Energy-saving and environment-friendly soundproof aluminum alloy door and window

By combining inner sealing strips, outer sealing strips, and sealing auxiliary components, the problem of easy damage to aluminum alloy door and window sealing strips is solved, achieving continuous high-efficiency sealing and sound insulation effects, and is suitable for active compensation and reminder maintenance in smart home systems.

CN117948027BActive Publication Date: 2026-04-10JIANGSU HAIYING DERATU ENERGY SAVING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGSU HAIYING DERATU ENERGY SAVING TECH CO LTD
Filing Date
2023-12-19
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing aluminum alloy doors and windows are prone to damage to their sealing strips during use, resulting in reduced sealing and sound insulation performance, and lack of effective protective measures.

Method used

It adopts a combination design of inner sealing strip, outer sealing strip and sealing auxiliary components, including elastic cavity sealing strip and flexible supplementary strip, to achieve double sealing through elastic cooperation, protect the sealing strip and compensate for damage.

Benefits of technology

It improves the sealing and sound insulation of aluminum alloy doors and windows, extends the service life of sealing strips, reduces wear, and is suitable for smart home systems to provide proactive compensation and reminder maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an energy-saving environment-friendly sound-insulation aluminum alloy door and window applied to the field of doors and windows, which comprises a window frame and a window sash hinged at the front end of the window frame, the front end of the window frame is provided with a window frame inner cover and a frame outer cover located at the front side of the window frame inner cover, the rear end of the window sash is provided with a window sash inner cover and a window sash outer cover located at the rear side of the window sash inner cover, the cooperation of the above-mentioned inner sealing strip, outer sealing strip and sealing auxiliary assembly effectively realizes the double sealing effect of the window frame and the window sash closure, improves the sealing effect when the window frame and the window sash are closed, promotes the sound insulation, and through the elastic cooperation of the elastic cavity sealing strip, the sealing is converted from the rigid state to the flexible state, thereby reducing the application wear of the inner sealing strip and the outer sealing strip, effectively protecting the inner sealing strip and the outer sealing strip, prolonging the service life, effectively promoting the sustainability of the good sealing of the window frame and the window sash closure, and realizing the effective sound insulation effect.
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Description

TECHNICAL FIELD

[0001] The application relates to an aluminum alloy door and window, in particular to an energy-saving and environment-friendly sound-insulating aluminum alloy door and window applied to the field of doors and windows. BACKGROUND

[0002] In recent years, with the continuous development of cities, noise pollution often makes people feel unbearable, especially when people need to rest at home, if the sealing property and sound insulation property of the aluminum alloy door and window are poor, many people will feel uncomfortable, and people have certain requirements for the sealing and sound insulation property of the aluminum alloy door and window.

[0003] The aluminum alloy door and window refers to a door and window made of aluminum alloy extruded profiles as frame, vertical and fan materials, and is called aluminum door and window for short. The aluminum alloy door and window includes a door and window made of aluminum alloy as a stress rod piece (a rod piece for bearing and transmitting dead weight and load) base material and wood and plastic composite, and is called aluminum-wood composite door and window and aluminum-plastic composite door and window for short.

[0004] The sound insulation effect of the aluminum alloy door and window mainly depends on the material, structure, glass specification and sealing property in the use process, and the problem of poor sealing property caused by damage of the sealing strip directly affects the sound insulation effect of the aluminum alloy door and window.

[0005] However, the aluminum alloy door and window in the prior art cannot protect the wear of the sealing strip in the use process, so that the sealing strip is damaged due to the influence of environmental factors, and at the same time, irreversible damage is caused in the continuous opening and closing process due to the rigid contact between the sealing strip and the window frame, and the sound insulation effect of the aluminum alloy door and window is reduced. SUMMARY

[0006] In view of the above prior art, the technical problem to be solved by the application is how to protect the sealing strip of the aluminum alloy door and window and improve the sound insulation effect.

[0007] To solve the above problems, the application provides an energy-saving and environment-friendly sound-insulating aluminum alloy door and window, which comprises a window frame and a window sash hinged to the front end of the window frame, a window frame inner cover is arranged at the front end of the window frame, and a frame outer cover is arranged at the front side of the window frame inner cover, a window sash inner cover is arranged at the rear end of the window sash, and a window sash outer cover is arranged at the front side of the window sash inner cover, and the window frame inner cover is matched with the window sash inner cover, and the frame outer cover is matched with the window sash outer cover.

[0008] An inner sealing strip is arranged on the window frame inner cover, an outer sealing strip is arranged on the window sash outer cover, a window frame outer groove corresponding to the outer sealing strip is arranged on the frame outer cover, and a window sash inner groove corresponding to the inner sealing strip is arranged on the window sash inner cover.

[0009] The sealing auxiliary assembly is arranged in the window frame outer groove and the window sash inner groove, and comprises two elastic embedded groove strips embedded in the window frame outer groove and the window sash inner groove respectively.

[0010] In the energy-saving and environment-friendly soundproof aluminum alloy door and window, the double sealing effect of the window frame and the window sash is effectively realized, the inner sealing strip and the outer sealing strip are effectively protected, and the service life is prolonged.

[0011] As a supplement of the present application, the window frame inner groove is formed on the window frame inner cover, and the inner sealing strip is clamped in the window frame inner groove; and the window sash outer groove is formed on the window sash outer cover, and the outer sealing strip is clamped in the window sash outer groove.

[0012] As a supplement of the present application, when not subjected to external force, the front end of the inner sealing strip clamped in the window frame inner groove extends to the outside of the window frame inner cover, and the extension distance is 1 / 5-1 / 4 of the total thickness of the inner sealing strip; and when not subjected to external force, the rear end of the outer sealing strip clamped in the window sash outer groove extends to the outside of the window sash outer cover, and the extension distance is 1 / 5-1 / 4 of the total thickness of the outer sealing strip.

[0013] As a supplement of the present application, when not subjected to external force, the thickness of the elastic cavity sealing strip is 4 / 5-10 / 9 of the groove depth of the window frame outer groove, and the groove depth of the window frame outer groove is equal to the groove depth of the window sash inner groove.

[0014] As a further improvement of the present application, the outer side of the elastic cavity sealing strip is fixedly connected with a flexible supplementary strip in communication with the pressure cavity, and the flexible supplementary strip is in sliding fit with the inner wall of the elastic embedded groove strip.

[0015] As a supplement of the further improvement of the present application, the stiffness coefficients of the inner sealing strip and the outer sealing strip are both greater than the stiffness coefficient of the elastic cavity sealing strip, and the stiffness coefficient of the elastic cavity sealing strip is greater than the stiffness coefficient of the flexible supplementary strip.

[0016] As a further improvement of the present application, the front and rear ends of the elastic cavity sealing strip are embedded with a plurality of evenly distributed electromagnetic patches, and the input end of the electromagnetic patch is connected with a sealing control unit arranged in the intelligent door and window system.

[0017] As a further improvement of the present application, the sealing control unit comprises a window sealing processing module, the input end of the window sealing processing module is connected with a sealing parameter instruction module and a sealing state sensing module, and the output end of the window sealing processing module is connected with an auxiliary sealing module and a maintenance reminding module.

[0018] The input end of the sealing parameter instruction module is connected with the intelligent door and window system signal, the input end of the sealing state sensing module is connected with the pressure sensor arranged in the flexible supplementary strip, the output ends of the auxiliary sealing module and the maintenance reminding module are connected with the electromagnetic patch signal, and the output end of the maintenance reminding module is also connected with the intelligent door and window system signal.

[0019] In summary, through the cooperation of the inner sealing strip, the outer sealing strip and the sealing auxiliary assembly, the double sealing effect of the window frame and the window sash closure is effectively realized. The sealing effect of the window frame and the window sash closure is improved, the sound insulation is promoted, the application wear of the inner sealing strip and the outer sealing strip is reduced through the elastic cooperation of the elastic cavity sealing strip, the inner sealing strip and the outer sealing strip are effectively protected, the service life is prolonged, the continuity of the window frame and the window sash closure is effectively promoted, the effective sound insulation is realized, and when the inner sealing strip and the outer sealing strip are affected by the environment or slightly damaged, the elastic cavity sealing strip can compensate for the poor sealing to ensure the effectiveness and durability of the sealing, effectively improve the sound insulation effect of the window frame and the window sash, and promote the energy saving and environmental protection effect. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The first and second embodiments of the window frame and the window sash are used during the process of the application.

[0021] Figure 2 The sealing auxiliary assembly during the application of the first and second embodiments of the application is a partial enlarged view.

[0022] Figure 3 The cooperation of the window frame and the window sash in the open window state of the first and second embodiments of the application is an axonometric view.

[0023] Figure 4 The cooperation of the window frame and the window sash in the closed window state of the first and second embodiments of the application is an axonometric view.

[0024] Figure 5 The cooperation of the window frame and the window sash in the closed window state of the first and second embodiments of the application is a partial exploded view.

[0025] Figure 6 The cooperation of the window frame and the window sash in the open window state of the first and second embodiments of the application is a front view cross-sectional view.

[0026] Figure 7 The cooperation of the window frame and the window sash in the closed window state of the first and second embodiments of the application is a front view cross-sectional view.

[0027] Figure 8Axonometric view of the window frame and sash of the second embodiment of the present application in use in a smart door and window system;

[0028] Figure 9 Cooperation logic diagram of the window frame, sash and seal control unit of the second embodiment of the present application;

[0029] Figure 10 Partial enlarged view of the cooperation of the seal auxiliary assembly with the outer seal strip when the outer seal strip of the second embodiment of the present application is slightly damaged;

[0030] Figure 11 Partial enlarged view of the cooperation of the seal auxiliary assembly with the outer seal strip when the outer seal strip of the second embodiment of the present application is slightly damaged.

[0031] Explanation of the reference numerals in the figures:

[0032] 1 window frame, 101 inner cover of the window frame, 11 inner groove of the window frame, 102 outer cover of the window frame, 12 outer groove of the window frame, 2 sash, 201 inner cover of the sash, 21 inner groove of the sash, 202 outer cover of the sash, 22 outer groove of the sash, 3 inner seal strip, 4 outer seal strip, 5 seal auxiliary assembly, 51 elastic cavity seal strip, 52 flexible supplemental strip, 53 elastic slot-in strip, 6 electromagnetic patch, 7 smart door and window system. DETAILED DESCRIPTION

[0033] The two embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0034] First embodiment

[0035] Figures 1-7 A window frame 1 and a sash 2 hinged at the front end of the window frame 1 are shown, the front end of the window frame 1 is provided with an inner cover 101 of the window frame and an outer cover 102 of the window frame located at the front side of the inner cover 101 of the window frame, the rear end of the sash 2 is provided with an inner cover 201 of the sash and an outer cover 202 of the sash located at the front side of the inner cover 201 of the sash, and the inner cover 101 of the window frame cooperates with the inner cover 201 of the sash, and the outer cover 102 of the window frame cooperates with the outer cover 202 of the sash;

[0036] An inner seal strip 3 is arranged on the inner cover 101 of the window frame, an outer seal strip 4 is arranged on the outer cover 202 of the sash, an outer groove 12 of the window frame is formed on the outer cover 102 of the window frame at a position corresponding to the outer seal strip 4, and an inner groove 21 of the sash is formed on the inner cover 201 of the sash at a position corresponding to the inner seal strip 3;

[0037] The sealing auxiliary assembly 5 is arranged in the window frame outer groove 12 and the window sash inner groove 21, and comprises two elastic embedded groove strips 53 embedded in the window frame outer groove 12 and the window sash inner groove 21 respectively, and the two elastic embedded groove strips 53 are fixedly connected with elastic cavity sealing strips 51 at one end close to each other. Through the cooperation of the inner sealing strip 3, the outer sealing strip 4 and the sealing auxiliary assembly 5, the double sealing effect of the window frame 1 and the window sash 2 in the closed state is effectively realized. The sealing effect of the window frame 1 and the window sash 2 in the closed state is improved, the sound insulation is promoted, the sealing is changed from a rigid state to a flexible state through the elastic cooperation of the elastic cavity sealing strip 51, the application wear of the inner sealing strip 3 and the outer sealing strip 4 is reduced, the inner sealing strip 3 and the outer sealing strip 4 are protected, the service life is prolonged, the continuity of the window frame 1 and the window sash 2 in the closed and sealed state is effectively promoted, the effective sound insulation is realized, and when the inner sealing strip 3 and the outer sealing strip 4 are affected by the environment or slightly damaged, the elastic cavity sealing strip 51 can compensate for the poor sealing through the elastic effect of the elastic cavity sealing strip 51, so as to ensure the effectiveness and durability of the sealing, improve the sound insulation effect of the window frame 1 and the window sash 2, and promote the energy saving and environmental protection effect.

[0038] It should be noted that the sealing auxiliary assembly 5 is made of an integral structure, and the entire sealing auxiliary assembly 5 is directly replaced when it needs to be replaced. The sealing auxiliary assembly 5 is embedded in the window frame outer groove 12 and the window sash inner groove 21 through the elastic embedded groove strip 53, and is fixedly installed.

[0039] Figure 2 The elastic cavity sealing strip 51 is fixedly connected with a flexible supplementary strip 52 in communication with the pressure cavity, and the flexible supplementary strip 52 is in sliding cooperation with the inner wall of the elastic embedded groove strip 53. Through the arrangement of the flexible supplementary strip 52, the air flow in the elastic cavity sealing strip 51 can be effectively utilized when the elastic cavity sealing strip 51 is sealed and shrunk, so that the flexible supplementary strip 52 is inflated and deformed, the gap between the elastic cavity sealing strip 51 and the inner sealing strip 3 or the outer sealing strip 4 is supplemented, and the excess air is squeezed out, realizing the full package sealing effect of the elastic cavity sealing strip 51 and the inner sealing strip 3 and the elastic cavity sealing strip 51 and the outer sealing strip 4, and achieving good blocking and sealing effect, thereby reducing the damage of the external environment to the inner sealing strip 3 and the outer sealing strip 4, and further playing a protection role.

[0040] Figure 1 and Figures 3-7The inner sealing strip 3 is clamped in the inner groove 11 of the window frame, and the outer sealing strip 4 is clamped in the outer groove 22 of the window sash. The clamping mode can effectively facilitate the replacement and maintenance of the inner sealing strip 3 and the outer sealing strip 4, facilitate the maintenance and application of the window frame 1 and the window sash 2, reduce the difficulty and cost of maintenance, and effectively ensure the effectiveness of the window frame 1 and the window sash 2.

[0041] Figures 2-7 When no external force is applied, the front end of the inner sealing strip 3 clamped in the inner groove 11 of the window frame extends to the outside of the inner sealing surface 101 of the window frame, and the extension distance is 1 / 5-1 / 4 of the total thickness of the inner sealing strip 3. When no external force is applied, the rear end of the outer sealing strip 4 clamped in the outer groove 22 of the window sash extends to the outside of the outer sealing surface 202 of the window sash, and the extension distance is 1 / 5-1 / 4 of the total thickness of the outer sealing strip 4. By limiting the size of the inner sealing strip 3 and the outer sealing strip 4, the cooperation with the sealing auxiliary assembly 5 in the subsequent process can be promoted, and the sealing and sound insulation effect can be improved.

[0042] Figures 1-7 When no external force is applied, the thickness of the elastic cavity sealing strip 51 is 4 / 5-10 / 9 of the groove depth of the window frame outer groove 12, and the groove depth of the window frame outer groove 12 is equal to the groove depth of the window sash inner groove 21. By limiting the size of the elastic cavity sealing strip 51, the auxiliary sealing and subsequent compensation sealing effect can be effectively guaranteed. While reducing the wear of the inner sealing strip 3 and the outer sealing strip 4, the service life of the inner sealing strip 3 and the outer sealing strip 4 can also be effectively prolonged, and the continuity of the action of the inner sealing strip 3 and the outer sealing strip 4 can be maintained.

[0043] Figures 1-7 The stiffness coefficients of the inner sealing strip 3 and the outer sealing strip 4 are greater than the stiffness coefficient of the elastic cavity sealing strip 51, and the stiffness coefficient of the elastic cavity sealing strip 51 is greater than the stiffness coefficient of the flexible supplementary strip 52. By limiting the stiffness coefficient, the elastic cavity sealing strip 51, the flexible supplementary strip 52, the inner sealing strip 3 and the outer sealing strip 4 can realize good sealing and cooperation effect, reduce the damage caused by cooperation, fully guarantee the sealing and sound insulation effectiveness of the window frame 1 and the window sash 2, and prolong the durability of the window frame 1 and the window sash 2, prolong the maintenance period, and reduce the maintenance cost.

[0044] Figures 1-7As shown in the user control window frame 1 and the window sash 2 effect of the window closing action, as the window sash 2 is constantly close to the window frame 1, the outer seal strip 4 and the inner seal strip 3 are extruded to the corresponding elastic cavity seal strip 51, so that the elastic cavity seal strip 51 is shrunk, effectively changing the original rigid contact to flexible contact, reducing the damage caused by the outer seal strip 4 and the inner seal strip 3 in the opening and closing window action, then in the process of continuous shrinkage of the elastic cavity seal strip 51, the elastic cavity seal strip 51 produces exhaust effect, airflow will enter the flexible supplement strip 52, then the flexible supplement strip 52 produces continuous swelling deformation, and supplements the sealing gap between the inner seal strip 3 and the elastic cavity seal strip 51 or the outer seal strip 4 and the elastic cavity seal strip 51, so that the flexible supplement strip 52 can effectively wrap the inner seal strip 3 or the outer seal strip 4, avoid the direct contact of the external environment with the inner seal strip 3 or the outer seal strip 4 when it produces deformation effect, reduce the damage of the environment to it, further play a protective role, so that when the window frame 1 and the window sash 2 are completely closed, the window frame inner cover 101 and the window sash inner cover 201 are attached, then the elastic cavity seal strip 51 in the window sash inner groove 21, the flexible supplement strip 52 and the inner seal strip 3 located in the window frame inner groove 11 form a sealed connection, the frame outer cover 102 and the window sash inner cover 201 are attached, then the elastic cavity seal strip 51 in the window frame outer groove 12, the flexible supplement strip 52 and the outer seal strip 4 located in the window sash outer groove 22 form a sealed connection, so as to form a double sealing effect after the window frame 1 and the window sash 2 are closed, effectively forming a barrier between indoor and outdoor, effectively improving the sealing of the window frame 1 and the window sash 2, and further improving the sound insulation effect, which can also reduce the heat exchange between indoor and outdoor through the high sealing of the window frame 1 and the window sash 2, promote the energy saving and environmental protection.

[0045] Figures 1-7As shown in the user control window frame 1 and the window sash 2 effect produces open window action, as the window sash 2 away from the window frame 1, the window sash inner cover 201 away from the window frame inner cover 101, the window sash outer cover 202 away from the frame outer cover 102, so that the inner seal strip 3 gradually away from the window sash inner groove 21, and release the elastic cavity seal strip 51 located in the window sash inner groove 21, so that the outer seal strip 4 gradually away from the window frame outer groove 12, and release the elastic cavity seal strip 51 located in the window frame outer groove 12, the elastic cavity seal strip 51 loses the seal extrusion force, its own constantly produce elastic recovery, so that it gradually restore deformation, and because the stiffness coefficient of the elastic cavity seal strip 51 is greater than the stiffness coefficient of the flexible complementary strip 52, when the elastic cavity seal strip 51 produces deformation recovery, with its volume increases, will produce the effect of air suction, airflow will continue to enter the elastic cavity seal strip 51, so that the flexible complementary strip 52 shrink, waiting for the subsequent sealing cooperation, through the cooperation of the inner seal strip 3, the outer seal strip 4 and the sealing auxiliary assembly 5, effectively realize the double sealing effect of the window frame 1 and the window sash 2 closed, improve the sealing effect of the window frame 1 and the window sash 2 closed, promote the sound insulation, at the same time, the elastic sealing of the elastic cavity seal strip 51 can also change the sealing from rigid state to flexible state, thereby reducing the application wear of the inner seal strip 3 and the outer seal strip 4, effectively protecting the inner seal strip 3 and the outer seal strip 4, prolonging the service life, effectively promoting the persistence of the closed sealing of the window frame 1 and the window sash 2, realizing the effective sound insulation effect, and when the inner seal strip 3 and the outer seal strip 4 are affected by the environment or slightly damaged, the elastic cavity seal strip 51 can compensate for the poor sealing by its own elastic effect, so as to ensure the effectiveness and durability of the sealing, effectively improve the sound insulation effect of the window frame 1 and the window sash 2, and promote the energy saving and environmental protection effect.

[0046] Second embodiment

[0047] Figures 1-11 As shown, the elastic cavity seal strip 51 is embedded with a plurality of evenly distributed electromagnetic patches 6 at both ends, and the input end of the electromagnetic patch 6 is connected with the sealing control unit arranged in the intelligent door and window system 7. The intelligent door and window system 7 is the door and window structure of the whole house, including the door and window body and the control system matched therewith, which can realize the monitoring and control of the door and window state, realize the automation of the door and window, effectively realize the smart home and promote the indoor environmental protection circulation.

[0048] Figure 9 As shown, the sealing control unit includes a window sealing processing module, the input end of the window sealing processing module is connected with a sealing parameter instruction module and a sealing state sensing module, and the output end of the window sealing processing module is connected with an auxiliary sealing module and a maintenance reminding module.

[0049] The input end of the sealing parameter instruction module is signal connected with the intelligent door and window system 7, the input end of the sealing state sensing module is signal connected with the pressure sensor arranged in the flexible supplementary strip 52, the output ends of the auxiliary sealing module and the maintenance reminding module are signal connected with the electromagnetic patch 6, and the output end of the maintenance reminding module is signal connected with the intelligent door and window system 7. The sealing control unit can realize the intelligent function of the window frame 1 and the window sash 2, effectively meet the needs of the existing smart home, and can also actively compensate the sealing, remind the damage of the inner sealing strip 3 and the outer sealing strip 4, effectively improve the functionality of the window frame 1 and the window sash 2, ensure the timeliness of maintenance, and improve the user experience.

[0050] Figures 1-11 After the window frame 1 and the window sash 2 are applied in the intelligent door and window system 7, the intelligent door and window system 7 inputs the sealing pressure data, the standard range, the opening and closing window instruction and other related parameter data and instructions of each window sash 2 to the sealing parameter instruction module, and then the sealing parameter instruction module transmits these parameters and instructions to the transmission sealing processing module. The pressure sensor in the flexible supplementary strip 52 monitors the pressure data after the window is opened and closed, and then transmits it to the sealing state sensing module. The sealing state sensing module transmits the pressure data to the window sealing processing module after processing, so that the window sealing processing module judges the goodness of the inner sealing strip 3, the outer sealing strip 4 and the sealing auxiliary assembly 5 according to the change state of the pressure data;

[0051] When the window sealing processing module analyzes that the pressure data after the window is opened and closed is in the qualified range, the window sealing processing module does not generate instruction output at this time;

[0052] When the pressure data after the window is opened is less than the qualified range, it is determined that the elastic cavity seal 51 is damaged and the elastic recovery ability of the elastic cavity seal 51 is reduced. When the pressure data is in the compensable range, the window sealing processing module sends a control instruction to the auxiliary sealing module when the parameter of the window closing action is received subsequently, so that the electromagnetic patches 6 on the front and back sides generate the same magnetic pole and the elastic force of the elastic cavity seal 51 is compensated under the action of the electromagnetic repulsion, so as to ensure the sealing effect of the elastic cavity seal 51 on the inner sealing strip 3 or the outer sealing strip 4, and to ensure the sound insulation. When the pressure data exceeds the compensable range, the window sealing processing module transmits a reminder instruction to the reminder maintenance module, so that the reminder maintenance module sends reminder data of timely maintenance and replacement of accessories to the intelligent door and window system 7, and controls the electromagnetic patches 6 on the front and back sides to generate the same magnetic pole and a larger electromagnetic repulsion, so that the elastic cavity seal 51 is completely stretched, and then the user performs the window closing action to sense the increased closing resistance, on the one hand to ensure the sealing of the window frame 1 and the window sash 2 when the maintenance is not timely, and on the other hand to urge the user to replace the cooperation through the closing resistance, so as to ensure the good sealing of the subsequent sealing and the low wear and low energy consumption of the structure cooperation.

[0053] When the pressure data of the window closing is greater than the qualified range, it is determined that the inner sealing strip 3 and the outer sealing strip 4 are damaged and aged, that is, the elasticity of the inner sealing strip 3 and the outer sealing strip 4 is reduced or fails, and the window sealing processing module transmits a reminder instruction to the reminder maintenance module, so that the reminder maintenance module sends reminder data of timely maintenance and replacement of accessories to the intelligent door and window system 7, and controls the electromagnetic patches 6 on the front and back sides to generate the same magnetic pole and a larger electromagnetic repulsion, so that the elastic cavity seal 51 is completely stretched, and then the user performs the window closing action to sense the increased closing resistance, on the one hand to ensure the sealing of the window frame 1 and the window sash 2 when the maintenance is not timely, and on the other hand to urge the user to replace the cooperation through the closing resistance, so as to ensure the good sealing of the subsequent sealing and the low wear and low energy consumption of the structure cooperation.

[0054] When the pressure data of the window sealing processing module is less than the qualified range, it is determined that the inner sealing strip 3 and the outer sealing strip 4 are damaged or the inner sealing strip 3 and the outer sealing strip 4 are detached, that is, the inner sealing strip 3 and the outer sealing strip 4 cannot seal and extrude the corresponding elastic cavity sealing strip 51; when the pressure data is in the compensable range, the window sealing processing module sends a control instruction to the auxiliary sealing module when receiving the parameter of the window closing action, so that the electromagnetic patches 6 on the front and rear sides generate the same magnetic pole, and the electromagnetic repulsion compensates for the wear of the inner sealing strip 3 and the outer sealing strip 4, so as to ensure the effectiveness of the abutment sealing of the elastic cavity sealing strip 51 and the corresponding inner sealing strip 3 or outer sealing strip 4; when the pressure data exceeds the compensable range, the window sealing processing module transmits a reminder instruction to the reminder maintenance module, so that the reminder maintenance module sends reminder data to the intelligent door and window system 7 for timely maintenance and replacement of accessories, and the reminder maintenance module does not control the electromagnetic patch 6 to generate an effect at this time, reducing the power consumption and fatigue damage of the elastic cavity sealing strip 51. The setting of the sealing control unit can realize the intelligent function of the window frame 1 and the window sash 2, effectively meet the needs of existing smart homes, and also actively compensate for sealing and remind the damage of the inner sealing strip 3 and the outer sealing strip 4, effectively improve the functionality of the window frame 1 and the window sash 2, ensure the timeliness of maintenance, and improve the user experience.

[0055] The above-mentioned embodiments of the present application are not limited to the actual needs, and various changes made by those skilled in the art within the scope of their knowledge without departing from the concept of the present application still fall within the protection scope of the present application.

Claims

1. An energy-saving, environmentally friendly, and soundproof aluminum alloy door and window, characterized in that: The utility model relates to a window frame (1) and hinged window sash (2) in window frame (1) front end, window frame (1) front end is provided with window frame inner cover (101) and the frame outer cover (102) of window frame inner cover (101) front side, window sash (2) rear end is provided with window sash inner cover (201) and the window sash outer cover (202) of window sash inner cover (201) front side, and window frame inner cover (101) with window sash inner cover (201) cooperation, frame outer cover (102) with window sash outer cover (202) cooperation, Window frame inner cover (101) is provided with inner seal strip (3), and window sash outer cover (202) is provided with outer seal strip (4), and frame outer cover (102) is provided with window frame outer groove (12) of corresponding position of outer seal strip (4), and window sash inner cover (201) is provided with window sash inner groove (21) of corresponding position of inner seal strip (3), Window frame outer groove (12) and window sash inner groove (21) are provided with sealing auxiliary assembly (5), and sealing auxiliary assembly (5) includes two elastic embedded groove strips (53) embedded in window frame outer groove (12) and window sash inner groove (21) respectively, and the proximal end of the two elastic embedded groove strips (53) is fixedly connected with elastic cavity seal strip (51), The outer side of elastic cavity seal strip (51) is fixedly connected with flexible complementary strip (52) communicated with pressure cavity, and flexible complementary strip (52) and elastic embedded groove strip (53) inner wall are in sliding cooperation, and through the setting of flexible complementary strip (52), the air flow in elastic cavity seal strip (51) can be effectively utilized when it is sealed and shrunk, so that flexible complementary strip (52) is inflated and deformed, the gap generated after elastic cavity seal strip (51) and inner seal strip (3) or outer seal strip (4) abut is supplemented, and the excess air is squeezed out, realizing the full package sealing effect of elastic cavity seal strip (51) and inner seal strip (3) and elastic cavity seal strip (51) and outer seal strip (4).

2. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 1, characterized in that: The front and rear ends of elastic cavity seal strip (51) are embedded with a plurality of evenly distributed electromagnetic patches (6), and the input end of electromagnetic patch (6) is connected with sealing control unit arranged in intelligent door and window system (7).

3. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 2, characterized in that: The sealing control unit includes a window sealing processing module, the input end of the window sealing processing module is connected with a sealing parameter instruction module and a sealing state sensing module, and the output end of the window sealing processing module is connected with an auxiliary sealing module and a maintenance reminding module; The input end of the sealing parameter instruction module is signal connected with the intelligent door and window system (7), the input end of the sealing state sensing module is signal connected with the pressure sensor arranged in the flexible complementary strip (52), the output ends of the auxiliary sealing module and the maintenance reminding module are signal connected with the electromagnetic patch (6), and the output end of the maintenance reminding module is also signal connected with the intelligent door and window system (7).

4. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 1, characterized in that: The stiffness coefficient of the inner sealing strip (3) and the stiffness coefficient of the outer sealing strip (4) are both greater than the stiffness coefficient of the elastic cavity sealing strip (51), and the stiffness coefficient of the elastic cavity sealing strip (51) is greater than the stiffness coefficient of the flexible complementary strip (52).

5. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 1, characterized in that: The window frame inner sealing surface (101) is provided with a window frame inner groove (11), and the inner sealing strip (3) is clamped in the window frame inner groove (11); and the sash outer sealing surface (202) is provided with a sash outer groove (22), and the outer sealing strip (4) is clamped in the sash outer groove (22).

6. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 5, characterized in that: When no external force is applied, the front end of the inner sealing strip (3) clamped in the window frame inner groove (11) extends to the outside of the window frame inner sealing surface (101), and the extension distance is 1 / 5-1 / 4 of the total thickness of the inner sealing strip (3); and when no external force is applied, the rear end of the outer sealing strip (4) clamped in the sash outer groove (22) extends to the outside of the sash outer sealing surface (202), and the extension distance is 1 / 5-1 / 4 of the total thickness of the outer sealing strip (4).

7. The energy-saving, environmentally friendly, sound-insulating aluminum alloy door and window according to claim 1, characterized in that: When no external force is applied, the thickness of the elastic cavity sealing strip (51) is 4 / 5-10 / 9 of the groove depth of the window frame outer groove (12), and the groove depth of the window frame outer groove (12) is equal to the groove depth of the sash inner groove (21).

Citation Information

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