Light electric hollow shutter with built-in ultrathin photovoltaic film

By designing ultra-thin photovoltaic films and innovative window structures, the problem of heavy built-in photovoltaic blinds was solved, achieving the dual goals of lightweight and high efficiency, improving aesthetics and applicability, reducing construction costs, and promoting energy conservation and emission reduction in buildings.

CN223469203UActive Publication Date: 2025-10-24SMARTSOLAR ENERGY TECH
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Patent Information

Application Number
CN202422399156.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-10-24
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing built-in photovoltaic blinds are heavy and their structural design fails to fully consider the need for lightweighting, which affects their aesthetics and functionality, limits their application in scenarios with limited space, and does not fully utilize the photovoltaic film's potential for power generation and energy saving.

Method used

A lightweight electric hollow blind with built-in ultra-thin photovoltaic film was designed. It adopted an innovative window top frame structure, combined with ultra-thin photovoltaic film and omitted the pin cavity directly above the photovoltaic trough to reduce the thickness and weight of the window, and realized electric control through the blind drive mechanism.

Benefits of technology

It achieves a lightweight design for the window, improves its aesthetics and functionality, broadens its application scenarios, reduces construction costs, and promotes energy conservation and emission reduction in buildings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a light electric hollow shutter with a built-in ultra-thin photovoltaic film. The light electric hollow shutter mainly comprises a window frame, two glass panels, a shutter blind, a shutter blind driving mechanism and the ultra-thin photovoltaic film. The glass panels cover the two sides of the window frame respectively to form a hollow interlayer, and the venetian blind is arranged in the hollow interlayer. The shutter blind driving mechanism and the ultrathin photovoltaic film are both installed on the top of the window frame, the ultrathin photovoltaic film supplies power to the driving mechanism, the driving rope is connected with the driving mechanism and the shutter blind, and lifting and overturning are achieved. The window frame is composed of a top frame, a bottom division bar edge and two side division bar edges which are connected through pin connecting pieces. The top frame is formed by inserting and embedding an outer side plate and an inner side plate, a photovoltaic groove is formed in the outer side plate, and an ultrathin photovoltaic film is pasted in the photovoltaic groove. The internal structure comprises a guide groove and a driving cavity, a venetian blind driving mechanism is installed in the driving cavity, and a venetian blind containing groove is formed below the driving cavity. The design has the characteristics of lightness, thinness, attractiveness and high efficiency, and is suitable for various building environments.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hollow louver glass window technical field, especially a light -duty electric hollow louver window of built -in ultrathin photovoltaic film. BACKGROUND

[0002] With the rapid development of renewable energy technology, photovoltaic (PV) technology in the field of building application gradually attracts attention. The louver window with built-in photovoltaic film as a new type of window design has the potential to convert solar energy into electrical energy, which can effectively improve the energy efficiency of buildings. However, the existing built-in photovoltaic louver window has some significant problems.

[0003] First, the traditional built-in photovoltaic louver window is usually thick and heavy, resulting in a large overall structure of the window. This design not only affects the appearance, but also limits its application in some special scenarios, such as limited space residential or office environment. This heavy structure also makes the installation and maintenance process complex, increasing the construction cost.

[0004] Secondly, the existing louver window does not fully consider the lightweight demand of the window structure in the design, resulting in a conflict between functionality and aesthetics. For example, the traditional window structure often needs additional support and frame to ensure the stability of the window, which further increases the thickness and weight of the window.

[0005] In addition, the existing technology for the integration of photovoltaic film is relatively simple, and it cannot fully exert its potential in electrical energy generation and energy saving effect. Therefore, a new type of louver window design is needed to solve the problem of thickness and inconvenience in the existing technology while ensuring the function of photovoltaic. SUMMARY

[0006] To solve the above technical problems, the utility model aims to provide a light -duty electric hollow louver window with built-in ultrathin photovoltaic film, which combines innovative window top frame structure design to achieve lightweight and high efficiency. This design not only improves the aesthetics of the louver window, but also broadens its applicability in various application scenarios, providing a new solution for building energy saving and emission reduction.

[0007] The technical solution adopted by the utility model to solve its technical problems is:

[0008] The application discloses a light-weight electric hollow shutter with built-in ultra-thin photovoltaic film, which comprises a window frame, glass panels, a shutter, a shutter driving mechanism and an ultra-thin photovoltaic film; the glass panels are two and cover two sides of the window frame respectively to form a hollow interlayer, the shutter is arranged in the hollow interlayer, the shutter driving mechanism and the ultra-thin photovoltaic film are both mounted on the top of the window frame, the shutter driving mechanism is powered by the ultra-thin photovoltaic film, the shutter driving mechanism is connected with the shutter through a driving rope to drive the shutter to lift and turn, and the shutter driving mechanism is characterized in that,

[0009] The window frame comprises a top frame, a bottom partition strip edge and two side partition strip edges, and is connected with each other through a plug pin connector; the top frame is composed of an outer side plate and an inner side plate which are inserted together.

[0010] An outer side of the outer side plate is provided with a photovoltaic groove; the ultra-thin photovoltaic film is attached to the photovoltaic groove.

[0011] A top plate is arranged on the top of the inner side of the outer side plate; two inner side plate guide rails with hook grooves extending along the length direction are arranged below the top plate; the inner side of the inner side plate is provided with two mutually parallel driving cavity top partition plates and driving cavity bottom partition plates which are perpendicular to the plate surface and extend along the length direction; the driving cavity top partition plate and the driving cavity bottom partition plate are respectively inserted between the two inner side plate guide rails to form a driving cavity with the outer side plate, and a shutter storage groove is formed below the driving cavity; the shutter driving mechanism is mounted in the driving cavity.

[0012] The driving cavity top partition plate and the top plate form a plug pin cavity therebetween.

[0013] One side of the plug pin of the plug pin connector is inserted into the plug pin cavity to be fixed, and the other side of the plug pin is inserted into the inner cavity of the side partition strip edge to be fixed.

[0014] In a further preferred technical solution, an axle seat mounting port is arranged on the driving cavity bottom partition plate.

[0015] In a further preferred technical solution, the shutter driving mechanism comprises a driving motor, a shutter rotating shaft, an axle seat, a winding device and a motor limiter; the driving motor and the motor limiter are respectively arranged at two ends of the driving cavity of the top frame, two ends of the shutter rotating shaft are respectively connected with the driving motor and the motor limiter, and the shaft body is supported by the two axle seats; the axle seat is mounted on the axle seat mounting port; the winding device is mounted on the shutter rotating shaft, one end of the driving rope is wound on the winding device, and the other end of the driving rope is connected with the shutter.

[0016] In a further preferred technical solution, glue overflow grooves extending along the length direction are arranged below the glue pouring areas on the top of the inner and outer panels of the top frame.

[0017] Further preferably, the end of the top partition plate and the bottom partition plate of the driving cavity is provided with a barb structure along the length direction matched with the inner side plate guide rail, so that the inner side plate can only be inserted into the inner side plate guide rail from the side.

[0018] Further preferably, the pin connector comprises a top pin and a bottom pin, and the bottom pin is provided with two first type pins perpendicular to each other and inserted into the inner cavity of the bottom partition strip edge and the side partition strip edge, so that the two are stably connected.

[0019] Further preferably, the top pin is provided with two second type pins perpendicular to each other and a driving cavity sealing head, the two second type pins are inserted into the pin cavity of the top frame and the inner cavity of the side partition strip edge, so that the two are stably connected, and the driving cavity sealing head is inserted into the driving cavity for fixation.

[0020] Further preferably, the photovoltaic groove is provided with a photovoltaic film lead wire port, and the output lead wire of the photovoltaic film penetrates into the driving cavity from the photovoltaic film lead wire port.

[0021] The beneficial effects of the utility model are as follows:

[0022] Ultra-thin design: the scheme combines the ultra-thin photovoltaic film and omits the pin cavity directly above the photovoltaic groove, significantly reduces the thickness of the window body, makes the whole window body more light and thin, and is suitable for scenes with limited space.

[0023] Lightweight structure: the innovative top frame structure design and the thinning of the component materials reduce the overall weight of the window body, simplify the installation process, and reduce the construction cost.

[0024] High-efficiency photovoltaic conversion: the built-in photovoltaic film effectively improves the conversion efficiency of light energy, so that the shutter not only has a sun-shading function, but also can collect renewable electric energy.

[0025] Aesthetics and functionality: the light and thin design improves the aesthetics of the window body, meets the design concept of modern architecture, and retains good functionality.

[0026] Multi-scene applicability: the light and thin characteristics make it flexible to be applied in various environments such as residences and offices, widening the application range of the market.

[0027] Environmental protection and energy saving: the design of integrated photovoltaic technology promotes the energy saving and emission reduction of buildings, and meets the requirements of sustainable development.

[0028] Convenient maintenance and installation: the light and thin design and the simplified structure make the window body more convenient to install and maintain, reducing the labor and material costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic diagram of the inner overall structure of the utility model.

[0030] Figure 2 It is a schematic diagram of the outer overall structure of the utility model.

[0031] Figure 3 It is a schematic diagram of the top frame structure of the frame.

[0032] Figure 4 This is the longitudinal section structure diagram of the outer plate of the top frame.

[0033] Figure 5 This is the longitudinal section structure diagram of the inner side plate of the top frame.

[0034] Figure 6 This is a diagram of the bottom pin structure.

[0035] Figure 7 This is a diagram of the top pin structure.

[0036] Figure 8 It is a longitudinal cross-sectional structural diagram of the bottom partition edge.

[0037] Figure 9 It is a cross-sectional structural diagram of the side partition edge.

[0038] In the figure: 1-window frame, 2-glass panel, 3-venetian blind, 4-venetian blind drive mechanism, 5-ultra-thin photovoltaic film; 11-top frame, 12-bottom partition edge, 13-side partition edge, 14-pin connector, 15-drive cavity, 16-venetian blind storage slot, 17-pin cavity; 41-drive motor, 42-venetian blind shaft, 43-winder, 44-motor limiter, 45-axle seat; 111-outer plate, 112-inner plate, 141-top pin, 142-bottom pin; 1111-photovoltaic trough, 1112-top plate, 1113-inner plate guide rail, 1114-overflow glue groove, 1121-drive cavity top partition, 1122-drive cavity bottom partition. DETAILED DESCRIPTION

[0039] The following is a combination of the appended examples of the present invention Figures 1-9 The technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort shall fall within the scope of protection of the present invention.

[0040] This embodiment provides a light electric hollow blind with built-in ultra-thin photovoltaic film, such asFigure 1 and 2 As shown in the figure, the main components include: window frame 1, glass panel 2, shutter 3, shutter driving mechanism 4 and ultra-thin photovoltaic film 5. Glass panel 2 includes two pieces, and covers the two sides of window frame 1 respectively, forming a hollow sandwich, which provides good heat and sound insulation performance. Shutter 3 is placed in the hollow sandwich, which has both aesthetic and practical design, and can effectively adjust indoor light and ventilation. Shutter driving mechanism 4 and ultra-thin photovoltaic film 5 are installed on the top of window frame 1, and the shutter driving mechanism 4 is powered by the ultra-thin photovoltaic film 5. Shutter driving mechanism 4 is connected with shutter 3 through driving rope, driving its lifting and turning.

[0041] These components are connected to each other to form a compact and fully functional window structure.

[0042] The following will explain the structure of each part of the scheme in detail in combination with the drawings:

[0043] Window frame 1 is composed of top frame 11, bottom strip edge 12 and two side strip edges 13, and each part is fixed to each other through plug-in connector 14.

[0044] As shown in Figure 3 , top frame 11 is composed of outer side plate 111 and inner side plate 112 which are inserted and combined with each other along the length direction. The outer side of the outer side plate is provided with photovoltaic groove 1111, and the ultra-thin photovoltaic film 5 is attached in the photovoltaic groove to realize efficient conversion and collection of light energy. Photovoltaic film lead port is provided in the groove of photovoltaic groove 1111, and the output lead of photovoltaic film 5 penetrates into the driving cavity from the photovoltaic film lead port.

[0045] In addition, the top of the inner and outer panels of top frame 11 is provided with overflow groove 1114 extending along the length direction below the glue area. The design of overflow groove can make the excess glue flow into overflow groove 1114 when the glass cover plate extrudes the adhesive, instead of irregular overflow of glue, so that the window is more beautiful.

[0046] As shown in Figure 4 , the top of the inner side of the outer side plate is provided with top plate 1112, which constitutes the top closed surface of top frame 11.

[0047] Two inner side plate guide rails 1113 extending along the length direction with hook grooves are provided below top plate 1112, and two corresponding inner side plate guide rails 1113 are used to install and fix inner side plate 112.

[0048] At the same time, as shown in Figure 5As shown, the inner side of the inner side plate 112 is provided with two mutually parallel drive cavity top partitions 1121 and drive cavity bottom partitions 1122 perpendicular to the plate surface and extending along the length direction; the drive cavity top partitions 1121 and the drive cavity bottom partitions 1122 are respectively inserted between the two inner side plate guide rails 1113, and form the drive cavity 15 with the outer side plate 111, and form the shutter storage groove 16 below the drive cavity 15; the drive cavity top partitions 1121 and the top plate 1112 form the pin cavity 17.

[0049] The end of the drive cavity top partitions 1121 and the drive cavity bottom partitions 1122 is provided with a barb structure matching the inner side plate guide rail 1113 along the length direction, for limiting the inner side plate to be inserted into the inner side plate guide rail from the side.

[0050] As shown, Figures 6-9 The pin connector 14 includes a top pin 141 and a bottom pin 142.

[0051] The bottom pin 142 is provided with two, respectively located at the bottom two corners of the frame body 1, and the specific structure is as shown in Figure 6 , including two mutually perpendicular first type pins 1421, respectively inserted into the inner cavity of the bottom partition strip edge 12 and the side partition strip edge 13 (as shown in Figure 8 and 9 ), so that the two are stably connected.

[0052] The top pin 141 is provided with two, respectively located at the top two corners of the frame body 1, and the specific structure is as shown in Figure 7 , including two mutually perpendicular second type pins 1411 and a drive cavity sealing head 1412; the two second type pins 1411 are respectively inserted into the pin cavity 17 of the top frame 11 and the inner cavity of the side partition strip edge 13 (as shown in Figure 3 and 9 ), so that the two are stably connected. The drive cavity sealing head 1412 is inserted into the drive cavity 15, which further improves the stability of the frame body while sealing the drive cavity.

[0053] The shutter drive mechanism 4 is installed in the drive cavity 15, and the specific structure includes:

[0054] The drive motor 41 is installed at one end of the drive cavity, providing power to drive the lifting and turning of the shutter.

[0055] The shutter shaft 42: the two ends of the shaft are respectively connected to the drive motor 41 and the motor limiter 44, and the shutter shaft 42 is supported by two shaft seats 45.

[0056] The wire winder 43 is installed on the shutter shaft 42, one end of which is wound around the drive rope, and the other end is connected to the shutter 3, realizing the lifting control of the shutter.

[0057] Motor limiter 44: used to limit the movement range of the motor, ensure the normal operation of the shutter, prevent damage.

[0058] In addition, the drive cavity bottom partition plate 1122 is provided with a shaft seat mounting port, and two shaft seats 45 are correspondingly mounted on the shaft seat mounting port to provide support for the shutter rotating shaft 42 and ensure normal operation.

[0059] The window structure design of the scheme combines the ultra-thin photovoltaic film and the omitted pin cavity directly above the photovoltaic groove, significantly reduces the thickness of the window, makes the overall window lighter and thinner, and is suitable for scenes with limited space.

[0060] It should be noted that in this paper, terms such as "including", "containing" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent to such process, method, article or equipment. Without more limitations, the element defined by the statement "including a" does not exclude the presence of other identical elements in the process, method, article or equipment including the element.

[0061] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A light-weight motorized hollow shutter with built-in ultra-thin photovoltaic film, comprising a window frame, a glass panel, a shutter, a shutter driving mechanism and an ultra-thin photovoltaic film; the glass panel comprises two parts and covers two sides of the window frame respectively, forming a hollow interlayer, the shutter is placed in the hollow interlayer, the shutter driving mechanism and the ultra-thin photovoltaic film are both installed on the top of the window frame, and the shutter driving mechanism is powered by the ultra-thin photovoltaic film, the shutter driving mechanism is connected with the shutter through a driving rope to drive the shutter to rise and fall and to turn over; characterized in that, the window frame comprises a top frame, a bottom partition strip edge and two side partition strip edges, and is connected with each other through a plug pin connector; the top frame is composed of an outer side plate and an inner side plate which are inserted into each other; a photovoltaic groove is arranged on the outer side of the outer side plate; the ultra-thin photovoltaic film is attached in the photovoltaic groove; a top plate is arranged on the top of the inner side of the outer side plate; two inner side plate guide rails with hook grooves extending along the length direction are arranged below the top plate; two parallel driving cavity top partitions and driving cavity bottom partitions extending along the length direction and perpendicular to the plate surface of the inner side plate are arranged on the inner side of the inner side plate; the driving cavity top partitions and the driving cavity bottom partitions are respectively inserted between the two inner side plate guide rails and the outer side plate to form a driving cavity, and a shutter storage groove is formed below the driving cavity; the shutter driving mechanism is installed in the driving cavity; a plug pin cavity is formed between the driving cavity top partitions and the top plate; one side of the plug pin connector is inserted into the plug pin cavity for fixation, and the other side is inserted into the inner cavity of the side partition strip edge for fixation.

2. A light-weight electric hollow slatted blind with a built-in ultra-thin photovoltaic film as claimed in claim 1, characterized in that, an axle seat mounting port is arranged on the driving cavity bottom partition.

3. A light-weight electric hollow slat shutter with a built-in ultra-thin photovoltaic film as claimed in claim 2, characterized in that, the shutter driving mechanism comprises a driving motor, a shutter shaft, an axle seat, a winding device and a motor limiter; the driving motor and the motor limiter are respectively arranged at two ends of the driving cavity of the top frame, two ends of the shutter shaft are respectively connected with the driving motor and the motor limiter, and the shaft body is supported by the two axle seats; the axle seat is mounted on the axle seat mounting port; the winding device is mounted on the shutter shaft, one end of the driving rope is wound on the winding device, and the other end is connected with the shutter.

4. A light-weight electric hollow slat shutter with a built-in ultra-thin photovoltaic film as claimed in claim 1, characterized in that, overflow grooves extending along the length direction are respectively arranged below the glue overflow areas on the top of the inner and outer panels of the top frame.

5. A light-weight electric hollow slat shutter with a built-in ultra-thin photovoltaic film as claimed in claim 1, characterized in that, hook structures matching the inner side plate guide rails are arranged on the ends of the driving cavity top partitions and the driving cavity bottom partitions along the length direction, so as to limit the insertion of the inner side plate into the inner side plate guide rails from the side.

6. A light-weight electric hollow slat shutter with a built-in ultra-thin photovoltaic film as claimed in claim 1, characterized in that, the plug pin connector comprises a top plug pin and a bottom plug pin; two bottom plug pins are arranged at two corners of the bottom of the frame body, and the specific structure of the bottom plug pin comprises two first type plug pins perpendicular to each other, which are respectively inserted into the inner cavities of the bottom partition strip edge and the side partition strip edge.

7. A light-weight electric hollow venetian blind with a built-in ultra-thin photovoltaic film as claimed in claim 6, characterized in that, two top plug pins are arranged at two corners of the top of the frame body, and the specific structure of the top plug pin comprises two second type plug pins perpendicular to each other and a driving cavity sealing head; the two second type plug pins are respectively inserted into the plug pin cavity of the top frame and the inner cavity of the side partition strip edge, so that the top plug pin and the side partition strip edge are stably connected; the driving cavity sealing head is inserted into the driving cavity for fixation.

8. A light-weight electric hollow slat shutter with a built-in ultra-thin photovoltaic film according to claim 1, characterized in that, The photovoltaic trough is provided with a photovoltaic film lead wire port in the trough, and the output lead wire of the photovoltaic film penetrates into the driving cavity from the photovoltaic film lead wire port.