Multifunctional anti-falling whole frame line pressing structure

Through the design of the whole frame crimping structure and the safety snap-on press plate, the water seepage problem caused by the deviation between the window frame and the crimping line is solved, and the stability and sealing are improved, ensuring the rapid installation and seamless leakage effect.

CN223202961UActive Publication Date: 2025-08-08SHANGHAI LVCAI INT TRADE CO LTD
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Patent Information

Application Number
CN202422019285.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-08-08
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

In the prior art, traditional buckle-mounted crimping line segmentation can easily cause deviations between the window frame and the crimping line, resulting in water seepage affecting the door and window structure.

Method used

The whole frame crimping structure is adopted, and the outer crimping line is clamped and matched with the frame, and the connection stability and sealing are increased through the safe snap-on press plate. The outer crimping line and the inner crimping line are the same length to ensure stability. Combined with the outer grease strip and the inner grease strip to improve sealing. The outer crimping line is designed to assist the flow of rainwater, and the flat sheet and angle code angle structure are used to facilitate installation.

Benefits of technology

It improves the stability and sealing of the connection between the window frame and the crimping line, avoids water seepage, ensures that the installation speed is fast and does not easily cause leakage, and the assembly process is more convenient.

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Abstract

The utility model discloses a multifunctional anti-falling whole-frame pressing line structure which solves the problem that in the prior art, deviation is easily generated between a window frame and a pressing line due to sectional measurement of a traditional buckled pressing line, and then water seepage is caused to affect a door and window structure. The safety buckle comprises an outer pressing line, the outer pressing line is buckled on a frame, a safety buckle pressing plate is further arranged between the outer pressing line and the frame, and glass is installed between the outer pressing line and an inner pressing line arranged on the frame. The outer pressing line is clamped and matched with the frame, and the safety buckle pressing plate is additionally arranged between the outer pressing line and the frame, so that the stability of connection between the outer pressing line and the frame is improved, and meanwhile, the sealing performance of connection between the outer pressing line and the frame is also improved. The outer pressing line is a frame-shaped pressing line, the frame-shaped pressing line is buckled on the frame and is matched with the inner pressing line to fix the glass, and the length of the outer pressing line is the same as that of the inner pressing line, so that the stability of connection among the inner pressing line, the outer pressing line and the frame is ensured, and the sealing performance when the glass is fixed by the inner pressing line and the outer pressing line is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of door and window profiles, in particular to a multifunctional anti-falling whole-frame pressing structure. Background Art

[0002] During the assembly process of existing doors and windows, the length of the press line must be measured in sections and then sawn and assembled. This is labor-intensive and inefficient, and is not conducive to standardized production. Traditional snap-on press lines require measuring the size of the window frame before cutting. During the cutting process, it is very easy to have length inconsistencies, especially the difference in length between the frame and the press line, which can lead to gaps. Leaks are prone to water leakage and are prone to falling and losing during installation. Therefore, it is necessary to design a whole-frame press line.

[0003] In the prior art, a Chinese utility model patent with authorization announcement number CN211950171U and authorization announcement date of 2020.11.17 discloses a pressure line installation structure for an aluminum alloy window frame, in which the inner window frame and the outer window frame are connected by an insulation strip, a circular arc pressure line is provided above the inner window frame, and the circular arc pressure line and the inner window frame are fixed by a pressure line clamp, a glass baffle and an inner glass rubber strip are provided between the circular arc pressure line and the glass, and the glass baffle is located between the circular arc pressure line and the inner window frame, the glass is located between the inner window frame and the outer window frame, and a glass pad is provided under the glass, and a sealant is provided between the outer window frame and the glass. Although the patent sets the connection position of the aluminum alloy circular arc pressure line at a 45° angle and adjusts the flatness of the pressure line, it uses a traditional pressure line, and the frame is only provided with one pressure line. When measuring the pressure line, it is necessary to consider the size between the pressure line and the frame and then cut it. This can easily lead to a dimensional deviation between the pressure line and the outer window frame, which in turn leads to the problem of leaks. Utility Model Content

[0004] In response to the deficiencies in the above-mentioned background technology, the present invention proposes a multifunctional anti-falling whole-frame press line structure, which solves the problem in the prior art that the traditional buckled press line is measured in sections, which easily causes deviation between the window frame and the press line, and then leads to water seepage affecting the door and window structure.

[0005] The technical solution of the present invention is achieved as follows: a multifunctional anti-falling whole-frame pressure line structure includes an external pressure line, which is buckled on the frame, and evenly distributed safety card pressure plates are provided between the external pressure line and the frame, and glass is installed between the external pressure line and the internal pressure line provided on the frame.

[0006] Further preferably, the external pressure line is provided with an outer glass adhesive strip that matches the glass, and the internal pressure line is provided with an inner glass adhesive strip that matches the glass.

[0007] Further preferably, an angled edge is provided on one end of the outer pressure line close to the inner glass rubber strip.

[0008] Further preferably, a flat sheet and an angle code are installed at the corner connection of the external pressure line, the flat sheet is buckled in the buckling groove on the external pressure line, and the angle code is installed in the connecting cavity on the external pressure line.

[0009] Further preferably, a drainage hole is provided at the lower portion of the external pressure line, and the drainage hole passes through the connecting cavity.

[0010] Further preferably, the external pressure line is further provided with an anti-slip protrusion.

[0011] Further preferably, the distance between the plane where the outer side of the external pressure line chamber is located and the plane where the outer side of the frame chamber is located is H, and H is 3~10mm.

[0012] Further preferably, the safety card buckle pressure plate includes a first buckle groove and a second buckle groove, the first buckle groove is buckled on the frame, and the second buckle groove is buckled with one end of the external pressure line.

[0013] Further preferably, evenly distributed pads are provided between the external pressure line and the frame, and the pads are located between adjacent safety buckle pressure plates.

[0014] Further preferably, a glass spacer is provided between the glass and the frame, the glass spacer is attached to the frame, and the glass spacer is also located above the external pressure line and the safety card buckle pressure plate.

[0015] The beneficial effects of the utility model are:

[0016] 1. The external pressure line is snap-fitted to the frame, and a safety clip plate is added between the external pressure line and the frame, which increases the stability of the connection between the external pressure line and the frame, and also improves the sealing between the external pressure line and the frame. The external pressure line is a frame-shaped pressure line, which is buckled on the frame and cooperates with the internal pressure line to fix the glass. The external pressure line and the internal pressure line are the same length, ensuring the stability of the connection between the internal pressure line, the external pressure line and the frame, and thus improving the sealing when the internal and external pressure lines fix the glass.

[0017] 2. The outer and inner glass seals enhance the seal between the glass and the inner and outer pressure lines. The beveled edges help rainwater flow downward, preventing it from accumulating above the outer pressure line and entering the window frame through the inner glass seal.

[0018] 3. The two ends of the flattening piece are connected to the corner pressing frame, and the flattening piece ensures the flatness of the corner assembly; the connecting cavity at the bottom of the external pressing line is clamped with the corner code. The use of the integrated corner code structure makes assembly convenient and quick, and the overall effect is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 It is a structural diagram of the utility model;

[0021] Figure 2 This is a schematic diagram of the installation of the cushion block of the present invention.

[0022] In the figure: 1. frame, 1-1 frame profile, 1-2. insulation strip, 1-3. foam filling part, 2. external pressure line, 2-1. bevel edge, 2-2. buckle groove, 2-3. connection cavity, 2-4. drainage hole, 2-5. anti-slip protrusion, 3. glass spacer, 4. outer glass rubber strip, 5. glass, 6. pressure line rubber strip, 7. inner pressure line, 8. inner glass rubber strip, 9. spacer, 10. screw, 11. safety card buckle pressure plate, 11-1. first buckle groove, 11-2. second buckle groove, 12. corner code, 13. flat sheet. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0024] like Figure 1 and Figure 2 As shown in Example 1, a multifunctional anti-falling whole-frame pressing structure includes an external pressing wire 2, which is buckled on the frame 1. Evenly distributed safety buckle pressing plates 11 are provided between the external pressing wire 2 and the frame 1. Glass 5 is installed between the external pressing wire 2 and the internal pressing wire 7 provided on the frame 1. The glass 5 is a three-glass two-chamber glass 5. The external pressing wire 2 is snap-fitted with the frame 1, and the safety buckle pressing plate 11 is added between the external pressing wire 2 and the frame 1, which increases the stability of the connection between the external pressing wire 2 and the frame 1, and also increases the sealing of the connection between the external pressing wire 2 and the frame 1. The external pressing wire 2 is a frame-shaped pressing wire, which is buckled on the frame 1 and cooperates with the internal pressing wire 7 to fix the glass 5. The external pressing wire 2 and the internal pressing wire 7 have the same length, which ensures the stability of the connection between the internal pressing wire 7, the external pressing wire 2 and the frame 1, thereby increasing the sealing when the internal pressing wire 7 and the external pressing wire 2 fix the glass 5. The invention solves the problem in the prior art that the traditional buckle press line is measured in sections, which easily causes deviation between the window frame and the press line, thereby causing water seepage and affecting the door and window structure.

[0025] Specifically, the frame 1 includes two symmetrically arranged frame profiles 1-1, which are connected by two symmetrically arranged insulation strips 1-2. A foam filler 1-3 is provided within the cavity formed by the connection between the two frame profiles 1-1 and the two insulation strips 1-2 for thermal insulation. During installation, appropriate external pressure wires 2 and internal pressure wires 7 are selected based on the size of the frame 1. The external pressure wires 2 are fastened to the corresponding frame profiles 1-1, and then the safety clip pressure plate 11 is installed. The glass 5 is then installed, and finally the internal pressure wires 7 are installed to complete the installation of the entire window. The installation is fast and does not cause installation errors due to dimensional deviations or leaks due to incorrect dimensions. The installation structure is highly stable and has good sealing.

[0026] In this embodiment, the external pressure line 2 is mounted with an outer glass adhesive strip 4 that cooperates with the glass 5. One end of the outer glass adhesive strip 4 presses against the glass 5, and the other end of the outer glass adhesive strip 4 is clamped to one end of the external pressure line 2. The other end of the external pressure line 2 is engaged with a safety clamping plate 11. The internal pressure line 7 is mounted with an inner glass adhesive strip 8 that cooperates with the glass 5. One end of the inner glass adhesive strip 8 presses against the glass 5, and the other end of the inner glass adhesive strip 8 is mounted to one end of the internal pressure line 7. The other end of the internal pressure line 7 is provided with a pressure adhesive strip 6 that cooperates with the frame 1. A beveled edge 2-1 is provided on the end of the external pressure line 2 close to the glass inner rubber strip 8. The beveled edge 2-1 is higher on the side close to the glass 5 than on the side close to the outdoor side, forming a slope. The slope is connected to the vertical outdoor side by an arc-shaped transition, which facilitates rainwater on the glass 5 to flow downward, avoids accumulated water from being stored in the upper part of the external pressure line 2, and further avoids accumulated water from entering the window frame through the glass inner rubber strip 8. The design of the beveled edge 2-1 is more conducive to falling water.

[0027] In this embodiment, the corner connection of the external pressure line 2 is installed with a flattening piece 13 and a corner bracket 12. Both the flattening piece 13 and the corner bracket 12 are commonly used components for window frame installation. It is only necessary to select the appropriate flattening piece 13 and corner bracket 12 according to the actual size. The flattening piece 13 is buckled into the buckling groove 2-2 on the external pressure line 2, and the corner bracket 12 is installed in the connecting cavity 2-3 on the external pressure line 2. The two ends of the flattening piece 13 are connected to the pressure line frame at the corner, and the flattening piece 13 ensures the flatness of the corner assembly. The connecting cavity 2-3 at the bottom of the external pressure line 2 is snapped into the corner bracket 12. The use of the corner bracket 12 makes the corner assembly structure convenient and quick, and the overall effect is better.

[0028] In the present embodiment, the lower portion of the external pressure line 2 is provided with a drainage hole 2-4, which runs through the connecting cavity 2-3. The lower portion of the external pressure line 2 is provided with a vertical drainage hole 2-4, which makes it easier for water to be discharged. The external pressure line 2 is also provided with an anti-slip protrusion 2-5. The design of the anti-slip protrusion 2-5 has a certain anti-slip effect after being assembled with the window frame. The anti-slip protrusion 2-5 cooperates with the outer frame of the external pressure line 2 provided with the connecting cavity 2-3 to form an anti-slip groove. The anti-slip groove is buckled on the frame 1, which increases the stability of the connection between the external pressure line 2 and the window frame. The distance between the plane on the outdoor side of the external pressure line 2 and the plane on the outdoor side of the frame 1 is H, and H is 3~10mm. The outer width of the outer frame of the external pressure line 2 provided with the connecting cavity 2-3 is H, and H is preferably 5mm. The external pressure line 2 protrudes outward, which can prevent rainwater from flowing into the frame 1, and also facilitates rainwater to flow down, further preventing outdoor rainwater from directly seeping into the room from the boundary between the frame 1 and the wall.

[0029] like Figure 1 and Figure 2 As shown in Example 2, a multifunctional anti-drop frame pressure wire structure, the safety card pressure plate 11 includes a first snap-in groove 11-1 and a second snap-in groove 11-2. The first snap-in groove 11-1 is snapped onto the frame 1, and the second snap-in groove 11-2 is snapped into place with one end of the external pressure wire 2. The upper surface of the safety card pressure plate 11 has a stepped structure. The safety card pressure plates 11 are evenly distributed between the frame 1 and the external pressure wire 2, which is used to increase the stability of the connection between the external pressure wire 2 and the frame 1.

[0030] In this embodiment, evenly distributed pads 9 are provided between the external pressure line 2 and the frame 1, and the pads 9 are located between adjacent safety card buckle pressure plates 11. The safety card buckle pressure plates 11 can be evenly distributed in sections, and after installation, they can press and pull the external pressure line 2, which has a better anti-slip effect. In addition to placing pads 9 and screwing screws 10 in the intervals where the safety card buckle pressure plates 11 are not used, safety performance is better guaranteed. A glass pad 3 is also provided between the glass 5 and the frame 1, and the glass pad 3 is attached to the frame 1, and the glass pad 3 is also located above the external pressure line 2 and the safety card buckle pressure plate and between the glass 5. The glass pad 3 is attached to the frame 1 and the external pressure line 2, and is cut according to the structure of the frame 1, the safety card buckle pressure plate 11 and the frame 1. The upper part of the glass pad 3 is attached to the glass 5, which increases the support of the glass pad 3 to the glass 5, and further increases the stability of the connection between the glass 5 and the frame 1.

[0031] The other structures are the same as those in Example 1.

[0032] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A multifunctional anti-falling frame wire pressing structure, characterized by: The invention comprises an external pressure line (2), the external pressure line (2) is buckled on the frame (1), and evenly distributed safety buckle pressure plates (11) are provided between the external pressure line (2) and the frame (1), and glass (5) is installed between the external pressure line (2) and the internal pressure line (7) provided on the frame (1).

2. The multifunctional anti-falling whole frame wire pressing structure according to claim 1 is characterized by: The outer pressure line (2) is provided with an outer glass adhesive strip (4) that matches the glass (5), and the inner pressure line (7) is provided with an inner glass adhesive strip (8) that matches the glass (5).

3. The multifunctional anti-falling whole frame wire pressing structure according to claim 2 is characterized by: An end of the outer pressure line (2) close to the inner glass rubber strip (8) is provided with a beveled edge (2-1).

4. The multifunctional anti-falling frame wire pressing structure according to any one of claims 1 to 3, characterized in that: A flat sheet (13) and an angle code (12) are installed at the corner connection of the external pressure line (2); the flat sheet (13) is buckled in the buckling groove (2-2) on the external pressure line (2); and the angle code (12) is installed in the connecting cavity (2-3) on the external pressure line (2).

5. The multifunctional anti-falling whole frame wire pressing structure according to claim 1 is characterized by: A drainage hole (2-4) is provided at the lower portion of the external pressure line (2), and the drainage hole (2-4) penetrates the connecting cavity (2-3).

6. The multifunctional anti-falling frame wire pressing structure according to any one of claims 1 to 3 and 5, characterized in that: The outer pressure line (2) is also provided with an anti-slip protrusion (2-5).

7. The multifunctional anti-falling whole frame wire pressing structure according to claim 6, characterized in that: The distance between the plane where the outdoor side of the external pressure line (2) is located and the plane where the outdoor side of the frame (1) is located is H, and H is 3-10 mm.

8. The multifunctional anti-falling frame wire pressing structure according to any one of claims 1 to 3, 5, and 7, characterized in that: The safety card buckling pressure plate (11) comprises a first buckling groove (11-1) and a second buckling groove (11-2), wherein the first buckling groove (11-1) is buckled on the frame (1), and the second buckling groove (11-2) is buckled with one end of the external pressure line (2).

9. The multifunctional anti-falling whole frame wire pressing structure according to claim 8, characterized in that: Evenly distributed pads (9) are provided between the outer pressure line (2) and the frame (1), and the pads (9) are located between adjacent safety buckle pressure plates (11).

10. The multifunctional anti-falling whole frame wire pressing structure according to claim 9, characterized in that: A glass pad (3) is further provided between the glass (5) and the frame (1), the glass pad (3) being attached to the frame (1), and the glass pad (3) being located above the outer pressure line (2) and the safety buckle pressure plate (11).

Citation Information

Patent Citations

  • Pressing line mounting structure for aluminum alloy window frame

    CN211950171U