Aluminum alloy glass door and window

The combined design of oblique pressure strips and right-angle support edges solves the problem of loosening and deformation of aluminum alloy glass doors and windows under lateral forces, improves the supporting strength and lighting effect of the glass, and enhances the stability and sealing of the overall structure.

CN223387193UActive Publication Date: 2025-09-26JIANGSU DAYANG DOOR & WINDOW CO LTD
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Patent Information

Application Number
CN202422736554.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-09
Publication Date
2025-09-26
Estimated Expiration
2034-11-09

AI Technical Summary

Technical Problem

The rectangular pressure lines of existing aluminum alloy glass doors and windows are prone to loosening and deformation when subjected to large lateral forces, affecting the support and lighting effects of the glass.

Method used

The oblique pressure strip design is adopted, including oblique supporting edges and right-angle supporting edges. The oblique supporting edges are installed on the inner profile frame and pressed against the glass. The right-angle supporting edges are clipped into the slots of the inner profile frame. Combined with the structure of the limit block and the support block, the supporting force and stability of the glass are enhanced.

Benefits of technology

It improves the supporting strength and stability of the glass, reduces the risk of loosening and deformation, improves the lighting effect, and enhances the safety and sealing of the overall structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an aluminum alloy glass door and window, and relates to the technical field of building doors and windows, the aluminum alloy glass door and window comprises at least two sets of inner profile frames, at least two sets of outer profile frames and at least two sets of glass, and heat insulation strips are installed between the inner profile frames and the outer profile frames. Inclined pressing strips are installed on the surfaces of the adjacent sides of the two sets of inner profile frames, each inclined pressing strip comprises an inclined supporting edge and a right-angle supporting edge, and one end of each inclined supporting edge is installed on the corresponding inner profile frame; the right-angle supporting edge is installed on the side wall of the side, facing the inner profile frame, of the inclined pressing strip and supported on the inner profile frame, and the end, not connected with the inner profile frame, of the inclined supporting edge abuts against the surface of one side of the glass. The surface of the side, away from the inclined pressing strip, of the glass abuts against the outer profile frame. The pressing line structure has the effect of preventing the pressing line from being loosened and deformed due to large lateral force.
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Description

Technical Field

[0001] The present application relates to the field of building door and window technology, and in particular to an aluminum alloy glass door and window. Background Art

[0002] Aluminum alloy glass doors and windows are widely used in residential and commercial buildings due to their light weight, corrosion resistance, high strength and good aesthetics. They not only provide good thermal insulation, but can also be designed in a variety of styles to meet different aesthetic needs.

[0003] The glass of existing aluminum alloy glass doors and windows is mostly installed on an aluminum alloy frame. An installation step is provided on the outer side of the aluminum alloy frame. After the glass is installed on the aluminum alloy frame close to the installation step, a rectangular pressing line is used to fix it on the inner side of the glass to the aluminum alloy frame to restrict and fix the glass on the aluminum alloy frame.

[0004] The rectangular pressure line not only forms a wider aluminum alloy frame on the inner side of the door and window glass installation port, affecting the lighting effect of the door and window glass, but the straight direction of the rectangular pressure line wall also provides slightly poor support for the door and window glass. When it is subjected to a large lateral force, it is easy to loosen and deform, affecting the support for the glass. Utility Model Content

[0005] In order to prevent the pressure line from loosening and deforming due to the large lateral force it bears, the present application provides an aluminum alloy glass door and window.

[0006] The aluminum alloy glass door and window provided in this application adopts the following technical solution:

[0007] An aluminum alloy glass door and window comprises an inner profile frame, an outer profile frame and glass, wherein the inner profile frame and the outer profile frame are provided with at least two groups, a heat insulation strip is installed between the inner profile frame and the outer profile frame, and an oblique pressure strip is installed on the adjacent side surface of the two groups of inner profile frames, the oblique pressure strip comprises an oblique supporting edge and a right-angle supporting edge, one end of the oblique supporting edge is installed on the inner profile frame, the right-angle supporting edge is installed on the side wall of the oblique pressure strip facing the inner profile frame and supported on the inner profile frame, the end of the oblique supporting edge not connected to the inner profile frame is pressed against the side surface of the glass, and the surface of the glass facing away from the oblique pressure strip is pressed against the outer profile frame.

[0008] By adopting the above technical solution, the design of the diagonal beading makes the door and window glass more stable and reliable during installation, avoiding the problem of traditional rectangular beading that is prone to loosening when subjected to large lateral forces. One end of the diagonal support edge is installed on the inner profile frame, and the other end is pressed against the surface of the glass. This structure not only improves the support force for the glass, but also reduces the width of the beading within the door and window glass installation opening, improving the lighting effect of the door and window glass. At the same time, the provision of right-angled support edges further enhances the overall stability of the beading, ensuring the safety of the glass during long-term use, and preventing the beading from loosening and deformation due to large lateral forces.

[0009] In a specific possible implementation scheme, the oblique supporting edge is installed in a limiting groove provided at one end of the inner profile frame, a limiting block is installed on the inner profile frame, and the limiting block is clamped in the limiting groove.

[0010] By adopting this technical solution, the diagonal support edge is installed in a retaining groove formed at one end of the inner profile frame. The retaining block installed on the inner profile frame is engaged in the retaining groove, making the diagonal support edge more stable during installation and avoiding the problem of unstable installation caused by position deviation. At the same time, the coordinated structure of the retaining block and the retaining groove improves the overall stability of the diagonal bead, strengthens the support for the glass, and reduces the risk of deformation caused by lateral forces.

[0011] In a specific possible implementation scheme, a hook is provided on the right-angle support edge, and a slot is provided on the side wall of the inner profile frame corresponding to the hook, and the hook can be engaged in the slot.

[0012] By adopting this technical solution, the hooks on the right-angle support edges can be snapped into the slots on the side walls of the inner profile frame, effectively improving the connection stability between the diagonal bead and the inner profile frame, preventing loosening or deformation when subjected to large lateral forces, and enhancing the support and fixation of the glass. This snap-fit ​​structure also simplifies the installation process and improves installation efficiency.

[0013] In a specific possible implementation manner, a support block is installed on the hook, and the support block is supported on the side wall of the inner profile frame.

[0014] By adopting this technical solution, the support blocks effectively enhance the stability of the right-angle support edges, preventing deformation or fallout caused by uneven force, and improving the reliability and service life of the entire aluminum alloy glass door and window structure. Furthermore, the support blocks ensure close contact between the right-angle support edges and the inner profile frame, further enhancing the overall sealing and sound insulation of the door and window.

[0015] In a specific possible implementation scheme, a support rod is installed on the inner profile frame between the clamping slot and the limiting block, and the supporting block is used to support the right-angle supporting edge.

[0016] By adopting this technical solution, the support rod is installed between the slot and the stop block on the inner profile frame, effectively increasing the support stability of the right-angle support edge, preventing loosening or deformation when subjected to large lateral forces, and improving the reliability of the glass fixation. Furthermore, the support rod design makes the diagonal beading more stable during installation, further enhancing the overall structural strength of the door and window.

[0017] In a specific possible implementation scheme, a support block is installed on the inner profile frame between the clamping slot and the limiting block, and the support block is used to support the right-angle support edge.

[0018] By adopting the above technical solution, the first sealing strip and the second sealing strip are respectively abutted against the two sides of the glass, which effectively improves the sealing and waterproof performance of the doors and windows, while enhancing the stability of the glass, preventing air infiltration and water vapor entry caused by changes in the external environment, and improving the overall performance of the doors and windows.

[0019] In a specific possible implementation scheme, it also includes an inner transition profile frame and an outer transition profile frame, which are installed between two adjacent groups of inner profile frames and outer profile frames, and oblique pressure strips are installed on the left and right side walls of the inner transition profile, and a thermal insulation strip is installed between the inner transition profile frame and the outer transition profile frame.

[0020] By adopting the above technical solution, the arrangement of inner and outer transition profile frames creates a more stable structure between adjacent sets of inner and outer profile frames, enhancing overall rigidity and stability. Furthermore, diagonal beading is installed on both the left and right walls of the inner transition profile, further enhancing the support and fixation of the glass, reducing loosening and deformation caused by lateral forces, and improving safety and service life. Furthermore, an insulation strip is installed between the inner and outer transition profile frames, effectively isolating the heat transfer between the inside and outside, enhancing the thermal insulation performance of the doors and windows, and reducing energy consumption.

[0021] In a specific possible implementation scheme, two thermal insulation strips are provided, and the two thermal insulation strips are symmetrically arranged with respect to the central axis of the inner profile frame and the outer profile frame in the width direction.

[0022] By adopting this technical solution, the two insulation strips are symmetrically arranged relative to the central axis of the inner and outer profile frames in the width direction, effectively improving the thermal insulation performance of aluminum alloy glass doors and windows, ensuring a more uniform heat transfer path, reducing the thermal bridge effect, and further enhancing energy savings. Furthermore, the symmetrical arrangement of the insulation strips provides structural stability, enhancing the overall rigidity and deformation resistance of the doors and windows, and extending their service life.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. The design of the oblique beading makes the door and window glass more stable and reliable during installation, avoiding the problem of traditional rectangular beading that is prone to loosening when subjected to large lateral forces. One end of the oblique support edge is installed on the inner profile frame, and the other end is pressed against the surface of one side of the glass. This structure not only improves the support force for the glass, but also reduces the width of the beading within the door and window glass installation opening, improving the lighting effect of the door and window glass. At the same time, the provision of right-angled support edges further enhances the overall stability of the beading, ensuring the safety of the glass during long-term use, and preventing the beading from loosening and deformation due to large lateral forces.

[0025] 2. The diagonal support edge is installed in a retaining groove at one end of the inner profile frame. The retaining block installed on the inner profile frame is engaged in the retaining groove, making the diagonal support edge more stable during installation and avoiding the problem of unstable installation due to position deviation. At the same time, the coordinated structure of the retaining block and retaining groove improves the overall stability of the diagonal bead, strengthens the support for the glass, and reduces the risk of deformation caused by lateral forces.

[0026] 3. The hooks on the right-angled support edges snap into the slots on the sidewalls of the inner profile frame, effectively improving the stability of the connection between the diagonal bead and the inner profile frame, preventing loosening or deformation under high lateral forces, and enhancing the support and fixation of the glass. This snap-on structure also simplifies the installation process and improves installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present application.

[0028] Figure 2 This is a schematic structural diagram of an embodiment of the present application for embodying the oblique pressing strips.

[0029] Explanation of the accompanying drawings: 1. Inner profile frame; 11. Limit block; 12. Slot; 13. Support rod; 2. Outer profile frame; 3. Glass; 4. Insulation strip; 5. Oblique pressure strip; 51. Oblique support edge; 511. Limit slot; 52. Right-angle support edge; 53. Hook; 54. Support block; 6. Mounting rib; 7. First sealing strip; 8. Second sealing strip; 9. Inner transition profile frame; 10. Outer transition profile frame. DETAILED DESCRIPTION

[0030] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "disposed" and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to direct connections or indirect connections through an intermediate medium; they can refer to internal communication between two components or the interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0031] The embodiment of the present application discloses an aluminum alloy glass door and window.

[0032] like Figure 1 As shown, the aluminum alloy glass door and window includes an inner profile frame 1, an outer profile frame 2 and a glass 3. There are at least two groups of inner profile frames 1 and outer profile frames 2. A heat insulation strip 4 is installed between the inner profile frame 1 and the outer profile frame 2. An oblique molding 5 is installed on the adjacent side surface of the two groups of inner profile frames 1. The oblique molding 5 includes an oblique supporting edge 51 and a right-angle supporting edge 52. One end of the oblique supporting edge 51 is installed on the inner profile frame 1, and the right-angle supporting edge 52 is installed on the side wall of the oblique molding 5 facing the inner profile frame 1 and supported on the inner profile frame 1. The end of the oblique supporting edge 51 that is not connected to the inner profile frame 1 is pressed against the side surface of the glass 3, and the surface of the glass 3 facing away from the oblique molding 5 is pressed against the outer profile frame 2, thereby achieving the purpose of enhancing the support of the glass 3 and improving the lighting effect.

[0033] Two insulation strips 4 are provided, symmetrically arranged about the central axis of the inner and outer profile frames 1 and 2 in the width direction. This arrangement further enhances the thermal insulation performance of the door and window. The insulation strips 4 can be made of polyurethane foam or other high-efficiency insulation materials to ensure excellent thermal insulation. The insulation strips 4 can be installed between the inner and outer profile frames 1 and 2, symmetrically arranged about the central axis of the inner and outer profile frames 1 and 2 in the width direction, ensuring uniform thermal insulation in all directions.

[0034] like Figure 2As shown, the oblique support edge 51 is installed on one end of the inner profile frame 1 to provide a limiting groove 511, and a limiting block 11 is installed on the inner profile frame 1. The limiting block 11 is clamped in the limiting groove 511. The setting of the limiting groove 511 can ensure that the oblique support edge 51 will not be offset during the installation process, thereby improving its positioning accuracy. The shape and size of the limiting groove 511 can be adjusted according to actual needs to ensure that it can fit closely with the limiting block 11. The limiting block 11 can be made of materials such as metal or plastic to ensure that it has sufficient strength and wear resistance. The installation position of the limiting block 11 can be set at an appropriate position of the inner profile frame 1 to facilitate the installation and disassembly of the oblique support edge 51.

[0035] The stop block 11 can be coupled to the stop slot 511 in a variety of ways, such as snap-fitting, plug-in connection, or magnetic connection. In this embodiment, snap-fitting is preferred because it is easy to operate and requires no additional tools. The stop slot 511 can be internally provided with guide grooves, and the stop block 11 can be externally provided with guide ribs that match the guide grooves. This ensures that the stop block 11 is smoothly inserted into the stop slot 511, thereby improving installation efficiency.

[0036] A hook 53 is provided on the right-angle support edge 52, and a slot 12 is provided on the side wall of the inner profile frame 1 corresponding to the hook 53. The hook 53 can be connected in the slot 12. A support block 54 is installed on the hook 53, and the support block 54 is supported on the side wall of the inner profile frame 1. The setting of the hook 53 can ensure that the right-angle support edge 52 can be firmly fixed on the inner profile frame 1 during the installation process, thereby improving its stability.

[0037] A support rod 13 is installed on the side wall of the inner profile frame 1 between the slot 12 and the limit block 11. The support rod 13 is used to support the side wall of the right-angle support edge 52. The support rod 13 is installed between the slot 12 and the limit block 11 on the inner profile frame 1, which can effectively increase the supporting stability of the right-angle support edge 52, prevent it from loosening or deformation when subjected to a large lateral force, and improve the reliability of fixing the glass 3.

[0038] The outer profile frame 2 is provided with a mounting rib 6, and the mounting rib 6 is provided with a first sealing strip 7. The oblique supporting edge 51 is not provided with a second sealing strip 8 at the connection end with the inner profile frame 1. The first sealing strip 7 and the second sealing strip 8 are respectively abutted against the two sides of the glass 3. The setting of the mounting rib 6 can ensure that the glass 3 can be more stable during the installation process and reduce the loosening caused by vibration or wind pressure. The material of the mounting rib 6 can be selected from aluminum alloy or other high-strength materials to ensure that it has sufficient rigidity and durability. The setting of the first sealing strip 7 and the second sealing strip 8 can effectively prevent rainwater and dust from entering the inside of the doors and windows, and improve the sealing performance of the doors and windows. The material of the first sealing strip 7 and the second sealing strip 8 can be selected from soft materials such as rubber or silicone to ensure that it has good sealing and elasticity. The installation position of the first sealing strip 7 and the second sealing strip 8 can be set at the appropriate position of the mounting rib 6 and the oblique supporting edge 51 to ensure that it can fit tightly on both sides of the glass 3.

[0039] In the embodiment of the present application, it also includes an inner transition profile frame 9 and an outer transition profile frame 10. The inner transition profile frame 9 and the outer transition profile frame 10 are installed between two adjacent groups of inner profile frames 1 and outer profile frames 2, and oblique pressure strips 5 are installed on the left and right side walls of the inner transition profile. An insulation strip 4 is installed between the inner transition profile frame 9 and the outer transition profile frame 10. The inner transition profile frame has the same structure as the inner profile frame 1, and the outer transition profile frame 10 has the same structure as the outer profile frame 2.

[0040] The arrangement of the inner transition profile frame 9 and the outer transition profile frame 10 can effectively improve the overall stability and thermal insulation performance of doors and windows. The materials of the inner transition profile frame 9 and the outer transition profile frame 10 can be selected from aluminum alloy or other high-strength materials to ensure that they have sufficient rigidity and durability. The installation position of the inner transition profile frame 9 and the outer transition profile frame 10 can be set between two adjacent groups of inner profile frames 1 and outer profile frames 2 to ensure that they can be firmly fixed on doors and windows. The arrangement of the thermal insulation strip 4 can effectively reduce heat transfer and improve the thermal insulation performance of doors and windows. The material of the thermal insulation strip 4 can be selected from polyurethane foam or other high-efficiency thermal insulation materials to ensure that it has good thermal insulation performance.

[0041] The implementation principle of the aluminum alloy glass door and window in this embodiment is as follows: the design of the diagonal bead 5 not only provides better support for the glass 3, but also effectively reduces the width of the aluminum alloy frame, thereby improving the lighting effect of the door and window. The combined structure of the diagonal support edge 51 and the right-angle support edge 52 of the diagonal bead 5 allows it to better adapt to the shape of the glass 3 during installation, providing more uniform support. In addition, the optimized material selection and connection method of the diagonal bead 5 further improve its durability and reliability, thereby extending the service life of the door and window.

[0042] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An aluminum alloy glass door and window, characterized by: The invention comprises an inner profile frame (1), an outer profile frame (2) and a glass (3), wherein the inner profile frame (1) and the outer profile frame (2) are provided with at least two groups, a heat insulation strip (4) is installed between the inner profile frame (1) and the outer profile frame (2), and an oblique beading strip (5) is installed on the adjacent side surfaces of the two groups of the inner profile frames (1), and the oblique beading strip (5) comprises an oblique supporting edge (51) and a right-angle supporting edge (52), one end of the oblique supporting edge (51) is installed on the inner profile frame (1), and the right-angle supporting edge (52) is installed on the side wall of the oblique beading strip (5) facing the inner profile frame (1) and supported on the inner profile frame (1), and the end of the oblique supporting edge (51) not connected to the inner profile frame (1) is pressed against the side surface of the glass (3), and the side surface of the glass (3) facing away from the oblique beading strip (5) is pressed against the outer profile frame (2).

2. The aluminum alloy glass door and window according to claim 1, characterized in that: The oblique supporting edge (51) is installed on one end of the inner profile frame (1) to provide a limiting groove (511), and a limiting block (11) is installed on the inner profile frame (1), and the limiting block (11) is clamped in the limiting groove (511).

3. The aluminum alloy glass door and window according to claim 2, characterized in that: A hook (53) is provided on the right-angle support edge (52), and a slot (12) is provided on the side wall of the inner profile frame (1) corresponding to the hook (53), and the hook (53) can be engaged in the slot (12).

4. The aluminum alloy glass door and window according to claim 3, characterized in that: A support block (54) is mounted on the hook (53), and the support block (54) is supported on the side wall of the inner profile frame (1).

5. The aluminum alloy glass door and window according to claim 3, characterized in that: A support rod (13) is installed on the inner profile frame (1) between the clamping slot (12) and the limiting block (11), and the support rod (13) is used to support the right-angle support edge (52).

6. The aluminum alloy glass door and window according to claim 1, characterized in that: The outer profile frame (2) is provided with a mounting rib (6), the mounting rib (6) is provided with a first sealing strip (7), the oblique supporting edge (51) is provided with a second sealing strip (8) at the end not connected to the inner profile frame (1), and the first sealing strip (7) and the second sealing strip (8) are respectively in contact with both sides of the glass (3).

7. The aluminum alloy glass door and window according to claim 1, characterized in that: The invention also includes an inner transition profile frame (9) and an outer transition profile frame (10), wherein the inner transition profile frame (9) and the outer transition profile frame (10) are installed between two adjacent groups of the inner profile frame (1) and the outer profile frame (2), and oblique pressure strips (5) are installed on the left and right side walls of the inner transition profile frame (9), and a heat insulation strip (4) is installed between the inner transition profile frame (9) and the outer transition profile frame (10).

8. The aluminum alloy glass door and window according to claim 1, characterized in that: Two heat-insulating strips (4) are provided, and the two heat-insulating strips (4) are symmetrically arranged relative to the central axis of the inner profile frame (1) and the outer profile frame (2) in the width direction.