Silent steel screen window structure
By adding sound insulation materials and buffer devices to both sides of the screen window sash, the noise problem caused by wind in stainless steel screen doors and windows is solved, achieving a comprehensive effect of quietness, ventilation and mosquito prevention, making it suitable for home environments.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KAIJIE DOOR & WINDOW SHANGHAI
- Filing Date
- 2025-04-21
- Publication Date
- 2026-06-02
AI Technical Summary
Existing stainless steel mesh doors and windows generate noise due to the repeated movement and knocking of the stainless steel mesh and aluminum mesh sashes under localized wind, affecting the normal life and sleep of users.
Add sound-insulating strips and pads to both sides of the screen sash, and install screw-pressing buffer devices at the joint between the aluminum profile of the screen and the coarse mesh of the screen sash. Use durable stainless steel or galvanized steel mesh. For fine mesh, directly fill and compact it through the round pressure groove of the fine mesh strip of the screen sash. Optimize the track and add buffer strip devices.
It effectively reduces noise caused by wind, maintains good ventilation and mosquito prevention, and is durable and easy to maintain, making it a suitable choice for home use.
Smart Images

Figure CN224314889U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of door and window technology, specifically to a silent steel screen window structure. Background Technology
[0002] The existing stainless steel mesh doors and windows suffer from noise problems due to the repeated movement and knocking of the stainless steel mesh and aluminum mesh sash caused by localized wind. In daily life, many users have encountered a rather troubling problem after installing stainless steel mesh doors and windows. When localized wind blows, the stainless steel mesh and aluminum mesh sash repeatedly move relative to each other, causing frequent knocking and generating noticeable noise. This noise not only interferes with people's normal work and life during the day, disrupting their concentration and affecting their mood, but also breaks the peace at night, seriously affecting sleep quality and causing great inconvenience and distress to users.
[0003] Patent document CN207470093U discloses an easily detachable anti-smog screen structure, including a screen frame, a screen sash, and a pressure line. The screen sash is movably installed in a groove within the screen frame. The screen sash overlaps with the upper and lower interior sides of the screen frame, but not with the left and right interior sides. The screen sash includes a window screen, which is fixed to the screen sash by the pressure line. The window screen comprises a layer of diamond mesh and a layer of anti-smog mesh, with the anti-smog mesh having a pore size of 1-2 micrometers. However, this patent document still has the problem of generating noise. Utility Model Content
[0004] In view of the deficiencies in the existing technology, the purpose of this utility model is to provide a silent steel screen window structure.
[0005] The present invention provides a silent steel screen window structure, comprising: screen window aluminum profile, screen window pressure line, screen window frame profile, and screen window sash mesh;
[0006] The screen window pressure line is installed on the screen window aluminum profile and located on the indoor side of the screen window aluminum profile; a screen window pressure line reset strip is installed between the screen window pressure line and the screen window aluminum profile;
[0007] The side of the screen sash mesh is positioned between the screen aluminum profile and the screen pressure line;
[0008] The indoor side of the screen sash mesh is connected to the screen sash pressure line via a sound-insulating strip; the outdoor side of the screen sash mesh is connected to the screen aluminum profile via a sound-insulating pad.
[0009] The aluminum profile of the screen window is installed on the screen window frame profile, and the aluminum profile of the screen window is connected to the screen window frame profile through a connecting structure.
[0010] Preferably, the screen sash mesh is a coarse mesh screen sash.
[0011] The coarse mesh of the screen sash is connected to the aluminum profile of the screen window through the coarse mesh pressure plate, the screws of the coarse mesh pressure plate, and the screw cavity of the coarse mesh pressure plate.
[0012] The coarse mesh pressure plate screw cavity of the screen sash is set on the aluminum profile of the screen and is located on the indoor side of the aluminum profile of the screen;
[0013] The screws of the screen sash coarse yarn pressure plate pass through the screen sash coarse yarn pressure plate and the screen mesh in sequence and are connected to the cavity of the screen sash coarse yarn pressure plate screws.
[0014] Preferably, the screen mesh is a fine screen mesh.
[0015] The aluminum profile of the screen window is provided with a circular groove for the fine mesh strip of the screen window sash, and the circular groove for the fine mesh strip of the screen window sash is located on the outdoor side of the aluminum profile of the screen window.
[0016] The screen sash has a circular pressure strip inside its fine mesh groove, and one end of the fine mesh is fixed inside the groove by the circular pressure strip.
[0017] Preferably, the screen window pressure line is provided with a screen window sash side-mounted lock.
[0018] Preferably, the aluminum profile of the screen window is provided with a slot for connecting the screen window sash to the connecting structure.
[0019] Preferably, the connecting structure is provided with a screen window frame groove.
[0020] Preferably, the screen frame profile is provided with a screen frame groove for connecting the connecting structure.
[0021] Preferably, the groove of the screen sash is 20mm, the groove of the screen frame is 21mm, and the groove of the screen frame is 18mm.
[0022] Preferably, the aluminum profile of the screen window is provided with a groove for the height difference plate of the screen window sash;
[0023] The height difference slot of the screen sash is located on the outdoor side of the aluminum profile of the screen sash, and on one side of the outer surface of the screen mesh of the screen sash.
[0024] Preferably, the aluminum profile of the screen window is provided with a screen window frame profile assembly cavity.
[0025] Compared with the prior art, the present invention has the following beneficial effects:
[0026] 1. This utility model effectively reduces the noise caused by the repeated movement and knocking of the stainless steel mesh and aluminum mesh due to local wind blowing by adding sound-insulating strips and pads on both sides of the screen window sash, while maintaining good ventilation and mosquito prevention effects.
[0027] 2. In this utility model, when using coarse mesh screen, a screw-pressing buffer device is installed at the joint between the aluminum profile of the screen and the coarse steel mesh. This can effectively avoid the impact sound when closing quickly, reduce vibration and noise, and also allow the screen to be designed to be detachable and replace damaged parts.
[0028] 3. In this utility model, when using fine mesh screen, the fine mesh screen 18 is directly used in the round pressure groove of the fine mesh strip on the outdoor side of the aluminum profile of the screen window, and is filled and compacted by the round pressure strip of the fine mesh screen. There is no need for pressure plate screws to tighten and fix it, which saves materials and improves work efficiency. Attached Figure Description
[0029] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0030] Figure 1 A structural diagram of a silent steel screen window when the screen mesh is coarse mesh.
[0031] Figure 2 A schematic diagram of a silent steel screen window structure when the screen mesh is fine mesh.
[0032] The diagram shows:
[0033] 1 aluminum profile for window screen; 11 screws for coarse mesh pressure plate of window screen sash.
[0034] Screen window trim 2; Screen window sash coarse mesh trim 12
[0035] Screen sash groove 3; Screen sash sound insulation pad 13
[0036] Screen sash frame groove 4; screen sash coarse mesh 14
[0037] Screen frame groove 5; Screen sash height difference groove 15
[0038] 6 side-mounted locks on the screen sash; 16 screen pressure strips for resetting.
[0039] 7. Screen sash pressure line sound insulation strip; 17. Screen sash coarse mesh pressure plate screw cavity.
[0040] 8mm screen frame profiles; 18mm fine mesh screen sash.
[0041] 9. Screen window frame profile assembly cavity; 19. Screen window sash fine mesh round pressure strip.
[0042] 10mm grooves for the fine mesh strips of the screen window sash Detailed Implementation
[0043] The present invention will now be described in detail with reference to specific embodiments. These embodiments will help those skilled in the art to further understand the present invention, but do not limit the present invention in any way. It should be noted that those skilled in the art can make several changes and improvements without departing from the concept of the present invention. These all fall within the protection scope of the present invention.
[0044] Example 1
[0045] like Figure 1 As shown, this embodiment provides a silent steel screen window structure, including: screen window aluminum profile 1, screen window pressure line 2, screen window frame profile 8, and screen window sash mesh; the screen window pressure line 2 is disposed on the screen window aluminum profile 1 and located on the indoor side of the screen window aluminum profile 1; a screen window pressure line reset strip 16 is disposed between the screen window pressure line 2 and the screen window aluminum profile 1; the side of the screen window sash mesh is disposed between the screen window aluminum profile 1 and the screen window pressure line 2; the indoor side of the side of the screen window sash mesh is connected to the screen window pressure line 2 through the screen window sash pressure line sound insulation strip 7; the outdoor side of the side of the screen window sash mesh is connected to the screen window aluminum profile 1 through the screen window sash sound insulation pad 13; the screen window aluminum profile 1 is disposed on the screen window frame profile 8, and the screen window aluminum profile 1 is connected to the screen window frame profile 8 through a connecting structure.
[0046] A side-mounted lock 6 for the screen sash is installed on the screen window pressure line 2. A screen sash groove 3 for connecting the connecting structure is provided on the screen window aluminum profile 1. A screen sash frame groove 4 is provided on the connecting structure. A screen frame groove 5 for connecting the connecting structure is provided on the screen window frame profile 8. The screen sash groove 3 is 20mm, the screen sash frame groove 4 is 21mm, and the screen frame groove 5 is 18mm.
[0047] In this embodiment, the screen sash mesh is a coarse screen mesh 14; the coarse screen mesh 14 is connected to the screen aluminum profile 1 via a coarse screen pressure plate 12, a coarse screen pressure plate screw 11, and a coarse screen pressure plate screw cavity 17; the coarse screen pressure plate screw cavity 17 is disposed on the screen aluminum profile 1 and located on the indoor side of the screen aluminum profile 1; the coarse screen pressure plate screw 11 passes through the coarse screen pressure plate 12 and the screen mesh in sequence and is connected to the coarse screen pressure plate screw cavity 17.
[0048] like Figure 2As shown, in other embodiments, the screen sash mesh is a fine screen mesh 18; a circular pressing groove 10 for the fine screen mesh strip is provided on the aluminum profile 1 of the screen sash, and the circular pressing groove 10 for the fine screen mesh strip is located on the outdoor side of the aluminum profile 1 of the screen sash; a fine screen mesh circular pressing strip 19 is provided in the circular pressing groove 10 for the fine screen mesh strip, and one end of the fine screen mesh 18 is fixed in the circular pressing groove 10 for the fine screen mesh strip through the circular pressing strip 19.
[0049] The aluminum profile 1 of the screen window is provided with a screen sash height difference slot 15; the screen sash height difference slot 15 is located on the outdoor side of the aluminum profile 1 of the screen window, and on one side of the outer side of the screen mesh of the screen sash. The aluminum profile 1 of the screen window is provided with a screen frame profile assembly cavity 9.
[0050] Example 2
[0051] Those skilled in the art can understand this embodiment as a more specific description of Embodiment 1.
[0052] In this embodiment, the silent steel screen window structure incorporates sound-absorbing materials, such as nylon or rubber, into the screen window pressure line 2, screen window pressure line reset strip 16, and screen window sash pressure line sound insulation strip 7 on the indoor side of the screen window aluminum profile 1 to reduce friction noise. Sound-absorbing materials, such as nylon or rubber, are also incorporated into the screen window sash sound insulation pad 13 on the outdoor side of the screen window aluminum profile 1 to further reduce friction noise. A coarse stainless steel or galvanized steel mesh screen 14, which is corrosion-resistant and durable, is installed between the two sides. When using the coarse mesh screen 14, a coarse mesh screen pressure plate 12 is used to press the screen window sash coarse mesh pressure plate screws 11 firmly while ensuring flatness. A coarse mesh screen pressure plate screw cavity 17 is provided on the indoor side of the screen window aluminum profile 1, and screws are used to tighten and fix it, effectively preventing loosening.
[0053] The soundproof pad 13 for the screen sash is made of coarse stainless steel mesh. The coarse mesh 14 for the screen sash is made of stainless steel mesh. The coarse mesh pressure plate 12 for the screen sash is made of coarse stainless steel mesh. The coarse mesh pressure plate screw 11 for the screen sash is made of coarse stainless steel mesh. The screw cavity 17 for the coarse stainless steel mesh pressure plate is also a screw cavity.
[0054] A screw-tightening buffer device is installed at the junction of the aluminum profile 1 and the coarse mesh 14 of the screen sash. This effectively avoids impact noise during rapid closing, reducing vibration and noise. The screen is also designed to be detachable, allowing for easy replacement of damaged parts. Because it uses stainless steel or galvanized steel mesh, and the coarse mesh 14 is corrosion-resistant and durable, it can be directly washed with water or a high-pressure water gun, making cleaning very convenient. After connecting all the above components, the screen sash height difference slots 15 and the screen frame profile assembly cavity 9 are used at the four corners of the aluminum profile 1. Through all these processes, the coarse mesh sash section of the silent steel screen window structure with a silent function is achieved.
[0055] The screen window features a screen molding 2, a screen molding repositioning strip 16, a screen sash sound insulation strip 7 on the indoor side of the aluminum profile 1, and a screen sash sound insulation pad 13 on the outdoor side. A fine stainless steel, nylon, or synthetic fiber mesh 18 is installed between the two sides. This corrosion-resistant and durable fine mesh 18 can be directly applied through the circular pressure groove 10 on the outdoor side of the aluminum profile 1, and then filled and compacted by the circular pressure strip 19. No pressure plate screws are required for tightening, saving materials and improving efficiency. All of the above processes fulfill the structural requirements for the fine screen sash.
[0056] The screen sash has a 20mm groove structure with European standard hardware, and the screen frame profile has an 18mm groove structure with European standard hardware. The screen sash and the screen frame are assembled with matching 21mm grooves with European standard hardware.
[0057] A side-mounted lock 6 is installed on the side of the screen window sash (the side-mounted lock has a hidden function, which is not only novel and beautiful, but also convenient to use and maintain), thereby realizing a silent screen window structure that can open, close, lock, be beautiful, prevent theft, prevent wind, prevent falling, be ultra-quiet, and be easy to maintain.
[0058] This embodiment provides a two-functional silent steel screen window structure. One of the structures effectively solves the noise problem caused by the repeated movement and impact of the steel mesh and aluminum mesh panels due to localized wind blowing after the installation of steel mesh doors and windows. This silent steel screen window structure effectively reduces the noise caused by the repeated movement and impact of the steel mesh and aluminum mesh panels due to localized wind blowing by optimizing the track, adding buffer strips on both sides, and sealing strips, while maintaining good ventilation and mosquito prevention effects. Its durability, ease of maintenance, and comfort make it an ideal choice for homes.
[0059] This embodiment provides another method for using fine mesh screens on aluminum profiles, where the fine mesh can be directly filled and compacted using round pressure strips, thus saving materials and improving efficiency during screen installation.
[0060] This invention adds sound-insulating strips to both sides of the screen mesh, effectively reducing the noise caused by the repeated movement and knocking of the stainless steel and aluminum mesh due to local wind blowing, while maintaining good ventilation and mosquito prevention.
[0061] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0062] The specific embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above, and those skilled in the art can make various changes or modifications within the scope of the claims, which do not affect the substantive content of this utility model. Unless otherwise specified, the embodiments and features described in this application can be arbitrarily combined with each other.
Claims
1. A silent steel screen window structure, characterized in that, include: Aluminum profile for screen window (1), screen window trim (2), screen window frame profile (8), and screen window sash mesh; The screen window pressure line (2) is set on the screen window aluminum profile (1) and located on the indoor side of the screen window aluminum profile (1); a screen window pressure line reset strip (16) is provided between the screen window pressure line (2) and the screen window aluminum profile (1); The side of the screen sash mesh is disposed between the screen aluminum profile (1) and the screen pressure line (2); The indoor side of the screen sash mesh is connected to the screen pressure line (2) via the screen sash pressure line sound insulation strip (7); the outdoor side of the screen sash mesh is connected to the screen aluminum profile (1) via the screen sash sound insulation pad (13). The aluminum profile (1) of the screen window is disposed on the screen window frame profile (8), and the aluminum profile (1) of the screen window is connected to the screen window frame profile (8) through a connecting structure.
2. The silent steel screen window structure according to claim 1, characterized in that, The screen sash mesh is a coarse screen sash mesh (14); The screen sash coarse mesh (14) is connected to the screen aluminum profile (1) through the screen sash coarse mesh pressure plate (12), the screen sash coarse mesh pressure plate screw (11) and the screen sash coarse mesh pressure plate screw cavity (17); The coarse yarn pressure plate screw cavity (17) of the screen sash is provided on the screen aluminum profile (1) and is located on the indoor side of the screen aluminum profile (1); The screen sash coarse yarn pressure plate screw (11) passes through the screen sash coarse yarn pressure plate (12) and the screen sash mesh in sequence and is connected to the screen sash coarse yarn pressure plate screw cavity (17).
3. The silent steel screen window structure according to claim 1, characterized in that, The screen sash mesh is a fine screen mesh (18); The aluminum profile (1) of the screen window is provided with a circular groove (10) for the fine mesh strip of the screen window sash, and the circular groove (10) for the fine mesh strip of the screen window sash is located on the outdoor side of the aluminum profile (1). The circular pressure groove (10) of the screen sash is provided with a circular pressure strip (19) of the screen sash, and one end of the screen sash mesh (18) is fixed in the circular pressure groove (10) of the screen sash mesh through the circular pressure strip (19).
4. The silent steel screen window structure according to claim 1, characterized in that, A side-mounted lock (6) is provided on the screen window pressure line (2).
5. The silent steel screen window structure according to claim 1, characterized in that, The aluminum profile (1) of the screen window is provided with a screen window sash groove (3) for connecting the connecting structure.
6. The silent steel screen window structure according to claim 5, characterized in that, The connecting structure is provided with a screen window frame groove (4).
7. The silent steel screen window structure according to claim 6, characterized in that, The screen frame profile (8) is provided with a screen frame groove (5) for connecting the connecting structure.
8. The silent steel screen window structure according to claim 7, characterized in that, The screen sash groove (3) is 20mm, the screen sash frame groove (4) is 21mm, and the screen frame groove (5) is 18mm.
9. The silent steel screen window structure according to claim 1, characterized in that, The aluminum profile (1) of the screen window is provided with a screen window sash height difference slot (15); The height difference slot (15) of the screen sash is located on the outdoor side of the screen aluminum profile (1) and on one side of the outer side of the screen mesh.
10. The silent steel screen window structure according to claim 1, characterized in that, The aluminum profile (1) of the screen window is provided with a screen window frame profile assembly cavity (9).