Aluminum-plastic-aluminum triple-sealing energy-saving door and window

By integrating solar panels, motor systems and cleaning devices in aluminum-plastic and aluminum three-sealed energy-saving doors and windows, the problem of insulating glass cleaning is solved, automatic cleaning and self-power supply are achieved, and light transmission and energy utilization efficiency is improved.

CN223135974UActive Publication Date: 2025-07-22TIANJIN YONGWANG BUILDING DECORATION MATERIALS CO LTD
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Patent Information

Application Number
CN202422208629.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-07-22
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The external surface of the existing aluminum-plastic and aluminum three-sealed energy-saving doors and windows is difficult to clean, affecting light transmission, and lacks self-powered cleaning and solar energy utilization functions.

Method used

Aluminum-plastic and aluminum three-seal energy-saving doors and windows are designed, integrating solar panels, controllers, batteries, inverters and motor systems. The hollow glass surface is cleaned by the motor drive screws and brush plates, and the solar panels are self-powered to achieve automatic cleaning and solar energy utilization.

Benefits of technology

Automatic cleaning of insulated glass is achieved, ensuring the light transmission effect, and at the same time, economic costs are reduced and energy utilization efficiency is improved through self-powered systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aluminum-plastic-aluminum three-seal energy-saving door and window, and relates to the technical field of doors and windows. Comprising a window frame, a top plate is fixedly arranged on the top of one side of the window frame, a controller, a storage battery and an inverter are sequentially arranged in the top plate from left to right, fixing pieces are fixedly arranged on the front portion and the rear portion of one side of the top of the top plate, and a solar panel is movably arranged between the fixing pieces; first connecting pieces are fixedly arranged on the front portion and the rear portion of one side of the bottom of the solar panel, and connecting rods are movably arranged outside the first connecting pieces. By arranging a second motor, a second screw rod, a nut seat and a brush plate, the second motor is started, the second screw rod rotates along with rotation of an output shaft of the second motor, and the nut seat drives the brush plate to move while horizontally moving, so that the outer surface of the hollow glass is cleaned, and the situation that normal transmission of light is affected by excessive pollutants is avoided; and the indoor lighting effect is ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of doors and windows, and particularly relates to an aluminum-plastic-aluminum triple-sealed energy-saving door and window. Background Technique

[0002] The aluminum-plastic-aluminum triple-sealed energy-saving door and window is made of composite materials such as aluminum alloy and plastic, and three seals are designed on the door and window structure to achieve better heat preservation, sound insulation, waterproof and energy-saving effects. This kind of door and window not only inherits the advantages of high strength, corrosion resistance, easy processing, etc. of aluminum alloy, but also incorporates the heat insulation performance of plastic profiles, forming a unique composite profile structure.

[0003] Chinese Utility Model Patent CN221373372U discloses a new type of multi-chamber sealed aluminum-plastic-aluminum door and window, including a window frame. One side of the window frame is fixedly connected with a hinge, the hinge is fixedly connected with a window sash frame, one side of the window sash frame is fixedly connected with insulating glass, a pressure rubber strip is embedded between the insulating glass and the window sash frame, the pressure rubber strip is fixedly connected with the window sash frame, and a rotating handle is fixedly connected to one side of the window sash frame. The advantages of the present utility model are as follows: the device has multiple chambers, providing good heat preservation and heat insulation effects. The window frame and the window sash frame are made of aluminum materials and are strengthened, having strength and stability. The corner joints are riveted at four corners, making the window frame structure more firm and reliable. The insulating glass adopts a three-layer structure, providing heat insulation and sound insulation effects, and at the same time having good heat preservation performance. This new type of multi-chamber sealed aluminum-plastic-aluminum door and window is suitable for places such as residences and offices, and has the advantages of heat insulation, heat preservation and high strength.

[0004] In order to provide sufficient natural light, the above-mentioned new type of multi-chamber sealed aluminum-plastic-aluminum door and window is provided with insulating glass inside the window sash frame. However, the above-mentioned new type of multi-chamber sealed aluminum-plastic-aluminum door and window does not have the function of cleaning the insulating glass. The outer surface of the glass will accumulate pollutants such as dust, dirt, and bird droppings after being exposed to wind, sun and rain for a long time, hindering the normal transmission of light. Since the door and window is installed on the wall, the outer surface of the glass is difficult to directly touch, and it is relatively difficult to clean, which is not conducive to the indoor lighting effect. Content of the Utility Model

[0005] The utility model provides an aluminum-plastic-aluminum triple-sealed energy-saving door and window to solve the problems in the background technique.

[0006] To achieve the above object, the present utility model provides the following technical solutions: An aluminum-plastic-aluminum triple-sealed energy-saving door and window, comprising a window frame. At the top of one side of the window frame, a top plate is fixedly arranged. Inside the top plate, a controller, a storage battery, and an inverter are sequentially arranged from left to right. At the front and rear of one side of the top of the top plate, fixing members are fixedly arranged. Between the fixing members, a solar panel is movably arranged. At the front and rear of one side of the bottom of the solar panel, first connecting members are fixedly arranged. An adjusting rod is movably arranged outside the first connecting members. One end of the adjusting rod is movably arranged with a second connecting member. At the bottom of the second connecting member, a moving plate is fixedly arranged. Inside the moving plate, a first screw rod is movably arranged. One end of the first screw rod is fixedly connected to the output shaft of a first motor. Inside the window frame, a window sash frame is movably arranged. Inside the window sash frame, insulating glass is fixedly arranged. At the top of the other side of the window sash frame, an installation box is fixedly arranged. Inside the installation box, a fixing plate is fixedly arranged. On one side of the fixing plate, a second motor is fixedly arranged. On the output shaft of the second motor, a second screw rod is fixedly arranged. A nut seat is movably arranged outside the second screw rod. At the bottom of the nut seat, a brush plate is fixedly arranged.

[0007] Further, a protective shell is fixedly arranged outside the first motor.

[0008] Further, the materials of the window frame and the window sash frame are both aluminum profiles.

[0009] Further, the insulating glass is triple-pane insulating glass.

[0010] Further, one side of the brush plate is in contact with one side of the insulating glass.

[0011] Further, a handle is fixedly arranged at the front of the middle of one side of the window sash frame.

[0012] Compared with the prior art, the present utility model provides an aluminum-plastic-aluminum triple-sealed energy-saving door and window, having the following beneficial effects:

[0013] 1. For this aluminum-plastic-aluminum triple-sealed energy-saving door and window, by setting the second motor, the second screw rod, the nut seat, and the brush plate, when the second motor is started, the second screw rod rotates with the rotation of the output shaft of the second motor. While the nut seat moves horizontally, it drives the brush plate to move, thereby cleaning the outer surface of the insulating glass, avoiding excessive pollutants from affecting the normal transmission of light, and ensuring the lighting effect indoors.

[0014] 2. The aluminum-plastic-aluminum triple-sealed energy-saving doors and windows are equipped with a controller, a battery, an inverter, and a solar panel. When there is sufficient sunlight, the solar panel converts solar energy into direct current electricity, which is stored in the battery under the management of the controller. When the first motor or the second motor operates, the battery releases the stored direct current electricity, which is then converted into alternating current electricity by the inverter for use by the first motor or the second motor, achieving self-sufficiency and efficient utilization of energy, facilitating resource conservation and reducing economic costs.

[0015] 3. The aluminum-plastic-aluminum triple-sealed energy-saving doors and windows are provided with a fixing member, a first connecting member, a connecting rod, a second connecting member, a moving plate, a first screw rod, and a first motor. When the first motor is started, the output shaft of the first motor drives the first screw rod to rotate, causing the moving plate to move horizontally. The connecting rod then moves accordingly, and under the coordinated action of the fixing member, the first connecting member, the connecting rod, and the second connecting member, the angle of the solar panel is adjusted to ensure that the solar panel always faces the sun, thereby maximizing the reception of solar radiation and improving energy utilization efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural view of the present utility model;

[0017] Figure 2 is a front view of the structure of the present utility model;

[0018] Figure 3 is a cross-sectional view of the structure of the present utility model;

[0019] Figure 4 is a side view of the structure of the window frame of the present utility model.

[0020] In the figure: 1, window frame; 201, top plate; 202, controller; 203, battery; 204, inverter; 205, fixing member; 206, solar panel; 207, first connecting member; 208, connecting rod; 209, second connecting member; 210, moving plate; 211, first screw rod; 212, first motor; 301, window frame; 302, insulating glass; 303, handle; 304, mounting box; 305, fixing plate; 306, second motor; 307, second screw rod; 308, nut seat; 309, brush plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.

[0022] Please refer to Figures 1-4 Figures 1-4 , the utility model discloses an aluminum-plastic-aluminum triple-sealed energy-saving window, including a window frame 1. At the top of one side of the window frame 1, a top plate 201 is fixedly arranged. Inside the top plate 201, a controller 202, a storage battery 203 and an inverter 204 are sequentially arranged from left to right. At the front and rear of one side of the top of the top plate 201, fixing parts 205 are fixedly arranged. Between the fixing parts 205, a solar panel 206 is movably arranged. At the front and rear of one side of the bottom of the solar panel 206, first connecting parts 207 are fixedly arranged. An adjusting rod 208 is movably arranged outside the first connecting part 207. One end of the adjusting rod 208 is movably arranged with a second connecting part 209. At the bottom of the second connecting part 209, a moving plate 210 is fixedly arranged. Inside the moving plate 210, a first screw rod 211 is movably arranged. One end of the first screw rod 211 is fixedly connected with the output shaft of a first motor 212. Inside the window frame 1, a window sash frame 301 is movably arranged. Inside the window sash frame 301, a hollow glass 302 is fixedly arranged. At the top of the other side of the window sash frame 301, an installation box 304 is fixedly arranged. Inside the installation box 304, a fixing plate 305 is fixedly arranged. On one side of the fixing plate 305, a second motor 306 is fixedly arranged. The output shaft of the second motor 306 is fixedly arranged with a second screw rod 307. A nut seat 308 is movably arranged outside the second screw rod 307. At the bottom of the nut seat 308, a brush plate 309 is fixedly arranged.

[0023] Specifically, a protective shell is fixedly arranged outside the first motor 212.

[0024] In this embodiment, by setting the first motor 212, the protective shell can protect the first motor 212, avoid it being eroded by rainwater, and extend the service life of the first motor 212.

[0025] Specifically, the materials of the window frame 1 and the window sash frame 301 are both aluminum profiles.

[0026] In this embodiment, by setting the window frame 1 and the window sash frame 301, the aluminum profile has a lower density, so the material itself is relatively light, but the strength is very high, with excellent bearing capacity and compressive capacity, making the window frame 1 and the window sash frame 301 reduce the overall weight while ensuring structural stability, and being convenient for installation and transportation.

[0027] Specifically, the hollow glass 302 is triple-pane hollow glass.

[0028] In this implementation scheme, by setting the insulating glass 302, the three-layer insulating glass refers to an energy-saving glass formed by separating three pieces of glass with aluminum bars or other sealing materials and creating a dry gas space in the middle, which can more effectively reduce the heat transfer between indoors and outdoors, thereby saving the use of air conditioners and heaters and reducing energy consumption.

[0029] Specifically, one side of the brush plate 309 is attached to one side of the insulating glass 302.

[0030] In this implementation scheme, by setting the insulating glass 302 and the brush plate 309, while the brush plate 309 moves with the nut seat 308, one side of the brush plate 309 will clean the pollutants on one side of the insulating glass 302, thereby improving the light transmittance of the insulating glass 302.

[0031] Specifically, a handle 303 is fixedly arranged at the front part in the middle of one side of the window sash frame 301.

[0032] In this implementation scheme, by setting the handle 303, the window can be conveniently and quickly opened or closed by using the handle 303, which provides convenience for users and improves the practicality of the doors and windows.

[0033] During use, when the light is sufficient, the solar panel 206 converts solar energy into direct current electrical energy and stores it in the battery 203 under the management of the controller 202 to supply power to the first motor 212 and the second motor 306. When the first motor 212 is started, the battery 203 will release the stored direct current electrical energy, which is then converted into alternating current electrical energy through the inverter 204 for the first motor 212 to use. The output shaft of the first motor 212 drives the first screw 211 to rotate, and the moving plate 210 thus moves along the horizontal direction. The connecting rod 208 moves accordingly, and then, under the coordinated action of the fixing member 205, the first connecting member 207, the connecting rod 208, and the second connecting member 209, the angle of the solar panel 206 is adjusted to face the sun, improving the energy utilization efficiency. When the second motor 306 is started, the battery 203 also supplies power to it. The second screw 307 rotates as the output shaft of the second motor 306 rotates, and the nut seat 308 drives the brush plate 309 to move while moving horizontally, thereby cleaning the outer surface of the insulating glass 302 and ensuring the indoor lighting effect.

[0034] In summary, for the aluminum-plastic-aluminum triple-sealed energy-saving doors and windows, by setting the second motor 306, the second screw 307, the nut seat 308 and the brush plate 309, when the second motor 306 is started, the second screw 307 rotates along with the rotation of the output shaft of the second motor 306. While the nut seat 308 moves horizontally, it drives the brush plate 309 to move, thereby cleaning the outer surface of the insulating glass 302, avoiding excessive pollutants from affecting the normal transmission of light, and ensuring the lighting effect indoors. By setting the controller 202, the storage battery 203, the inverter 204 and the solar panel 206, when there is sufficient sunlight, the solar panel 206 converts solar energy into direct current electrical energy and stores it in the storage battery 203 under the management of the controller 202. When the first motor 212 or the second motor 306 operates, the storage battery 203 releases the stored direct current electrical energy, which is then converted into alternating current electrical energy through the inverter 204 for use by the first motor 212 or the second motor 306, achieving self-sufficiency and efficient utilization of energy, being beneficial to saving resources and reducing economic costs. By setting the fixing member 205, the first connecting member 207, the connecting rod 208, the second connecting member 209, the moving plate 210, the first screw 211 and the first motor 212, when the first motor 212 is started, the output shaft of the first motor 212 drives the first screw 211 to rotate, and the moving plate 210 thus moves along the horizontal direction. The connecting rod 208 moves accordingly, and then under the cooperative action of the fixing member 205, the first connecting member 207, the connecting rod 208 and the second connecting member 209, the angle of the solar panel 206 is adjusted to ensure that the solar panel 206 always faces the sun, thereby maximizing the reception of solar radiation and improving the energy utilization efficiency.

[0035] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An aluminum-plastic-aluminum triple-sealed energy-saving door and window, comprising a window frame (1), characterized in that: On the top of one side of the window frame (1), a top plate (201) is fixedly arranged. Inside the top plate (201), a controller (202), a storage battery (203), and an inverter (204) are arranged in sequence from left to right. On the front and rear parts of one side of the top of the top plate (201), fixing members (205) are fixedly arranged. A solar panel (206) is movably arranged between the fixing members (205). On the front and rear parts of one side of the bottom of the solar panel (206), first connecting members (207) are fixedly arranged. An adjusting rod (208) is movably arranged outside the first connecting members (207). One end of the adjusting rod (208) is movably provided with a second connecting member (209). The bottom of the second connecting member (209) is fixedly provided with a moving plate (210). Inside the moving plate (210), a first screw rod (211) is movably arranged. One end of the first screw rod (211) is fixedly connected to the output shaft of a first motor (212). Inside the window frame (1), a window sash frame (301) is movably arranged. Inside the window sash frame (301), a hollow glass (302) is fixedly arranged. On the top of the other side of the window sash frame (301), a mounting box (304) is fixedly arranged. Inside the mounting box (304), a fixing plate (305) is fixedly arranged. On one side of the fixing plate (305), a second motor (306) is fixedly arranged. The output shaft of the second motor (306) is fixedly provided with a second screw rod (307). A nut seat (308) is movably arranged outside the second screw rod (307). The bottom of the nut seat (308) is fixedly provided with a brush plate (309).

2. The aluminum-plastic-aluminum triple-sealed energy-saving door and window according to claim 1, characterized in that: A protective shell is fixedly arranged outside the first motor (212).

3. The aluminum-plastic-aluminum triple-sealed energy-saving door and window according to claim 1, characterized in that: The window frame (1) and the window sash frame (301) are both made of aluminum profiles.

4. The aluminum-plastic-aluminum triple-sealed energy-saving door and window according to claim 1, characterized in that: The hollow glass (302) is triple-pane hollow glass.

5. The aluminum-plastic-aluminum triple-sealed energy-saving door and window according to claim 1, characterized in that: One side of the brush plate (309) is in contact with one side of the hollow glass (302).

6. The aluminum-plastic-aluminum triple-sealed energy-saving door and window according to claim 1, characterized in that: A handle (303) is fixedly arranged at the front part of the middle of one side of the window sash frame (301).

Citation Information

Patent Citations

  • Novel multi-cavity sealing aluminum plastic aluminum door and window

    CN221373372U