Wind-resistant fixed window structure capable of adjusting pressure
By using an inclined upper closing pressure line and glass clamp in the fixed window structure, the problem of traditional fixed windows being easily blown over in strong winds has been solved, thus improving wind resistance and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 佛山希米诺门窗科技有限公司
- Filing Date
- 2025-04-21
- Publication Date
- 2026-04-21
AI Technical Summary
Traditional heavy-duty glass doors and windows with fixed structures are easily blown over in strong winds, and the closure line cannot effectively guide the wind, causing the wind pressure to directly impact the glass body.
An adjustable pressure wind-resistant fixed window structure was designed, which adopts an inclined upper closed pressure line and a glass clamp. The inclined airflow guides the airflow to form a vortex turbulence, reducing the wind pressure impact force, and the pressure is adjusted by the glass clamp to prevent the glass from being blown over.
It effectively reduces the risk of glass being blown over in strong winds, improves wind resistance and stability, and enhances the glass's bending resistance.
Smart Images

Figure CN224149419U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of sliding door and window frames, and more specifically, to an adjustable pressure wind-resistant fixed window structure. Background Technology
[0002] In the structure of sliding doors and windows, fixed windows are typically windows where the glass is directly fitted into the window frame or the window sash is fixed to the window frame and cannot be opened. They are used for lighting and are also widely used in heavy-duty glass doors and windows (glass thickness of 8-12mm). However, in the fixed window structure of heavy-duty glass doors and windows, the indoor and outdoor ends of the glass body are traditionally closed by a flat closing line. In strong winds such as typhoons, the wind pressure directly impacts the glass body, and the closing line does not have a wind-guiding function. At the same time, the glass body is only installed and fixed by the glass mounting groove, making it easy for strong winds to blow the glass over. Utility Model Content
[0003] In order to overcome the defects of the existing technology, this utility model provides an adjustable pressure wind-resistant fixed window structure to solve the above problems.
[0004] The technical solution adopted by this utility model to solve its technical problem is: an adjustable pressure wind-resistant fixed window structure, including a glass body, an upper frame at the upper end of the glass body, and a lower frame at the lower end. The lower end face of the upper frame in the outdoor direction is provided with an upper closing pressure line, which is inclined. The upper end face of the lower frame in the outdoor direction is provided with a lower closing pressure line. At least two glass clamps installed on the lower frame are provided in the lower closing pressure line. The glass clamps include movable pressure blocks. A pressure strip is provided on the side of the pressure block near the glass body, so that the pressure strip abuts against the glass body.
[0005] In the aforementioned adjustable pressure wind-resistant fixed window structure, the upper closing pressure line is inclined downwards from the interior to the interior direction.
[0006] In the aforementioned adjustable pressure wind-resistant fixed window structure, both the upper frame and the lower frame include an indoor frame and an outdoor frame, which are connected by a thermal insulation strip. The upper end of the outdoor frame on the lower frame is provided with a first reinforcing rib, a second reinforcing rib, and a third reinforcing rib. A lower closing pressure line locking groove is formed between the first reinforcing rib and the second reinforcing rib for fastening the lower closing pressure line, and a clamping groove is formed between the second reinforcing rib and the third reinforcing rib.
[0007] In the aforementioned adjustable pressure wind-resistant fixed window structure, the lower end of the outdoor frame on the upper frame is provided with a fourth reinforcing rib, a fifth reinforcing rib, and a sixth reinforcing rib, and the upper closing pressure line is fastened to the fourth reinforcing rib and the sixth reinforcing rib.
[0008] In the aforementioned adjustable pressure wind-resistant fixed window structure, the glass clamping device further includes a body. The lower end of the body is provided with a first hook and a second hook on both sides. The body is inserted into the clamping device locking groove, and the first hook is fastened to the second reinforcing rib, the second hook is fastened to the third reinforcing rib, and the pressure block is movably installed on the body.
[0009] In the above-mentioned adjustable pressure wind-resistant fixed window structure, a support plate is provided on the main body, a guide plate is provided on the side of the support plate near the glass body, a limiting plate is provided on the upper side of the pressure block, and a clamping plate is provided at the lower end. A guide groove with one side open is formed between the clamping plate and the pressure block. The limiting plate is mounted on the upper part of the support plate and a limiting rib is provided at the end. The guide plate is inserted into the guide groove. An adjusting screw is passed through the support plate, and one end of the adjusting screw is threadedly connected to the pressure block.
[0010] In the above-mentioned adjustable pressure wind-resistant fixed window structure, the upper closing pressure line includes an inclined plate, the upper end of which is provided with a reinforcing bending plate, one side of which is provided with a first retaining rib and the other side of which is provided with a second retaining rib, the first retaining rib being fastened to the fourth reinforcing rib, the second retaining rib being fastened to the sixth reinforcing rib, and the middle part of the reinforcing bending plate abutting against the surface of the fifth reinforcing rib.
[0011] In the aforementioned adjustable pressure wind-resistant fixed window structure, the reinforcing bending plate and the inclined plate enclose a triangular cavity.
[0012] The beneficial effects of this utility model are: the inclined upper closed pressure line can guide the airflow obliquely downward, so that the airflow forms a vortex turbulence, reducing the direct impact pressure between the wind pressure and the glass body. Moreover, the inclined upper closed pressure line can improve the bending resistance and stability. At the same time, by adjusting the pressure of the glass body through the glass clamp, the glass body can be tightened and pressed during assembly, further preventing the glass body from being blown over. Attached Figure Description
[0013] Figure 1 This is a side view of the wind-resistant fixed window structure in this embodiment.
[0014] Figure 2 This is a side view of the outdoor frame structure on the lower frame.
[0015] Figure 3 This is a side view of the outdoor frame structure on the upper frame.
[0016] Figure 4 This is a side view of the glass clamping device in this embodiment.
[0017] Figure 5 This is a side view of the upper closed pressure line structure in this embodiment.
[0018] In the diagram: 1. Lower frame; 2. Upper frame; 3. Glass body; 4. Lower closing pressure line; 5. Glass clamp; 6. Upper closing pressure line; 7. Outdoor frame; 8. First reinforcing rib; 9. Second reinforcing rib; 10. Third reinforcing rib; 11. Fourth reinforcing rib; 12. Fifth reinforcing rib; 13. Sixth reinforcing rib; 14. Body; 15. First hook; 16. Second hook; 17. Support plate; 18. Guide plate; 19. Pressure block; 20. Limiting plate; 21. Limiting rib; 22. Clamping plate; 23. Guide groove; 24. Adjusting screw; 25. Pressure strip; 26. Inclined plate; 27. Reinforcing bending plate; 28. First clamping rib; 29. Second clamping rib. Detailed Implementation
[0019] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0020] Combination Figures 1 to 5 The adjustable pressure wind-resistant fixed window structure shown includes a glass body 3. An upper frame 2 is provided at the upper end of the glass body 3, and a lower frame 1 is provided at the lower end. An upper closing pressure line 6 is provided on the lower end face of the upper frame 2 facing outwards, and the upper closing pressure line 6 is inclined. A lower closing pressure line 4 is provided on the upper end face of the lower frame 1 facing outwards. At least two glass clamping devices 5 are provided within the lower closing pressure line 4 and mounted on the lower frame 1. Each glass clamping device 5 includes a movable pressure block 19, which is close to... A pressure strip 25 is provided on one side of the glass body 3, so that the pressure strip abuts against the glass body 3; the inclined upper closed pressure line 6 of this embodiment can guide the airflow obliquely downward, so that the airflow forms a vortex turbulence, reducing the direct impact pressure between the wind pressure and the glass body. Moreover, the inclined upper closed pressure line can improve the bending resistance and stability. At the same time, the glass clamp 5 adjusts the pressure on the glass body 3, which can tighten and press the glass body 3 during assembly, further preventing the glass body 3 from being blown over.
[0021] In this embodiment, the upper closed pressure line 6 is inclined downward from the indoor direction, so that the airflow can be guided downward through the surface of the upper closed pressure line 6. After colliding with the surface of the glass body 3, vortex turbulence is generated, thereby reducing the pressure of direct airflow collision in windy conditions.
[0022] Both the upper frame 2 and the lower frame 1 include an indoor frame and an outdoor frame 7, which are connected by a thermal insulation strip. The upper end of the outdoor frame 7 on the lower frame 1 is provided with a first reinforcing rib 8, a second reinforcing rib 9 and a third reinforcing rib 10. A lower closing pressure line locking groove is formed between the first reinforcing rib 8 and the second reinforcing rib 9 for fastening the lower closing pressure line 4. A clamping groove is formed between the second reinforcing rib 9 and the third reinforcing rib 10 so that the glass clamping device 5 can be installed in the clamping groove. The lower end of the outdoor frame 7 on the upper frame 2 is provided with a fourth reinforcing rib 11, a fifth reinforcing rib 12 and a sixth reinforcing rib 13, and the upper closing pressure line 6 is fastened to the fourth reinforcing rib 11 and the sixth reinforcing rib 13.
[0023] Specifically, the glass clamp 5 also includes a body 14. The lower ends of the body 14 are respectively provided with a first hook 15 and a second hook 16. The body 14 is inserted into the clamping groove, and the first hook 15 is fastened to the second reinforcing rib 9, and the second hook 16 is fastened to the third reinforcing rib 10. The pressure block 19 is movably installed on the body 14. The glass clamp 5 is set at a distance of 1.5M. After the body 14 is inserted into the clamping groove and fastened, it can be further tightened by bolts.
[0024] A support plate 17 is provided on the main body 14. A guide plate 18 is provided on the side of the support plate 17 near the glass body 3. A limit plate 20 is provided on the upper side of the pressure block 19, and a clamping plate 22 is provided on the lower end. A guide groove 23 with one side open is formed between the clamping plate 22 and the pressure block 19. The limit plate 20 is mounted on the upper end of the support plate 17 and a limit rib 21 is provided at the end. The guide plate 18 is inserted into the guide groove 23. An adjusting screw 24 is passed through the support plate 17. One end of the adjusting screw 24 is threadedly connected to the pressure block 19. During assembly, the pressure block 19 can be moved by rotating the adjusting screw 24, so that the pressure strip 25 can be pressed further onto the glass body 3 to secure the glass body 3. With the cooperation of the upper closed pressure line 6, the glass body 3 is further prevented from being blown away in a strong wind.
[0025] It is worth noting that the upper closed pressure line 6 includes an inclined plate 26, and a reinforcing bending plate 27 is provided at the upper end of the inclined plate 26. A first retaining rib 28 is provided on one side of the reinforcing bending plate 27, and a second retaining rib 29 is provided on the other side. The first retaining rib 28 is fastened to the fourth reinforcing rib 11, and the second retaining rib 29 is fastened to the sixth reinforcing rib 13. The middle part of the reinforcing bending plate 27 abuts against the surface of the fifth reinforcing rib 12. This facilitates the assembly of the upper closed pressure line 6. Moreover, the triangular cavity formed between the reinforcing bending plate 27 and the inclined plate 26 has high bending resistance, which makes the upper closed pressure line 6 more stable and prevents it from being bent by the glass body 3.
[0026] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and alterations to these embodiments without departing from the principles and spirit of this utility model will still fall within the protection scope of this utility model.
Claims
1. An anti-wind fixed window structure of adjustable pressure, comprising a glass body (3), the upper end of which is provided with an upper frame body (2), and the lower end of which is provided with a lower frame body (1), characterized in that, The upper frame (2) is provided with an upper closed pressure line (6) on the lower end face in the outdoor direction. The upper closed pressure line (6) is inclined. The lower frame (1) is provided with a lower closed pressure line (4) on the upper end face in the outdoor direction. At least two glass clamps (5) installed on the lower frame (1) are provided in the lower closed pressure line (4). The glass clamps (5) include movable pressure blocks (19). A pressure strip (25) is provided on the side of the pressure block (19) near the glass body (3) so that the pressure strip abuts against the glass body (3).
2. A wind resistant fixed window assembly of claim 1, wherein, The upper closed pressure line (6) is set downwards from the interior direction.
3. The wind resistant fixed window assembly of claim 1, wherein, The upper frame (2) and the lower frame (1) both include an indoor frame and an outdoor frame (7). The indoor frame and the outdoor frame (7) are connected by a heat insulation strip. The upper end of the outdoor frame (7) on the lower frame (1) is provided with a first reinforcing rib (8), a second reinforcing rib (9) and a third reinforcing rib (10). A lower closed pressure wire snap-fit groove for snapping the lower closed pressure wire (4) is formed between the first reinforcing rib (8) and the second reinforcing rib (9). A clamping snap-fit groove is formed between the second reinforcing rib (9) and the third reinforcing rib (10).
4. A wind resistant fixed window assembly of claim 3, wherein, The lower end of the outdoor frame (7) on the upper frame (2) is provided with a fourth reinforcing rib (11), a fifth reinforcing rib (12) and a sixth reinforcing rib (13), and the upper closed pressure line (6) is fastened to the fourth reinforcing rib (11) and the sixth reinforcing rib (13).
5. The wind resistant fixed window assembly of claim 3, wherein, The glass clamp (5) also includes a body (14), on both sides of the lower end of the body (14) are respectively provided with a first hook (15) and a second hook (16). The body (14) is inserted into the clamping groove, and the first hook (15) is fastened to the second reinforcing rib (9), and the second hook (16) is fastened to the third reinforcing rib (10). The pressure block (19) is movably installed on the body (14).
6. A wind resistant fixed window assembly of claim 5, wherein, A support plate (17) is provided on the main body (14). A guide plate (18) is provided on the side of the support plate (17) near the glass body (3). A limit plate (20) is provided on the upper side of the pressure block (19), and a clamping plate (22) is provided on the lower end. A guide groove (23) with one side open is formed between the clamping plate (22) and the pressure block (19). The limit plate (20) is mounted on the upper end of the support plate (17) and a limit rib (21) is provided at the end. The guide plate (18) is inserted into the guide groove (23). An adjusting screw (24) is passed through the support plate (17). One end of the adjusting screw (24) is threadedly connected to the pressure block (19).
7. The wind resistant fixed window assembly of claim 4, wherein, The upper closed pressure line (6) includes a sloping plate (26), and a reinforcing bending plate (27) is provided at the upper end of the sloping plate (26). A first retaining rib (28) is provided on one side of the reinforcing bending plate (27), and a second retaining rib (29) is provided on the other side. The first retaining rib (28) is fastened to the fourth reinforcing rib (11), and the second retaining rib (29) is fastened to the sixth reinforcing rib (13). The middle part of the reinforcing bending plate (27) abuts against the surface of the fifth reinforcing rib (12).
8. A wind resistant fixed window assembly of claim 7, wherein, The reinforced bending plate (27) and the inclined plate (26) enclose a triangular cavity.