and each conductive pulley abuts against one of the power receiving rails.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] 1. The unit floor is equipped with glass windows; the glass windows are a necessary component of the curtain wall; as they are the outer surface of the curtain wall structure, their strength requirements are high;

[0019] 2. Based on the installation of the sunshade component on the unit floor, the sunshade component and the glass window are arranged sequentially in the direction from indoors to outdoors; the sunshade component includes a sunshade frame, a guide rail, a mounting slider, and a unit sunshade solar panel; the sunshade frame is provided with a guide rail, which extends along the horizontal length of the sunshade frame; multiple mounting sliders are provided, and multiple mounting sliders are slidably installed on the guide rail; the light-receiving surface of the unit sunshade solar panel faces outdoors, and multiple unit sunshade solar panels are provided, each unit sunshade solar panel being rotatably inserted into one of the mounting sliders and sliding with the mounting slider; multiple unit sunshade solar panels are arranged sequentially along the length of the guide rail, and the unit sunshade solar panel... The panel has a connecting end and a connecting end. In two adjacent unit sunshade solar panels, the connecting end of one is hinged to the connecting end of the other, so that the two adjacent unit sunshade solar panels can be stacked together. The sunshade outer frame is used to support the overall structure, and the conductive guide rail is used to guide the mounting slider to prevent it from derailing and being damaged. The connecting ends and connecting ends of two adjacent unit sunshade solar panels are staggered. In this arrangement, each unit sunshade solar panel can be tightly connected, thereby improving the sunshade effect of the sunshade assembly. In addition, when the mounting slider moves one of the unit sunshade solar panels, the unit sunshade solar panels hinged to that unit sunshade solar panel can open along with it, thereby facilitating the folding or unfolding of the sunshade assembly. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the curtain wall structure with sunshade and photovoltaic power generation functions of the present invention.

[0021] Figure 2 for Figure 1 The rear view of the curtain wall structure with sunshade and photovoltaic power generation functions is shown.

[0022] Figure 3 for Figure 1 The diagram shows a cross-sectional view of a curtain wall structure that combines sun shading and photovoltaic power generation functions.

[0023] Figure 4 for Figure 3 A magnified view of point A shown below;

[0024] Figure 5 for Figure 1 The diagram shows a cross-sectional view of a curtain wall structure that combines sun shading and photovoltaic power generation functions.

[0025] Figure 6 This is a schematic diagram of the structure of the active following blade of the present invention;

[0026] Figure 7 for Figure 6 The diagram shows a cross-sectional view of the active-following blade.

[0027] Figure 8 for Figure 7 The enlarged view of point B shown;

[0028] Figure 9 for Figure 6 The diagram shown is a cross-sectional view of the blades that follow the movement.

[0029] In the diagram: 1. Unit floor; 2. Shading component; 3. Conductive rail; 4. Mounting slider; 5. Unit shading photovoltaic panel; 6. Adjustable photovoltaic panel assembly; 101. Glass window; 102. Cover; 103. Accommodation space; 201. Shading frame; 202. Accommodation groove; 301. Positioning rail; 302. Power receiving rail; 303. Cable conduit; 401. Restricted groove; 402. Conductive pulley; 501. Connection end; 502. Connecting end; 503. Fixed blade; 504. Movable following blade; 505. End blade; 601. Unit photovoltaic panel; 602. Rotary drive device; 603. Receiving slot; 604. Mounting socket; 605. Plug-in post; 606. Driven gear; 607. Synchronous belt; 608. Miniature rotary stepper motor; 609. Clearance space. Detailed Implementation

[0030] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0031] It should be noted that when an element is described as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is described as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementations.

[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0033] See Figures 1-9 A preferred embodiment of the present invention provides a curtain wall structure with sunshade and photovoltaic power generation functions, comprising: a unit floor 1 and a sunshade component 2;

[0034] The unit floor 1 is equipped with a glass window 101; the glass window 101 is an essential component of the curtain wall; as it is the outer surface of the curtain wall structure, it has high strength requirements;

[0035] The sunshade assembly 2 is installed on the unit floor 1. The sunshade assembly 2 and the glass window 101 are arranged sequentially in the direction from indoors to outdoors. The sunshade assembly 2 includes a sunshade frame 201, a guide rail 3, a mounting slider 4, and a unit sunshade solar panel 5. The sunshade frame 201 is provided with the guide rail 3, which extends along the horizontal length of the sunshade frame 201. Multiple mounting sliders 4 are provided, and all of the multiple mounting sliders 4 are slidably installed on the guide rail 3. The light-receiving surface of the unit sunshade solar panel 5 faces outdoors. Multiple unit sunshade solar panels 5 are provided, and each unit sunshade solar panel 5 is rotatably inserted into one of the mounting sliders 4 and slides with the mounting slider 4. The multiple unit sunshade solar panels 5 are arranged sequentially along the length of the guide rail 3. The connecting end 501 and the connecting end 502 of two adjacent unit sunshade solar panels 5 are hinged together, so that the two adjacent unit sunshade solar panels 5 can be stacked together. The sunshade outer frame 201 is used to support the overall structure, and the conductive guide rail 3 is used to guide the mounting slider 4 to prevent it from derailing and being damaged. The connecting end 501 and the connecting end 502 of two adjacent unit sunshade solar panels 5 are staggered. In this way, each unit sunshade solar panel 5 can be tightly connected, thereby improving the sunshade effect of the sunshade assembly 2. In addition, when the mounting slider 4 moves one of the unit sunshade solar panels 5, the unit sunshade solar panel 5 hinged to that unit sunshade solar panel 5 can open along with it, thereby facilitating the folding or unfolding of the sunshade assembly 2.

[0036] In use, when the user drives the unit sunshade panel 5 located at the end to move towards the end of the guide rail 3, the unit sunshade panel 5 hinged to it moves accordingly, thereby opening the entire sunshade assembly 2. At this time, the light-receiving surfaces of the unit sunshade panels 5 all face the glass window 101, putting the sunshade assembly 2 into working condition and blocking outdoor sunlight. When the user drives the unit sunshade panel 5 located at the end to move towards the beginning of the guide rail 3, multiple unit sunshade panels 5 fold together. At this time, the light-receiving surfaces of each unit sunshade panel 5 are retracted, and outdoor sunlight can re-enter the room.

[0037] The unit floor 1 is provided with a glass window 101; the glass window 101 is a necessary component of the curtain wall; as it is the outer surface of the curtain wall structure, its strength requirements are high.

[0038] The sunshade component 2 is installed on the unit floor 1, and the sunshade component 2 and the glass window 101 are arranged sequentially in the direction from indoors to outdoors. The sunshade component 2 includes a sunshade frame 201, a guide rail 3, a mounting slider 4, and a unit sunshade solar panel 5. The sunshade frame 201 is provided with a guide rail 3, which extends along the horizontal length of the sunshade frame 201. Multiple mounting sliders 4 are provided, and all of the multiple mounting sliders 4 are slidably installed on the guide rail 3. The light-receiving surface of the unit sunshade solar panel 5 faces outdoors, and multiple unit sunshade solar panels 5 are provided. Each unit sunshade solar panel 5 is rotatably inserted into one of the mounting sliders 4 and slides with the mounting slider 4. The multiple unit sunshade solar panels 5 are arranged sequentially along the length of the guide rail 3. The unit has a connecting end 501 and a connecting end 502. In two adjacent unit sunshade panels 5, the connecting end 501 of one is hinged to the connecting end 502 of the other, so that the two adjacent unit sunshade panels 5 can be stacked together. The sunshade outer frame 201 is used to support the overall structure, and the conductive guide rail 3 is used to guide the mounting slider 4 to prevent it from derailing and being damaged. The connecting ends 501 and connecting ends 502 of two adjacent unit sunshade panels 5 are staggered. In this way, each unit sunshade panel 5 can be tightly connected, thereby improving the sunshade effect of the sunshade assembly 2. In addition, when the mounting slider 4 moves one of the unit sunshade panels 5, the unit sunshade panel 5 hinged to that unit sunshade panel 5 can open along with it, thereby facilitating the folding or unfolding of the sunshade assembly 2.

[0039] See Figure 2Preferably, the unit solar photovoltaic panel 5 includes a fixed blade 503 and a movable following blade 504; one end of the conductive guide rail 3 is provided with a positioning hole, the fixed blade 503 is rotatably inserted into the positioning hole, and the fixed blade 503 is provided with a connecting end 501; the movable following blade 504 is provided with an adjustable photovoltaic panel assembly 6, the adjustable photovoltaic panel assembly 6 is rotatably installed on the light-collecting surface of the movable following blade 504; the movable following blade 504 is provided with multiple blades, each of the movable following blades 504 is rotatably inserted into one of the mounting sliders 4 and moves with the mounting slider 4, and the opposite ends of the movable following blade 504 are respectively provided with a connecting end 501 and a connecting end 502; The connecting end 501 of the fixed blade 503 is hinged to the connecting end 502 of one of the movable following blades 504; the connecting end 501 of the movable following blade 504 is hinged to the connecting end 502 of the adjacent movable following blade 504; the fixed blade 503 is pivotally connected to one end of the conductive guide rail 3 and does not move with the mounting slider 4; the movable following blade 504 can slide horizontally with the mounting slider 4, thereby covering the entire hollow part of the sunshade frame 201; in addition, there are multiple hinge ends and connecting ends 502, which are staggered and hinged alternately to eliminate the gaps at the connection of each unit sunshade panel 5, thereby improving the sunshade effect.

[0040] See Figure 2 Preferably, the unit sunshade panel 5 further includes an end blade 505, which is rotatably inserted into the mounting slider 4 on the conductive guide rail 3 that is furthest from the positioning hole; the end blade 505 is provided with a connecting end 502, which is hinged to the connecting end 501 of one of the movable following blades 504; obviously, only one end of the end blade 505 is provided with the connecting end 502, so that the other end can be adapted to the shape of the sunshade outer frame 201 at the end point, thereby further improving the sunshade effect.

[0041] See Figure 2 Preferably, the end of the end blade 505 away from the connecting end 502 is provided with a magnetically locked end; the side face of the sunshade frame 201 away from the positioning hole is provided with a magnetic attractor to lock the magnetically locked end; obviously, with this arrangement, the magnetic attractor can make the end blade 505 fit tightly with the magnetically locked end, thereby further improving the sunshade effect.

[0042] See Figure 6Preferably, the adjustable photovoltaic panel assembly 6 includes a unit photovoltaic panel 601 and a rotation drive device 602; the movable follower blade 504 is provided with a receiving groove 603, which is recessed inward from the light-receiving surface of the movable follower blade 504, and the bottom wall of the receiving groove 603 is provided with a mounting hole 604; the unit photovoltaic panel 601 is provided with a plug post 605, which extends along the length direction of the unit photovoltaic panel 601, and the plug post 605 is rotatably inserted into the mounting hole 604, and the light-receiving surface of the unit photovoltaic panel 601 is... The unit photovoltaic panel 601 is oriented towards the glass window 101; the rotation drive device 602 is installed in the receiving groove 603 and drives the connecting post 605 so that the unit photovoltaic panel 601 can rotate relative to the movable following blade 504 in the vertical plane; the unit photovoltaic panel 601 is housed in the receiving groove 603. This arrangement can prevent the movable following blade 504 from being too large, thus avoiding its folding or storage; in addition, the unit photovoltaic panel 601 can change its orientation within a certain angle range, thereby improving the power generation efficiency of the unit photovoltaic panel 601.

[0043] See Figure 7 Preferably, there are multiple mounting holes 604, which are spaced apart along the width direction of the movable follower blade 504; there are multiple unit photovoltaic panels 601, and the insertion post 605 of each unit photovoltaic panel 601 is rotatably inserted into one of the mounting holes 604; obviously, this arrangement can improve the light-gathering and power generation efficiency of the movable follower blade 504.

[0044] See Figures 8-9Preferably, the rotary drive device 602 includes a driven gear 606, a synchronous belt 607, and a miniature rotary stepper motor 608; the movable following blade 504 is provided with a clearance space 609, the clearance space 609 and the receiving groove 603 are spaced apart along the length direction of the movable following blade 504, and the two ends of the mounting hole 604 are respectively connected to the receiving groove 603 and the clearance space 609; each of the plug-in pins 605 is sequentially inserted into the mounting hole 604 and the clearance space 609, and each of the plug-in pins 605 located in the clearance space 609 is provided with a driven gear 606, and each driven gear 606 is spaced along the length direction of the synchronous belt 607. The moving follower blades 504 are nested sequentially within the synchronous belt 607 along their width direction. The synchronous belt 607 is supported by the bottom wall of the clearance space 609. The micro rotary stepper motor 608 is disposed within the clearance space 609, and its output end drives one of the plug-in posts 605. Obviously, with this arrangement, the synchronous belt 607 can simultaneously drive each of the unit photovoltaic panels 601. In addition, the driven gear 606, the synchronous belt 607, and the micro rotary stepper motor 608 are all disposed within the clearance space 609 to prevent the unit solar shading photovoltaic panel 5 from becoming too large and hindering its folding.

[0045] See Figures 3-4 Preferably, the sunshade frame 201 is provided with a receiving groove 202, which is recessed radially from the inner sidewall of the sunshade frame 201 in a direction from the inside to the outside; the conductive guide rail 3 is disposed on the bottom wall of the receiving groove 202, and the conductive guide rail 3 includes a positioning guide rail 301 and a power receiving guide rail 302; the positioning guide rail 301 and the power receiving guide rail 302 are spaced apart along the width direction of the receiving groove 202; the mounting slider 4 is provided with a confined groove 401 and a conductive pulley 402; the confined groove 401 is recessed upward from the bottom wall of the mounting slider 4, and the confined groove... 401 is slidably inserted into the positioning guide rail 301; the conductive pulley 402 is correspondingly arranged with the power receiving guide rail 302, and the conductive pulley 402 and the power receiving guide rail 302 are slidably engaged; the unit solar shading photovoltaic plate 5, the conductive pulley 402 and the power receiving guide rail 302 are sequentially electrically connected; obviously, the positioning guide rail 301 is used to limit the sliding of the mounting slider 4 and prevent it from derailing; in addition, the conductive pulley 402 rolls and conducts the electrical energy collected by the unit solar shading photovoltaic plate 5 through the power receiving guide rail 302, so that no additional cable connection is required, thereby making the overall structure more compact.

[0046] See Figure 2Preferably, the unit floor 1 is provided with a cover 102 and a battery. The cover 102 covers one end face of the unit floor 1 near the conductive rail 3 and forms a pipe receiving space 103 with the end face. The battery is housed in the pipe receiving space 103. The conductive rail 3 also includes a cable pipe 303. The two ends of the cable pipe 303 are respectively connected to the pipe receiving space 103 and the receiving groove 202 so that the power receiving rail 302 is electrically connected to the battery. Obviously, the cover 102 is the indoor floor or ceiling. In addition, this arrangement can compensate for the energy consumption of the curtain wall structure with sunshade and photovoltaic power generation functions and provide additional power for indoor circuits.

[0047] See Figure 3 Preferably, at least two power receiving rails 302 are provided, and the two power receiving rails 302 are spaced apart on both sides of the positioning rail 301 along the width direction of the receiving groove 202; at least two conductive pulleys 402 are provided, and the two conductive pulleys 402 are spaced apart along the length direction of the mounting slider 4, and correspond one-to-one with each power receiving rail 302, with each conductive pulley 402 abutting against one of the power receiving rails 302; obviously, this arrangement can improve the transmission efficiency of the unit solar photovoltaic panel 5.

[0048] In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of those different embodiments or examples.

[0049] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.

[0050] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in this application, and these should all be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A curtain wall structure with sun shading and photovoltaic power generation functions, characterized in that, include: Unit floor (1), wherein the unit floor (1) is provided with a glass window (101); A sunshade assembly (2) is installed on the unit floor (1). The sunshade assembly (2) and the glass window (101) are arranged sequentially in the direction from indoors to outdoors. The sunshade assembly (2) includes a sunshade frame (201), a guide rail (3), a mounting slider (4), and a unit sunshade panel (5). The sunshade frame (201) is provided with a guide rail (3), which extends along the horizontal length of the sunshade frame (201). Multiple mounting sliders (4) are provided, and multiple mounting sliders (4) are slidably installed on the guide rail (3). The unit sunshade panel (5) The light-receiving surface of the unit sunshade photovoltaic panel (5) is set facing the outside. Multiple unit sunshade photovoltaic panels (5) are provided. Each unit sunshade photovoltaic panel (5) is rotatably inserted into one of the mounting sliders (4) and slides with the mounting slider (4). Multiple unit sunshade photovoltaic panels (5) are arranged sequentially along the length direction of the conductive guide rail (3). Each unit sunshade photovoltaic panel (5) is provided with a connecting end (501) and a connecting end (502). In two adjacent unit sunshade photovoltaic panels (5), the connecting end (501) of one is hinged to the connecting end (502) of the other so that the two adjacent unit sunshade photovoltaic panels (5) can be stacked together.

2. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 1, characterized in that, The unit solar photovoltaic panel (5) includes a fixed blade (503) and a movable following blade (504); one end of the conductive guide rail (3) is provided with a positioning hole, the fixed blade (503) is rotatably inserted into the positioning hole, and the fixed blade (503) is provided with the connecting end (501); the movable following blade (504) is provided with an adjustable photovoltaic panel assembly (6), the adjustable photovoltaic panel assembly (6) is rotatably installed on the light-collecting surface of the movable following blade (504); the movable following blade (504) is provided with multiple blades, each of the movable following blades... Each blade (504) is rotatably inserted into one of the mounting sliders (4) and moves with the mounting slider (4). The two opposite ends of the movable following blade (504) are respectively provided with the connecting end (501) and the connecting end (502). The connecting end (501) of the fixed blade (503) is hinged to the connecting end (502) of one of the movable following blades (504). In two adjacent movable following blades (504), the connecting end (501) of one of them is hinged to the connecting end (502) of the other.

3. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 2, characterized in that, The unit sunshade panel (5) also includes an end blade (505), which is rotatably inserted into the mounting slider (4) on the conductive guide rail (3) that is furthest from the positioning hole; the end blade (505) is provided with a connecting end (502), which is hinged to the connecting end (501) of one of the movable follower blades (504).

4. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 3, characterized in that, The end blade (505) away from the connecting end (502) is provided with a magnetically locked end; the sunshade frame (201) away from the positioning hole is provided with a magnetic element on one side end face so as to lock the magnetically locked end.

5. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 2, characterized in that, The adjustable photovoltaic panel assembly (6) includes a unit photovoltaic panel (601) and a rotary drive device (602); the movable follower blade (504) is provided with a receiving groove (603), the receiving groove (603) is recessed inward from the light-receiving surface of the movable follower blade (504), and the bottom wall of the receiving groove (603) is provided with a mounting hole (604); the unit photovoltaic panel (601) is provided with a plug post (605), the plug post (605) extends along the length direction of the unit photovoltaic panel (601), the plug post (605) is rotatably inserted into the mounting hole (604), and the light-receiving surface of the unit photovoltaic panel (601) is set facing the glass window (101); the rotary drive device (602) is installed in the receiving groove (603) and drives the plug post (605) so that the unit photovoltaic panel (601) can rotate relative to the movable follower blade (504) in the vertical plane.

6. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 5, characterized in that, The mounting holes (604) are provided in multiple ways, and the multiple mounting holes (604) are spaced apart along the width direction of the movable follower blade (504); the unit photovoltaic panels (601) are provided in multiple ways, and the plug post (605) of each unit photovoltaic panel (601) is rotatably plugged into one of the mounting holes (604).

7. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 6, characterized in that, The rotary drive device (602) includes a driven gear (606), a synchronous belt (607), and a miniature rotary stepper motor (608); the movable following blade (504) is provided with a clearance space (609), the clearance space (609) and the receiving groove (603) are spaced apart along the length direction of the movable following blade (504), and the two ends of the mounting hole (604) are respectively connected to the receiving groove (603) and the clearance space (609); each of the plugs (605) is sequentially inserted into the mounting hole (604) and the clearance space. In the space (609), each of the plug-in pins (605) located in the clearance space (609) is provided with a driven gear (606). Each driven gear (606) is nested in the synchronous belt (607) along the width direction of the movable following blade (504). The synchronous belt (607) is supported by the bottom wall of the clearance space (609). The micro rotary stepper motor (608) is located in the clearance space (609). The output end of the micro rotary stepper motor (608) is driven and connected to one of the plug-in pins (605).

8. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 1, characterized in that, The sunshade frame (201) is provided with a receiving groove (202), which is recessed radially from the inner sidewall of the sunshade frame (201) in a direction from the inside to the outside; the conductive guide rail (3) is disposed on the bottom wall of the receiving groove (202), and the conductive guide rail (3) includes a positioning guide rail (301) and a power receiving guide rail (302); the positioning guide rail (301) and the power receiving guide rail (302) are spaced apart along the width direction of the receiving groove (202); the mounting slider (4) The unit is provided with a confined groove (401) and a conductive pulley (402); the confined groove (401) is formed by recessing upward from the bottom wall of the mounting slider (4), and the confined groove (401) is slidably inserted into the positioning guide rail (301); the conductive pulley (402) is correspondingly provided with the power receiving guide rail (302), and the conductive pulley (402) and the power receiving guide rail (302) are slidably engaged; the unit solar photovoltaic panel (5), the conductive pulley (402) and the power receiving guide rail (302) are electrically connected in sequence.

9. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 5, characterized in that, The unit floor (1) is provided with a cover (102) and a battery. The cover (102) covers one end face of the unit floor (1) near the conductive rail (3) and forms a pipe receiving space (103) with the end face. The battery is housed in the pipe receiving space (103). The conductive rail (3) also includes a cable pipe (303). The two ends of the cable pipe (303) are respectively connected to the pipe receiving space (103) and the receiving groove (202) so that the power receiving rail (302) is electrically connected to the battery.

10. The curtain wall structure with sunshade and photovoltaic power generation functions according to claim 5, characterized in that, At least two power receiving rails (302) are provided, and the two power receiving rails (302) are spaced apart on both sides of the positioning rail (301) along the width direction of the receiving groove (202); at least two conductive pulleys (402) are provided, and the two conductive pulleys (402) are spaced apart along the length direction of the mounting slider (4) and correspond one-to-one with each power receiving rail (302), and each conductive pulley (402) abuts against one of the power receiving rails (302).