CN213330630U - Heat-insulated aluminum alloy inward-opening door and window - Google Patents

Heat-insulated aluminum alloy inward-opening door and window Download PDF

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Publication number
CN213330630U
CN213330630U CN202022075697.2U CN202022075697U CN213330630U CN 213330630 U CN213330630 U CN 213330630U CN 202022075697 U CN202022075697 U CN 202022075697U CN 213330630 U CN213330630 U CN 213330630U
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mullion
frame
window
outer frame
inner fan
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CN202022075697.2U
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陆琰
王炯
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Shanghai Red Star Macalline Architectural Design Co Ltd
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Shanghai Red Star Macalline Architectural Design Co Ltd
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Abstract

The utility model discloses a heat-insulated aluminum alloy inward-opening door and window, which relates to the technical field of doors and windows and comprises two groups of door and window components and a mullion component which are adjacently arranged; the mullion assembly is arranged between the two adjacent door and window assemblies; each group of door and window assemblies comprises hollow toughened glass, two groups of inner sash assemblies and two groups of outer frame assemblies, wherein the two groups of inner sash assemblies and the two groups of outer frame assemblies are symmetrically arranged on two sides of the hollow toughened glass; the utility model has the advantages of reasonable design, can adopt the draw-in groove of different wall thicknesses according to the atress degree, improve energy-conserving performance and waterproof performance, thermal-insulated effectual, firm simultaneously, the anti-wind pressure performance is good with energy-conserving performance.

Description

Heat-insulated aluminum alloy inward-opening door and window
Technical Field
The utility model relates to a building field especially relates to door and window, specifically is a disconnected hot aluminum alloy internal-open door and window.
Background
Among the prior art, disconnected hot aluminum alloy window section bar surface lines are simple, and frame structure is yielding moreover, and the leakproofness is not good, and the infiltration is serious, and structural connection is insecure, still has the inconvenient scheduling problem of installation simultaneously.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a disconnected hot aluminum alloy internal-open door and window to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a heat-insulated aluminum alloy inward-opening door and window comprises two groups of door and window components and a mullion component which are adjacently arranged; the mullion assembly is arranged between the two adjacent door and window assemblies; each group of door and window assemblies comprises hollow toughened glass, two groups of inner sash assemblies and two groups of outer frame assemblies, wherein the two groups of inner sash assemblies and the two groups of outer frame assemblies are symmetrically arranged on two sides of the hollow toughened glass;
the mullion assembly comprises two mullions; each mullion consists of a mullion outer frame and a mullion inner frame, the mullion inner frame is arranged in the mullion outer frame, one end of the outer side of the mullion inner frame is fixedly connected with one end of the inner part of the mullion outer frame, four first dovetail-shaped clamping grooves are oppositely formed in the two mullion outer frames, and a first nylon strip is connected between the two first dovetail-shaped clamping grooves;
each group of inner fan components comprises a first inner fan and a second inner fan; one end face of the first inner fan and one end face of the second inner fan are symmetrically arranged on the hollow toughened glass through a connecting assembly; the first inner fan and the second inner fan are oppositely provided with four second dovetail-shaped clamping grooves, a second nylon strip is connected between the two second dovetail-shaped clamping grooves, the inner side of the second inner fan is provided with a first extending end, one end, far away from the second inner fan, of the first extending end is connected with one end of the arc-shaped section, the other end of the arc-shaped section is provided with a first clamping groove, the lower left corner of the outer side of the second inner fan is provided with an inwards concave notch, and a plurality of first grooves are formed in two sides of the first inner fan;
each group of outer frame components comprises a first outer frame and a second outer frame; the first outer frame and the second outer frame are oppositely provided with four third dovetail-shaped clamping grooves, a third nylon strip is connected between every two third dovetail-shaped clamping grooves, a second extending end is arranged on the inner side of the second outer frame, a second clamping groove is arranged at one end, far away from the second outer frame, of the second extending end, the second clamping groove is arranged in the gap, a plurality of second grooves are formed in two sides of the first outer frame and two sides of the second outer frame, and the second grooves adjacent to the outer side of the first outer frame and the outer side of the second outer frame are in contact with the mullion outer frame; the utility model has the advantages of reasonable design, can adopt the draw-in groove of different wall thicknesses according to the atress degree, improve energy-conserving performance and waterproof performance, thermal-insulated effectual, firm simultaneously, the anti-wind pressure performance is good with energy-conserving performance.
Furthermore, the connecting assembly comprises a glass support, a structural adhesive, a first double-sided adhesive tape and a second double-sided adhesive tape; the end face of one end of the hollow toughened glass and the end face of one end of the first inner fan or the end face of one end of the second inner fan are sequentially bonded through the structural adhesive, the first double-sided adhesive tape and the second double-sided adhesive tape, the end, far away from the first double-sided adhesive tape, of the structural adhesive is provided with the glass support, the two glass supports are symmetrically arranged at two ends of the hollow toughened glass, the length of each glass support is greater than that of the hollow toughened glass, and the lower end face of each glass support is connected with the upper end face of the first inner fan or the upper end face of the second inner fan; the connecting component is used by matching the glass support, the structural adhesive, the first double-sided adhesive tape and the second double-sided adhesive tape, so that the hollow toughened glass is effectively fixed.
Furthermore, the second nylon strip and the third nylon strip are embedded with reinforcing strips.
Further, electric window opening machines are arranged on the rear sides of the two second inner fans; the electric window opening machine is hidden at the rear side of the section bar, so that the appearance is simple and attractive.
Furthermore, the mullion outer frame is made of reinforced heat insulation splicing pipes.
Furthermore, the inner frame of the mullion is made of a galvanized square steel pipe.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model has the advantages of reasonable design, can adopt the draw-in groove of different wall thicknesses according to the atress degree, improve energy-conserving performance and waterproof performance, thermal-insulated effectual, firm simultaneously, the anti-wind pressure performance is good with energy-conserving performance.
Drawings
FIG. 1 is a schematic view of the structure of a heat-insulated aluminum alloy inward-opening door/window of the present invention;
FIG. 2 is another schematic structural view of the heat-insulated aluminum alloy inward-opening door/window of the present invention;
FIG. 3 is a schematic view of another structure of the heat-insulated aluminum alloy inward-opening door/window of the present invention;
in the figure: 1. hollow tempered glass; 2. a mullion; 3. a mullion outer frame; 4. a mullion inner frame; 5. a first dovetail shaped slot; 6. a reinforcing strip; 7. a first nylon strip; 8. a second trench; 9. a first inner fan; 10. a second inner fan; 11. a second dovetail slot; 12. a glass support; 13. a second nylon strip; 14. structural adhesive; 15. a first extension end; 16. an arc-shaped section; 17. a first card slot; 18. a notch; 19. a first trench; 20. a first outer frame; 21. a second outer frame; 22. a third dovetail-shaped slot; 23. a first double-sided adhesive tape; 24. a third nylon strip; 25. a second double-sided adhesive tape; 26. a second extension end; 27. a second card slot; 28. a third outer frame; 29. a fourth outer frame; 30. a fourth dovetail slot; 31. a fourth nylon strip; 32. a third extension end; 33. a third card slot; 34. a third trench; 35. a fifth outer frame; 36. a sixth outer frame; 37. a fifth dovetail slot; 38. a fifth nylon strip; 39. a fourth extended end; 40. a fourth card slot; 41. a fourth trench.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the embodiments of the present invention and the accompanying drawings, and obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative efforts belong to the protection scope of the present invention;
it should be noted that, in the description of the present invention, it is to be noted that the terms "inside", "outside", "upper", "lower", "both sides", "one end", "the other end", "left", "right", and the like indicate the directions or positional relationships based on the directions or positional relationships shown in the drawings, and are only for convenience of description and simplification of the present invention, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and thus, should not be construed as limiting the present invention.
Example 1
As shown in fig. 1-2, a heat-insulated aluminum alloy inward-opening door/window comprises two groups of door/window components and a mullion component which are adjacently arranged; the mullion assembly is arranged between the two adjacent door and window assemblies; each group of the door and window assemblies comprises hollow toughened glass 1, two groups of inner sash assemblies and two groups of outer frame assemblies, wherein the two groups of inner sash assemblies and the two groups of outer frame assemblies are symmetrically arranged on two sides of the hollow toughened glass 1;
the mullion assembly comprises two mullions 2; each mullion 2 consists of a mullion outer frame 3 and a mullion inner frame 4, the mullion outer frame 3 is made of reinforced heat-insulated spliced pipes, the mullion inner frame 4 is made of galvanized square steel pipes, the mullion inner frame 4 is arranged in the mullion outer frame 3, one end of the outer side of the mullion inner frame 4 is fixedly connected with one end of the inner side of the mullion outer frame 3, two mullion outer frames 3 are oppositely provided with four first dovetail-shaped clamping grooves 5, and a first nylon strip 7 is connected between the two first dovetail-shaped clamping grooves 5;
each group of the inner fan components comprises a first inner fan 9 and a second inner fan 10; one end face of the first inner fan 9 and one end face of the second inner fan 10 are symmetrically arranged on the hollow toughened glass 1 through a connecting assembly; the first inner fan 9 and the second inner fan 10 are oppositely provided with four second dovetail-shaped clamping grooves 11, a second nylon strip 13 is connected between every two second dovetail-shaped clamping grooves 11, a first extending end 15 is arranged on the inner side of the second inner fan 10, one end, far away from the second inner fan 10, of the first extending end 15 is connected with one end of an arc-shaped section 16, the other end of the arc-shaped section 16 is provided with a first clamping groove 17, the lower left corner of the outer side of the second inner fan 10 is provided with an inward concave notch 18, two sides of the first inner fan 9 are respectively provided with a plurality of first grooves 19, and the rear sides of the two second inner fans 10 are respectively provided with an electric window opener; the arranged electric window opener is hidden at the rear side of the section bar, so that the appearance is concise and attractive;
each set of the outer frame components comprises a first outer frame 20 and a second outer frame 21; the first outer frame 20 and the second outer frame 21 are oppositely provided with four third dovetail-shaped clamping grooves 22, a third nylon strip 24 is connected between the two third dovetail-shaped clamping grooves 22, the inner side of the second outer frame 21 is provided with a second extending end 26, one end, far away from the second outer frame 21, of the second extending end 26 is provided with a second clamping groove 27, the second clamping groove 27 is arranged adjacent to the notch 18, a plurality of second grooves 8 are respectively arranged on two sides of the first outer frame 20 and two sides of the second outer frame 21, and the second grooves 8 adjacent to the outer sides of the first outer frame 20 and the second outer frame 21 are respectively contacted with the mullion outer frame 3; the utility model has the advantages of reasonable design, can adopt the draw-in groove of different wall thicknesses according to the atress degree, improve energy-conserving performance and waterproof performance, thermal-insulated effectual, firm simultaneously, the anti-wind pressure performance is good with energy-conserving performance.
The connecting assembly comprises a glass support 12, a structural adhesive 14, a first double-sided adhesive tape 23 and a second double-sided adhesive tape 25; the end face of one end of the hollow toughened glass 1 and the end face of one end of the first inner sash 9 or the end face of one end of the second inner sash 10 are sequentially bonded through the structural adhesive 14, the first double-sided adhesive tape 23 and the second double-sided adhesive tape 25, the glass support 12 is arranged at one end of the structural adhesive 14, which is far away from the first double-sided adhesive tape 23, the two glass support slippers 12 are symmetrically arranged at two ends of the hollow toughened glass 1, the length of each glass support slipper 12 is greater than that of the hollow toughened glass 1, and the lower end face of each glass support slipper 12 is connected with the upper end face of the first inner sash 9 or the upper end face of the second inner sash 10; the connecting component is used by matching the glass support, the structural adhesive, the first double-sided adhesive tape and the second double-sided adhesive tape, so that the hollow toughened glass is effectively fixed.
The second nylon strip 13 and the third nylon strip 24 are embedded with reinforcing strips 6.
Example 2
As shown in fig. 3, a heat-insulated aluminum alloy inward-opening door/window comprises a first outer frame component, a second outer frame component and two groups of door/window components which are adjacently arranged; the second outer frame component is arranged between the two adjacent door and window components; each group of door and window assemblies comprises hollow toughened glass 1 and two groups of inner sash assemblies symmetrically arranged on two sides of the hollow toughened glass 1;
each group of the inner fan components comprises a first inner fan 9 and a second inner fan 10; one end face of the first inner fan 9 and one end face of the second inner fan 10 are symmetrically arranged on the hollow toughened glass 1 through a connecting assembly; the first inner fan 9 and the second inner fan 10 are oppositely provided with two second dovetail-shaped clamping grooves 11 and two fourth dovetail-shaped clamping grooves 12, a second nylon strip 13 is connected between the two second dovetail-shaped clamping grooves 11, a fourth nylon strip 14 is connected between the two fourth dovetail-shaped clamping grooves 12, a first extending end 15 is arranged on the inner side of the second inner fan 10, one end, far away from the second inner fan 10, of the first extending end 15 is connected with one end of an arc-shaped section 16, the other end of the arc-shaped section 16 is provided with a first clamping groove 17, an inward concave notch 18 is formed in the lower left corner of the outer side of the second inner fan 10, a plurality of first grooves 19 are formed in two sides of the first inner fan 9, and an electric window opener is arranged on the rear sides of the two second inner fans 10; the arranged electric window opener is hidden at the rear side of the section bar, so that the appearance is concise and attractive;
the first outer frame component comprises a third outer frame 28 and a fourth outer frame 29, four fourth dovetail-shaped clamping grooves 30 are oppositely formed in the third outer frame 28 and the third outer frame 29, a fourth nylon strip 31 is connected between every two fourth dovetail-shaped clamping grooves 30, a third extending end 32 is arranged on the inner side of the fourth outer frame 29, a third clamping groove 33 is arranged at one end, far away from the fourth outer frame 29, of the third extending end 32, the third clamping groove 33 is arranged adjacent to the notch 18, and a plurality of third grooves 34 are formed in two sides of the third outer frame 28 and two sides of the fourth outer frame 29;
each set of the second frame components includes a fifth frame 35 and a sixth frame 36; the fifth outer frame 35 and the sixth outer frame 36 are oppositely provided with four fifth dovetail-shaped slots 37, a fifth nylon strip 38 is connected between the two eighth dovetail-shaped slots 37, the two sides of the sixth outer frame 36 are symmetrically provided with fourth extending ends 39, one end of each fourth extending end 39, which is far away from the sixth outer frame 36, is provided with a fourth slot 40, the fourth slot 40 is arranged adjacent to the notch 18, and the two sides of the fifth outer frame 35 and the sixth outer frame 36 are provided with a plurality of fourth grooves 41; the utility model has the advantages of reasonable design, can adopt the draw-in groove of different wall thicknesses according to the atress degree, improve energy-conserving performance and waterproof performance, thermal-insulated effectual, firm simultaneously, the anti-wind pressure performance is good with energy-conserving performance.
The connecting assembly comprises a glass support 12, a structural adhesive 14, a first double-sided adhesive tape 23 and a second double-sided adhesive tape 25; the end face of one end of the hollow toughened glass 1 and the end face of one end of the first inner sash 9 or the end face of one end of the second inner sash 10 are sequentially bonded through the structural adhesive 14, the first double-sided adhesive tape 23 and the second double-sided adhesive tape 25, the glass support 12 is arranged at one end of the structural adhesive 14, which is far away from the first double-sided adhesive tape 23, the two glass support slippers 12 are symmetrically arranged at two ends of the hollow toughened glass 1, the length of each glass support slipper 12 is greater than that of the hollow toughened glass 1, and the lower end face of each glass support slipper 12 is connected with the upper end face of the first inner sash 9 or the upper end face of the second inner sash 10; the connecting component is used by matching the glass support, the structural adhesive, the first double-sided adhesive tape and the second double-sided adhesive tape, so that the hollow toughened glass is effectively fixed.
The fourth nylon strip 31 and the fifth nylon strip 38 are embedded with reinforcing strips 6.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A heat-insulated aluminum alloy inward-opening door and window is characterized by comprising two groups of door and window components and a mullion component which are adjacently arranged; the mullion assembly is arranged between the two adjacent door and window assemblies; each group of door and window assemblies comprises hollow toughened glass (1), two groups of inner sash assemblies and two groups of outer frame assemblies, wherein the two groups of inner sash assemblies and the two groups of outer frame assemblies are symmetrically arranged on two sides of the hollow toughened glass (1);
the mullion assembly comprises two mullions (2); each mullion (2) consists of a mullion outer frame (3) and a mullion inner frame (4), the mullion inner frame (4) is arranged in the mullion outer frame (3), one end of the outer side of the mullion inner frame (4) is fixedly connected with one end of the inner part of the mullion outer frame (3), two mullion outer frames (3) are oppositely provided with four first dovetail-shaped clamping grooves (5), and a first nylon strip (7) is connected between the two first dovetail-shaped clamping grooves (5);
each group of inner fan components comprises a first inner fan (9) and a second inner fan (10); one end face of the first inner fan (9) and one end face of the second inner fan (10) are symmetrically arranged on the hollow toughened glass (1) through connecting components; the first inner fan (9) and the second inner fan (10) are oppositely provided with four second dovetail-shaped clamping grooves (11), a second nylon strip (13) is connected between every two second dovetail-shaped clamping grooves (11), a first extending end (15) is arranged on the inner side of the second inner fan (10), one end, far away from the second inner fan (10), of the first extending end (15) is connected with one end of the arc-shaped section (16), the other end of the arc-shaped section (16) is provided with a first clamping groove (17), the lower left corner of the outer side of the second inner fan (10) is provided with an inwards-recessed notch (18), and a plurality of first grooves (19) are formed in two sides of the first inner fan (9);
each group of outer frame components comprises a first outer frame (20) and a second outer frame (21); first frame (20) with four third dovetail draw-in grooves (22) have been seted up relatively to second frame (21), two relatively be connected with third nylon strip (24) between third dovetail draw-in groove (22), second frame (21) inboard is equipped with second extension end (26), second extension end (26) are kept away from the one end of second frame (21) is equipped with second draw-in groove (27), second draw-in groove (27) set up in breach (18), first frame (20) both sides with second frame (21) both sides all are equipped with a plurality of second grooves (8), and are adjacent first frame (20) the outside with second groove (8) in the second frame (21) the outside all with well club frame (3) contacts.
2. The insulated aluminum alloy inward-opening door and window as claimed in claim 1, wherein the connecting assembly comprises a glass bracket (12), a structural adhesive (14), a first double-sided adhesive tape (23) and a second double-sided adhesive tape (25); the structure glue is characterized in that one end face of the hollow toughened glass (1) is bonded with one end face of the first inner fan (9) or one end face of the second inner fan (10) sequentially through the structure glue (14), the first double-sided adhesive tape (23) and the second double-sided adhesive tape (25), the glass supports (12) are arranged at one ends, far away from the first double-sided adhesive tape (23), of the structure glue (14), the two glass supports (12) are symmetrically arranged at two ends of the hollow toughened glass (1), and the length of each glass support (12) is larger than that of the hollow toughened glass (1), the lower end face of the hollow toughened glass (1) is connected with the upper end face of the first inner fan (9) or the upper end face of the second inner fan (10).
3. The heat-insulated aluminum alloy inward-opening door and window as claimed in claim 1, wherein the second nylon strip (13) and the third nylon strip (24) are embedded with reinforcing strips (6).
4. The heat-insulated aluminum alloy inward-opening door and window as claimed in claim 1, wherein an electric window opener is arranged at the rear side of each of the two second inner leaves (10).
5. A heat-insulated aluminum alloy inwardly-opened door and window as claimed in claim 1, characterized in that said mullion outer frame (3) is made of reinforced heat-insulated split pipe.
6. A heat-insulated aluminum alloy inwardly-opened door and window according to claim 1, wherein the mullion inner frame (4) is made of a galvanized square steel pipe.
CN202022075697.2U 2020-09-21 2020-09-21 Heat-insulated aluminum alloy inward-opening door and window Active CN213330630U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022075697.2U CN213330630U (en) 2020-09-21 2020-09-21 Heat-insulated aluminum alloy inward-opening door and window

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022075697.2U CN213330630U (en) 2020-09-21 2020-09-21 Heat-insulated aluminum alloy inward-opening door and window

Publications (1)

Publication Number Publication Date
CN213330630U true CN213330630U (en) 2021-06-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022075697.2U Active CN213330630U (en) 2020-09-21 2020-09-21 Heat-insulated aluminum alloy inward-opening door and window

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CN (1) CN213330630U (en)

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