Aluminum frameless out-swinging door and window

The outward-opening doors and windows, with their thermally broken aluminum alloy structure and multi-chamber design, solve the problem of heavy profiles and achieve lightweight, lighting, aesthetic appeal, and efficient thermal insulation.

CN224579255UActive Publication Date: 2026-07-31VIEWMAX DOORS & WINDOWS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
VIEWMAX DOORS & WINDOWS CO LTD
Filing Date
2025-08-21
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing outward-opening door and window profiles are heavy, which affects the lighting area and aesthetics, and at the same time, their heat insulation and heat insulation performance is insufficient.

Method used

It adopts a thermally broken aluminum alloy structure, and connects the indoor and outdoor profiles through multi-chamber frame thermal insulation strips and sash thermal insulation strips. Combined with the design of guardrails and transition frames, it forms a high-performance door and window structure, which enhances the thermal insulation effect. Multiple seals are set at the sealing points to isolate noise and pollution.

Benefits of technology

This design achieves lightweight windows, improves lighting and aesthetics, while enhancing heat insulation, sound insulation, and overall indoor comfort.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224579255U_ABST
    Figure CN224579255U_ABST
Patent Text Reader

Abstract

This utility model belongs to the field of building door and window technology, specifically to a thermally broken aluminum outward-opening door and window, including a main frame profile, a transition frame profile, and a sash profile; a frame thermal insulation strip is provided between the outer and inner profiles of the main frame; a frame thermal insulation strip is provided between the outer and inner profiles of the transition frame; the sash profile includes a sash thermal insulation strip provided between the outer and inner profiles; a transition frame middle sealing strip is installed between the sash thermal insulation strip and the frame thermal insulation strip of the transition frame profile; this utility model effectively combines the window sash, screen, and railing together to form a high-performance door and window structure; the inner and outer profiles are connected by the multi-chamber frame thermal insulation strip and sash thermal insulation strip, and the thermal insulation strip of this utility model effectively combines the thermal insulation cavity and the grille cavity, and the grille cavity formed between the grille parts further enhances the thermal insulation effect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of building door and window technology, specifically to a thermally broken aluminum outward opening door and window. Background Technology

[0002] In existing technologies, outward-opening doors and windows are increasingly popular because they do not occupy indoor space, making the interior space more spacious, and they can also achieve a larger opening angle, allowing more fresh air to enter the room. However, most outward-opening doors and windows have relatively wide interior profiles, resulting in relatively heavy windows, small lighting area, and unsightly appearance. Furthermore, many people believe that only windows with thick profiles have excellent heat insulation, sound insulation, and noise reduction performance; however, they are unaware that such windows waste materials and negatively impact indoor ventilation and lighting. Summary of the Invention

[0003] This utility model provides an outward-opening aluminum alloy window with thermal break, which can solve the technical problems existing in the prior art.

[0004] A thermally broken aluminum outward-opening door and window includes a main frame profile, a transition frame profile, and a sash profile; The main frame profile includes an outer main frame profile and an inner main frame profile; a frame thermal insulation strip is provided between the outer main frame profile and the inner main frame profile; The aforementioned transition frame profile includes an outer transition frame profile and an inner transition frame profile; a frame insulation strip is provided between the outer transition frame profile and the inner transition frame profile; The fan profile includes an outer fan profile and an inner fan profile; the fan profile includes a fan heat insulation strip provided between the outer fan profile and the inner fan profile; A sealing strip is installed between the heat insulation strip of the fan and the heat insulation strip of the frame of the transition frame. An extension arm is formed in the outer profile of the main frame, and an outer profile of the transition frame is installed on the inner side of the extension arm. An L-shaped waterproof strip is installed between the outer profile of the transition frame and the outer profile of the main frame. The inner profile of the adapter frame is installed on the inner profile of the main frame, and a sealing strip of the adapter frame is installed between the inner profile of the adapter frame and the inner profile of the main frame. An extension arm two is formed on the inner profile of the adapter frame, and a mushroom head mounting part one is provided on the extension arm two. An inner sealing strip of the adapter frame is installed in the mushroom head mounting part one, and the inner sealing strip of the adapter frame contacts the inner profile of the fan. The outer side of the fan-shaped profile extends to form a mushroom head mounting part two, and a fan-shaped sealing strip is installed on the mushroom head mounting part two. The fan-shaped sealing strip contacts the outer side profile of the adapter frame. The outer profile of the fan is also formed with a mushroom head mounting part three, and a glass outer sealing strip is installed on the mushroom head mounting part three; The inner profile of the fan also forms a fan glass pressure line mounting part, on which a fan glass pressure line is mounted; and an inner glass sealing strip is mounted on the fan glass pressure line; a pressure line adhesive strip is installed between the fan glass pressure line and the inner profile of the fan. A guardrail is provided on one side of the inner profile of the adapter frame, and a hardware mounting slot is designed on the guardrail. A screen window assembly is also installed on the inner profile of the adapter frame. The screen window assembly includes a screen window profile, a screen window pressure line mounting part is provided on the screen window profile, a screen window pressure line is installed on the screen window pressure line mounting part, a mushroom head mounting part four is provided on the screen window pressure line mounting part four, a screen window pressure line rubber strip is installed on the mushroom head mounting part four, and a screen window is installed between the screen window pressure line rubber strip and the screen window profile. The screen window profile extends to form a mushroom head mounting part five, and a screen window rubber strip is installed on the mushroom head mounting part five. The screen window rubber strip contacts the inner side profile of the transition frame.

[0005] Furthermore, each frame insulation strip has an insulation chamber, an insulation mushroom head mounting part, and a raised grid part; grid cavities are formed between the grid parts of the frame insulation strips installed in the same group; and a transition frame middle sealing strip is installed in the mushroom head mounting part of the frame insulation strip in the transition frame profile.

[0006] Furthermore, the end of the horizontal section of the L-shaped waterproof spacer is provided with a waterproof spacer mushroom head, which is installed inside the heat insulation mushroom head mounting part of the frame heat insulation strip two.

[0007] Furthermore, the aforementioned fan insulation strip includes fan insulation strip one and fan insulation strip two.

[0008] Furthermore, a heat insulation cavity is formed within the fan heat insulation strip, and a grid cavity is formed between the first fan heat insulation strip and the second fan heat insulation strip.

[0009] Furthermore, the size of one side of the fan insulation strip is smaller than that of the other side, and the size of the cavity varies with the overall size.

[0010] Furthermore, the frame profile, the transition frame profile, and the fan profile each have a profile cavity formed inside.

[0011] Furthermore, the inner and outer sides of the main frame profile and the inner and outer sides of the screen window profile are flush.

[0012] The beneficial effects of this energy-saving aluminum alloy system for doors and windows: This utility model discloses a thermally broken aluminum outward-opening door and window that effectively combines the window sash, screen, and railing to form a high-performance door and window structure. The interior and exterior profiles of this door and window structure are made of aluminum alloy. The interior and exterior profiles are connected by a multi-chamber frame insulation strip and a sash insulation strip. At the same time, the insulation strip of this utility model effectively combines the insulation cavity and the grid cavity. The grid cavity formed between the grid parts further enhances the heat preservation effect.

[0013] Through the structural design of the guardrail and the transition frame, the inner surface of the main frame profile and the inner surface of the screen profile are flush. When viewed from inside, the entire screen and guardrail are at the same height, which fully ensures the indoor lighting and aesthetics. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 A structural schematic diagram of the main frame profile; Figure 3 This is a structural schematic diagram of the transition frame profile; Figure 4 This is a structural schematic diagram of the fan-shaped profile; Figure 5 This is a schematic diagram of the frame insulation strip structure; Figure 6 This is a structural diagram of an L-shaped waterproof spacer. In the diagram: 1. Outer profile of the main frame; 1.1. Extension arm one; 2. Inner profile of the main frame; 3. Outer profile of the transition frame; 4. Inner profile of the transition frame; 4.1. Sealing strip of the transition frame; 4.2. Extension arm two; 4.3. Mushroom head mounting part one; 4.4. Sealing strip of the inner side of the transition frame; 5. Outer profile of the sash; 5.1. Mushroom head mounting part two; 5.2. Sealing strip of the outer side of the sash; 5.3. Mushroom head mounting part three; 5.4. Sealing strip of the outer side of the glass; 6. Inner profile of the sash; 6.1. Pressure line mounting part; 6.2. Glass pressure line of the sash; 6.3. Sealing strip of the inner side of the glass; 6.4. Pressure line strip; 7.1. Frame thermal insulation strip one; 7. 2. Frame thermal insulation strip two; 7.3. Frame thermal insulation strip three; 7.4. Frame thermal insulation strip four; 7.5. Thermal insulation chamber; 7.6. Thermal insulation mushroom head installation part; 7.7. Grille part; 7.8. Grille cavity; 8.1. Fan thermal insulation strip one; 8.2. Fan thermal insulation strip two; 9. L-shaped waterproof spacer; 9.1. Waterproof spacer mushroom head; 10. Middle sealing strip of transition frame; 11. Guardrail; 12. Screen profile; 12.1. Screen pressure line installation part; 12.2. Screen pressure line; 12.3. Mushroom head installation part four; 12.4. Screen pressure line rubber strip; 12.5. Screen; 12.6. Mushroom head installation part five; 12.7. Screen rubber strip. Detailed Implementation

[0015] The technical solution of this utility model will be further explained and described below through specific embodiments. Example 1

[0016] Referring to the attached drawings, a thermally broken aluminum outward-opening door and window includes a main frame profile, a transition frame profile, and a sash profile; the interior of the frame profile, transition frame profile, and sash profile respectively forms a profile cavity; The main frame profile includes an outer main frame profile 1 and an inner main frame profile 2; a frame heat insulation strip is provided between the outer main frame profile 1 and the inner main frame profile 2; The aforementioned transition frame profile includes an outer transition frame profile 3 and an inner transition frame profile 4; a frame heat insulation strip is provided between the outer transition frame profile 3 and the inner transition frame profile 4; The fan profile includes an outer fan profile 5 and an inner fan profile 6; the fan profile includes a fan heat insulation strip disposed between the outer fan profile 5 and the inner fan profile 6; the fan heat insulation strip includes a first fan heat insulation strip 8.1 and a second fan heat insulation strip 8.2; a heat insulation cavity is formed inside the fan heat insulation strip, and a grid cavity is formed between the first fan heat insulation strip 8.1 and the second fan heat insulation strip 8.2; one side of the second fan heat insulation strip 8.2 is smaller than the other side, and the size of the cavity varies with the overall size.

[0017] A middle sealing strip 10 for the transition frame is installed between the heat insulation strip of the fan and the heat insulation strip of the transition frame profile; Each frame insulation strip has an insulation chamber 7.5, an insulation mushroom head mounting part 7.6, and a raised grid part 7.7. The outer profile 1 and the inner profile 2 of the main frame are connected by frame insulation strip 7.1 and frame insulation strip 7.2. A grid cavity 7.8 is formed between the grid portion 7.7 of the first frame insulation strip 7.1 and the second frame insulation strip; An extension arm 1.1 is formed on the outer side of the main frame outer profile 1, and a transition frame outer profile 3 is installed on the inner side of the extension arm 1.1. An L-shaped waterproof spacer 9 is installed between the transition frame outer profile 3 and the main frame outer profile 1. The inner profile 4 of the adapter frame is installed on the inner profile 2 of the main frame, and an adapter frame sealing strip 4.1 is installed between the inner profile 4 of the adapter frame and the inner profile 2 of the main frame; The outer profile 3 and the inner profile 4 of the transition frame are connected by frame insulation strip three 7.3 and frame insulation strip four 7.4, and a grid cavity 7.8 is formed between frame insulation strip three 7.3 and frame insulation strip four 7.4; An extension arm 4.2 is formed on the inner profile 4 of the adapter frame. A mushroom head mounting part 4.3 is provided on the extension arm 4.2. An inner sealing strip 4.4 of the adapter frame is installed in the mushroom head mounting part 4.3. The inner sealing strip 4.4 of the adapter frame is in contact with the inner profile 6 of the fan. The heat insulation mushroom head mounting part 7.6 at the upper part of the frame heat insulation strip 7.4 is equipped with a middle sealing strip 10 of the transition frame; The outer side of the fan-shaped profile 5 extends to form a mushroom head mounting part 2 5.1, and a fan-shaped sealing strip 5.2 is installed on the mushroom head mounting part 2 5.1. The fan-shaped sealing strip 5.2 contacts the outer side profile 3 of the adapter frame. The outer profile 5 of the fan is further provided with a mushroom head mounting part 5.3, and a glass outer sealing strip 5.4 is installed on the mushroom head mounting part 5.3. The inner profile 6 of the fan also forms a fan glass pressure line mounting part 6.1, on which a fan glass pressure line 6.2 is mounted; and an inner glass sealing strip 6.3 is mounted on the fan glass pressure line 6.2; a pressure line adhesive strip 6.4 is installed between the fan glass pressure line 6.2 and the inner profile 6 of the fan. The inner profile 4 of the adapter frame is provided with a guardrail 11 on one side. The guardrail 11 is designed with a hardware mounting slot, which can be freely disassembled by installing hardware. The inner profile of the adapter frame is also equipped with a screen window assembly. The screen window assembly includes a screen window profile 12, a screen window pressure line mounting part 12.1 on the screen window profile 12, a screen window pressure line 12.2 mounted on the screen window pressure line mounting part 12.2, a mushroom head mounting part 12.3 extending from the screen window pressure line 12.2, a screen window pressure line adhesive strip mounted on the mushroom head mounting part 12.3, and a screen window installed between the screen window pressure line adhesive strip and the screen window profile 12.

[0018] The screen profile 12 extends to form a mushroom head mounting part 5 12.6, and a screen rubber strip 12.7 is installed on the mushroom head mounting part 5 12.6. The screen rubber strip 12.7 contacts the inner profile 4 of the transition frame. The inner side profile 2 of the main frame is flush with the inner side profile of the screen window 12. Example 2

[0019] Based on the structure of Embodiment 1, the end of the horizontal section of the L-shaped waterproof spacer 9 is provided with a waterproof spacer mushroom head 9.1, which is installed in the heat insulation mushroom head mounting part 7.6 of the frame heat insulation strip 7.2.

[0020] This utility model is mainly designed with three seals: a middle seal of the transition frame, an outer seal of the fan, and an inner seal of the transition frame. The three seals are effectively combined, and their independent sealing functions work together to completely isolate noise, dust and other pollution from the outside, thereby ensuring indoor comfort.

[0021] During installation, the adapter frame is compressed with the L-shaped waterproof strip. The circular sealing strip of the adapter frame, through contact with the frame, provides a certain degree of waterproofing by sealing at both points, effectively preventing some rainwater from reaching the outside. The adapter frame combines the hardware grooves, railing hardware grooves, and screen window hardware grooves together, making installation and maintenance more convenient.

Claims

1. A break aluminium out-swinging door and window characterized by, This includes main frame profiles, transition frame profiles, and fan profiles; The main frame profile includes an outer main frame profile and an inner main frame profile; a frame thermal insulation strip is provided between the outer main frame profile and the inner main frame profile; The aforementioned transition frame profile includes an outer transition frame profile and an inner transition frame profile; a frame insulation strip is provided between the outer transition frame profile and the inner transition frame profile; The fan profile includes an outer fan profile and an inner fan profile; the fan profile includes a fan heat insulation strip provided between the outer fan profile and the inner fan profile; A sealing strip is installed between the heat insulation strip of the fan and the heat insulation strip of the frame of the transition frame. An extension arm is formed in the outer profile of the main frame, and an outer profile of the transition frame is installed on the inner side of the extension arm. An L-shaped waterproof strip is installed between the outer profile of the transition frame and the outer profile of the main frame. The inner profile of the adapter frame is installed on the inner profile of the main frame, and a sealing strip of the adapter frame is installed between the inner profile of the adapter frame and the inner profile of the main frame. An extension arm two is formed on the inner profile of the adapter frame, and a mushroom head mounting part one is provided on the extension arm two. An inner sealing strip of the adapter frame is installed in the mushroom head mounting part one, and the inner sealing strip of the adapter frame contacts the inner profile of the fan. The outer side of the fan-shaped profile extends to form a mushroom head mounting part two, and a fan-shaped sealing strip is installed on the mushroom head mounting part two. The fan-shaped sealing strip contacts the outer side profile of the adapter frame. The outer profile of the fan is also formed with a mushroom head mounting part three, and a glass outer sealing strip is installed on the mushroom head mounting part three; The inner profile of the fan also forms a fan glass pressure line mounting part, on which a fan glass pressure line is mounted; and an inner glass sealing strip is mounted on the fan glass pressure line; a pressure line adhesive strip is installed between the fan glass pressure line and the inner profile of the fan. A guardrail is provided on one side of the inner profile of the adapter frame, and a hardware mounting slot is designed on the guardrail. A screen window assembly is also installed on the inner profile of the adapter frame. The screen window assembly includes a screen window profile, a screen window pressure line mounting part is provided on the screen window profile, a screen window pressure line is installed on the screen window pressure line mounting part, a mushroom head mounting part four is provided on the screen window pressure line mounting part four, a screen window pressure line rubber strip is installed on the mushroom head mounting part four, and a screen window is installed between the screen window pressure line rubber strip and the screen window profile. The screen window profile extends to form a mushroom head mounting part five, and a screen window rubber strip is installed on the mushroom head mounting part five. The screen window rubber strip contacts the inner side profile of the transition frame.

2. The break bridge aluminum out-opening door and window according to claim 1, characterized in that, Each frame insulation strip has an insulation chamber, an insulation mushroom head mounting part, and a raised grid part; grid cavities are formed between the grid parts of the frame insulation strips installed in the same group; the intermediate sealing strip of the transition frame is installed in the mushroom head mounting part of the frame insulation strip in the transition frame profile.

3. The break bridge aluminum out-opening door and window according to claim 1, characterized in that, The horizontal section of the L-shaped waterproof spacer is provided with a waterproof spacer mushroom head at its end, and the waterproof spacer mushroom head is installed in the heat insulation mushroom head mounting part of the frame heat insulation strip two.

4. The break bridge aluminum out-opening door and window according to claim 1, characterized in that, The aforementioned fan insulation strip includes fan insulation strip one and fan insulation strip two.

5. A break bridge aluminum out-opening door and window according to claim 4, characterized in that, The fan insulation strip has an insulation cavity formed inside, and a grid cavity is formed between the fan insulation strip one and the fan insulation strip two.

6. A break bridge aluminum out-opening door and window according to claim 5, characterized in that, The size of one side of the fan insulation strip is smaller than that of the other side, and the size of the cavity varies with the overall size.

7. The break bridge aluminum out-opening door and window according to claim 1, characterized in that, The frame profile, transition frame profile, and fan profile each have a profile cavity formed inside.

8. The break bridge aluminum out-opening door and window according to claim 1, characterized in that, The inner and outer sides of the main frame profile and the inner and outer sides of the screen window profile are flush.