Hollow electric shutter glass window with built-in photovoltaic panel
By optimizing the window structure of the motorized louver with built-in photovoltaic panels, eliminating the top partition, and adopting a drive mechanism powered by photovoltaic panels and plug connectors, the problems of high material costs, poor structural stability, and insufficient aesthetics have been solved, achieving an energy-saving and environmentally friendly window design.
Patent Information
- Application Number
- CN202422399150.6
- 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
Existing electric blinds with built-in photovoltaic panels have problems in the design and assembly process, such as high material cost, poor structural stability, complex assembly and insufficient aesthetics.
The top partition strip is eliminated, and the window frame consists of a top frame, a bottom partition strip, and side partition strips, which are connected by plug connectors. The photovoltaic panel is installed at the top of the window frame, and the drive mechanism is powered by the photovoltaic panel. The venetian blinds are controlled by drive ropes to raise, lower, and rotate, thus optimizing the window structure design.
Reduce material costs, improve structural stability and assembly efficiency, enhance aesthetics and production quality, achieve automatic control and energy-saving effects, and enhance the thermal insulation performance of the window.
Smart Images

Figure CN223469202U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hollow louver glass window technical field, especially in hollow electric louver glass window of built -in photovoltaic board. BACKGROUND
[0002] With the continuous development of renewable energy, the built-in photovoltaic panel electric louver glass window gradually becomes a new product in the field of building. The product combines the advantages of intelligent control and photovoltaic power generation, which can not only adjust indoor illumination, but also effectively utilize solar energy to achieve energy self-sufficiency. However, there are still some problems in the design and assembly process of the existing built-in photovoltaic panel electric louver window.
[0003] At present, the conventional built-in photovoltaic panel electric louver window design usually has a top baffle edge on the top of the window frame. Although this structure can provide support for the photovoltaic panel, it brings some inconvenience. First, the existence of the top baffle increases the material cost and may affect the overall structural stability of the window. Second, due to the design of the top baffle, the glue area is relatively narrow, and workers face great challenges during operation, often leading to overflow phenomenon, thereby affecting the appearance and performance of the window. In addition, the additional top baffle edge increases the complexity of assembly, making the entire installation process more tedious.
[0004] Therefore, how to optimize the design of the built-in photovoltaic panel electric louver window without affecting the stability of the window, and improve the assembly efficiency and appearance, has become a technical problem to be solved at present. CONTENT OF THE UTILITY MODEL
[0005] Based on the problems existing in the prior art, the purpose of the utility model is to provide a hollow electric louver glass window with built-in photovoltaic panel, which aims to optimize the window structure design, improve the cost-effectiveness, assembly efficiency and overall appearance of the hollow electric louver glass window with built-in photovoltaic panel.
[0006] The technical scheme adopted by the utility model to solve its technical problems is:
[0007] A hollow electric louver glass window with built-in photovoltaic panel, comprising a window frame, a glass panel, a louver curtain, a louver curtain driving mechanism and a photovoltaic panel; the glass panel comprises two pieces and covers both sides of the window frame, forming a hollow sandwich, the louver curtain is placed in the hollow sandwich, the louver curtain driving mechanism and the photovoltaic panel are installed on the top of the window frame, and the photovoltaic panel supplies power to the louver curtain driving mechanism, the louver curtain driving mechanism is connected with the louver curtain through a driving rope to drive its lifting and turning; characterized in that,
[0008] The window frame comprises a top frame, a bottom baffle edge and two side baffle edges, and is connected with each other through a plug connector; the top frame is composed of an outer side plate and an inner side plate which are inserted together;
[0009] The outer side of the outer side plate is provided with a first type of pin cavity and a photovoltaic panel slot, and the photovoltaic panel slot is located below the first type of pin cavity;
[0010] The photovoltaic panel is inserted into the photovoltaic panel slot from one side;
[0011] The top of the inner side of the outer side plate is provided with a top plate perpendicular to the panel thereof; the lower portion of the top plate is provided with two inner side plate guide rails along the length direction of the outer side plate; the inner side of the inner side plate is provided with two mutually parallel driving cavity top partitions and driving cavity bottom partitions extending along the length direction and perpendicular to the panel thereof; the driving cavity top partitions and the driving cavity bottom partitions are respectively inserted between the two inner side plate guide rails, and form a driving cavity with the outer side plate, and a shutter storage slot is formed below the driving cavity;
[0012] The shutter driving mechanism is installed in the driving cavity;
[0013] The driving cavity top partitions and the top plate form a second type of pin cavity;
[0014] The one side pins of the pin connector are respectively inserted into the first type of pin cavity and the second type of pin cavity for fixation, and the other side pins are inserted into the inner cavity of the side partition strip edge for fixation.
[0015] In a further preferred technical solution, two photovoltaic panel baffles are further inserted into the photovoltaic panel slot; the photovoltaic panel baffles are U-shaped and respectively located at the two ends of the photovoltaic panel to shield the end portions, so that the whole is more beautiful.
[0016] In a further preferred technical solution, the photovoltaic panel slot is provided with a photovoltaic panel slot along the length direction and a wiring slot located on the inner side of the photovoltaic panel slot.
[0017] In a further preferred technical solution, the top surface and the bottom surface of the photovoltaic panel baffle are respectively provided with a limiting sliding rail extending along the length direction, and the two limiting sliding rails are located in the photovoltaic panel slot to limit the photovoltaic panel baffle to be extracted from one side only.
[0018] In a further preferred technical solution, the driving cavity bottom partition is provided with an axle seat mounting port.
[0019] In a further preferred technical solution, the shutter driving mechanism comprises a driving motor, a shutter rotating shaft, an axle seat, a wire winder and a motor limiter; the driving motor and the motor limiter are respectively arranged at the two ends of the driving cavity of the top frame, the two ends of the shutter rotating shaft are respectively connected to 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 wire winder is mounted on the shutter rotating shaft, one end of the driving rope is wound on the wire winder, and the other end is connected to the shutter.
[0020] Further preferred technical solutions, the first type of pin cavity is a double-layer cavity structure.
[0021] Further preferred technical solutions, the top frame of the inner and outer panels top glue area below are provided with length direction extending glue overflow groove.
[0022] The beneficial effects of the present application are:
[0023] · The present application saves the top baffle, saves the cost, improves the structural stability and the assembly efficiency of workers, and improves the overall performance and production efficiency of the window body.
[0024] · The present application widens the top width, makes the glue area more spacious, facilitates the operation of workers, and improves the production quality and appearance of the window body.
[0025] · The present application adopts the electric shutter driving mechanism to realize automatic control and energy saving, and improves the use comfort and energy saving effect of the window body.
[0026] · The present application adopts the high-efficiency solar cell to provide stable power supply, and improves the reliability and maintainability of the window body.
[0027] · The present application adopts the air-tight hollow sandwich structure to improve the heat preservation and insulation performance of the window body, and reduces the energy consumption. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 is the structure schematic diagram of the indoor side of the window body.
[0029] Figure 2 is the structure schematic diagram of the outdoor side of the window body.
[0030] Figure 3 is the longitudinal section structure schematic diagram of the top frame.
[0031] Figure 4 is the longitudinal section structure schematic diagram of the outer side plate.
[0032] Figure 5 is the longitudinal section structure schematic diagram of the inner side plate.
[0033] In the figure: window frame 1, glass panel 2, shutter 3, shutter driving mechanism 4, photovoltaic panel 5, top frame 11, bottom strip edge 12, side strip edge 13, driving motor 41, shutter rotating shaft 43, shaft seat 45, wire winder 44 and motor limiter 42, outer side plate 111, inner side plate 112, excess glue groove 113, first type of pin cavity 114, second type of pin cavity 115, driving cavity 116, shutter storage groove 117, photovoltaic panel storage groove 118, photovoltaic panel baffle 119, top plate 1111, inner side plate guide rail 1112, driving cavity top baffle 1121, driving cavity bottom baffle 1122. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0035] The structure and function of the hollow electric shutter glass window with built-in photovoltaic panel are described in detail in the embodiments, in combination with the related drawings. The window body not only has the function of adjusting indoor illumination, but also can realize self-sufficiency of electricity and energy saving and environmental protection through the built-in photovoltaic panel.
[0036] As shown in Figure 1 and 2 , the structure of the window body includes: window frame 1, glass panel 2, shutter 3, shutter driving mechanism 4 and photovoltaic panel 5; the glass panel 2 includes two pieces, and covers the two sides of the window frame 1 respectively, forming a hollow sandwich, the shutter 3 is placed in the hollow sandwich, the shutter driving mechanism 4 and the photovoltaic panel 5 are both installed on the top of the window frame 1, and the shutter driving mechanism 4 is powered by the photovoltaic panel 5, the shutter driving mechanism 4 is connected with the shutter 3 through the driving rope to drive the shutter 3 to rise and fall and turn over.
[0037] The specific implementation structure will be explained below in combination with the drawings:
[0038] As shown in Figure 2 , the window frame 1 is composed of a top frame 11, a bottom strip edge 12 and two side strip edges 13, and is fixed by a pin connector 4.
[0039] As shown in Figure 3 , the top frame 11 is combined by an outer side plate 111 and an inner side plate 112 through plug-in combination, to ensure the stability and durability of the overall structure. On the top frame 11, a first type of pin cavity 114, a second type of pin cavity 115, a driving cavity 116, a shutter storage groove 117 and a photovoltaic panel storage groove 118 are formed respectively.
[0040] In addition, the inner and outer panels of the top frame 11 are provided with glue overflow grooves 113 extending along the length direction below the glue injection area at the top of the inner and outer panels.
[0041] The outer side of the outer side plate 111 is provided with a first type of pin cavity 114 and a photovoltaic panel slot 118, and the photovoltaic panel slot 118 is located below the first type of pin cavity 1111.
[0042] The photovoltaic panel slot 118 is provided with a photovoltaic panel slot extending along the length direction and a wiring slot located inside the photovoltaic panel slot.
[0043] The photovoltaic panel slot 118 is also provided with two photovoltaic panel baffles 119; the photovoltaic panel baffles 119 are U-shaped and are located at both ends of the photovoltaic panel 5, shielding the end portions, making the whole more beautiful. The top surface and the bottom surface of the photovoltaic panel baffle 119 are respectively provided with limit sliding rails extending along the length direction, and the two limit sliding rails are located in the photovoltaic panel slot, limiting the photovoltaic panel baffle 119 to be pulled out from one side.
[0044] Among them, the first type of pin cavity 114 is a double-cavity structure, which not only increases the glue injection position at the top of the outer side, but also makes it more convenient for workers to glue, and the double-cavity structure cooperates with the double pins to make the connection more stable and reliable.
[0045] As shown in Figure 4 The top of the inner side of the outer side plate 111 is provided with a top plate 1111 perpendicular to the panel surface. The bottom of the top plate 1111 is provided with two length direction inner side plate guide rails 1112.
[0046] As shown in Figure 5 The inner side of the inner side plate 112 is provided with two mutually parallel driving cavity top partitions 1121 and driving cavity bottom partitions 1122 extending along the length direction and perpendicular to the panel surface. The driving cavity top partitions 1121 and the driving cavity bottom partitions 1122 are respectively inserted between the two inner side plate guide rails 1112, and form a driving cavity 116 with the outer side plate 111, and form a shutter storage slot 117 below the driving cavity 116; the driving cavity top partitions 1121 and the top plate 1111 form a second type of pin cavity 115. The shaft seat mounting port is provided on the driving cavity bottom partition 1122.
[0047] As shown in Figure 1As shown, the shutter driving mechanism 4 includes a driving motor 41, a shutter rotating shaft 43, a shaft seat 45, a winding device 44 and a motor limiter 42. The driving motor 41 and the motor limiter 42 are respectively arranged at two ends of the driving cavity 116 of the top frame 11, the two ends of the shutter rotating shaft 43 are respectively connected to the driving motor 41 and the motor limiter 42, and the shaft body is supported by the two shaft seats 45; the shaft seat 45 is installed on the shaft seat mounting port; the winding device 44 is installed on the shutter rotating shaft 43, one end of the driving rope is wound on the winding device 44, and the other end is connected to the shutter 3, so that when the driving motor 41 rotates, the shutter 3 is lifted and turned over.
[0048] Assembly effect:
[0049] The design cancels the top partition strip, reduces the material cost, and improves the stability of the window body. At the same time, the wide glue coating area facilitates the operation of workers, reduces the glue overflow phenomenon, and improves the appearance and production quality of the window body.
[0050] The air-tight hollow sandwich structure further improves the heat preservation and heat insulation performance of the window body, reduces the energy consumption, and meets the energy-saving and environment-friendly demand of modern buildings.
[0051] The photovoltaic panel provides stable power supply for the shutter driving mechanism through the high-efficiency solar cell panel, so that the window body has the function of self-sufficient energy, reduces the dependence on external power, and has good energy-saving effect.
[0052] Through the optimization design of the window structure and the driving mechanism, the embodiment improves the production efficiency and overall appearance of the built-in photovoltaic panel hollow electric shutter glass window, ensures the convenient use and energy self-sufficient ability, and meets the energy-saving and environment-friendly demand of modern buildings.
[0053] 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 inherent to such process, method, article or equipment. Without more limitation, the element defined by the statement "including a" does not exclude the presence of another identical element in the process, method, article or equipment including the element.
[0054] 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 hollow electric shutter glass window with built-in photovoltaic panel, comprising a window frame, a glass panel, a shutter, a shutter driving mechanism and a photovoltaic panel; 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 photovoltaic panel are both installed on the top of the window frame, and the shutter driving mechanism is powered by the photovoltaic panel, the shutter driving mechanism is connected with the shutter through a driving rope to drive the shutter to lift and turn; characterized in that, the window frame comprises a top frame, a bottom spacer edge and two side spacer edges, and is connected with each other through a plug connector; the top frame is composed of an outer side plate and an inner side plate which are inserted together; the outer side of the outer side plate is provided with a first type of plug cavity and a photovoltaic panel slot, and the photovoltaic panel slot is located below the first type of plug cavity; the photovoltaic panel is inserted into the photovoltaic panel slot from one side; the top of the inner side of the outer side plate is provided with a top plate perpendicular to the panel; the bottom of the top plate is provided with two inner side plate guide rails along the length direction of the outer side plate; the inner side of the inner side plate is provided with two parallel driving cavity top partitions and driving cavity bottom partitions which are perpendicular to the panel and extend along the length direction; the driving cavity top partitions and the driving cavity bottom partitions are respectively inserted between the two inner side plate guide rails, and form a driving cavity with the outer side plate, and a shutter storage slot is formed below the driving cavity; the shutter driving mechanism is installed in the driving cavity; the driving cavity top partitions and the top plate form a second type of plug cavity; one side of the plug connector is respectively inserted into the first type of plug cavity and the second type of plug cavity for fixation, and the other side of the plug connector is inserted into the inner cavity of the side spacer edge for fixation.
2. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 1, characterized in that, two photovoltaic panel baffles are also inserted into the photovoltaic panel slot; the photovoltaic panel baffles are U-shaped and are respectively located at both ends of the photovoltaic panel to shield the end portions.
3. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 2, characterized in that, the photovoltaic panel slot is provided with a photovoltaic panel slot along the length direction and a wiring slot located on the inner side of the photovoltaic panel slot.
4. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 3, characterized in that, the top surface and the bottom surface of the photovoltaic panel baffle are respectively provided with a limiting sliding rail extending along the length direction, and the two limiting sliding rails are located in the photovoltaic panel slot to limit the photovoltaic panel baffle to be pulled out from one side only.
5. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 2, wherein, the driving cavity bottom partition is provided with a shaft seat mounting port.
6. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 5, characterized in that, the shutter driving mechanism comprises a driving motor, a shutter shaft, a shaft seat, a wire winder and a motor limiter; the driving motor and the motor limiter are respectively arranged at both ends of the driving cavity of the top frame, the 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 shaft seats; the shaft seat is mounted on the shaft seat mounting port; the wire winder is mounted on the shutter shaft, one end of the driving rope is wound on the wire winder, and the other end of the driving rope is connected with the shutter.
7. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 1, wherein, the first type of plug cavity is a double-layer cavity structure.
8. A hollow electrically operated venetian glass window with a built-in photovoltaic panel as claimed in claim 1, characterized in that, the top of the inner and outer panels of the top frame is respectively provided with a glue overflow groove extending along the length direction below the glue pouring area.