Broken bridge aluminum heat preservation door and window structure
By combining a double-layer tempered glass panel, a thermal break base, a first aluminum profile, and an edge sealing sleeve, the problem of window gaps after the glass sealant ages is solved, and the window's heat insulation, sound insulation, and sealing performance are improved.
Patent Information
- Application Number
- CN202423105758.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-16
AI Technical Summary
During use, as the sealant ages, gaps gradually form between the glass door/window panel and the thermally broken aluminum structure in existing thermally broken aluminum windows, affecting the window's thermal insulation, sound insulation, and sealing performance.
The design employs a combination of double-layer tempered glass panels, thermal break base, first aluminum profile, and edge sealing sleeve. Through a multi-layer support and sealing structure, it ensures that the window can maintain its thermal insulation, sound insulation, and sealing performance even after the glass sealant ages.
Through combined design, the thermal insulation, sound insulation, and sealing performance of the window are extended, preventing the aging of the glass sealant from affecting the window's thermal insulation effect, thus extending the window's thermal insulation, sound insulation, and sealing performance.
Smart Images

Figure CN223608429U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of thermal insulation door and window structures, and in particular to thermal insulation door and window structures made of thermally broken aluminum alloy. Background Technology
[0002] Thermally broken aluminum insulated windows are windows made of thermally broken aluminum alloy profiles. The "thermal break" in the name refers to the thermal break design in the aluminum alloy profile. This design effectively separates the indoor and outdoor aluminum alloy profiles, forming a thermal break, thereby blocking the heat transfer path.
[0003] In existing thermally broken aluminum windows and doors, the internal glass panels and the thermally broken aluminum structure are usually sealed with a single layer of glass glue during use. However, as time goes by, the glass glue ages, and gaps gradually appear between the glass panels and the thermally broken aluminum structure, thus affecting the window's thermal insulation, sound insulation, and sealing performance.
[0004] Therefore, to address the issue of gaps gradually forming between the glass window panel and the thermally broken aluminum, which affects the window's thermal insulation, sound insulation, and sealing performance, a thermally broken aluminum insulated window structure can be designed. This structure can incorporate multiple layers of sealing between the thermally broken aluminum and the glass window panel, thus facilitating the resolution of the aforementioned problems. Utility Model Content
[0005] To overcome the problems of existing thermally broken aluminum windows and doors, which typically use a single layer of silicone sealant to seal the internal glass panels and the thermally broken aluminum structure, gaps gradually form between the glass panels and the structure as the sealant ages over time, thus affecting the window's insulation, soundproofing, and sealing performance.
[0006] The technical solution of this utility model is as follows: a thermally broken aluminum insulated door and window structure, including a double-layer tempered glass panel, a thermally broken base, a first aluminum profile and an edge sealing sleeve; the double-layer tempered glass panel is provided with a thermally broken base on all four sides, the thermally broken base includes two sets of second aluminum profiles, and each set of second aluminum profiles is provided with a first aluminum profile corresponding to the second aluminum profile on one end face near the double-layer tempered glass panel, a glass slot is provided between the two sets of second aluminum profiles, and an edge sealing sleeve for fixing the edge of the double-layer tempered glass is provided inside the glass slot.
[0007] Preferably, this application combines a double-layer tempered glass plate, a thermal break base, a first aluminum profile, and an edge sealing sleeve, so that the two sets of second aluminum profiles in the thermal break base and the corresponding two sets of first aluminum profiles can form a thermal break aluminum. When the double-layer tempered glass plate is connected to the thermal break aluminum, the edge sealing sleeve provides multi-layer support and sealing between the edge of the double-layer tempered glass plate and the glass slot.
[0008] Preferably, the two groups of second aluminum profiles are fixedly connected through the heat insulation profiles, and the two groups of second aluminum profiles are both internally provided with a secondary heat preservation layer.
[0009] Preferably, the heat insulation profile is internally provided with a work-type heat insulation bin, and the work-type heat insulation bin is internally provided with a work-type rubber block.
[0010] Preferably, one end surface of the two groups of second aluminum profiles close to the first aluminum profile is provided with a primary curved connecting buckle, one end surface of the two groups of first aluminum profiles close to the second aluminum profile is provided with a secondary curved connecting buckle corresponding to the primary curved connecting buckle, and the primary curved connecting buckle and the secondary curved connecting buckle are matched and buckled.
[0011] Preferably, both side walls of the glass clamping groove are provided with a fixed clamping groove, and both side outer ends of the edge sealing sleeve are provided with a fixed clamping strip corresponding to the fixed clamping groove, and the fixed clamping strip and the fixed clamping groove are matched and clamped.
[0012] Preferably, the edge sealing sleeve is internally provided with two groups of glass fixing grooves, the two groups of glass fixing grooves are provided with a rubber partition plate, the two groups of glass fixing grooves are separated through the rubber partition plate, the edge of the double-layer tempered glass plate extends into the two groups of glass fixing grooves, and the L-shaped adhesive is attached to the connection between the double-layer tempered glass plate and the glass fixing groove.
[0013] Preferably, the two groups of first aluminum profiles are both internally provided with a primary heat preservation layer, and both ends of the first aluminum profile and the second aluminum profile are provided with a bevel.
[0014] Compared with the gap gradually generated between the glass door and window plate and the broken bridge aluminum on the market at present, thereby affecting the heat preservation, sound insulation and sealing performance of the window, the double-layer tempered glass plate, the broken bridge base, the first aluminum profile and the edge sealing sleeve are combined in the application, so that the two groups of second aluminum profiles of the broken bridge base and the corresponding two groups of first aluminum profiles can form the broken bridge aluminum, when the double-layer tempered glass plate is connected with the broken bridge aluminum, the edge sealing sleeve provides multi-layer support sealing between the edge of the double-layer tempered glass plate and the glass clamping groove, so that the double-layer tempered glass plate and the glass clamping groove can be continuously sealed and supported through the edge sealing sleeve after the glass adhesive is aged, thereby preventing the glass adhesive from affecting the heat preservation, sound insulation and sealing performance of the window after aging, and prolonging the heat preservation performance between the broken bridge aluminum door and window structures. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 The overall structure schematic diagram of the door and window structure of the utility model is shown;
[0016] Fig. 2 The broken bridge base structure schematic diagram of the door and window structure of the utility model is shown;
[0017] Fig. 3The first aluminum profile structure schematic view of the door and window structure of the utility model is shown.
[0018] Fig. 4 The edge sealing sleeve structure schematic view of the door and window structure of the utility model is shown.
[0019] Mark 1, double-layered toughened glass plate; 2, broken bridge base; 3, first aluminum profile; 4, edge sealing sleeve; 5, bevel; 6, second aluminum profile; 7, secondary thermal insulation layer; 8, temperature insulation profile; 9, work type thermal insulation bin; 10, primary curved type connecting buckle; 11, glass clamping groove; 12, primary thermal insulation layer; 13, L-shaped adhesive; 14, secondary curved type connecting buckle; 15, work type rubber block; 16, fixed clamping groove; 17, fixed clamping strip; 18, glass fixing groove; 19, rubber partition plate. DETAILED DESCRIPTION
[0020] The utility model is further explained in connection with the drawings and examples.
[0021] Please refer to Figs. 1-4 The utility model provides a kind of example: broken bridge aluminum thermal insulation door and window structure, including double-layered toughened glass plate 1, broken bridge base 2, first aluminum profile 3 and edge sealing sleeve 4;Double-layered toughened glass plate 1 four edges are equipped with broken bridge base 2, broken bridge base 2 includes two groups of second aluminum profile 6, the first aluminum profile 3 corresponding to second aluminum profile 6 is equipped with in two groups of second aluminum profile 6 close to the end surface of double-layered toughened glass plate 1, glass clamping groove 11 is opened between two groups of second aluminum profile 6, and the inside of glass clamping groove 11 is equipped with the edge sealing sleeve 4 for fixing the edge of double-layered toughened glass.
[0022] Please refer to Figs. 1-2 In the embodiment, temperature insulation profile 8 is arranged between two groups of second aluminum profile 6, and the two groups of second aluminum profile 6 are fixedly connected through the temperature insulation profile 8.The secondary thermal insulation layer 7 is arranged in the inside of the two groups of second aluminum profile 6, the work type thermal insulation bin 9 is arranged in the inside of the temperature insulation profile 8, and the work type rubber block 15 is arranged in the inside of the work type thermal insulation bin 9.The secondary thermal insulation layer 7 in the inside of the two groups of second aluminum profile 6 can block the transmission of cold and hot convection and sound wave after the installation of the broken bridge aluminum thermal insulation door and window, so as to play a certain heat preservation and sound insulation role, and the work type thermal insulation bin 9 is filled with the work type rubber block 15 to form a broken bridge, which further blocks the cold and hot convection propagation of internal and external air, so as to improve the performance of heat preservation and sound insulation.
[0023] Please refer to Figs. 2-3In the embodiment, the two groups of second aluminum profiles 6 are provided with first curved connecting buckles 10 near one end surface of the first aluminum profile 3, the two groups of first aluminum profiles 3 are provided with second curved connecting buckles 14 corresponding to the first curved connecting buckles 10 near one end surface of the second aluminum profile 6, the first curved connecting buckles 10 are matched and buckled with the second curved connecting buckles 14, the inside of the two groups of first aluminum profiles 3 are provided with first heat insulation layers 12, and the two ends of the first aluminum profile 3 and the second aluminum profile 6 are provided with bevel angles 5. The first curved connecting buckles 10 and the second curved connecting buckles 14 are combined, so that the two groups of first aluminum profiles 3 can be connected together with the two groups of second aluminum profiles 6 through the first curved connecting buckles 10 and the second curved connecting buckles 14, and the first heat insulation layers 12 in the two groups of first aluminum profiles 3 can play the same heat insulation and sound insulation role in cooperation with the second heat insulation layer 7. The bevel angles 5 make the first aluminum profile 3 and the second aluminum profile 6 be able to be conveniently spliced together to fix the double-layer tempered glass plate 1.
[0024] Please refer to Figs. 3-4 In the embodiment, the two sides of the glass clamping groove 11 are provided with fixed clamping grooves 16, the two side outer ends of the edge sealing sleeve 4 are provided with fixed clamping strips 17 corresponding to the fixed clamping grooves 16, the fixed clamping strips 17 are matched and buckled with the fixed clamping grooves 16, the edge sealing sleeve 4 can be fixed in the inside of the glass clamping groove 11 through the combination of the fixed clamping strips 17 and the fixed clamping grooves 16, the inside of the edge sealing sleeve 4 is provided with two groups of glass fixing grooves 18, the two groups of glass fixing grooves 18 are provided with rubber partitions 19, the two groups of glass fixing grooves 18 are separated by the rubber partitions 19, the edge of the double-layer tempered glass plate 1 extends into the inside of the two groups of glass fixing grooves 18, and the connection between the double-layer tempered glass plate 1 and the glass fixing groove 18 is provided with an L-shaped adhesive 13. Through the combination of the edge sealing sleeve 4, the rubber partition 19 and the L-shaped adhesive 13, after the edge of the double-layer tempered glass plate 1 is clamped into the two groups of glass fixing grooves 18, the rubber partition 19 can support the double-layer tempered glass plate 1, the edge sealing sleeve 4 continuously provides sealing support for the double-layer tempered glass plate 1 and the glass clamping groove 11 after being connected with the glass clamping groove 11, prevents the aging of the glass adhesive from affecting the heat preservation, sound insulation and sealing performance of the window, and the L-shaped adhesive 13 plays a role in strengthening the sealing performance of the connection between the double-layer tempered glass plate 1 and the glass clamping groove 11.
[0025] In the working process, after the installation of the broken bridge aluminum heat preservation door and window, the second heat insulation layer 7 in the inside of the two groups of second aluminum profiles 6 can block the transmission of cold and hot convection and sound waves, thereby playing a certain heat preservation and sound insulation role, and the broken bridge formed by filling the work-shaped rubber block 15 in the work-shaped heat insulation bin 9 further blocks the cold and hot convection of the inside and outside air, thereby improving the heat preservation and sound insulation performance.
[0026] The two groups of first aluminum profiles 3 can be connected together by the first-level curved connecting buckle 10 and the second-level curved connecting buckle 14 and the two groups of second aluminum profiles 6, so that the first-level thermal insulation layer 12 inside the two groups of first aluminum profiles 3 can cooperate with the second-level thermal insulation layer 7 to play the same thermal insulation and sound insulation role.
[0027] After the edges of the double-layer tempered glass plate 1 are clamped into the two groups of glass fixing grooves 18, the rubber partition plate 19 can support the double-layer tempered glass plate 1, and after the edge sealing sleeve 4 is connected with the glass clamping groove 11, the edge sealing sleeve 4 continuously provides sealing support for the double-layer tempered glass plate 1 and the glass clamping groove 11, preventing the aging of the glass glue from affecting the thermal insulation, sound insulation and sealing performance of the window.
[0028] Through the above steps, the double-layer tempered glass plate 1, the broken bridge base 2, the first aluminum profile 3 and the edge sealing sleeve 4 are combined, so that the two groups of second aluminum profiles 6 of the broken bridge base 2 and the corresponding two groups of first aluminum profiles 3 can form a broken bridge aluminum, and when the double-layer tempered glass plate 1 is connected with the broken bridge aluminum, the edge sealing sleeve 4 provides multi-layer support and sealing between the edges of the double-layer tempered glass plate 1 and the glass clamping groove 11, so that after the aging of the glass glue, the double-layer tempered glass plate 1 and the glass clamping groove 11 can be continuously sealed and supported by the edge sealing sleeve 4, thereby preventing the aging of the glass glue from affecting the thermal insulation, sound insulation and sealing performance of the window, and prolonging the thermal insulation performance between the broken bridge aluminum door and window structure.
Claims
1. A broken bridge aluminum heat preservation door and window structure, comprising a double-layer tempered glass plate (1); characterized in that: It also includes a thermal break base (2), a first aluminum profile (3) and an edge sealing sleeve (4); the four sides of the double-layer tempered glass plate (1) are provided with thermal break bases (2), the thermal break bases (2) include two sets of second aluminum profiles (6), and the two sets of second aluminum profiles (6) are provided with a first aluminum profile (3) corresponding to the second aluminum profile (6) on one end face of the double-layer tempered glass plate (1). A glass slot (11) is opened between the two sets of second aluminum profiles (6), and the inside of the glass slot (11) is provided with an edge sealing sleeve (4) for fixing the edge of the double-layer tempered glass.
2. The break bridge aluminum thermal door and window structure according to claim 1, characterized in that: A thermal insulation profile (8) is provided between the two sets of second aluminum profiles (6), and the two sets of second aluminum profiles (6) are fixedly connected by the thermal insulation profile (8). A secondary thermal insulation layer (7) is provided inside the two sets of second aluminum profiles (6).
3. The break bridge aluminum thermal door and window structure according to claim 2, characterized in that: The interior of the thermal insulation profile (8) is provided with an I-shaped thermal insulation chamber (9), and the interior of the I-shaped thermal insulation chamber (9) is provided with an I-shaped rubber block (15).
4. The break bridge aluminum thermal door and window structure according to claim 1, characterized in that: Two sets of second aluminum profiles (6) are provided with a first-level curved connecting buckle (10) on one end face near the first aluminum profile (3), and two sets of first aluminum profiles (3) are provided with a second-level curved connecting buckle (14) corresponding to the first-level curved connecting buckle (10) on one end face near the second aluminum profile (6). The first-level curved connecting buckle (10) and the second-level curved connecting buckle (14) are matched and fastened.
5. The break bridge aluminum thermal door and window structure according to claim 1, characterized in that: The glass slot (11) has fixed slots (16) on both sides of its side walls. The outer ends of the edge sealing sleeve (4) are provided with fixed strips (17) corresponding to the fixed slots (16). The fixed strips (17) and the fixed slots (16) are matched and engaged.
6. The break bridge aluminum thermal door and window structure according to claim 1, characterized in that: The edge sealing sleeve (4) has two sets of glass fixing grooves (18) inside, and a rubber partition (19) is provided between the two sets of glass fixing grooves (18). The two sets of glass fixing grooves (18) are separated by the rubber partition (19). The edge of the double-layer tempered glass plate (1) extends into the interior of the two sets of glass fixing grooves (18). An L-shaped adhesive sticker (13) is attached to the connection between the double-layer tempered glass plate (1) and the glass fixing groove (18).
7. The break bridge aluminum thermal door and window structure according to claim 1, characterized in that: Both sets of first aluminum profiles (3) have a first-level insulation layer (12) inside, and both ends of the first aluminum profile (3) and the second aluminum profile (6) have beveled corners (5).