Frame and sash flush aluminum profile structure

By using a flush aluminum profile structure for the frame and sash, the main frame and glass strip are aligned, solving the problem of insufficient aesthetics in traditional door and window structures, improving aesthetics and user experience, and enhancing sealing, sound insulation, and heat insulation performance.

CN224134483UActive Publication Date: 2026-04-17HIGH-TECH BUILDING MATERIALS (XIANYANG) ALUMINUM TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HIGH-TECH BUILDING MATERIALS (XIANYANG) ALUMINUM TECH CO LTD
Filing Date
2025-05-14
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional door and window structures make it difficult to achieve flush alignment between the main frame and the glass strip on the interior side, resulting in insufficient overall aesthetics and affecting the user's visual experience.

Method used

The frame and sash adopt a flush aluminum profile structure, including the main frame, glass strips and fixing lines, so that the glass is flush with the interior side, and the installation accuracy and sealing are ensured by the cooperation of rubber strips and buffer components.

Benefits of technology

It enhances the aesthetics of the interior space and the precision of glass installation, improves sealing, sound insulation, and heat insulation performance, and enhances the user experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a frame and sash flush aluminum profile structure and relates to the technical field of building doors and windows, the frame and sash flush aluminum profile structure comprises a main frame and a glazing bead, the main frame comprises multiple outer frames and mullions, the outer frames are oppositely arranged, and the mullions are arranged between the outer frames; the multiple glazing beads are arranged between the outer frame and the mullion in a pairwise opposite mode, glass is arranged between the two opposite glazing beads, and the main frame is flush with the side, close to the interior of a room, of each glazing bead. The door and window structure is used for solving the problem that an existing door and window structure is not smooth enough on the indoor side, and consequently the overall attractiveness is insufficient.
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Description

Technical Field

[0001] This application relates to the field of building door and window technology, and in particular to a frame-sash flush aluminum profile structure. Background Technology

[0002] Aluminum profile structures are widely used in building doors and windows. As people's demands for the aesthetics of their living environments increase, the design of door and window structures is gradually developing towards refinement and functionality. Traditional door and window structures mainly focus on basic performance such as heat insulation and sound insulation. However, with modern architecture placing greater emphasis on overall aesthetics and efficient use of interior space, the flatness and alignment of door and window structures have become new research hotspots. Common door and window structures in existing technologies often struggle to achieve complete flush alignment between the main frame and the glass strip on the interior side, resulting in insufficient overall aesthetics, especially appearing uncoordinated from an interior perspective, thus affecting the user's visual experience. Utility Model Content

[0003] This application provides a frame-sash flush aluminum profile structure to solve the problem that the current door and window structures are not flat enough on the indoor side, resulting in insufficient overall aesthetics.

[0004] A frame-and-sash flush aluminum profile structure, comprising:

[0005] The main frame includes an outer frame and a middle mullion. Multiple outer frames are provided and arranged opposite to each other, and the middle mullions are disposed between the outer frames.

[0006] Multiple glass strips are provided, with each glass strip positioned in pairs between the outer frame and the central mullion. Glass is positioned between two opposing glass strips, and the main frame and the glass strips are flush with the side of the frame closest to the interior.

[0007] By adopting the above technical solution, this design makes the entire aluminum profile structure and glass present an extremely flat appearance on the indoor side, effectively eliminating the visual clutter caused by uneven structure, greatly improving the aesthetics of the indoor space, and fully catering to users' pursuit of high-quality and beautiful interior decoration.

[0008] In one embodiment, each of the glass strips has a fixed pressure line on the side closest to the interior, the fixed pressure line extending towards both sides of the outer frame and being flat.

[0009] By adopting the above technical solution, this design further ensures that the fixing line is flush with the main frame. The flat shape allows the glass to fit more closely to the interior side after installation, almost completely flush with the interior side, significantly enhancing the flatness of the interior side and improving the aesthetic effect. The design of the fixing line extending to the outer frame on both sides facilitates its connection and fixation with the outer frame and the glass.

[0010] In one embodiment, each of the fixed pressure lines extends toward the glass to form an extension segment, the extension segment being located inside the glass, and an adhesive strip is provided between the extension segment and the glass.

[0011] By adopting the above technical solution, during glass installation, the sealing strip, through its own elastic deformation, can precisely fine-tune the position and angle of the glass, ensuring that the installed glass is as flat and straight as the extension section, greatly improving the accuracy of glass installation and laying the foundation for creating high-quality door and window products. The sealing strip also effectively prevents the penetration of air and moisture.

[0012] In one embodiment, a buffer is also provided between the extension and the glass.

[0013] By adopting the above technical solutions, the friction and collision noise between the glass and the aluminum profile structure are reduced, greatly improving the user experience and making the doors and windows quieter and more comfortable in daily use, providing users with a tranquil indoor space.

[0014] In one embodiment, adhesive strips are provided between the fixed pressure line and the outer frame, and between the fixed pressure line and the middle mullion.

[0015] By adopting the above technical solution, the elasticity of the adhesive strip can be used to compensate for dimensional errors during component processing and installation, precisely adjusting the position of the fixing line to ensure that its indoor side remains level. The glass is then fixed on this basis, further ensuring the flatness of the glass installation and the aesthetics of the entire structure, effectively improving the installation quality of the product.

[0016] In one embodiment, the adhesive strip is made of EPDM rubber; the main frame and the glass retaining strip are made of high-strength 6063-T5 aluminum alloy profiles.

[0017] By adopting the above technical solutions, the sealing strips are made of EPDM rubber, which possesses excellent weather resistance, aging resistance, corrosion resistance, and high elasticity and flexibility. The main frame and glass retaining strips are made of high-strength 6063-T5 aluminum alloy profiles. Their high strength ensures the robustness and durability of the aluminum profile structure, while their good processing performance facilitates diverse processing and forming operations, meeting complex design requirements and providing material assurance for creating high-quality, personalized door and window products.

[0018] In one embodiment, the frame-sash flush aluminum profile structure is further provided with an operable window, which is fixed to the glass strip and located on the side of the glass closer to the outside.

[0019] By adopting the above technical solutions, the presence of operable windows not only enhances the stability of glass installation and makes the glass more firmly fixed in the aluminum profile structure, improving the overall safety and reliability of doors and windows, but also facilitates the circulation of indoor and outdoor air, meeting users' ventilation needs.

[0020] In one embodiment, both the outer frame and the mullion are provided with heat insulation strips.

[0021] By adopting the above technical solutions, thermal insulation strips can effectively hinder heat conduction and significantly reduce the rate of heat exchange between indoors and outdoors. In summer, this reduces the large influx of outdoor heat into the room, lowering indoor cooling energy consumption; in winter, it reduces indoor heat loss, lowering heating energy consumption. This not only saves users energy costs but also improves indoor comfort, making the indoor temperature more stable and suitable.

[0022] In one embodiment, the frame-pane flush aluminum profile structure further includes a screen window, which is disposed between the mullion and the outer frame and located on the side of the glass facing the outside.

[0023] By adopting the above technical solutions, mosquitoes, dust, and other insects can be effectively prevented from entering the room, creating a cleaner and more comfortable indoor environment for users. The installation of screens does not affect the aesthetics of the interior while fully utilizing their insect- and mosquito-repellent functions, ensuring indoor hygiene and the quality of the living environment.

[0024] In one embodiment, the screen window includes a screen window frame, a screen quilting line, and a screen mesh. The screen window frame has two frames, which are respectively fixed to the middle mullion and the outer frame. The screen quilting line is located on the corresponding screen window frame. The screen window frame and the screen quilting line together fix the screen mesh.

[0025] By adopting the above technical solution, this structural design gives the screen window high stability and firmness, effectively resisting external forces such as wind, ensuring that the screen mesh is not easily deformed or detached, extending the service life of the screen window, and reducing the frequency and cost of screen window replacement for users.

[0026] In summary, this application includes at least one beneficial effect:

[0027] 1. This design makes the entire aluminum profile structure, along with the glass, present an extremely flat appearance on the interior side, effectively eliminating the visual clutter caused by unevenness in the structure, greatly enhancing the aesthetics of the interior space, and fully catering to users' pursuit of high-quality and aesthetically pleasing interior decoration.

[0028] 2. During glass installation, the sealing strip, through its elastic deformation, can precisely fine-tune the position and angle of the glass, ensuring that the installed glass is as flat and straight as the extension section, greatly improving the accuracy of glass installation and laying the foundation for high-quality door and window products. The sealing strip also effectively prevents the penetration of air and moisture.

[0029] 3. The presence of operable windows not only enhances the stability of glass installation, making the glass more securely fixed in the aluminum profile structure and improving the overall safety and reliability of doors and windows, but also facilitates the circulation of indoor and outdoor air, meeting users' ventilation needs. Attached Figure Description

[0030] Figure 1 This is a cross-sectional schematic diagram of a frame-sash flush aluminum profile structure provided in an embodiment of this application;

[0031] Figure 2 yes Figure 1 A magnified view of part A in the middle;

[0032] Figure 3 yes Figure 1 A magnified view of part B in the middle section.

[0033] Explanation of reference numerals in the attached drawings: 1. Frame and sash flush aluminum profile structure; 11. Main frame; 111. Outer frame; 112. Mullion; 113. Thermal insulation strip; 12. Glass retaining strip; 121. Fixing line; 122. Extension section; 123. Mounting groove; 13. Opening window; 14. Screen; 141. Screen frame; 142. Screen retaining line; 143. Screen mesh; 15. Glass. Detailed Implementation

[0034] The following is in conjunction with the appendix Figure 1-3 The frame-sash flush aluminum profile structure provided in this application is described in further detail.

[0035] Example 1

[0036] Please see Figure 1-3 The frame-panel flush aluminum profile structure 1 provided in this application embodiment includes a main frame 11 and a glass pressure strip 12.

[0037] like Figure 1As shown, the main frame 11 consists of an outer frame 111 and mullions 112. Multiple outer frames 111 are arranged opposite each other, and mullions 112 are located between the outer frames 111. Specifically, the outer frame 111 is U-shaped, and the mullions 112 are located inside the outer frame 111 and fixed to its opposite ends. The outer frame 111 is made of high-strength 6063-T5 aluminum alloy profile, possessing excellent strength and corrosion resistance, and can maintain structural stability over a long period. The mullions 112 are also made of high-strength 6063-T5 aluminum alloy profile. Multiple reinforcing ribs can be provided inside the outer frame 111, and these ribs are evenly distributed longitudinally, improving the overall structural rigidity and resistance to deformation.

[0038] Both the outer frame 111 and the mullion 112 are equipped with thermal insulation strips 113. The thermal insulation strips 113 are made of PA66GF25 nylon, possessing excellent thermal insulation performance and mechanical strength. The connection points between the thermal insulation strips 113 and the outer frame 111 and mullion 112 are equipped with slots featuring a barbed structure design, which securely fix the thermal insulation strips 113 and prevent them from loosening or falling off. The surface of the thermal insulation strips 113 has multiple micropores, which effectively reduce the speed of sound wave propagation, providing good sound insulation. The interior of the thermal insulation strips 113 has reinforcing ribs, which are evenly distributed longitudinally, improving the rigidity and deformation resistance of the thermal insulation strips 113. Sealing plugs made of EPDM rubber are provided at both ends of the thermal insulation strips 113, effectively preventing rainwater and dust from entering the interior of the thermal insulation strips 113 and extending their service life.

[0039] like Figure 2As shown, glass strips 12 are arranged in pairs between the outer frame 111 and the mullion 112. Glass 15 is installed between two opposing glass strips 12. The main frame 11 and the glass strips 12 are flush with the side closest to the interior, thus achieving a flat and aesthetically pleasing overall structure. Specifically, multiple glass strips 12 are provided. Each glass strip 12 has a fixing line 121 on the side closest to the interior. The fixing line 121 extends towards both sides of the outer frame 111 and is flat, and is fixed to the glass 15. Each fixing line 121 extends towards the glass 15 to form an extension section 122. The extension section 122 is located inside the glass 15, and a rubber strip is provided between the extension section 122 and the glass 15. The rubber strip is made of EPDM rubber, which has excellent elasticity, aging resistance, and weather resistance. The rubber strip effectively fills the gap between the extension section 122 and the glass 15, adjusting the flatness of the glass 15 and enhancing the sealing performance. The contact surface between the rubber strip and glass 15 is roughened to increase friction and further improve the sealing effect. A buffer is also provided between the extension section 122 and glass 15. The buffer is made of silicone material, which has good elasticity and shock absorption performance. The buffer thickness can be 2mm, effectively absorbing external vibrations and impacts, reducing noise transmission, and improving the user experience. The buffer's wave-shaped design increases the contact area with glass 15, further enhancing the shock absorption effect. The glass pressure strip 12 is also made of high-strength 6063-T5 aluminum alloy, which has good thermal conductivity and corrosion resistance. The flat design of the fixing line 121 allows it to better conform to the interior surface, ensuring the flatness of the interior side, and also ensuring that glass 15 is basically on the same level as the interior surface. The thickness of the fixing line 121 is controlled at approximately 1.5mm, ensuring sufficient strength without affecting the overall aesthetics.

[0040] Adhesive strips are provided between the fixing line 121 and the outer frame 111, and between the fixing line 121 and the mullion 112. In this embodiment, the end of the fixing line 121 away from the glass 15 is provided with a mounting groove 123, and the mounting groove 123 is fixed to the outer frame 111 and the mullion 112 with adhesive strips. The adhesive strips are also made of EPDM rubber, which can adjust the position of the fixing line 121 according to actual needs to ensure that its indoor side remains horizontal. During installation, the adhesive strips are first pasted on the corresponding positions of the outer frame 111 and the mullion 112, and then the position of the fixing line 121 is adjusted to make it fully fit with the adhesive strips. Finally, the glass 15 is fixed to ensure the stability and flatness of the overall structure.

[0041] like Figure 3As shown, the aluminum profile structure 1 with the frame and sash flush also includes an operable window 13. The operable window 13 is fixed to the glass strip 12 and is located on the side of the glass 15 closest to the outside. In this embodiment, the operable window 13 and the glass strip 12 are fastened together. The side of the glass strip 12 closest to the outside is provided with a groove, and the side of the operable window 13 closest to the corresponding glass strip 12 is provided with a buckle. The buckle and the groove cooperate. After the glass 15 is installed, the operable window 13 is fixed to the glass strip 12, so that the operable window 13 is on the outside of the glass 15 and can abut against and fix to the glass 15, thus achieving effective fixation of the other side of the glass 15. Moreover, the horizontal setting of the operable window 13 keeps the glass 15 flat, and at the same time, it is convenient for the user to disassemble the operable window 13 for ventilation.

[0042] The flush-fit aluminum profile structure 1 also includes a screen 14, which is located between the mullion 112 and the outer frame 111, on the side of the glass 15 facing outwards. Specifically, the screen 14 consists of a screen frame 141, a screen retaining line 142, and a screen mesh 143. Two screen frames 141 are provided and fixed to the mullion 112 and the outer frame 111 respectively. The screen retaining line 142 is located on its corresponding screen frame 141, and the screen frame 141 and the screen retaining line 142 together fix the screen mesh 143. The screen frame 141 is made of high-strength aluminum alloy profile, possessing good strength and corrosion resistance. The screen retaining line 142 is made of aluminum alloy, possessing good thermal conductivity and corrosion resistance. The screen mesh 143 is woven from stainless steel wire, providing good breathability and insect-proofing. The mesh density of the screen mesh 143 can be 18 meshes, effectively blocking mosquitoes from entering the room while maintaining good ventilation. A fixing groove is provided between the screen frame 141 and the screen pressing line 142. The fixing groove adopts a barbed structure design, which can firmly fix the screen 143 and prevent it from loosening or falling off. A sealing strip is provided at the connection between the screen frame 141 and the middle mullion 112 and the outer frame 111. The sealing strip is made of EPDM rubber, which can effectively prevent rainwater and dust from entering the room.

[0043] The implementation principle of this embodiment is as follows: by comprehensively optimizing the design of the main frame 11, glass retaining strip 12, operable window 13, screen window 14, and thermal insulation strip 113, a comprehensive upgrade of the door and window structure is achieved. The reasonable coordination and optimized design between the components not only ensures the flatness and aesthetics of the overall structure on the interior side, making the glass 15 essentially level with the interior side, but also improves the sealing, sound insulation, and heat insulation performance of the doors and windows, providing an ideal door and window solution for modern buildings.

[0044] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A frame and sash flush aluminum extrusion structure, characterized by, include: The main frame (11) includes an outer frame (111) and a middle mullion (112). The outer frame (111) is provided in multiple and is arranged opposite to each other. The middle mullion (112) is arranged between the outer frames (111). Multiple glass strips (12) are provided, with two glass strips (12) arranged opposite each other between the outer frame (111) and the middle mullion (112). Glass (15) is arranged between two opposite glass strips (12). The main frame (11) and the glass strips (12) are flush with the side of the interior.

2. The frame sash flush aluminum profile structure according to claim 1, characterized in that, Each of the glass strips (12) has a fixed pressure line (121) on the side closest to the interior, the fixed pressure line (121) extending towards the outer frame (111) on both sides and being flat.

3. The frame-sash flush aluminum profile structure according to claim 2, characterized in that, Each of the fixed pressure lines (121) extends toward the glass (15) to form an extension section (122), the extension section (122) being located inside the glass (15), and an adhesive strip being provided between the extension section (122) and the glass (15).

4. The frame sash flush aluminum profile structure according to claim 3, characterized in that, A buffer is also provided between the extension section (122) and the glass (15).

5. The frame sash flush aluminum profile structure according to claim 3, wherein, Adhesive strips are provided between the fixed pressure line (121) and the outer frame (111), and between the fixed pressure line (121) and the middle mullion (112).

6. A frame and panel aluminium extrusion structure according to claim 5 wherein, The adhesive strip is made of EPDM rubber; the main frame (11) and the glass pressure strip (12) are made of high-strength 6063-T5 aluminum alloy profiles.

7. The frame sash flush aluminum profile construction according to claim 1, characterized in that, The frame-panel flush aluminum profile structure (1) is also provided with an opening window (13), which is fixed to the glass strip (12) and located on the side of the glass (15) closer to the outside.

8. The frame sash flush aluminum profile structure according to claim 1, wherein, Both the outer frame (111) and the inner mullion (112) are provided with heat insulation strips (113).

9. The frame sash flush aluminum profile construction according to claim 1, characterized in that, The frame-panel flush aluminum profile structure (1) also includes a screen window (14), which is located between the mullion (112) and the outer frame (111) and on the side of the glass (15) facing the outside.

10. The frame sash flush aluminum profiled structure according to claim 9, characterized in that, The screen window (14) includes a screen window frame (141), a screen pressing line (142), and a screen mesh (143). The screen window frame (141) is provided in two parts and is fixed to the middle mullion (112) and the outer frame (111) respectively. The screen pressing line (142) is provided on the screen window frame (141) corresponding to it. The screen window frame (141) and the screen pressing line (142) together fix the screen mesh (143).