Building energy-saving broken bridge aluminum door and window with high sound insulation performance
By adding sealing and filling sound-absorbing substances in broken bridge aluminum doors and windows, and combining components such as hollow glass and sound insulation boards, the problem of poor sound insulation effect of traditional broken bridge aluminum doors and windows is solved, high sound insulation and heat insulation performance are achieved, and the normal living and working environment of people are ensured.
Patent Information
- Application Number
- CN202422587473.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-25
AI Technical Summary
Traditional broken bridge aluminum doors and windows have poor sound insulation due to the unprocessed sound in daily life, which can easily cause people to be disturbed by external sounds and affect their sleep and working conditions.
Design a high-sound insulation performance building energy-saving broken bridge aluminum doors and windows, which improve the sound insulation and thermal insulation performance of doors and windows by increasing sealing, filling sound absorption substances, and using hollow glass, sound insulation panels, sound absorption foam and heat insulation strips.
Effectively reduce the interference of external sounds on personnel, ensure the normal life and working state of personnel during sleep and work, and prevent external sounds from interfering with ideas or senses.
Smart Images

Figure CN223269884U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thermal break aluminum doors and windows for buildings, in particular to a high sound insulation performance energy-saving thermal break aluminum door and window for buildings. Background Art
[0002] Broken bridge aluminum doors and windows are a type of door and window that uses insulation strips to disconnect the aluminum alloy profile and connect the inner and outer layers of aluminum alloy with insulation material. This structure is designed to minimize heat conduction and thus improve energy efficiency. The insulation material is generally nylon or polyamide because their thermal conductivity is much lower than that of aluminum.
[0003] Traditional thermally insulated aluminum doors and windows have poor sound insulation in daily life because they do not specifically handle sound. People are easily disturbed by external sounds, which has a significant impact on them. This can easily interrupt their sleep or disturb them at work, affecting their thinking or senses, and thus affecting their daily lives and work.
[0004] Therefore, for the above-mentioned traditional thermally-insulated aluminum doors and windows, in daily life, since there is no special sound processing, the sound insulation effect of the thermally-insulated aluminum doors and windows is poor, and people are easily disturbed by external sounds, resulting in a problem that people are greatly affected. A method can be designed to increase the sound insulation effect by improving the sealing of doors and windows and filling them with sound-absorbing materials, thereby reducing the interference of external sounds on people, thereby preventing people from being interrupted by external sounds while sleeping, and preventing people from being disturbed by external sounds while working, resulting in a situation where work ideas or senses are affected, thereby ensuring that people's daily life and work can proceed normally. Utility Model Content
[0005] In order to overcome the problem that traditional thermally-insulated aluminum doors and windows have poor sound insulation effects in daily life due to the lack of special sound processing, people are easily disturbed by external sounds, resulting in greater impact on people.
[0006] The technical solution of the utility model is: a high-sound insulation performance building energy-saving thermal break aluminum door and window, comprising an inner frame, a functional component, a rotating component, a fixed component, hollow glass, sound-absorbing foam, a heat insulation strip, a sealing ring, a sound insulation board and a fixed plate; a functional component for locking the inner frame is provided on one side of the inner frame, a rotating component for assisting the rotation of the inner frame is provided on one side of the inner frame, a fixed component for fixing the rotated inner frame is provided at the lower end of the inner frame, a cavity is provided on the inner side of the inner frame, a fixing plate is provided on one side of the inner frame, a sealing ring is provided on one side of the fixing plate, hollow glass is provided on the inner side of the inner frame, a sound insulation board is provided on the inner side of the hollow glass, the sound insulation board is transparent and colorless, sound-absorbing foam is provided on the inner side of the inner frame, the sound-absorbing foam is located inside the cavity of the inner frame, a heat insulation strip is provided on the inner side of the inner frame, and the heat insulation strip is located inside the cavity of the inner frame.
[0007] Preferably, the functional component is used to lock the inner frame, thereby preventing the inner frame from loosening, the rotating component assists the inner frame in rotating, thereby facilitating the opening or closing of doors and windows, the fixing component plays a fixing role, thereby fixing the rotated inner frame, the fixing plate fixes the sealing ring, the sealing effect of the doors and windows is improved by the sealing ring, the hollow glass maintains light transmission, the sound insulation board blocks the sound effect, the sound-absorbing foam absorbs the sound, the insulation strips keep the doors and windows insulated, and the interference of external sounds on people is reduced, thereby preventing people from being interrupted by external sounds during sleep, and preventing people from being disturbed by external sounds while working, resulting in the situation that the work ideas or senses are affected, thereby ensuring that people's daily life and work can proceed normally.
[0008] Preferably, the functional component includes a handle lock and an outer frame; the handle lock is provided on one side of the inner frame, and the outer frame is provided on the outer side of the inner frame.
[0009] Preferably, the functional component further includes a fixed screen; a fixed screen is provided on the inner side of the outer window, and the fixed screen is located on one side of the inner frame.
[0010] Preferably, the rotating assembly includes a first hinge, a second hinge and a rotating shaft; a first hinge is provided on one side of the fixed plate, a second hinge is provided at the lower end of the first hinge, a rotating shaft is provided on the inner side of the first hinge, and the rotating shaft passes through the first hinge and the second hinge.
[0011] Preferably, the rotating assembly further includes a fixing cap, and the fixing cap is provided at the upper end of the rotating shaft. There are two groups of fixing caps, and the two groups of fixing caps are respectively located on both sides of the rotating shaft.
[0012] Preferably, the fixing assembly includes a first slider, a first movable frame and a fixed shaft; the first slider is provided on the inner side of the outer frame, the first movable frame is provided on the upper end of the first slider, the first slider is fixed to the first movable frame by a thread, the fixed shaft is provided on the upper end of the first movable frame, and the fixed shaft is fixed to the lower end of the inner frame.
[0013] Preferably, the fixing assembly further includes a second movable frame and a second slider; the second movable frame is provided on one side of the first movable frame, the second movable frame is located at the lower end of the fixed shaft, and the second slider is provided at the lower end of the second movable frame.
[0014] Beneficial effects of the utility model:
[0015] 1. Fix the sealing ring through the fixing plate, improve the sealing effect of doors and windows through the sealing ring, maintain light transmission through the hollow glass, block the sound effect through the sound insulation board, absorb the sound through the sound-absorbing foam, and keep the doors and windows insulated through the insulation strips, so as to reduce the interference of external sounds on people, thereby preventing people from being interrupted by external sounds during sleep, and preventing people from being disturbed by external sounds while working, resulting in the situation where the work ideas or senses are affected, thereby ensuring that people's daily life and work can proceed normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the first three-dimensional structure of a high sound insulation performance building energy-saving thermal break aluminum door and window of the utility model;
[0017] Figure 2 Shown is a schematic diagram of the second three-dimensional structure of a high sound insulation performance building energy-saving thermal break aluminum door and window of the utility model;
[0018] Figure 3 Shown is a schematic diagram of the cross-sectional three-dimensional structure of a high sound insulation performance building energy-saving thermal break aluminum door and window of the utility model;
[0019] Figure 4 Shown is a schematic diagram of the partial three-dimensional structure of a high-sound insulation building energy-saving thermal break aluminum door and window of the present utility model.
[0020] Explanation of the accompanying drawings: 1. Inner frame; 201. Handle lock; 202. Fixed screen; 203. Outer frame; 301. First hinge; 302. Second hinge; 303. Rotating shaft; 304. Fixed cap; 401. First slider; 402. First movable frame; 403. Fixed shaft; 404. Second movable frame; 405. Second slider; 501. Insulating glass; 502. Sound-absorbing foam; 503. Insulation strip; 504. Sealing ring; 505. Sound insulation board; 506. Fixed plate. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figures 1-4The utility model provides an embodiment: a high sound insulation performance building energy-saving thermal break aluminum door and window, comprising an inner frame 1, a functional component, a rotating component, a fixing component, an insulating glass 501, a sound-absorbing foam 502, a heat insulation strip 503, a sealing ring 504, a sound insulation board 505 and a fixing plate 506; a functional component for locking the inner frame 1 is provided on one side of the inner frame 1, a rotating component for assisting the rotation of the inner frame 1 is provided on one side of the inner frame 1, and a fixing plate 506 is provided at the lower end of the inner frame 1 for fixing the inner frame 1 after rotation. A fixing component is used, a cavity is opened on the inner side of the inner frame 1, a fixing plate 506 is provided on one side of the inner frame 1, a sealing ring 504 is provided on one side of the fixing plate 506, a hollow glass 501 is provided on the inner side of the inner frame 1, a sound insulation board 505 is provided on the inside of the hollow glass 501, the sound insulation board 505 is transparent and colorless, a sound-absorbing foam 502 is provided on the inside of the inner frame 1, the sound-absorbing foam 502 is located on the inner side of the cavity of the inner frame 1, a heat insulation strip 503 is provided on the inside of the inner frame 1, and the heat insulation strip 503 is located on the inner side of the cavity of the inner frame 1.
[0023] See also Figures 1-4 In this embodiment, the functional components include a handle lock 201 and an outer frame 203; a handle lock 201 is provided on one side of the inner frame 1, and an outer frame 203 is provided on the outside of the inner frame 1. When in use, the doors and windows are locked by the handle lock 201, and the doors and windows are fixed by the outer frame 203, thereby ensuring that the doors and windows can work normally; the functional components also include a fixed screen 202; a fixed screen 202 is provided on the inside of the outer window, and the fixed screen 202 is located on one side of the inner frame 1. When in use, the fixed screen 202 is used to filter and prevent mosquitoes, thereby preventing mosquitoes from entering the room through the window; the rotating component includes There are a first hinge 301, a second hinge 302 and a rotating shaft 303; the first hinge 301 is provided on one side of the fixed plate 506, the second hinge 302 is provided at the lower end of the first hinge 301, and the rotating shaft 303 is provided on the inner side of the first hinge 301. The rotating shaft 303 passes through the first hinge 301 and the second hinge 302. When in use, the inner frame 1 is driven to rotate by pulling the handle lock 201. The rotating shaft 303 is installed through the first hinge 301, and the rotation is assisted by the rotating shaft 303. The rotating shaft 303 is fixed by the second hinge 302, thereby facilitating the opening and closing of doors and windows;
[0024] The rotating assembly also includes a fixing cap 304, a fixing cap 304 is provided on the upper end of the rotating shaft 303, and the fixing cap 304 is provided with two groups, and the two groups of fixing caps 304 are located on both sides of the rotating shaft 303. When in use, the fixing cap 304 is used to fix the rotating shaft 303 to prevent the rotating shaft 303 from falling off; the fixing assembly includes a first slider 401, a first movable frame 402 and a fixed shaft 403; a first slider 401 is provided on the inner side of the outer frame 203, a first movable frame 402 is provided on the upper end of the first slider 401, the first slider 401 is fixed to the first movable frame 402 by a thread, a fixing shaft 403 is provided on the upper end of the first movable frame 402, and the fixing shaft 403 is fixed to the lower end of the inner frame 1, and the first movable frame 402 is fixed to the lower end of the inner frame 1 by the fixing shaft 403 when in use. The movable frame 402 drives the first movable frame 402 to move through the rotation of the inner frame 1, and the movement of the first movable frame 402 drives the first slider 401 to move, and a new force structure is formed by the movement of the first slider 401, thereby fixing the rotated inner frame 1; the fixed component also includes a second movable frame 404 and a second slider 405; a second movable frame 404 is provided on one side of the first movable frame 402, and the second movable frame 404 is located at the lower end of the fixed shaft 403, and a second slider 405 is provided at the lower end of the second movable frame 404. When in use, the second movable frame 404 is fixed by the fixed shaft 403, and the second slider 405 is driven by the movement of the second movable frame 404, and the new force structure is assisted by the movement of the second slider 405, thereby fixing the inner frame 1.
[0025] When working, first, the doors and windows are fixed by the outer frame 203 to ensure that the doors and windows can work normally; the mosquito net 202 is fixed to filter and prevent mosquitoes from entering the room through the window; then the sealing ring 504 is fixed by the fixing plate 506, and the sealing ring 504 improves the sealing effect of the doors and windows, the hollow glass 501 maintains light transmission, the sound insulation board 505 blocks sound, the sound-absorbing foam 502 absorbs sound, and the heat insulation strip 503 keeps the doors and windows insulated, reducing the interference of external noise to people; the doors and windows are locked by the handle lock 201;
[0026] Secondly, by pulling the handle lock 201, the inner frame 1 is driven to rotate, and the rotating shaft 303 is installed through the first hinge 301. The rotating shaft 303 assists in the rotation, and the rotating shaft 303 is fixed by the second hinge 302. The rotating shaft 303 is fixed by the fixing cap 304, so that the door and window can be opened and closed conveniently.
[0027] Finally, the first movable frame 402 is fixed by the fixed shaft 403, and the first movable frame 402 is driven to move by the rotation of the inner frame 1. The movement of the first movable frame 402 drives the first slider 401 to move, and a new force structure is formed by the movement of the first slider 401. The second movable frame 404 is fixed by the fixed shaft 403, and the second movable frame 404 drives the second slider 405 to move. The movement of the second slider 405 assists in forming a new force structure, thereby fixing the inner frame 1.
[0028] Through the above steps, the functional components are used to lock the inner frame 1, thereby preventing the inner frame 1 from loosening. The rotating components are used to assist the inner frame 1 in rotating, thereby facilitating the opening or closing of doors and windows. The fixing components are used to fix the rotated inner frame 1, the fixing plate 506 is used to fix the sealing ring 504, the sealing ring 504 is used to improve the sealing effect of doors and windows, the hollow glass 501 is used to maintain light transmission, the sound insulation board 505 is used to block sound, the sound-absorbing foam 502 is used to absorb sound, and the insulation strip 503 is used to keep the doors and windows insulated, thereby reducing the interference of external sounds on people, thereby preventing people from being interrupted by external sounds during sleep, and preventing people from being disturbed by external sounds while working, resulting in the situation where the work ideas or senses are affected, thereby ensuring that people's daily life and work can proceed normally.
[0029] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A high-sound-insulation energy-saving thermal break aluminum door and window, comprising an inner frame (1); characterized in that: The invention also includes a functional component, a rotating component, a fixing component, a hollow glass (501), a sound-absorbing foam (502), a heat-insulating strip (503), a sealing ring (504), a sound-isolating board (505) and a fixing board (506); a functional component for locking the inner frame (1) is provided on one side of the inner frame (1); a rotating component for assisting the inner frame (1) in rotating is provided on one side of the inner frame (1); a fixing component for fixing the inner frame (1) after rotating is provided at the lower end of the inner frame (1); a cavity is provided on the inner side of the inner frame (1); and the inner frame ( 1) A fixing plate (506) is provided on one side, a sealing ring (504) is provided on one side of the fixing plate (506), a hollow glass (501) is provided on the inner side of the inner frame (1), a sound insulation board (505) is provided on the inner side of the hollow glass (501), the sound insulation board (505) is transparent and colorless, a sound-absorbing foam (502) is provided on the inner side of the inner frame (1), the sound-absorbing foam (502) is located on the inner side of the cavity of the inner frame (1), a heat insulation strip (503) is provided on the inner side of the inner frame (1), and the heat insulation strip (503) is located on the inner side of the cavity of the inner frame (1).
2. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 1 is characterized by: The functional component comprises a handle lock (201) and an outer frame (203); the handle lock (201) is provided on one side of the inner frame (1), and the outer frame (203) is provided on the outer side of the inner frame (1).
3. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 2 is characterized by: The functional component further comprises a fixed screen window (202); the fixed screen window (202) is arranged on the inner side of the outer window, and the fixed screen window (202) is located on one side of the inner frame (1).
4. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 2 is characterized by: The rotating assembly includes a first hinge (301), a second hinge (302) and a rotating shaft (303); the first hinge (301) is provided on one side of the fixed plate (506), the second hinge (302) is provided at the lower end of the first hinge (301), and the rotating shaft (303) is provided on the inner side of the first hinge (301), and the rotating shaft (303) passes through the first hinge (301) and the second hinge (302).
5. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 4 is characterized by: The rotating assembly further comprises a fixing cap (304), the fixing cap (304) being provided at the upper end of the rotating shaft (303), and two groups of fixing caps (304) being provided, the two groups of fixing caps (304) being respectively located on both sides of the rotating shaft (303).
6. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 4 is characterized by: The fixing assembly comprises a first slider (401), a first movable frame (402) and a fixed shaft (403); the first slider (401) is provided on the inner side of the outer frame (203); the first movable frame (402) is provided on the upper end of the first slider (401); the first slider (401) is fixed to the first movable frame (402) via a thread; the fixed shaft (403) is provided on the upper end of the first movable frame (402); and the fixed shaft (403) is fixed to the lower end of the inner frame (1).
7. The high sound insulation performance building energy-saving thermal break aluminum door and window according to claim 6 is characterized by: The fixed assembly further comprises a second movable frame (404) and a second slider (405); the second movable frame (404) is provided on one side of the first movable frame (402), the second movable frame (404) is located at the lower end of the fixed shaft (403), and the second slider (405) is provided at the lower end of the second movable frame (404).