Efficient sound insulation and heat insulation indoor window structure
The window frame structure driven by electric push rods and servo motors, combined with low-e double-layer insulating glass and thermally insulated aluminum profiles, solves the problem of indoor window structure's isolation and ventilation of external noise and heat, achieving efficient sound insulation, heat insulation and convenient ventilation effects.
Patent Information
- Application Number
- CN202422528972.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-19
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-19
AI Technical Summary
The existing indoor window structure is not convenient for excellent isolation of external noise and heat, affecting the sound insulation performance and heat conduction and heat transfer capabilities. At the same time, it is not convenient to open and close over a large range, affecting the ventilation effect.
The window frame structure is driven by an electric push rod and a servo motor, combined with low-e double-layer insulating glass and thermally insulated aluminum profiles. The electric push rod drives the window frame to rotate to achieve isolation, and the servo motor drives the belt to move the window frame, making it easy to open and close the window.
It achieves effective isolation from external noise and heat, improves sound insulation and heat insulation performance, and facilitates large-scale opening and closing, improving ventilation effects.
Smart Images

Figure CN223446890U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to indoor window structure technical field, concretely is efficient sound insulation and heat insulation indoor window structure. BACKGROUND
[0002] Door and window are one of important outer envelope structures of building, play the function such as sheltering from wind and rain, heat insulation, sound insulation, daylighting and ventilation, and door and window are widely used product, its unique advantage determines that it has broad market prospect, along with the continuous development of economy and the continuous improvement of people's living standards, the structure of window is also increasingly complex to satisfy higher requirement, the requirement of door and window in decoration is also higher and higher, people often pay more attention to the practicability and sound insulation and heat insulation performance of window.
[0003] Such as the authorized announcement no. The sound insulation and heat insulation multilayer glass window structure of CN206397380U is disclosed, including window frame, interlayer glass and liquid medium, the interlayer glass is formed at least one accommodating cavity by multiple glass and corresponding number of spacer, the liquid medium is filled in the accommodating cavity, the accommodating cavity is embedded in the recess;
[0004] Although it can improve the strength of interlayer glass, improve the anti-theft, wind resistance and explosion-proof effect of glass window, and improve the sound insulation and heat insulation effect of room, but it does not solve the problem that the existing indoor window structure is not conducive to excellent isolation of external noise and heat when in use, which affects the sound insulation performance of indoor window structure, affects the heat conduction and heat transfer capacity of indoor window structure, is not convenient for large-scale opening and closing to ventilate indoor air, and affects the ventilation effect of indoor window structure. UTILITY MODEL CONTENTS
[0005] The utility model discloses a high -efficient sound insulation and heat insulation indoor window structure to solve the problem that indoor window structure is not convenient for excellent isolation of external noise and heat in the above background art, which affects the sound insulation performance of indoor window structure, affects the heat conduction and heat transfer capacity of indoor window structure, is not convenient for large-scale opening and closing to ventilate indoor air, and affects the ventilation effect of indoor window structure.
[0006] In order to achieve the above object, the utility model provides the following technical scheme: The utility model provides a high -efficient sound -insulation heat -proof indoor window structure, including first window frame and first window frame, the first window frame is provided first window frame on the outer wall, the inside of first window frame is equipped with second window frame, the inside of first window frame of second window frame one side is installed with first glass, the inside of second window frame is provided with second window frame, the inside of second window frame one side of second window frame is provided with mobile window frame, and the inside of second window frame, mobile window frame is installed with second glass, the outer wall of first window frame one side of first window frame is movably installed with electric push rod, the outer wall of first window frame one side of electric push rod is movably installed with rotating shaft, the surface of rotating shaft is sleeved with connecting sleeve, the outer wall of connecting sleeve is installed with connecting bent arm, the end away from connecting sleeve of connecting bent arm is installed with movable shaft, and connecting bent arm is movably connected with electric push rod through movable shaft, the surface of rotating shaft one side of connecting sleeve is installed with movable bent arm, the outer wall of first window frame one side of movable bent arm is installed with connecting seat, the outer wall of connecting seat is installed with first ball head, the end close to first ball head of movable bent arm is installed with first ball sleeve, and first ball head is movably connected with first ball sleeve.
[0007] Preferably, the outer wall of the first clamping arm on one side of the electric push rod is provided with an upper ball head, and the outer wall of the first clamping arm on one side of the upper ball head is provided with a limiting arm.
[0008] Preferably, the end close to the upper ball head of the limiting arm is provided with an upper ball sleeve, and the upper ball sleeve is movably connected with the upper ball head.
[0009] Preferably, the outer wall of the first window frame on one side of the limiting arm is provided with a second clamping arm, the outer wall of the second clamping arm is provided with a lower ball head, the bottom end of the limiting arm on one side of the lower ball head is provided with a lower ball sleeve, and the lower ball head is movably connected with the lower ball sleeve.
[0010] Preferably, the outer wall of the second window frame is provided with a servo motor, the output end of the servo motor is provided with a driving wheel, the top end of the second window frame on one side of the driving wheel is movably provided with a supporting shaft, and the top end of the supporting shaft is sleeved with a driven wheel.
[0011] Preferably, the surface of the driving wheel is provided with a belt, and the belt extends to the surface of the driven wheel, the surface of the belt is provided with a movable arm, the movable arm is connected with the movable window frame, and the movable arm is movably connected with the second window frame.
[0012] Preferably, the outer wall of the first window frame is provided with a control panel, and the output end of the control panel is electrically connected with the input end of the electric push rod and the servo motor.
[0013] Preferably, the first glass, the second glass are low-e double-layer hollow glass, filled with argon gas, the material of the first window frame, the second window frame, the movable window frame is broken bridge aluminum profile, and the first window frame and the first glass, the second window frame, the movable window frame and the second glass are sealed by integral type rubber strip.
[0014] Compared with the prior art, the indoor window structure has the advantages that: the indoor window structure can not only realize excellent isolation of external noise and heat, improve the sound insulation performance of the indoor window structure, and reduce the heat conduction and heat transfer capacity of the indoor window structure, but also facilitate large-scale opening and closing for ventilation of indoor air, and improve the ventilation effect of the indoor window structure.
[0015] (1) The first window frame is integrally installed on the indoor wall hole, the connecting elbow is driven to rotate by the electric push rod through the movable shaft, the connecting sleeve is driven to rotate by the connecting elbow, the rotating shaft is driven to rotate by the connecting sleeve, the movable elbow is driven to rotate by the rotating shaft, the first window frame is integrally driven to rotate by the movable elbow through the connecting seat, and the rotating angle of the first window frame is limited and supported by the limiting arm through the second clamping arm, so that the first window frame is integrally closed on the surface of the first window frame, the first glass and the second glass are convenient for isolating external noise and heat, the argon gas filled in the first glass and the second glass is an inert gas, the heat conduction performance is low, the heat insulation performance of the hollow glass is greatly improved, the conduction heat loss is reduced, external noise can be isolated, the material of the first window frame and the second window frame, the movable window frame is broken bridge aluminum material, the heat insulation performance is greatly better than that of platform aluminum alloy material, the indoor window structure is conveniently opened and closed in a large range, the ventilation is facilitated, the isolation of external noise and heat is facilitated, the sound insulation performance of the indoor window structure is improved, and the heat conduction and heat transfer capacity of the indoor window structure is reduced.
[0016] (2) The movable window frame is driven to move by the activity arm, the movable window frame drives the second glass to open in the second window frame, and the indoor air is ventilated, when the first window frame is integrally opened for ventilation, the connecting elbow is reversely driven to rotate by the electric push rod through the movable shaft, the rotating shaft is reversely driven to rotate by the connecting elbow through the connecting sleeve, and the first window frame is integrally opened by the movable elbow, so that the indoor air is ventilated and replaced, the indoor window structure is conveniently opened in a movable mode, the window is opened twice to ventilate, the indoor air is ventilated and replaced, and the convenience of opening and closing of the indoor window structure is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0018] Figure 2 is a three-dimensional structure schematic diagram of the rotating shaft of the utility model;
[0019] Figure 3 is a front view structure schematic diagram of the utility model;
[0020] Figure 4 is a Figure 2 is an enlarged structure schematic diagram of A in the middle;
[0021] Figure 5 is a local partial exploded structure schematic diagram of the upper ball head, the upper ball sleeve, the lower ball head and the lower ball sleeve of the utility model.
[0022] In the figure: 1, first window frame; 2, first window frame; 3, first glass; 4, second window frame; 5, second window frame; 6, moving window frame; 7, electric push rod; 8, connecting bent arm; 9, movable shaft; 10, connecting sleeve; 11, rotating shaft; 12, movable bent arm; 13, connecting seat; 14, first ball head; 15, limiting arm; 16, first clamping arm; 17, upper ball sleeve; 18, upper ball head; 19, second clamping arm; 20, lower ball head; 21, lower ball sleeve; 22, servo motor; 23, driving wheel; 24, belt; 25, supporting shaft; 26, driven wheel; 27, movable arm; 28, first ball sleeve; 29, control panel; 30, second glass. DETAILED DESCRIPTION
[0023] In order to further illustrate the technical means and effects adopted by the utility model to achieve the predetermined utility model purposes, the specific embodiments, structures, features and effects according to the utility model are described in detail as follows in combination with the drawings and preferred embodiments.
[0024] Please refer to Figures 1-5The utility model provides an embodiment: high -efficient sound -insulation heat -proof indoor window structure, including first window frame 1 and first sash 2, the first window frame 1 is provided first sash 2 on the outer wall, the inside of first sash 2 is equipped with second window frame 4, the inside of first sash 2 of second window frame 4 one side is installed with first glass 3 symmetrically, the inside of second window frame 4 is provided with second sash 5, and the inside of second sash 5 of second window frame 4 is provided with movable sash 6, and the inside of second sash 5, movable sash 6 all is installed with second glass 30, and the outer wall of first window frame 1 of first sash 2 one side is movably installed with electric push rod 7, and electric push rod 7 plays the role of power output, and the outer wall of first window frame 1 of electric push rod 7 one side is movably installed with rotating shaft 11, and the surface of rotating shaft 11 is sleeved with connecting sleeve 10, and the outer wall of connecting sleeve 10 is installed with connecting bent arm 8, and the end of connecting bent arm 8 away from connecting sleeve 10 is installed with movable shaft 9, and connecting bent arm 8 is movably connected with electric push rod 7 through movable shaft 9, and the surface of rotating shaft 11 of connecting sleeve 10 one side is installed with movable bent arm 12 symmetrically, and the outer wall of first window frame 1 of movable bent arm 12 one side all is installed with connecting seat 13, and the outer wall of connecting seat 13 all is installed with first ball head 14, and the end of movable bent arm 12 close to first ball head 14 all is installed with first ball sleeve 28, and first ball head 14 all is movably connected with first ball sleeve 28, and the outer wall of first window frame 1 of electric push rod 7 one side is installed with first clamping arm 16, and the outer wall of first clamping arm 16 is installed with upper ball head 18, and the outer wall of first clamping arm 16 of upper ball head 18 one side is provided with limit arm 15, and the end of limit arm 15 close to upper ball head 18 is installed with upper ball sleeve 17, and upper ball sleeve 17 is movably connected with upper ball head 18, and the outer wall of first window frame 2 of limit arm 15 one side is installed with second clamping arm 19, and the outer wall of second clamping arm 19 is installed with lower ball head 20, and the bottom end of limit arm 15 of lower ball head 20 one side is installed with lower ball sleeve 21, and lower ball head 20 is movably connected with lower ball sleeve 21, and first glass 3, second glass 30 are low -e double -layer hollow glass, and fill with argon in the inside, and the material of first sash 2, second sash 5, movable sash 6 is bridge -breaking aluminium profile, and first sash 2 and first glass 3, second sash 5, movable sash 6 and second glass 30 adopt integral type adhesive strip sealing;
[0025] In use, the external power supply, first by the first window frame 1 as a whole installed in the indoor wall hole, by operating the control panel 29 open electric push rod 7, by electric push rod 7 through the activity axis 9 drive connection elbow 8 rotation, by the connection elbow 8 drive connecting sleeve 10 rotation, in the rotating shaft 11 and the first window frame 1 under the support of movable support, by connecting sleeve 10 drive rotating shaft 11 rotation, by rotating shaft 11 drive movable elbow 12 rotation, in the support of connecting seat 13, in the first ball head 14 and the first ball sleeve 28 under the support of movable support, by movable elbow 12 through the connecting seat 13 drive first window frame 2 as a whole rotation, in the upper ball sleeve 17 and the upper ball head 18 under the support of movable support, in the support of the first clamping arm 16, in the lower ball head 20 and the lower ball sleeve 21 under the support of movable support, by limiting arm 15 through the second clamping arm 19 to the first window frame 2 rotation angle limiting support, to make the first window frame 2 as a whole close in the surface of the first window frame 1, to facilitate the first glass 3 and the second glass 30 to the outside noise and heat isolation, the first glass 3 and the second glass 30 filled with argon is a kind of inert gas, low thermal conductivity, greatly improve the heat insulation performance of hollow glass and reduce the conduction heat loss, also can isolate the external noise, the material of first window frame 2 and second window frame 5, moving window frame 6 is broken bridge aluminum material, the heat insulation performance is greatly superior to platform aluminum alloy material, realizes the indoor window structure convenient wide open and close, facilitates the excellent ventilation, facilitates the outside noise and heat isolation, improves the sound insulation performance of indoor window structure, reduces the heat conduction ability of indoor window structure;
[0026] The outer wall of the second window frame 4 is provided with a servo motor 22, the servo motor 22 serves as a power output, the output end of the servo motor 22 is provided with a driving wheel 23, one side of the driving wheel 23 is movably provided with a supporting shaft 25 at the top end of the second window frame 4, the top end of the supporting shaft 25 is sleeved with a driven wheel 26, the surface of the driving wheel 23 is provided with a belt 24, and the belt 24 extends to the surface of the driven wheel 26, the surface of the belt 24 is provided with a movable arm 27, the movable arm 27 is connected with the moving window frame 6, and the movable arm 27 is movably connected with the second window frame 4, the outer wall of the first window frame 1 is provided with a control panel 29, the output end of the control panel 29 is electrically connected with the input end of the electric push rod 7 and the servo motor 22;
[0027] When in use, when it is needed to open the window for ventilation, the servo motor 22 is opened by operating the control panel 29, under the support of the second window frame 4, the driving wheel 23 is driven to rotate by the servo motor 22, under the movable support of the support shaft 25, under the cooperation of the driven wheel 26, the belt 24 is moved by the driving wheel 23 and the driven wheel 26, the movable arm 27 is moved by the belt 24, the moving window frame 6 is moved by the movable arm 27, the moving window frame 6 is driven to open the second glass 30 in the inside of the second window frame 4, to facilitate the ventilation, when it is needed to open the first window frame 2 as a whole for ventilation, the electric push rod 7 is opened reversely by operating the control panel 29, the connecting bent arm 8 is driven to rotate reversely by the electric push rod 7 through the movable shaft 9, the rotating shaft 11 is driven to rotate reversely by the connecting sleeve 10 through the connecting bent arm 8, the first window frame 2 is opened as a whole by the movable bent arm 12 under the support of the movable bent arm 12 and the limiting support of the limiting arm 15, to facilitate the ventilation and replacement of the indoor air, the indoor window structure is conveniently opened, the secondary opening of the window of different sizes for ventilation is facilitated, the ventilation and replacement of the indoor air is facilitated, and the convenience of opening and closing of the indoor window structure is improved.
[0028] Working principle: when in use, the power supply is connected, first, the electric push rod 7 drives the connecting bent arm 8 to rotate through the movable shaft 9, the connecting sleeve 10 is driven to rotate by the connecting bent arm 8, the rotating shaft 11 is driven to rotate by the connecting sleeve 10, the movable bent arm 12 is driven to rotate by the rotating shaft 11, the first window frame 2 is driven to rotate as a whole by the movable bent arm 12 through the connecting seat 13, the rotating angle of the first window frame 2 is limited and supported by the limiting arm 15 through the second clamping arm 19, so that the first window frame 2 is closed as a whole on the surface of the first window frame 1, to facilitate the isolation of the noise and heat outside by the first glass 3 and the second glass 30, the argon gas filled in the first glass 3 and the second glass 30 is an inert gas, the materials of the first window frame 2, the second window frame 5 and the moving window frame 6 are broken bridge aluminum materials, the driving wheel 23 is driven to rotate by the servo motor 22, the belt 24 is moved by the driving wheel 23 and the driven wheel 26, the movable arm 27 is moved by the belt 24, the moving window frame 6 is moved by the movable arm 27, to facilitate the opening of the second glass 30 in the inside of the second window frame 4 by the moving window frame 6, to facilitate the ventilation, when it is needed to open the first window frame 2 as a whole for ventilation, the connecting bent arm 8 is driven to rotate reversely by the electric push rod 7 through the movable shaft 9, the rotating shaft 11 is driven to rotate reversely by the connecting sleeve 10 through the connecting bent arm 8, the first window frame 2 is opened as a whole by the movable bent arm 12 under the support of the movable bent arm 12 and the limiting support of the limiting arm 15, to facilitate the ventilation and replacement of the indoor air, to complete the use of the indoor window structure.
[0029] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in any form. Although the present application has been disclosed with preferred embodiments, it is not intended to limit the present application. Any person skilled in the art can make minor changes or modifications to the disclosed technical content, or make equivalent embodiments with equivalent changes, without departing from the technical solution of the present application. Any modification, equivalent change or modification of the above embodiments, which does not depart from the technical solution of the present application, is still within the scope of the technical solution of the present application.
Claims
1. A high-efficiency sound-insulating and heat-insulating indoor window structure, comprising a first window frame (1) and a first window frame (2), characterized in that: A first window frame (2) is provided on the outer wall of the first window frame (1), a second window frame (4) is installed inside the first window frame (2), a first glass (3) is symmetrically installed inside the first window frame (2) on one side of the second window frame (4), a second window frame (5) is provided inside the second window frame (4), a movable window frame (6) is provided inside the second window frame (4) on one side of the second window frame (5), and a second glass (30) is installed inside both the second window frame (5) and the movable window frame (6), an electric push rod (7) is movably installed on the outer wall of the first window frame (1) on one side of the first window frame (2), a rotating shaft (11) is movably installed on the outer wall of the first window frame (1) on one side of the electric push rod (7), and a surface sleeve of the rotating shaft (11) is provided. A connecting sleeve (10) is provided, a connecting arm (8) is provided on the outer wall of the connecting sleeve (10), a movable shaft (9) is provided on one end of the connecting arm (8) away from the connecting sleeve (10), and the connecting arm (8) is movably connected to the electric push rod (7) through the movable shaft (9), a movable arm (12) is symmetrically provided on the surface of the rotating shaft (11) on one side of the connecting sleeve (10), a connecting seat (13) is provided on the outer wall of the first window frame (1) on one side of the movable arm (12), a first ball head (14) is provided on the outer wall of the connecting seat (13), a first ball sleeve (28) is provided on one end of the movable arm (12) close to the first ball head (14), and the first ball head (14) is movably connected to the first ball sleeve (28).
2. The high-efficiency sound and heat insulation interior window structure according to claim 1, characterized in that: A first clamping arm (16) is mounted on the outer wall of the first window frame (1) on one side of the electric push rod (7), an upper ball head (18) is mounted on the outer wall of the first clamping arm (16), and a limiting arm (15) is provided on the outer wall of the first clamping arm (16) on one side of the upper ball head (18).
3. The high-efficiency sound and heat insulation interior window structure according to claim 2, characterized in that: An upper ball sleeve (17) is installed at one end of the limiting arm (15) close to the upper ball head (18), and the upper ball sleeve (17) is movably connected to the upper ball head (18).
4. The high-efficiency sound and heat insulation interior window structure according to claim 2, characterized in that: A second clamping arm (19) is installed on the outer wall of the first window frame (2) on one side of the limiting arm (15), a lower ball head (20) is installed on the outer wall of the second clamping arm (19), a lower ball sleeve (21) is installed on the bottom end of the limiting arm (15) on one side of the lower ball head (20), and the lower ball head (20) is movably connected to the lower ball sleeve (21).
5. The high-efficiency sound and heat insulation interior window structure according to claim 1, characterized in that: A servo motor (22) is mounted on the outer wall of the second window frame (4); a driving wheel (23) is mounted on the output end of the servo motor (22); a support shaft (25) is movably mounted on the top end of the second window frame (4) on one side of the driving wheel (23); and a driven wheel (26) is sleeved on the top end of the support shaft (25).
6. The high-efficiency sound and heat insulation interior window structure according to claim 5, characterized in that: A belt (24) is provided on the surface of the driving wheel (23), and the belt (24) extends to the surface of the driven wheel (26). A movable arm (27) is installed on the surface of the belt (24), and the movable arm (27) is connected to the movable window frame (6), and the movable arm (27) is movably connected to the second window frame (4).
7. The high-efficiency sound and heat insulation interior window structure according to claim 5, characterized in that: A control panel (29) is installed on the outer wall of the first window frame (1), and the output end of the control panel (29) is electrically connected to the input end of the electric push rod (7) and the servo motor (22).
8. The high-efficiency sound and heat insulation interior window structure according to claim 1, characterized in that: The first glass (3) and the second glass (30) are low-e double-layer insulating glass filled with argon gas; the first window frame (2), the second window frame (5), and the movable window frame (6) are made of thermally-insulated aluminum profiles; and the first window frame (2) and the first glass (3), and the second window frame (5), the movable window frame (6) and the second glass (30) are sealed with an integrated rubber strip.
Citation Information
Patent Citations
Soundproof and heat resistant's compound layer glass window structure
CN206397380U