Sound insulation window combined sealing structure and sound insulation window

By designing multiple sealing structures of protruding rings and sealing strips in the window sealing structure, the gap problem caused by aging of sealing strips is solved, the sound insulation, heat insulation and air insulation performance of the windows is improved, and people's needs for quality of life are met.

CN223164447UActive Publication Date: 2025-07-29LUOYANG LANDI TITANIUM METAL VACUUM GLASS CO LTD
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Patent Information

Application Number
CN202422404569.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-29
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The window sealing strips may age, harden or fall off after long-term use, resulting in the increase in gaps, affecting the sound insulation, heat insulation and air insulation effects, and cannot meet people's needs for quality of life.

Method used

A sound-insulating window-combined sealing structure is designed. When the window sash is combined with the outer frame, the projecting ring is surrounded by the first sealing strip and the second sealing strip to form a sealed second cavity structure, and multiple sealing strips are provided at the contact position, including the third sealing strip and the fourth sealing strip, forming a four-fold sealing effect, improving airtightness, watertightness, thermal insulation and sound insulation.

Benefits of technology

It improves the overall airtightness, watertightness, thermal insulation and sound insulation of the window, reduces the possibility of abnormal deformation of the sealing structure, and enhances the sound insulation and heat insulation effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the soundproof window combination sealing structure and the soundproof window, when a window sash is combined with an outer frame part, a second cavity structure is defined by a protruding ring, a first sealing strip and a second sealing strip, and a third sealing strip and a fourth sealing strip are sealed at the combination part of the outer frame part and the window sash. According to the sound-proof window combination sealing structure and the sound-proof window, the multiple sealing effect of the middle portion is formed at the contact position of the protruding ring, the first sealing strip and the second sealing strip, the third sealing strip and the fourth sealing strip are assisted to form sealing at the combination portion of the outer frame portion and the window sash, and the air tightness, the water tightness, the heat preservation performance and the sound insulation performance of the whole window are improved; compared with direct formation of large surface contact, the possibility of abnormal deformation among the protruding ring, the first sealing strip and the second sealing strip is reduced due to the existence of the second cavity structure, and meanwhile, the second cavity structure similar to the first cavity structure can improve the sound insulation and heat insulation effects.
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Description

Technical Field

[0001] The utility model relates to the field of sound insulation windows, and particularly relates to a sound insulation window combined with a sealing structure and a sound insulation window. Background Art

[0002] Currently, with the continuous improvement of the standards of living and working environments, and the popularization and in-depth understanding of the concept of health preservation, more and more people begin to pay attention to the noise problems in work and life. People also put forward higher requirements for the heat insulation and sound insulation performance of windows. The structural design of sound insulation windows aims to effectively isolate external noises to optimize the indoor sound environment quality.

[0003] Doors and windows are the weak links in building sound insulation, and there are various types of doors and windows on the market. The composition of sound insulation windows mainly includes a frame part, glass, and a sealing strip assembly. The frame part, as the supporting skeleton of the sound insulation window, is usually made of materials with excellent sealing performance such as aluminum alloy or plastic, which not only supports the rest of the window but also significantly blocks the transmission of sound. The glass, as the core part of the sound insulation window, mostly adopts a double-layer or triple-layer hollow design. Such glass contains an air layer inside, which can significantly reduce the transmission of sound waves. Some glass surfaces are additionally coated with special sound insulation materials to further improve their sound insulation efficiency. Specifically, in actual applications, the sealing performance of windows largely depends on the sealing strips. After long-term use, the sealing strips may age, harden, or fall off, resulting in an increase in gaps, affecting the sound insulation, heat insulation, water resistance, and airtightness effects, and unable to meet people's needs for the quality of life. Summary of the Utility Model

[0004] The main purpose of the utility model is to provide a sound insulation window combined with a sealing structure and a sound insulation window, aiming to solve the problem that the sealing strips of windows may age, harden, or fall off after long-term use, resulting in an increase in gaps and affecting the sound insulation, heat insulation, water resistance, and airtightness effects.

[0005] To achieve the above purpose, the utility model provides a sound insulation window combined with a sealing structure, including:

[0006] An outer frame part, which encloses and forms a window sash position, and the outer frame part includes an inner frame profile, a frame connection rubber ring, and an outer frame profile that are sequentially clamped in the thickness direction;

[0007] The window sash is enclosed to form a glass position and includes an inner window sash profile, a sash connection rubber ring, and an outer window sash profile that are sequentially snap-connected in the thickness direction. Among them, a protruding ring is provided on the outer peripheral wall of the sash connection rubber ring, and a first sealing strip that matches one side of the protruding ring is provided on the inner peripheral wall of the frame connection rubber ring; or a first sealing strip is provided on the outer peripheral wall of the sash connection rubber ring, and a protruding ring that matches one side of the first sealing strip is provided on the inner peripheral wall of the frame connection rubber ring. The first sealing strip forms a plurality of sealed first cavity structures in the thickness direction of the sound insulation window combined sealing structure.

[0008] A second sealing strip is provided on the other side of the protruding ring, and a protruding portion that matches the second sealing strip is provided on the other side of the first sealing strip.

[0009] Among them, when the window sash is combined with the outer frame portion, the protruding ring, the first sealing strip, and the second sealing strip enclose to form a sealed second cavity structure.

[0010] Further, at least one convex rib is provided in the area of the first sealing strip corresponding to the protruding ring. When the window sash is combined with the outer frame portion, the convex rib contacts the protruding ring to divide the second cavity structure into a plurality of sub-chambers in the thickness direction of the window sash.

[0011] Further, the cross-section of the protruding ring in the thickness direction of the sound insulation window combined sealing structure forms a plurality of third cavity structures.

[0012] Further, in the thickness direction of the outer frame portion, a first damping layer is provided between the inner frame profile and the frame connection rubber ring and between the frame connection rubber ring and the outer frame profile.

[0013] Further, in the thickness direction of the window sash, a second damping layer is provided between the inner window sash profile and the sash connection rubber ring and between the sash connection rubber ring and the outer window sash profile.

[0014] Further, the frame connection rubber ring includes two first structural rubber strips and two second structural rubber strips that are parallel in the plane of the outer frame portion, and the sash connection rubber ring includes two third structural rubber strips and two fourth structural rubber strips that are parallel in the plane of the window sash. Heat insulation materials are filled between the first structural rubber strip and the second structural rubber strip and / or between the third structural rubber strip and the fourth structural rubber strip.

[0015] Further, it further includes:

[0016] A glass panel portion is installed in the glass position and is clamped by the inner window sash profile and the outer window sash profile.

[0017] The third sealing strip is installed on the outer frame profile or the outer window sash profile;

[0018] The fourth sealing strip is installed on the inner frame profile or the inner window sash profile;

[0019] Wherein, when the window sash is combined with the outer frame part, the third sealing strip and the fourth sealing strip respectively form seals at the combined part of the outer frame part and the window sash.

[0020] Furthermore, the glass panel part is a vacuum glass including multiple glass panels stacked on top of each other.

[0021] Furthermore, the thicknesses of the multiple glass panels are different from each other.

[0022] The present utility model also provides a sound-insulating window, including the above-mentioned sound-insulating window combined sealing structure.

[0023] For the sound-insulating window combined sealing structure and the sound-insulating window provided by the present utility model, a multiple sealing effect in the middle is formed at the contact positions of the protruding ring, the first sealing strip and the second sealing strip, which assists the third sealing strip and the fourth sealing strip to respectively form seals at the combined part of the outer frame part and the window sash, improving the airtightness, watertightness, heat preservation and sound insulation of the whole window; compared with directly forming a larger surface contact, the existence of the above second cavity structure reduces the possibility of abnormal deformation among the protruding ring, the first sealing strip and the second sealing strip. At the same time, similar to the first cavity structure, the second cavity structure can enhance the sound insulation and heat insulation effects. Description of the Drawings

[0024] Figure 1 is a cross-sectional schematic view of the outer frame part in the sound-insulating window combined sealing structure of the first embodiment of the present utility model;

[0025] Figure 2 is a cross-sectional schematic view of the window sash in the sound-insulating window combined sealing structure of the first embodiment of the present utility model;

[0026] Figure 3 is a cross-sectional schematic view of the sound-insulating window combined sealing structure of the first embodiment of the present utility model;

[0027] Figure 4 is a three-dimensional schematic view of the use of the sound-insulating window combined sealing structure of the first embodiment of the present utility model (in the closed state);

[0028] Figure 5 is a three-dimensional schematic view of the use of the sound-insulating window combined sealing structure of the first embodiment of the present utility model (in the open state);

[0029] Figure 6 is a three-dimensional schematic view of the window sash in the sound-insulating window combined sealing structure of the first embodiment of the present utility model;

[0030] Figure 7 It is a cross-sectional view of the sound insulation window combined with the sealing structure of the second embodiment of the present utility model;

[0031] Figure 8 It is a cross-sectional view of the sound insulation window combined with the sealing structure of the third embodiment of the present utility model;

[0032] Figure 9 It is a cross-sectional view (single side) of the outer frame part in the sound insulation window combined with the sealing structure of the fourth embodiment of the present utility model.

[0033] The realization of the purpose, functional features and advantages of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments

[0034] It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0035] Those skilled in the art of the present technology can understand that unless specifically stated, the singular forms "a", "an", "the", "above-mentioned" and "this" used herein may also include the plural forms. It should be further understood that the term "including" used in the description of the present utility model means that there are the described features, integers, steps, operations, elements, units, modules and / or components, but does not exclude the existence or addition of one or more other features, integers, steps, operations, elements, units, modules, components and / or their groups. It should be understood that when we say that an element is "connected" or "coupled" to another element, it can be directly connected or coupled to other elements, or there may also be intermediate elements. In addition, the "connection" or "coupling" used herein may include wireless connection or wireless coupling. The term "and / or" used herein includes all or any unit and all combinations of one or more related listed items.

[0036] Those skilled in the art of the present technology can understand that unless otherwise defined, all terms (including technical terms and scientific terms) used herein have the same meaning as the general understanding of those of ordinary skill in the art to which the present utility model belongs. It should also be understood that terms such as those defined in a general dictionary should be understood to have a meaning consistent with the meaning in the context of the prior art, and will not be interpreted with an idealized or overly formal meaning unless specifically defined as here.

[0037] Referring to Figures 1 to 9 , in an embodiment of the present utility model, a sound insulation window combined with a sealing structure includes:

[0038] The outer frame part 100 is provided with a sash position 110 formed by surrounding. The outer frame part 100 includes an inner frame profile 120, a frame connection rubber ring 130 and an outer frame profile 140 which are sequentially clamped in the thickness direction;

[0039] The sash 200 is provided with a glass position 210 formed by surrounding and includes an inner sash profile 220, a sash connection rubber ring 230 and an outer sash profile 240 which are sequentially clamped in the thickness direction. A protruding ring 231 is provided on the outer peripheral wall of the sash connection rubber ring 230, and a first sealing strip 150 matching one side of the protruding ring 231 is provided on the inner peripheral wall of the frame connection rubber ring 130; or a first sealing strip 150 is provided on the outer peripheral wall of the sash connection rubber ring 230, and a protruding ring 231 matching one side of the first sealing strip 150 is provided on the inner peripheral wall of the frame connection rubber ring 130; The first sealing strip 150 forms a plurality of sealed first cavity structures 151 in the thickness direction of the sound insulation window combined sealing structure;

[0040] The second sealing strip 400 is provided on the other side of the protruding ring 231, and a protruding part matching the second sealing strip 400 is provided on the other side of the first sealing strip 150;

[0041] The glass panel part 300 is installed in the glass position 210 and is clamped by the inner sash profile 220 and the outer sash profile 240;

[0042] The third sealing strip 500 is installed on the outer frame profile 140 or the outer sash profile 240;

[0043] The fourth sealing strip 600 is installed on the inner frame profile 120 or the inner sash profile 220;

[0044] Wherein, when the sash 200 is combined with the outer frame part 100, the protruding ring 231, the first sealing strip 150 and the second sealing strip 400 surround and form a second cavity structure 700, and the third sealing strip 500 and the fourth sealing strip 600 respectively form seals at the combined part of the outer frame part 100 and the sash 200.

[0045] In the prior art, the sealing strips of windows may have problems such as aging, hardening or falling off after long-term use, resulting in an increase in gaps, affecting the sound insulation, heat insulation, water resistance and airtightness effects, and not meeting people's needs for the quality of life.

[0046] In this embodiment, one side and the other side of the protruding ring 231 respectively represent the upper side and the lower side of the protruding ring 231 in the thickness direction; one side and the other side of the first sealing strip 150 respectively represent the upper side and the lower side of the first sealing strip 150 in the thickness direction. In other embodiments, the protruding ring 231 and the first sealing strip 150 can also be inverted in the thickness direction.

[0047] In the present utility model, the outer side refers to the direction in which the window sash 200 is opened, and is not limited by the indoor or outdoor situation. The outer frame part 100 is surrounded to form a window sash position 110, and the window sash position 110 is the installation position of the subsequent window sash 200. The outer frame part 100 includes an inner frame profile 120, a frame connection rubber ring 130, and an outer frame profile 140 that are sequentially snap-connected in the thickness direction. While connecting the inner frame profile 120 and the outer frame profile 140 through the frame connection rubber ring 130, heat and noise are isolated. The materials of the inner frame profile 120 and the outer frame profile 140 can be aluminum alloy-based metals or high-strength plastics, and the material of the frame connection rubber ring 130 can be high-strength rubber or plastic. The thickness of the outer frame part 100 is generally about 60 millimeters, and in a specific implementation process, it can also be other ranges.

[0048] The window sash 200 is surrounded to form a glass position 210 and includes an inner window sash profile 220, a sash connection rubber ring 230, and an outer window sash profile 240 that are sequentially snap-connected in the thickness direction. Similar to the outer frame part 100, while connecting the inner window sash profile 220 and the outer window sash profile 240 through the sash connection rubber ring 230, heat and noise are isolated. The materials of the inner window sash profile 220 and the outer window sash profile 240 can be aluminum alloy-based metals or high-strength plastics, and the material of the sash connection rubber ring 230 can be high-strength rubber or plastic. Referring to Figure 3 , a protruding ring 231 is provided on the outer peripheral wall of the sash connection rubber ring 230, and a first sealing strip 150 that matches one side of the protruding ring 231 is provided on the inner peripheral wall of the frame connection rubber ring 130; or referring to Figure 7 , a first sealing strip 150 is provided on the outer peripheral wall of the sash connection rubber ring 230, and a protruding ring 231 that matches one side of the first sealing strip 150 is provided on the inner peripheral wall of the frame connection rubber ring 130; the first sealing strip 150 forms a plurality of closed first cavity structures 151 in the thickness direction of the sound insulation window combined sealing structure. While the cross-section of the first sealing strip 150 is set to reduce the structural strength to a certain extent, the first sealing strip 150 can improve the sound insulation and heat insulation effects.

[0049] The glass panel part 300 is installed at the glass position 210 and is clamped by the inner sash profile 220 and the outer sash profile 240. The glass panel part 300 is preferably but not limited to a vacuum glass, and can also be a single-layer glass, etc. Here, the glass panel part 300 can be a conventional inorganic glass or organic glass, and is not specifically limited.

[0050] The second sealing strip 400 is arranged on the other side of the protruding ring 231 and cooperates with the protruding ring 231 to form a seal with the first sealing strip 150.

[0051] The third sealing strip 500 is installed on the outer frame profile 140 or the outer sash profile 240. The fourth sealing strip 600 is installed on the inner frame profile 120 or the inner sash profile 220. The shapes of the third sealing strip 500 and the fourth sealing strip 600 are specifically designed according to the actual use situation with the contact sealing effect as the criterion.

[0052] When the sash 200 is combined with the outer frame part 100, the protruding ring 231, the first sealing strip 150 and the second sealing strip 400 enclose and form a second cavity structure 700. Compared with directly forming a large surface contact, the existence of the second cavity structure 700 reduces the possibility of abnormal deformation among the protruding ring 231, the first sealing strip 150 and the second sealing strip 400. At the same time, similar to the first cavity structure 151, the second cavity structure 700 can improve the sound insulation and heat insulation effects. The third sealing strip 500 and the fourth sealing strip 600 respectively form seals at the combined part of the outer frame part 100 and the sash 200, forming sealing effects on both sides, while a middle sealing effect is formed at the contact position of the protruding ring 231, the first sealing strip 150 and the second sealing strip 400.

[0053] In summary, the third sealing strip 500 and the fourth sealing strip 600 respectively form seals at the combined part of the outer frame part 100 and the sash 200, forming sealing effects on both sides, while a middle sealing effect is formed at the contact position of the protruding ring 231, the first sealing strip 150 and the second sealing strip 400, thus forming a quadruple sealing effect, improving the airtightness, watertightness, heat preservation and sound insulation of the whole window; compared with directly forming a large surface contact, the existence of the second cavity structure 700 reduces the possibility of abnormal deformation among the protruding ring 231, the first sealing strip 150 and the second sealing strip 400. At the same time, similar to the first cavity structure 151, the second cavity structure 700 can improve the sound insulation and heat insulation effects.

[0054] Refer to Figure 8, in one embodiment, at least one convex rib 152 is provided in a region of the first sealing strip 150 corresponding to the protruding ring 231. When the window sash 200 is combined with the outer frame portion 100, the convex rib 152 contacts the protruding ring 231 to divide the second cavity structure 700 into a plurality of sub-chambers in the thickness direction of the window sash 200.

[0055] In this embodiment, through the setting of the convex rib 152 on the first sealing strip 150, the structure of the second cavity structure 700 is further restricted, providing a guarantee for the sealing effect formed among the protruding ring 231, the first sealing strip 150, and the second sealing strip 400.

[0056] Refer to Figures 2 to 3 , in one embodiment, a plurality of third cavity structures 232 are formed in the cross-section of the protruding ring 231 in the thickness direction of the sound insulation window combined sealing structure.

[0057] In this embodiment, the protruding ring 231 is formed with the third cavity structure 232. While reducing the structural strength to a certain extent, the third cavity structure 232 can provide sound insulation and heat insulation effects.

[0058] In one embodiment, in the thickness direction of the outer frame portion 100, a first damping layer is provided between the inner frame profile 120 and the frame connection rubber ring 130, and between the frame connection rubber ring 130 and the outer frame profile 140.

[0059] In this embodiment, considering the structural strength of the outer frame portion 100, the material selected for the frame connection rubber ring 130 is hard rubber or plastic. Then, the intensity of vibration and heat conduction of the frame connection rubber ring 130 is still relatively high. Therefore, a first damping layer is added at the interface between the inner frame profile 120 and the frame connection rubber ring 130, and at the interface between the frame connection rubber ring 130 and the outer frame profile 140. While forming a multi-layer interface, it can also provide additional sound insulation and heat insulation effects itself. The material of the first damping layer can be a glue layer or a paint layer, and the processing is achieved by brushing and other methods.

[0060] In one embodiment, in the thickness direction of the window sash 200, a second damping layer is provided between the inner window sash profile 220 and the sash connection rubber ring 230, and between the sash connection rubber ring 230 and the outer window sash profile 240.

[0061] Similar to the foregoing embodiment, the second damping layer can provide additional sound insulation and heat insulation effects while forming a multi-layer interface, and the details are not elaborated herein.

[0062] In one embodiment, the first sealing strip 150, the second sealing strip 400, the third sealing strip 500, and the fourth sealing strip 600 are all made of at least one of ethylene propylene diene monomer rubber, thermoplastic elastomer, or silicone rubber.

[0063] In this embodiment, several preferred material selections for the first sealing strip 150, the second sealing strip 400, the third sealing strip 500, and the fourth sealing strip 600 are given, which have appropriate structural strength and weather resistance. Specifically, selections can also be made from the above several preferred materials according to the usage conditions. It should be noted that even if the material type is selected, performance differences can still be formed according to different process selections, and the process selection is also optimized according to the actual usage situation.

[0064] Refer to Figure 9 , in one embodiment, the frame connection rubber ring 130 includes a first structural rubber strip 131 and a second structural rubber strip 132 that are parallel in the plane of the outer frame portion 100, and the sash connection rubber ring 230 includes a third structural rubber strip and a fourth structural rubber strip that are parallel in the plane of the window sash 200. Heat-insulating material 800 is filled between the first structural rubber strip 131 and the second structural rubber strip 132 and / or between the third structural rubber strip and the fourth structural rubber strip.

[0065] In this embodiment, taking the outer frame portion 100 as an example, heat-insulating material 800 is filled between the first structural rubber strip 131 and the second structural rubber strip 132. Since the sealing effect of the first structural rubber strip 131 and the second structural rubber strip 132 may not be complete, the heat-insulating material 800 can be used as a supplementary setting for sound insulation and heat insulation. The heat-insulating material 800 can be a foam material or a fiber material, etc.

[0066] Refer to Figures 2 to 3 , in one embodiment, the protruding ring 231 is provided on the outer peripheral wall of the sash connection rubber ring 230.

[0067] In this embodiment, since the protruding ring 231 is provided on the outer peripheral wall of the sash connection rubber ring 230, the installation position of the first sealing strip 150 is on the inner peripheral wall of the frame connection rubber ring 130. That is, the first sealing strip 150 is fixed on the outer frame portion 100, reducing the possibility of the first sealing strip 150 being negatively affected by high temperature, light, etc., and ensuring the sealing effect between the outer frame portion 100 and the window sash 200. On the contrary, if the first sealing strip 150 is provided on the window sash 200, the risk of aging increases and the sealing effect weakens.

[0068] In one embodiment, the glass panel portion 300 is a vacuum glass including multiple stacked glass panels.

[0069] In this embodiment, the glass panel part 300 is a vacuum glass, and the heat insulation and sound insulation effects in the thickness direction are both inhibited. The size model of the glass panel is selected according to actual application requirements, which is not limited here. The specific structural details of the glass panel part 300 are not overly restricted either. It can be double-layer or multi-layer, and there can be a certain degree of vacuum between adjacent glass panels. Even structural support members can be provided between adjacent glass panels.

[0070] In one embodiment, the thicknesses of the multiple glass panels are different from each other.

[0071] In this embodiment, by making the thicknesses of the multiple glass panels inconsistent, the noise transmitted by the resonance effect between the glass panels is reduced. In a preferred range, a 15% to 30% difference is formed between the multiple glass panels. For example, the total number of glass panels is two layers, which are 6 mm and 8 mm respectively; or the total number of glass panels is three layers, which are 6 mm, 8 mm, and 10 mm respectively. In other embodiments, the thickness difference between the multiple glass panels can also be other ranges.

[0072] The present utility model also provides a sound-insulating window, including the above-mentioned sound-insulating window combined sealing structure.

[0073] In this embodiment, after the sound-insulating window has the above-mentioned sound-insulating window combined sealing structure, the sound insulation effect between the window sash 200 and the outer frame part 100 is improved; at the same time, the airtightness, watertightness, and heat insulation effect are also improved.

[0074] In summary, for the sound-insulating window combined sealing structure and the sound-insulating window provided by the present utility model, a multiple sealing effect in the middle is formed at the contact positions of the protruding ring 231, the first sealing strip 150, and the second sealing strip 400, assisting the third sealing strip 500 and the fourth sealing strip 600 to form seals at the combined parts of the outer frame part 100 and the window sash 200 respectively, improving the airtightness, watertightness, heat preservation, and sound insulation of the whole window; compared with directly forming a large surface contact, the existence of the second cavity structure 700 reduces the possibility of abnormal deformation among the protruding ring 231, the first sealing strip 150, and the second sealing strip 400. At the same time, similar to the first cavity structure 151, the second cavity structure 700 can improve the sound insulation and heat insulation effects.

[0075] The above are only the preferred embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structural or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present utility model.

Claims

1. A sound insulation window combined sealing structure, characterized in that, Comprising: An outer frame part which surrounds and forms a sash position. The outer frame part includes an inner frame profile, a frame connection rubber ring, and an outer frame profile that are sequentially snap-connected in the thickness direction; A sash which surrounds and forms a glass position and includes an inner sash profile, a sash connection rubber ring, and an outer sash profile that are sequentially snap-connected in the thickness direction. Wherein, a protruding ring is provided on the outer peripheral wall of the sash connection rubber ring, and a first sealing strip that matches one side of the protruding ring is provided on the inner peripheral wall of the frame connection rubber ring; or a first sealing strip is provided on the outer peripheral wall of the sash connection rubber ring, and a protruding ring that matches one side of the first sealing strip is provided on the inner peripheral wall of the frame connection rubber ring. The first sealing strip forms a plurality of sealed first cavity structures in the thickness direction of the soundproof window combined sealing structure; A second sealing strip is provided on the other side of the protruding ring, and a protruding part that matches the second sealing strip is provided on the other side of the first sealing strip; Wherein, when the sash is combined with the outer frame part, the protruding ring, the first sealing strip, and the second sealing strip surround and form a sealed second cavity structure.

2. The sound insulation window combined sealing structure according to claim 1, characterized in that, At least one convex rib is provided in the area of the first sealing strip corresponding to the protruding ring. When the sash is combined with the outer frame part, the convex rib contacts the protruding ring and divides the second cavity structure into a plurality of sub-chambers in the thickness direction of the sash.

3. The soundproof window combined sealing structure according to claim 1, characterized in that, The cross-section of the protruding ring in the thickness direction of the soundproof window combined sealing structure forms a plurality of third cavity structures.

4. The soundproof window combined with a sealing structure according to claim 1, characterized in that, In the thickness direction of the outer frame part, a first damping layer is provided between the inner frame profile and the frame connection rubber ring and between the frame connection rubber ring and the outer frame profile.

5. The sound-insulating window combined sealing structure according to claim 4, wherein, In the thickness direction of the sash, a second damping layer is provided between the inner sash profile and the sash connection rubber ring and between the sash connection rubber ring and the outer sash profile.

6. The sound insulation window combined sealing structure according to any one of claims 1 to 5, characterized in that, The frame connection rubber ring includes two first structural rubber strips and a second structural rubber strip that are parallel in the plane of the outer frame part. The sash connection rubber ring includes two third structural rubber strips and a fourth structural rubber strip that are parallel in the plane of the sash. Heat insulation materials are filled between the first structural rubber strip and the second structural rubber strip and / or between the third structural rubber strip and the fourth structural rubber strip.

7. The soundproof window combined sealing structure according to any one of claims 1 to 5, characterized in that, Further comprising: A glass panel part which is installed in the glass position and is clamped by the inner sash profile and the outer sash profile; A third sealing strip which is installed on the outer frame profile or the outer sash profile; A fourth sealing strip which is installed on the inner frame profile or the inner sash profile; Wherein, when the sash is combined with the outer frame part, the third sealing strip and the fourth sealing strip respectively form seals at the combined part of the outer frame part and the sash.

8. The sound insulation window combined with a sealing structure according to claim 7, characterized in that, The glass panel part is a vacuum glass including multiple layers of stacked glass panels.

9. The sound insulation window combined sealing structure according to claim 8, characterized in that The thicknesses of the multiple layers of glass panels are different from each other.

10. A soundproof window, characterized in that, Including the soundproof window combined sealing structure according to any one of claims 1 to 9.