Novel green aluminum alloy energy-saving door and window

CN224664474UActive Publication Date: 2026-08-21FUYANG JINTIAN DIGITAL TECH CO LTD
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Patent Information

Application Number
CN202521747826.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-18
Publication Date
2026-08-21
Estimated Expiration
2035-08-18

AI Technical Summary

Technical Problem

[0005]本实用新型提出一种新型绿色铝合金节能门窗,解决了相关技术中的不便对玻璃板进行单独拆卸维护的问题

Benefits of technology

一、通过将光伏发电玻璃板放入铝合金窗框内,使其与矩形密封垫一接触,同时将活动内框移入铝合金窗框内,并移动挡块经滑块在滑槽内向上移动,使卡块与卡槽卡接,后移动挡块遮挡卡槽,并转动手拧螺杆带动挤压块对卡块施加挤压力,使活动内框带动矩形密封垫二挤压光伏发电玻璃板,从而经活动内框配合固定外框对光伏发电玻璃板进行夹紧固定,反之只需拧松手拧螺杆使挤压块和卡块分离,即可取出活动内框拆卸光伏发电玻璃板,故由此实现对光伏发电玻璃板进行单独拆装更换的效果,避免了光伏发电玻璃板和框体固定无法单独更换的情况,操作简单便捷,无需更换整体,有效提高了窗体的使用效果和后期维护的便利性。

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Abstract

The utility model provides a novel green aluminum alloy energy -conserving door and window, include: aluminum alloy window frame and be located in its photovoltaic power generation glass board, fixedly installed in the aluminum alloy window frame and located photovoltaic power generation glass board one side's fixed outer frame, fixedly installed in fixed outer frame one side and with photovoltaic power generation glass board contact's rectangular sealing washer no. 1. Through put photovoltaic power generation glass board into the aluminum alloy window frame, make it with rectangular sealing washer no. 1 contact, move movable inner frame into the aluminum alloy window frame simultaneously, and remove the baulk and move to make the clamping block and the card groove card joint, remove the baulk and shield the card groove behind, and rotate hand screw rod drive extruding piece to the clamping block and exert extruding pressure, thereby through movable inner frame cooperation fixed outer frame to photovoltaic power generation glass board is carried out clamping and fixed, therefore realize the effect of the separate dismounting replacement of photovoltaic power generation glass board, effectively improved the use effect of window body and the convenience of later maintenance.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum alloy door and window technology, specifically to a new type of green aluminum alloy energy-saving door and window. Background Technology

[0002] Aluminum alloy doors and windows refer to doors and windows made with extruded aluminum alloy profiles as frames, mullions, and sashes, often shortened to aluminum doors and windows. Aluminum alloy doors and windows include those using aluminum alloy as the load-bearing structure (the structure that bears and transmits its own weight and load) and those made of wood or plastic composites, often shortened to aluminum-wood composite doors and windows or aluminum-plastic composite doors and windows.

[0003] A patent with publication number CN209603772U is known to disclose a green and energy-saving aluminum alloy door and window. Its background art addresses the problem that "current aluminum alloy doors and windows have relatively limited functionality and need improvement." The proposed solution is as follows: "It includes an aluminum alloy window frame and a photovoltaic power generation glass panel fixedly installed on the aluminum alloy window frame. The photovoltaic power generation glass panel includes a solar panel. The aluminum alloy window frame is square with four sides. One of the four sides of the aluminum alloy window frame has a battery electrically connected to the solar panel, and the other three sides each have an electric heating element. The battery serves as a power source and is electrically connected to each electric heating element."

[0004] However, during the implementation of the relevant technologies, the following problems were found with the above-mentioned technical solutions: it is inconvenient to disassemble and maintain the glass panels separately during use, as the glass panels and window frames are fixed together. After long-term use, when the glass panels are damaged, they cannot be disassembled and replaced separately, which easily affects the use and leads to a reduction in the convenience of maintenance and the effectiveness of use of aluminum alloy windows in the later stages. Utility Model Content

[0005] This utility model proposes a new type of green aluminum alloy energy-saving door and window, which solves the problem of inconvenience in disassembling and maintaining the glass panel separately in related technologies.

[0006] The technical solution of this utility model is as follows: A new type of green aluminum alloy energy-saving door and window, comprising: an aluminum alloy window frame and a photovoltaic power generation glass panel installed therein; A fixed outer frame that is fixedly installed inside the aluminum alloy window frame and located on one side of the photovoltaic glass panel; A rectangular sealing gasket is fixedly installed on one side of the fixed outer frame and in contact with the photovoltaic glass panel; Two slots are located on the rear side of the aluminum alloy window frame; The sliding latch engages with the latch block within the latch slot; A movable inner frame that is fixedly installed between two card blocks; A rectangular sealing gasket is fixedly installed on one side of the movable inner frame and in contact with the photovoltaic glass panel; An extended groove is provided on the rear side of the aluminum alloy window frame and corresponds to the card slot. And a mechanism for fixing and pressing the card block inside the expansion groove.

[0007] Preferably, the extrusion mechanism includes a groove formed on one side of the inner wall of the expansion groove, a slider slidably engaged in the groove, a stop block fixedly installed on one side of the slider, a hand-tightening screw threaded through and connected to the stop block, and an extrusion block fixedly connected to one end of the hand-tightening screw and in contact with the stop block.

[0008] Preferably, the aluminum alloy window frame is provided with a sunshade mechanism to prevent sunlight from entering the room.

[0009] The sunshade mechanism includes two fixed blocks symmetrically fixedly installed on the rear side of the aluminum alloy window frame, a retractable shaft rotatably connected between the fixed blocks, a sunshade curtain fixedly wound on the retractable shaft, a drive component on the aluminum alloy window frame, and a counterweight component at the bottom of the sunshade curtain for unfolding it.

[0010] The drive component includes a gear one fixedly connected to one end of the take-up shaft, a protective shell detachably installed on the rear side of the aluminum alloy window frame, a motor fixedly installed on one side of the inner wall of the protective shell, and a gear two fixedly connected to the output end of the motor and meshing with gear one.

[0011] Preferably, the counterweight component includes two guide rails fixedly installed on one side of the movable inner frame, a movable block slidably engaged with the surface of the guide rails, and a movable plate fixedly installed between the movable blocks, with the bottom end of the sunshade curtain connected to the movable plate.

[0012] Preferably, an inner cavity is provided at the bottom of the rear side of the aluminum alloy window frame, a battery is fixedly installed inside the inner cavity, a charging module and a discharging module are respectively installed inside the inner cavity and on both sides of the battery, and a maintenance plate corresponding to the inner cavity is detachably installed on the rear side of the aluminum alloy window frame.

[0013] Preferably, a U-shaped plate is fixedly installed on the rear side of the aluminum alloy window frame, a rubber pad that contacts the sunshade is fixedly installed on the inner wall of the U-shaped plate, and a cleaning brush that contacts the photovoltaic power generation glass plate is fixedly installed on one side of the movable plate.

[0014] The working principle and beneficial effects of this utility model are as follows: 1. By placing the photovoltaic glass panel inside the aluminum alloy window frame, making it contact the rectangular sealing gasket, and simultaneously moving the movable inner frame into the aluminum alloy window frame, the moving block moves upward in the sliding groove via the slider, causing the locking block to engage with the locking groove. Then, the moving block covers the locking groove, and the hand-tightening screw is turned to apply pressure to the locking block, causing the movable inner frame to push the rectangular sealing gasket against the photovoltaic glass panel. Thus, the movable inner frame, in conjunction with the fixed outer frame, clamps and secures the photovoltaic glass panel. Conversely, simply loosening the hand-tightening screw separates the pressing block and the locking block, allowing the movable inner frame to be removed and the photovoltaic glass panel disassembled. Therefore, this method achieves the effect of individually disassembling and replacing the photovoltaic glass panel, avoiding the situation where the photovoltaic glass panel and frame are fixed and cannot be replaced individually. The operation is simple and convenient, requiring no overall replacement, effectively improving the window's performance and the convenience of later maintenance.

[0015] Second, the motor drives gear two to rotate, which in turn meshes with gear one to drive the winding shaft to rotate and release the sunshade. At the same time, the moving plate moves along the guide rail downward under its own weight, which allows the released sunshade to move down and unfold, thereby blocking the photovoltaic glass panel, reducing sunlight exposure, and helping to lower the indoor temperature and improve comfort. Attached Figure Description

[0016] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0017] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model; Figure 2 This is a rear-view three-dimensional structural diagram of the present invention; Figure 3 This is a partial three-dimensional structural diagram of the fixed outer frame of this utility model; Figure 4 This is an exploded three-dimensional structural diagram of the movable inner frame and aluminum alloy window frame of this utility model. Figure 5 This utility model Figure 2 Enlarged 3D structural diagram at point A; Figure 6 This is a partial three-dimensional structural diagram of the counterweight component of this utility model; Figure 7 This is an exploded three-dimensional structural diagram of the maintenance plate and aluminum alloy window frame of this utility model. Figure 8 This is a schematic diagram of the three-dimensional structure of the U-shaped plate of this utility model.

[0018] In the diagram: 1. Aluminum alloy window frame; 2. Photovoltaic glass panel; 3. Fixed outer frame; 4. Rectangular sealing gasket one; 5. Slot; 6. Block; 7. Movable inner frame; 8. Rectangular sealing gasket two; 9. Expansion groove; 10. Slide groove; 11. Slider; 12. Stop block; 13. Hand-tightening screw; 14. Extrusion block; 15. Fixing block; 16. Rewinding shaft; 17. Sunshade; 18. Gear one; 19. Protective shell; 20. Motor; 21. Gear two; 22. Guide rail; 23. Movable block; 24. Moving plate; 25. Battery; 26. Charging module; 27. Discharging module; 28. Maintenance plate; 29. ​​U-shaped plate; 30. Rubber pad; 31. Cleaning brush. Detailed Implementation

[0019] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.

[0020] Example 1 Please see Figure 1 - Figure 8 This utility model provides a novel green aluminum alloy energy-saving door and window, comprising: an aluminum alloy window frame 1 and a photovoltaic power generation glass panel 2 disposed therein, wherein a controller (not an innovative technology, not shown in the attached drawings) is installed on the rear side of the aluminum alloy window frame 1. The photovoltaic power generation glass panel 2 comprises an outer glass substrate, a solar panel, a reflector, and an inner glass substrate arranged sequentially from the outside to the inside, which is prior art disclosed in this field and will not be described in detail here; A fixed outer frame 3 is fixedly installed inside the aluminum alloy window frame 1 and located on one side of the photovoltaic power generation glass panel 2; A rectangular sealing gasket 4 is fixedly installed on one side of the fixed outer frame 3 and in contact with the photovoltaic power generation glass panel 2; Two slots 5 are provided on the rear side of the aluminum alloy window frame 1; The sliding block 6 is engaged with the card slot 5; The movable inner frame 7 is fixedly installed between the two card blocks 6; A rectangular sealing gasket 2 8 is fixedly installed on one side of the movable inner frame 7 and in contact with the photovoltaic power generation glass panel 2; An extension groove 9 is provided on the rear side of the aluminum alloy window frame 1 and corresponds to the slot 5; And a mechanism for fixing and pressing the card block 6, located inside the expansion groove 9.

[0021] The extrusion mechanism includes a slide groove 10 formed on one side of the inner wall of the expansion groove 9, a slider 11 slidably engaged in the slide groove 10, a stop block 12 fixedly installed on one side of the slider 11, a hand-tightening screw 13 threadedly connected to the stop block 12, and an extrusion block 14 fixedly connected to one end of the hand-tightening screw 13 and in contact with the stop block 6.

[0022] The technical solution provided in this embodiment is as follows: In use, the photovoltaic glass panel 2 is placed inside the aluminum alloy window frame 1, so that the photovoltaic glass panel 2 contacts the rectangular sealing gasket 4 on the fixed outer frame 3. At the same time, the movable inner frame 7 is moved into the aluminum alloy window frame 1, and the moving block 12 moves upward in the slide groove 10 via the slider 11, so that the slot 5 is exposed and the locking block 6 is inserted into it. At this time, the rectangular sealing gasket 8 on the movable inner frame 7 contacts the photovoltaic glass panel 2. Then the moving block 12 covers the slot 5, and the hand screw 13 is turned to drive the pressing block 14 to abut against the locking block 6. The pressing block 14 applies a pressing force to the locking block 6, so that the movable inner frame 7... The rectangular sealing gasket 8 compresses the photovoltaic glass panel 2, thereby clamping and fixing the photovoltaic glass panel 2 through the movable inner frame 7 and the fixed outer frame 3. Conversely, when the photovoltaic glass panel 2 is damaged and needs to be replaced, simply loosen the hand screw 13 to separate the compression block 14 and the locking block 6, and then remove the movable inner frame 7 to separate the locking block 6 from the locking groove 5 to disassemble and replace the photovoltaic glass panel 2. Therefore, this achieves the effect of disassembling and replacing the photovoltaic glass panel 2 separately, avoiding the situation where the photovoltaic glass panel 2 and the frame are fixed and cannot be replaced separately. The operation is simple and convenient, without the need to replace the whole, effectively improving the use effect of the window and the convenience of later maintenance.

[0023] Furthermore, the aluminum alloy window frame 1 is equipped with a sunshade mechanism to prevent sunlight from entering the room.

[0024] The sunshade mechanism includes two fixed blocks 15 symmetrically fixedly installed on the rear side of the aluminum alloy window frame 1, a retractable shaft 16 rotatably connected between the fixed blocks 15, a sunshade curtain 17 fixedly wound on the retractable shaft 16, a drive component provided on the aluminum alloy window frame 1, and a counterweight component provided at the bottom of the sunshade curtain 17 for unfolding it.

[0025] The drive components include a gear 18 fixedly connected to one end of the take-up shaft 16, a protective shell 19 detachably mounted on the rear side of the aluminum alloy window frame 1, a motor 20 fixedly mounted on one side of the inner wall of the protective shell 19, and a gear 21 fixedly connected to the output end of the motor 20 and meshing with the gear 18. The motor 20 and the controller are electrically connected.

[0026] The counterweight components include two guide rails 22 fixedly installed on one side of the movable inner frame 7, movable blocks 23 slidably engaged with the surface of the guide rails 22, and a movable plate 24 fixedly installed between the movable blocks 23. The bottom end of the sunshade 17 is connected to the movable plate 24. The movable blocks 23 can slide out from the top of the guide rails 22 so as to separate them from the guide rails 22.

[0027] Specifically, when the outdoor sunlight is too strong, the motor 20 drives the gear 21 to rotate, which in turn meshes with the gear 18 to drive the winding shaft 16 to rotate and release the sunshade curtain 17. At the same time, the moving plate 24, under its own weight, drives the movable block 23 to move down along the guide rail 22, which allows the released sunshade curtain 17 to move down and unfold, thereby blocking the photovoltaic glass panel 2, reducing sunlight exposure, and helping to lower the indoor temperature and improve comfort. Conversely, the motor 20 can reverse to make the winding shaft 16 rotate and drive the sunshade curtain 17 to move up and roll it up.

[0028] Furthermore, an inner cavity is formed at the bottom of the rear side of the aluminum alloy window frame 1. A battery 25 is fixedly installed inside the inner cavity. A charging module 26 and a discharging module 27 are respectively installed inside the inner cavity and on both sides of the battery 25. A maintenance plate 28 corresponding to the inner cavity is detachably installed on the rear side of the aluminum alloy window frame 1. Both the charging module 26 and the discharging module 27 are electrically connected to the battery 25. The charging module 26 is electrically connected to the solar panel in the photovoltaic power generation glass panel 2, and the discharging module 27 is electrically connected to the motor 20 and the controller on this device to supply power to both. The charging module 26 and the discharging module 27 are prior art disclosed in this art and will not be described in detail here.

[0029] Specifically, the photovoltaic power generation glass panel 2 absorbs light energy and converts it into electrical energy, which is then stored in the battery 25 in conjunction with the charging module 26. The battery 25 can then supply power to the motor 20 through the discharge module 27, thereby saving energy and achieving energy conservation. The internal components can be easily maintained by removing the maintenance plate 28.

[0030] Example 2 Based on Embodiment 1, in this embodiment: a U-shaped plate 29 is fixedly installed on the rear side of the aluminum alloy window frame 1, a rubber pad 30 that contacts the sunshade curtain 17 is fixedly installed on the inner wall of the U-shaped plate 29, and a cleaning brush 31 that contacts the photovoltaic power generation glass plate 2 is fixedly installed on one side of the movable plate 24.

[0031] The technical solution provided in this embodiment is as follows: During the rolling up of the sunshade curtain 17, the outer surface of the sunshade curtain 17 can be scraped by the rubber pad 30 to clean the dust and impurities on the surface of the sunshade curtain 17. At the same time, the dust and impurities on the surface of the photovoltaic power generation glass panel 2 can be cleaned by the cleaning brush 31 to prevent it from affecting the use of the photovoltaic power generation glass panel 2.

[0032] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A novel green aluminum alloy energy-saving door and window, characterized in that, include: Aluminum alloy window frame (1) and photovoltaic power generation glass panel (2) installed therein; A fixed outer frame (3) is fixedly installed inside the aluminum alloy window frame (1) and located on one side of the photovoltaic power generation glass panel (2); A rectangular sealing gasket (4) is fixedly installed on one side of the fixed outer frame (3) and in contact with the photovoltaic power generation glass panel (2); Two slots (5) are provided on the rear side of the aluminum alloy window frame (1); The sliding block (6) is engaged in the slot (5); The movable inner frame (7) is fixedly installed between the two card blocks (6); A rectangular sealing gasket 2 (8) is fixedly installed on one side of the movable inner frame (7) and in contact with the photovoltaic power generation glass panel (2); An extended groove (9) is provided on the rear side of the aluminum alloy window frame (1) and corresponds to the slot (5); And a mechanism for fixing and squeezing the card block (6) located inside the expansion groove (9).

2. The novel green aluminum alloy energy-saving door and window according to claim 1, characterized in that, The extrusion mechanism includes a slide groove (10) opened on one side of the inner wall of the extended groove (9), a slider (11) slidably engaged in the slide groove (10), a stop block (12) fixedly installed on one side of the slider (11), a hand screw (13) threaded through and connected to the stop block (12), and an extrusion block (14) fixedly connected to one end of the hand screw (13) and in contact with the stop block (6).

3. The novel green aluminum alloy energy-saving door and window according to claim 1, characterized in that, The aluminum alloy window frame (1) is equipped with a sunshade mechanism to prevent sunlight from shining into the room.

4. A novel green aluminum alloy energy-saving door and window according to claim 3, characterized in that, The sunshade mechanism includes two fixed blocks (15) symmetrically fixedly installed on the rear side of the aluminum alloy window frame (1), a retractable shaft (16) rotatably connected between the fixed blocks (15), a sunshade curtain (17) fixedly wound on the retractable shaft (16), a drive component provided on the aluminum alloy window frame (1), and a counterweight component provided at the bottom of the sunshade curtain (17) for unfolding it.

5. A novel green aluminum alloy energy-saving door and window according to claim 4, characterized in that, The drive component includes a gear one (18) fixedly connected to one end of the take-up shaft (16), a protective shell (19) detachably installed on the rear side of the aluminum alloy window frame (1), a motor (20) fixedly installed on one side of the inner wall of the protective shell (19), and a gear two (21) fixedly connected to the output end of the motor (20) and meshing with the gear one (18).

6. A novel green aluminum alloy energy-saving door and window according to claim 4, characterized in that, The counterweight component includes two guide rails (22) fixedly installed on one side of the movable inner frame (7), a movable block (23) slidably engaged on the surface of the guide rails (22), and a movable plate (24) fixedly installed between the movable blocks (23). The bottom end of the sunshade (17) is connected to the movable plate (24).

7. A novel green aluminum alloy energy-saving door and window according to claim 1, characterized in that, The bottom of the rear side of the aluminum alloy window frame (1) has an inner cavity, and a storage battery (25) is fixedly installed inside the inner cavity. A charging module (26) and a discharging module (27) are respectively installed inside the inner cavity and on both sides of the storage battery (25). A maintenance plate (28) corresponding to the inner cavity is detachably installed on the rear side of the aluminum alloy window frame (1).

8. A novel green aluminum alloy energy-saving door and window according to claim 6, characterized in that, A U-shaped plate (29) is fixedly installed on the rear side of the aluminum alloy window frame (1), and a rubber pad (30) that contacts the sunshade curtain (17) is fixedly installed on the inner wall of the U-shaped plate (29). A cleaning brush (31) that contacts the photovoltaic power generation glass plate (2) is fixedly installed on one side of the movable plate (24).

Citation Information

Patent Citations

  • Green energy-saving aluminum alloy door and window

    CN209603772U