Photoelectric integrated shutter
By designing photovoltaic integrated louvers and using electric drive and guide mechanism, the problems of uneven stress, scraping and clamping of louvers in existing photovoltaic building integrated systems are solved, thereby improving power generation efficiency and service life, and enhancing the overall integrity and aesthetics of the system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-03-31
AI Technical Summary
Existing photovoltaic building integrated systems have problems with louvers, such as uneven force distribution in manual louvers, uneven lifting speed, scraping and clamping of louvers, friction between curtain slats and glass, complicated construction steps, and poor overall integrity in motorized louvers, which affect the convenience of maintenance, power generation efficiency and service life.
An integrated photovoltaic louver was designed, which uses double-glazed glass, a drive control system, louver components and structural profiles. The louver components are controlled by electric drive, and a power generation panel, energy storage device and controller are integrated. The movement of the slats is guided by the guide part to avoid slat scraping and clamping. The light is blocked by the light-blocking plate, reducing the glass screen printing steps and improving the overall integrity.
It achieves uniform force distribution and lifting of the louver components, avoids friction between the slats and the glass, improves power generation efficiency and service life, reduces maintenance difficulty, and enhances the overall integrity and aesthetics of the system.
Smart Images

Figure CN224064256U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to solar photovoltaic technology field especially relates to a photoelectricity integrated louver. BACKGROUND
[0002] With the continuous development of solar photovoltaic technology, the photovoltaic building integration application combining photovoltaic technology and building field is increasingly widespread. The photovoltaic building integration system usually adopts double-layer glass structure, and solar cell pieces are arranged between the two layers of glass. However, the existing photovoltaic building integration system has some deficiencies, which affects the maintenance convenience, power generation efficiency and service life of the system.
[0003] The existing louver has the following shortcomings:
[0004] The manual louver has the following problems: uneven force on the curtain piece during manual operation, uneven lifting speed, curtain piece clamping phenomenon caused by adjacent curtain pieces, and scraping phenomenon between curtain pieces. In addition, due to the lack of corresponding guiding parts, the scraping and jumping phenomenon occurs when the curtain piece is retracted.
[0005] The curtain piece is easy to contact with the outer glass, which damages the Low-E film of the outer glass.
[0006] The glass needs to be processed by the glass post-silkscreen method to block the light on both sides of the curtain piece, which is complicated in construction steps.
[0007] The existing electric louver needs an external controller and power supply, which makes the overall performance of the electric louver poor and inconvenient to maintain.
[0008] Therefore, it is urgent to design a photoelectricity integrated louver to solve the above problems. Utility model content
[0009] The utility model solves the technical problem to provide a photoelectricity integrated louver, which is convenient to install and maintain and can improve the power generation efficiency and service life.
[0010] In order to solve the above technical problems, the utility model provides a photoelectricity integrated louver, including hollow double -layer glass, drive control system, louver assembly and structural section, louver assembly and structural section all are located in double -layer glass, double -layer glass includes the inside glass of indoor one side and the outside glass of outdoor one side, the louver assembly includes a plurality of curtain piece, the distance of curtain piece and inside glass is less than the distance of curtain piece and outside glass, drive control system includes the drive assembly for driving louver assembly, the power generation board for converting solar energy into electric energy and the control assembly for operating drive assembly, drive assembly is located above louver assembly, the bottom of drive assembly is equipped with the fixed part for placing power generation board, the bottom of fixed part is equipped with the guide portion for guiding curtain piece movement, control assembly includes controller, the energy accumulator for storing electric energy is equipped in controller, energy accumulator and power generation board are electrically connected.
[0011] As the improvement of the above scheme, the structural section is provided with a light shielding plate, the light shielding plate is arranged along the vertical direction, and the light shielding plate is arranged between the curtain piece and the inside glass and / or the outside glass.
[0012] As the improvement of the above scheme, one end of the light shielding plate is connected with the structural section, and the other end extends to the center direction beyond the side edge of the curtain piece.
[0013] As the improvement of the above scheme, the thickness of the light shielding plate is 0.5mm-5mm.
[0014] As the improvement of the above scheme, the guide portion is an arc surface, and the guide portion includes a first arc surface and a second arc surface; the first arc surface is used for abutting against the curtain piece, and the second arc surface is arranged at the bottom of the first arc surface and is used for guiding the curtain piece to the first arc surface.
[0015] As the improvement of the above scheme, the guide portion further includes a third arc surface, the third arc surface is connected with the second arc surface and is used for abutting against the outside glass.
[0016] As the improvement of the above scheme, the fixed portion and the guide portion are arranged on the side close to the outside glass, and the distance between the guide portion and the bottom of the drive assembly is 3-15cm.
[0017] As the improvement of the above scheme, the control assembly further includes a connecting line, the controller is connected with the drive assembly and the power generation board through the connecting line respectively; a bottom cover is arranged on the inside glass, the controller is detachably connected with the bottom cover; a glass slot is further arranged on the inside glass for the connecting line to pass through.
[0018] As an improvement of the above scheme, the controller is provided with a control switch and a radio frequency signal receiving end; and / or the outer glass is a Low-E glass.
[0019] As an improvement of the above scheme, the double-layer glass and the structural section are provided with a first sealant and a second sealant; the first sealant is arranged on the structural section, and the second sealant is arranged on the first sealant; the first sealant is a butyl sealant, and the second sealant is a silicone sealant.
[0020] The beneficial effects of the utility model are as follows:
[0021] The photoelectric integrated louver of the utility model controls the louver assembly through the drive control system, uses the driving mode of electricity, the stress and lifting speed of the louver assembly are uniform, the phenomenon of clamping and scraping is avoided, the curtain piece is offset to the inner glass, and the friction between the curtain piece and the outer glass is effectively prevented; the curtain piece is guided by the guide part when being retracted, and the scraping and jumping are avoided, the light above the louver assembly is blocked by the fixed part and the power generation plate, and the power generation, energy storage and electric drive are integrated through the power generation plate, the energy storage device and the drive assembly, the overall strength is high, and the maintenance is convenient.
[0022] Further, the photoelectric integrated louver further blocks the light on the left side and the right side of the curtain piece through the light shielding plate, the overall light shielding property is good, the step of silk printing of glass in the later period is reduced, and the power generation, energy storage and electric drive are integrated through the power generation plate, the energy storage device and the drive assembly, the overall strength is high, and the maintenance is convenient. In the drive control system of the photoelectric integrated louver, the controller is magnetically connected with the bottom cover, the controller has the functions of key control and radio frequency control, the inner glass is provided with a glass groove and double sealing design of the first sealant and the second sealant, the appearance and the service life of the system are increased through reasonable structural arrangement. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a perspective view of the photoelectric integrated louver of the utility model;
[0024] Figure 2 It is an enlarged view of A part;
[0025] Figure 3 It is an enlarged view of B part;
[0026] Figure 4 It is a detailed structure view of the guide part in the photoelectric integrated louver of the utility model;
[0027] Figure 5 It is a perspective view of the photoelectric integrated louver of the utility model after removing the double-layer glass;
[0028] Figure 6 is an enlarged view of C part;
[0029] Figure 7 is a structural schematic view of glass slotting in the photoelectric integrated louver of the utility model. DETAILED DESCRIPTION
[0030] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be described further in detail below in combination with the drawings. Only this declaration, the up, down, left, right, front, back, inside, outside and other orientation words appearing in the text or about to appear in the utility model are based on the drawings of the utility model, and it is not the specific limitation of the utility model.
[0031] As Figures 1-5 shown, the utility model photoelectric integrated louver includes hollow double-layer glass 1, drive control system 2, louver assembly 3 and structural section 4, and the louver assembly 3 and structural section 4 are all arranged in the double-layer glass 1;
[0032] The double-layer glass 1 includes inside glass 11 on the indoor side and outside glass 12 on the outdoor side, and the louver assembly 3 includes a plurality of curtain pieces 31, and the distance between the curtain piece 31 and the inside glass 11 is less than the distance between the curtain piece 31 and the outside glass 12;
[0033] It should be noted that the distance between the curtain piece 31 and the inside glass 11 is less than the distance between the curtain piece 31 and the outside glass 12, that is, the utility model photoelectric integrated louver is a louver with the curtain piece arranged in the middle of the hollow glass, and the curtain piece 31 is offset to the inside glass 11, so that the whole louver assembly 3 is offset to the indoor side, effectively preventing the curtain piece 31 from rubbing against the outside glass 12;Preferably, the difference between the distance between the curtain piece 31 and the inside glass 11 and the distance between the curtain piece 31 and the outside glass 12 is 1mm-2mm.
[0034] The drive control system 2 includes drive assembly 21 for driving the louver assembly 3, power generation panel 22 for converting solar energy into electric energy and control assembly 23 for controlling the drive assembly 21, the drive assembly 21 is arranged above the louver assembly 3, the bottom of the drive assembly 21 is provided with fixing part 211 for placing the power generation panel 22, and the bottom of the fixing part 211 is provided with guide part 212 for guiding the movement of the curtain piece 31;
[0035] As Figure 7 shown, the control assembly 23 includes controller 231, and the controller 231 is provided with energy storage device (not shown in the figure) for storing electric energy, and the energy storage device is electrically connected with the power generation panel 22.
[0036] Preferably, the power generation panel 22 is a solar panel, which has high photoelectric conversion efficiency and can effectively convert sunlight into electricity to provide stable power for the energy storage device; the double-layer glass 1 is super white glass, which has high light transmittance to improve the power generation efficiency of the power generation panel 22, and the energy storage device is a storage battery;
[0037] Preferably, the controller 231 is provided with a control switch and a radio frequency signal receiving end to realize key operation or remote control operation according to user's demand, and the specific principle of the control switch and the radio frequency signal receiving end is the prior art, which will not be described here; the outer glass 12 is Low-E glass, which has high transmittance, can ensure sufficient indoor lighting, reduce glare, and make indoor light soft and comfortable. And it can effectively block the transmission of ultraviolet rays, reduce the damage of ultraviolet rays to indoor personnel and objects, and protect furniture, carpets, curtains and the like from fading and aging caused by ultraviolet rays.
[0038] The photoelectric integrated shutter of the utility model controls the shutter assembly 3 through the drive control system 2, uses the driving mode of electricity, the force and lifting speed of the shutter assembly 3 are uniform, avoid the phenomenon of clamping piece and scraping piece, the curtain piece 31 is offset to the inner glass 11, effectively prevent the curtain piece 31 from rubbing with the outer glass 12, the curtain piece 31 is guided by the guide portion 212 when being retracted, avoid the phenomenon of scraping and jumping, the light above the shutter assembly 3 can be blocked through the fixed portion 211 and the power generation panel 22, and the power generation, energy storage and electric drive are integrated through the power generation panel 22, the energy storage device and the drive assembly 21, the whole is strong in integrity, and is convenient to maintain.
[0039] As shown in Figures 1-3 In order to better guide the movement of the curtain piece 31, the guide portion 212 is an arc surface, and the guide portion 212 includes a first arc surface 212a and a second arc surface 212b.
[0040] The first arc surface 212a is used to abut against the curtain piece 31, and the second arc surface 212b is arranged at the bottom of the first arc surface 212a and is used to guide the curtain piece 31 to the first arc surface 212a.
[0041] It should be noted that when the curtain piece 31 is retracted, it is guided to the first arc surface 212a by the second arc surface 212b, the first arc surface 212a abuts against the curtain piece 31, and the curtain piece 31 is offset to the inner glass 11, which can prevent the curtain piece 31 from being scraped and jumping.
[0042] More preferably, the guide portion 212 further includes a third arc surface 212c, which is connected to the second arc surface 212b and is used to abut against the outer glass 12 to enhance the stability of the guide portion 212.
[0043] In some embodiments, such as Figure 4 As shown, the guide portion 212 is an arc-shaped surface, comprising a first arc surface 212a, a second arc surface 212b, and a third arc surface 212c. The first arc surface 212a is located between boundary lines L1 and L2 and is used to abut against the curtain slat 31. The second arc surface 212b is located between boundary lines L2 and L3 and is used to guide the curtain slat 31 to the first arc surface 212a. The third arc surface 212c is located between boundary lines L3 and L4 and is used to abut against the outer glass 12.
[0044] The fixing part 211 and the guide part 212 are located on the side near the outer glass 12, and the distance between the guide part 212 and the bottom of the drive assembly 21 is 3-15cm.
[0045] like Figure 5 and Figure 6 As shown, a light-shielding plate 41 is provided on the structural profile 4. The light-shielding plate 41 is arranged in the vertical direction. Preferably, the light-shielding plate 41 is provided between the curtain slat 31 and the outer glass 12. Figure 4 and Figure 5 The outer glass 12 is not shown in the middle.
[0046] More preferably, one end of the light-shielding plate is connected to the structural profile, and the other end extends beyond the side edge of the curtain slat towards the center. The thickness of the light-shielding plate is 0.5mm to 5mm.
[0047] It should be noted that existing technologies generally use post-processing screen printing on the glass to block light between the structural profile and the slats. In this new photoelectric integrated blind, the light-blocking plate 41 can block the gap between the structural profile 4 and the slats 31, resulting in good overall light blocking and reducing the need for post-processing screen printing. For thicker blinds, the light-blocking plate 41 is installed on both the outdoor and indoor sides for more comprehensive light blocking. For thinner blinds, the light-blocking plate 41 is positioned between the structural profile 4 and the outer glass 12, which is sufficient to block light and reduces material consumption. The light-blocking plate 41 is positioned between the slats 31 and the outer glass 12, and, in conjunction with the slats 31 being offset towards the inner glass 11, it effectively prevents the slats 31 from contacting the outer glass 12.
[0048] like Figure 7As shown, the control component 23 also includes a connecting line 232, through which the controller 231 is connected to the drive component 21 and the generator board 22 respectively;
[0049] The inner glass 11 is provided with a bottom cover (not shown in the figure). The controller 231 is detachably connected to the bottom cover. Specifically, it can be connected by a hook, etc., as is the case in the prior art. More preferably, the bottom cover is magnetically connected to the controller 231. The magnetic connection between the bottom cover and the controller 231 is the prior art, and its principle will not be described in detail here.
[0050] To facilitate the arrangement of the connecting line 232, the inner glass 11 is also provided with a glass slot 111 for the connecting line 232 to pass through, which can avoid the need for additional processing on the structural profile 4 due to the arrangement of the line.
[0051] A first sealant (not shown in the figure) and a second sealant (not shown in the figure) are provided between the double-layer glass 1 and the structural profile 4;
[0052] The first sealant is applied to the structural profile 4, and the second sealant is applied to the first sealant. Preferably, the first sealant is a butyl sealant, and the second sealant is a silicone sealant.
[0053] The dual-sealing design of the first and second sealants improves sealing performance, prevents moisture and gas from entering, and eliminates the problems of louver assembly 3 such as gap formation and expansion. The first sealant is butyl sealant, and the second sealant is silicone sealant. Butyl sealant has good moisture sealing performance, while silicone sealant has excellent weather resistance and elasticity. The combination of the two sealants ensures the long-term stability and sealing of the system. Furthermore, both butyl and silicone sealants have high durability, effectively resisting external environmental corrosion and extending the service life of the system.
[0054] In summary, this utility model of an integrated photoelectric blind controls the blind assembly 3 via a drive control system 2 using an electric drive. The force and lifting speed of the blind assembly 3 are uniform, preventing clipping and scraping. The slats 31 are offset towards the inner glass 11, effectively preventing friction between the slats 31 and the outer glass 12. When the slats 31 are retracted, they are guided by the guide part 212, preventing scraping and jumping. The fixing part 211 and the power generation plate 22 block light from above the blind assembly 3. Furthermore, the power generation plate 22, energy storage device, and drive assembly 21 integrate power generation, energy storage, and electric drive, resulting in strong overall integrity and convenient maintenance. This utility model of an integrated photoelectric blind also uses a light-blocking plate 41 to block light from the left and right sides of the slats 31, providing good overall light blocking and reducing the need for post-screen printing on the glass. The power generation plate 22, energy storage device, and drive assembly 21 further integrate power generation, energy storage, and electric drive, resulting in strong overall integrity and convenient maintenance. In the drive control system of the photoelectric integrated louver of this utility model, the controller 231 is magnetically connected to the bottom cover. The controller 231 has button control and radio frequency control functions. The inner glass 11 has a glass groove 111 and a double sealing design of first sealant and second sealant. Through reasonable structural arrangement, the aesthetics and system life are increased.
[0055] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.
Claims
1. A photoelectric integrated louvre, characterized by, The application relates to a hollow double-layer glass, a driving control system, a louver assembly and a structural section, wherein the louver assembly and the structural section are arranged in the double-layer glass. The double-layer glass comprises an indoor inner glass and an outdoor outer glass, and the louver assembly comprises a plurality of curtain pieces, wherein the distance between the curtain pieces and the inner glass is smaller than the distance between the curtain pieces and the outer glass. The driving control system comprises a driving assembly for driving the louver assembly, a power generation panel for converting solar energy into electric energy and a control assembly for controlling the driving assembly, wherein the driving assembly is arranged above the louver assembly, the bottom of the driving assembly is provided with a fixing part for placing the power generation panel, and the bottom of the fixing part is provided with a guide part for guiding the movement of the curtain pieces. The control assembly comprises a controller, and the controller is provided with an energy storage device for storing electric energy, wherein the energy storage device is electrically connected with the power generation panel.
2. The photoelectric integrated louvers according to claim 1, wherein, The structural section is provided with a light shielding plate arranged in a vertical direction, and the light shielding plate is arranged between the curtain pieces and the inner glass and / or the outer glass.
3. The photoelectric integrated louvers according to claim 2, wherein, One end of the light shielding plate is connected with the structural section, and the other end extends to the center direction beyond the side edge of the curtain piece.
4. The photoelectric integrated louvers according to claim 3, wherein, The thickness of the light shielding plate is 0.5mm-5mm.
5. The photoelectric integrated louvers according to claim 1, wherein, The guide part is an arc surface, and the guide part comprises a first arc surface and a second arc surface. The first arc surface is used for abutting against the curtain piece, and the second arc surface is arranged at the bottom of the first arc surface and is used for guiding the curtain piece to the first arc surface.
6. The photoelectric integrated louvers according to claim 5, wherein, The guide part further comprises a third arc surface connected with the second arc surface and used for abutting against the outer glass.
7. The photoelectric integrated louvers according to claim 1, wherein The fixing part and the guide part are arranged on the side close to the outer glass, and the distance between the guide part and the bottom of the driving assembly is 3-15cm.
8. The photoelectric integrated louvers according to claim 1, wherein, The control assembly further comprises a connecting line, and the controller is connected with the driving assembly and the power generation panel through the connecting line. The inner glass is provided with a bottom cover, and the controller is detachably connected with the bottom cover. The inner glass is further provided with a glass slot for the connecting line.
9. The photoelectric integrated louvers according to claim 1, wherein, The controller is provided with a control switch and a radio frequency signal receiving end. The outer glass is Low-E glass.
10. The photoelectric integrated louvers according to claim 1, wherein, The double-layer glass and the structural section are provided with a first sealing glue and a second sealing glue. The first sealing glue is arranged on the structural section, and the second sealing glue is arranged on the first sealing glue. The first sealing glue is butyl sealing glue, and the second sealing glue is silicone sealing glue.