Anti-typhoon pressing line for aluminum alloy window

By designing a typhoon-proof press for aluminum alloy windows with removable installation reinforcements and glue blocks, the problem that traditional presses cannot be changed in real time according to customer needs is solved, and multi-mode adaptability and strength improvement is achieved, adapting to various usage scenarios and reducing costs.

CN222949700UActive Publication Date: 2025-06-06FOSHAN SHENGGEMA DOOR & WINDOW SYST CO LTD
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Patent Information

Application Number
CN202421703570.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-06-06
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

Traditional aluminum alloy windows have only one mode of anti-typhoon pressing, which cannot be changed in real time according to customer needs, resulting in the need to purchase multiple pressing lines during installation and procurement, which is costly and cannot adapt to various usage scenarios.

Method used

A typhoon-proof press wire for aluminum alloy window is designed, which includes a crimping frame, consisting of two end crimping wires and two side crimping wires, the first and second reinforcements can be detachably installed on the end crimping wire, and the first glue block for sealing. By setting these reinforcements and adhesive blocks, the crimping line can be adjusted according to needs, which can not only have the breathability of the open crimping line, but also increase the strength, adapt to different usage scenarios.

Benefits of technology

The multi-mode adaptability of the line is realized, which can not only improve breathability but also enhance strength, reduce procurement costs and installation complexity, adapt to various customer needs, and improve the safety of use in typhoon weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-typhoon pressing line for an aluminum alloy window, which relates to the field of pressing lines for windows, and comprises a pressing line frame body, the pressing line frame body is formed by splicing two end pressing lines and two side pressing lines, a first reinforcing piece and a second reinforcing piece which are used for enhancing strength are detachably mounted on the end pressing lines, and the side pressing lines are connected with the first reinforcing piece and the second reinforcing piece. A first rubber block used for sealing glass is detachably installed on one side of the end pressing line, the end pressing line comprises a first alloy plate, and a second alloy plate is integrally formed on the lower surface of one end of the first alloy plate. Real-time adjustment can be carried out according to needs of customers, advantages and disadvantages of the open pressing line and the closed pressing line are complemented, the air permeability is good, the layout can be changed, the strength is improved, during purchasing, only one pressing line is needed to cope with various conditions and customer needs, the structure is simple, and manufacturing is convenient.
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Description

Technical Field

[0001] The utility model relates to the field of window pressure lines, in particular to a typhoon-proof pressure line for aluminum alloy windows. Background Art

[0002] Aluminum alloy window anti-typhoon pressure line, also commonly known as "buckle" or "pressure strip", is an aluminum alloy profile surrounding the glass; its main function is to fix the glass and clamp the glass, thereby enhancing the sealing, support and wind resistance of doors and windows, and ensuring the safety and stability of door and window glass in strong wind weather;

[0003] The press line is divided into open press line and closed press line. The open press line refers to the open state between the two aluminum alloy feet used for installation, and the closed press line refers to a support plate integrally formed between the two aluminum alloy feet, so that it forms a closed space, thereby increasing the strength of the press line. Compared with the closed press line, the open press line has a certain deformation ability because there is no support between the two aluminum alloy feet, which is convenient for fine-tuning during installation. Reducing the connecting plate in the middle can also reduce the use of materials, which can also reduce the cost. It is more convenient to disassemble for maintenance such as replacing the pressure strips in the later stage. However, because it has an opening, its sealing is generally poor, and its ability to face strong winds is weaker than that of the closed press line. Because of its closed structure, the closed press line has better resistance to deformation in all directions, which also leads to the need for it to be installed tightly, and it cannot be fine-tuned after installation, and it is difficult to remove after installation, which is not convenient for later maintenance. However, its closed structure provides better sealing, and its ability to resist strong winds is better than that of the open press line.

[0004] Traditional crimping usually has only one mode when in use and cannot be changed in real time according to customer needs. When purchasing crimping for installation, it is necessary to purchase multiple types of crimping to meet the installation requirements, which is very costly.

[0005] Therefore, it is necessary to propose a typhoon-proof pressure line for aluminum alloy windows to solve the above problems. Utility Model Content

[0006] The purpose of the utility model is to provide a typhoon-proof pressure line for aluminum alloy windows to solve the above-mentioned problem of not having multiple modes and being unable to adapt to various usage scenarios.

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a typhoon-proof pressure line for aluminum alloy windows, comprising a pressure line frame, the pressure line frame is composed of two end pressure lines and two side pressure lines spliced ​​together, the end pressure line is detachably installed with a first reinforcement member and a second reinforcement member for increasing strength, a first rubber block for sealing the glass is detachably installed on one side of the end pressure line, the end pressure line comprises a first alloy plate, a second alloy plate is integrally formed on the lower surface of one end of the first alloy plate, a third alloy plate is integrally formed on the middle part of the lower surface of the first alloy plate, a fourth alloy plate is integrally formed on the end of the lower surface of the first alloy plate away from the second alloy plate, the first reinforcement member is located between the third alloy plate and the fourth alloy plate, and the second reinforcement member is located between the second alloy plate and the third alloy plate.

[0008] Preferably, a plurality of evenly distributed second rubber blocks are fixedly mounted on the lower surface of the first reinforcement member, and self-tapping screws are mounted on both ends of the first reinforcement member.

[0009] Preferably, two second L-shaped blocks symmetrical to each other are integrally formed on a side of the second alloy plate away from the third alloy plate, and a groove body cooperating with the second L-shaped blocks is formed on the first rubber block.

[0010] Preferably, a third L-shaped block is integrally formed at the bottom end of the second alloy plate, a first L-shaped block is integrally formed at one end of the second reinforcement member close to the second alloy plate, the first L-shaped block is slidably clamped inside the third L-shaped block, a fourth L-shaped block is integrally formed at one side of the third alloy plate close to the second alloy plate, and an end of the second reinforcement member away from the first L-shaped block is slidably clamped on the fourth L-shaped block.

[0011] Preferably, a first clamping plate is integrally formed at the bottom end of one side of the third alloy plate close to the third L-shaped clamping block, and a second clamping plate is integrally formed at the lower end of one side of the fourth alloy plate close to the third alloy plate.

[0012] Preferably, the third alloy plate has two integrally formed support blocks on one side away from the first clamping plate, one end of the first reinforcement is slidably clamped between the two support blocks, and one end of the first reinforcement away from the support block is slidably clamped between the first alloy plate and the second clamping plate.

[0013] Preferably, both ends of the end pressure line are fixedly mounted with a first clamping block, and both ends of the side pressure line are fixedly mounted with a second clamping block.

[0014] Technical effects and advantages of the utility model:

[0015] 1. The device has two different layouts by setting the first reinforcement member and the second reinforcement member, which can be adjusted in real time according to customer needs, and the advantages and disadvantages of the open pressure line and the closed pressure line are complementary, so that it can have good air permeability and change the layout to improve its strength. When purchasing, only one pressure line is needed to cope with various situations and customer needs, and the structure is simple and easy to manufacture;

[0016] 2. By setting the first reinforcement member and the second reinforcement member, the device has two closed ends when used as a closed pressure line, which can increase the connection strength between the pressure line and the window frame, and also increase the connection strength between the pressure line and the glass, so that the device can cope with high-intensity typhoon weather and improve safety in use. The structural design meets mechanical standards and has high strength and stable use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 The utility model is a schematic diagram of the structure of the typhoon-proof pressure wire for aluminum alloy windows.

[0018] Figure 2 It is a structural schematic diagram of the middle end wire pressing of the utility model.

[0019] Figure 3 It is a side view of the middle end crimping wire of the utility model.

[0020] Figure 4 It is a schematic diagram of the structure of the first card block and the second card block in the utility model.

[0021] In the figure: 1, wire pressing frame; 2, end wire pressing; 3, side wire pressing; 4, first reinforcement; 5, second reinforcement; 6, first rubber block; 7, first clamping block; 21, first alloy plate; 22, second alloy plate; 23, third alloy plate; 24, fourth alloy plate; 41, second rubber block; 42, self-tapping screw; 51, first L-shaped clamping block; 71, second clamping block; 221, second L-shaped clamping block; 222, third L-shaped clamping block; 231, first clamping plate; 232, supporting clamping block; 233, fourth L-shaped clamping block; 241, second clamping plate. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0023] The utility model provides Figures 1 to 4The typhoon-proof pressure wire for aluminum alloy windows shown in the figure comprises a pressure wire frame 1, the pressure wire frame 1 is composed of two end pressure wires 2 and two side pressure wires 3, a first reinforcing member 4 and a second reinforcing member 5 for increasing strength are detachably mounted on the end pressure wire 2, a plurality of evenly distributed second rubber blocks 41 are fixedly mounted on the lower surface of the first reinforcing member 4, self-tapping screws 42 are mounted on both ends of the first reinforcing member 4, a first rubber block 6 for sealing the glass is detachably mounted on one side of the end pressure wire 2, the end pressure wire 2 comprises a first alloy plate 21, a second alloy plate 22 is integrally formed on the lower surface of one end of the first alloy plate 21, and a second alloy plate 22 is integrally formed on the lower surface of the first alloy plate 21. A third alloy plate 23 is integrally formed with the first alloy plate 21, a fourth alloy plate 24 is integrally formed with the lower surface of the first alloy plate 21 at one end away from the second alloy plate 22, the first reinforcement 4 is located between the third alloy plate 23 and the fourth alloy plate 24, the second reinforcement 5 is located between the second alloy plate 22 and the third alloy plate 23, the third alloy plate 23 is integrally formed with a first clamping plate 231 at the bottom end of one side close to the third L-shaped clamping block 222, the fourth alloy plate 24 is integrally formed with a second clamping plate 241 at the lower end of one side close to the third alloy plate 23, both ends of the end pressure line 2 are fixedly installed with a first clamping block 7, and both ends of the side pressure line 3 are fixedly installed with a second clamping block 71.

[0024] Aluminum alloy window typhoon pressure line, also commonly known as "buckle" or "pressure strip", is an aluminum alloy profile around the glass. Its main function is to fix the glass and clamp the glass, thereby enhancing the sealing, support and wind resistance of doors and windows, and ensuring the safety and stability of door and window glass in strong wind weather.

[0025] When installing this type of pressure wire, first place the glass on the window frame, and then clamp the two end pressure wires 2 at the upper and lower ends of the window frame respectively. At this time, the first clamping plate 231 and the second clamping plate 241 are installed with the clamping block reserved on the window frame. At this time, the first clamping plate 231 and the second clamping plate 241 are fixed by the clamping block. The pressure wire is divided into an open pressure wire and a closed pressure wire. The open pressure wire refers to an open state between two aluminum alloy feet used for installation, and the closed pressure wire is a support plate integrally formed between the two aluminum alloy feet, so that it forms a closed space, thereby increasing the strength of the pressure wire. Compared with the closed pressure wire, the open pressure wire has a certain deformation ability because there is no support between the two aluminum alloy feet. It is easy to make fine adjustments during installation, and reducing the middle connecting plate can also reduce the use of materials, which can also reduce costs. It is also relatively convenient to disassemble for later maintenance such as replacing the pressure strips. However, because it has an opening, its sealing is generally poor, and its ability to face strong winds is weaker than that of the closed pressure line. The closed pressure line has a good ability to resist deformation in all directions due to its closed structure, which means that it needs to be installed tightly during installation, and fine adjustments cannot be made after installation. It is also difficult to remove after installation, which is not convenient for later maintenance. However, relatively speaking, its closed structure provides better sealing, and its ability to resist strong winds is better than that of the open pressure line.

[0026] Therefore, the present invention takes into account the advantages and disadvantages of both and designs the following solution. During installation, if the customer needs to use an open pressure line to provide better air permeability for the house, and considering the later maintenance and installation costs, the first reinforcement member 4 and the second reinforcement member 5 can be removed. At this time, the third alloy plate 23 and the fourth alloy plate 24 are used to install the pressure line, the second alloy plate 22 is used to support the glass, the first rubber block 6 is used to seal the glass, and reduce the occurrence of water flowing into the pressure line. The first alloy plate 21 mainly plays a role in resisting deformation;

[0027] If the installation location is at high altitude or in a strong wind area, considering the safety during use, it is necessary to install the first reinforcement 4 and the first reinforcement 4 before installation. At this time, the first alloy plate 21, the second alloy plate 22, the third alloy plate 23, and the second reinforcement 5 form a first closed mouth, and the first alloy plate 21, the third alloy plate 23, the fourth alloy plate 24, and the first reinforcement 4 form a second closed mouth, thereby making the device a closed pressure line, which increases the ability of the pressure line to face typhoon weather. When the end pressure line 2 is installed, because both ends of the end pressure line 2 and the side pressure line 3 are inclined, At this time, the two self-tapping screws 42 on the end pressure line 2 are exposed to the outside, and the installer screws them into the window frame to increase the fixing strength between the end pressure line 2 and the window frame. The self-tapping screws 42 are not installed on the first reinforcement member 4 corresponding to the side pressure line 3. It is only necessary to press the side pressure line 3 for installation. On the one hand, the window frame can clamp the side pressure line 3, and on the other hand, the first clamping block 7 can clamp the second clamping block 71, thereby increasing the overall strength of the pressure line frame 1, and being able to cope with high-intensity typhoon weather, and the second rubber block 41 can further increase the sealing between the pressure line and the window frame to prevent water leakage.

[0028] Furthermore, by setting the first reinforcement 4 and the second reinforcement 5, the device has two different layouts, which can be adjusted in real time according to customer needs, and the advantages and disadvantages of the open pressure line and the closed pressure line are complemented, so that it can have good air permeability and change the layout to improve its own strength. When purchasing, only one pressure line is needed to cope with various situations and customer needs, and the structure is simple and easy to manufacture.

[0029] The second alloy plate 22 is integrally formed with two mutually symmetrical second L-shaped blocks 221 on one side away from the third alloy plate 23. A groove body cooperating with the second L-shaped block 221 is provided on the first rubber block 6. The second L-shaped block 221 is used to support the first rubber block 6 to facilitate the installation of the first rubber block 6. The bottom end of the second alloy plate 22 is integrally formed with a third L-shaped block 222. The end of the second reinforcement member 5 close to the second alloy plate 22 is integrally formed with a first L-shaped block 51. The first L-shaped block 51 is slidably clamped on The third L-shaped block 222 can clamp the second reinforcement member 5 and prevent the second reinforcement member 5 from moving. A fourth L-shaped block 233 is integrally formed on the side of the third alloy plate 23 close to the second alloy plate 22. The end of the second reinforcement member 5 away from the first L-shaped block 51 is slidably clamped on the fourth L-shaped block 233. The fourth L-shaped block 233 can prevent the end of the second reinforcement member 5 away from the first L-shaped block 51 from sliding, so that it can have a higher support strength.

[0030] Two supporting blocks 232 are integrally formed on one side of the third alloy plate 23 away from the first clamping plate 231, one end of the first reinforcement 4 is slidably clamped between the two supporting blocks 232, and one end of the first reinforcement 4 away from the supporting block 232 is slidably clamped between the first alloy plate 21 and the second clamping plate 241. The two supporting blocks 232 and the first alloy plate 21 and the second clamping plate 241 clamp the first reinforcement 4 to facilitate the installation of the first reinforcement 4, and can also prevent the first reinforcement 4 from sliding when the device is subjected to force, so that the first reinforcement 4 has a more stable supporting effect.

[0031] Working principle: during installation, if the customer needs to use an open pressure line to provide better air permeability for the house, and considering the subsequent maintenance and installation costs, the first reinforcement 4 and the second reinforcement 5 can be removed. At this time, the third alloy plate 23 and the fourth alloy plate 24 are used to install the pressure line, the second alloy plate 22 is used to support the glass, and the first rubber block 6 is used to seal the glass to reduce the occurrence of water flowing into the pressure line. The first alloy plate 21 mainly plays a role in resisting deformation; if the installation position is located at a high altitude or a strong wind area, considering the safety during use, the first reinforcement 4 and the first reinforcement 4 need to be installed before installation. At this time, the first alloy plate 21, the second alloy plate 22, the third alloy plate 23, and the second reinforcement 5 form a first closed mouth, and the first alloy plate 21 and the third alloy plate 23. The fourth alloy plate 24 and the first reinforcement 4 form a second closed opening, thereby making the device a closed pressure line, which increases the ability of the pressure line to face typhoon weather. After the end pressure line 2 is installed, because both ends of the end pressure line 2 and the side pressure line 3 are inclined, the two self-tapping screws 42 on the end pressure line 2 are exposed to the outside. The installer screws them into the window frame to increase the fixing strength between the end pressure line 2 and the window frame. The self-tapping screws 42 are not installed on the first reinforcement 4 corresponding to the side pressure line 3. It is only necessary to press the side pressure line 3 for installation. On the one hand, the window frame can clamp the side pressure line 3, and on the other hand, the first clamping block 7 can clamp the second clamping block 71, thereby increasing the overall strength of the pressure line frame 1, which can cope with high-intensity typhoon weather, and the second rubber block 41 can further increase the sealing between the pressure line and the window frame.

[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A typhoon-proof pressure wire for an aluminum alloy window, comprising a pressure wire frame (1), characterized in that: The wire pressing frame (1) is composed of two end wire pressings (2) and two side wire pressings (3) spliced ​​together; a first reinforcing member (4) and a second reinforcing member (5) for increasing strength are detachably mounted on the end wire pressings (2); a first rubber block (6) for sealing the glass is detachably mounted on one side of the end wire pressings (2); the end wire pressings (2) include a first alloy plate (21); a second alloy plate (22) is integrally formed on the lower surface of one end of the first alloy plate (21); a third alloy plate (23) is integrally formed in the middle of the lower surface of the first alloy plate (21); a fourth alloy plate (24) is integrally formed at one end of the lower surface of the first alloy plate (21) away from the second alloy plate (22); the first reinforcing member (4) is located between the third alloy plate (23) and the fourth alloy plate (24); and the second reinforcing member (5) is located between the second alloy plate (22) and the third alloy plate (23).

2. The typhoon-proof pressure wire for aluminum alloy windows according to claim 1, characterized in that: A plurality of evenly distributed second rubber blocks (41) are fixedly mounted on the lower surface of the first reinforcement member (4), and self-tapping screws (42) are mounted on both ends of the first reinforcement member (4).

3. The typhoon-proof pressure wire for aluminum alloy windows according to claim 2, characterized in that: Two mutually symmetrical second L-shaped clamping blocks (221) are integrally formed on a side of the second alloy plate (22) away from the third alloy plate (23), and a groove body cooperating with the second L-shaped clamping block (221) is provided on the first rubber block (6).

4. The typhoon-proof pressure wire for aluminum alloy windows according to claim 3, characterized in that: A third L-shaped clamping block (222) is integrally formed at the bottom end of the second alloy plate (22); a first L-shaped clamping block (51) is integrally formed at one end of the second reinforcement member (5) close to the second alloy plate (22); the first L-shaped clamping block (51) is slidably clamped inside the third L-shaped clamping block (222); a fourth L-shaped clamping block (233) is integrally formed at one side of the third alloy plate (23) close to the second alloy plate (22); and an end of the second reinforcement member (5) away from the first L-shaped clamping block (51) is slidably clamped on the fourth L-shaped clamping block (233).

5. The typhoon-proof pressure wire for aluminum alloy windows according to claim 4, characterized in that: A first clamping plate (231) is integrally formed at the bottom end of one side of the third alloy plate (23) close to the third L-shaped clamping block (222), and a second clamping plate (241) is integrally formed at the lower end of one side of the fourth alloy plate (24) close to the third alloy plate (23).

6. The typhoon-proof pressure wire for aluminum alloy windows according to claim 5, characterized in that: Two supporting blocks (232) are integrally formed on one side of the third alloy plate (23) away from the first clamping plate (231); one end of the first reinforcement member (4) is slidably clamped between the two supporting blocks (232); and one end of the first reinforcement member (4) away from the supporting block (232) is slidably clamped between the first alloy plate (21) and the second clamping plate (241).

7. The typhoon-proof pressure wire for aluminum alloy windows according to claim 6, characterized in that: Both ends of the end pressure line (2) are fixedly mounted with a first clamping block (7), and both ends of the side pressure line (3) are fixedly mounted with a second clamping block (71).