CN215406795U - Hyperboloid aluminum plate curtain facade connection structure - Google Patents

Hyperboloid aluminum plate curtain facade connection structure Download PDF

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Publication number
CN215406795U
CN215406795U CN202121715610.1U CN202121715610U CN215406795U CN 215406795 U CN215406795 U CN 215406795U CN 202121715610 U CN202121715610 U CN 202121715610U CN 215406795 U CN215406795 U CN 215406795U
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curved
aluminum plate
wall
surface aluminum
water chute
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CN202121715610.1U
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李湘
李小璇
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Aikun Shanghai Architectural Design Co ltd
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Aikun Shanghai Architectural Design Co ltd
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Abstract

The utility model provides a double-curved-surface aluminum plate curtain wall vertical surface connecting structure, and belongs to the technical field of curtain wall splicing. It is including splicing into a plurality of curved surface aluminum plates of curved surface curtain for connect curved surface aluminum plate's adapting unit, adjacent curved surface aluminum plate passes through adapting unit concatenation and is in the same place, the mutual inboard inside extension of one side lateral wall of concatenation of curved surface aluminum plate set up the installation breach, adapting unit including setting up in the water chute of installation breach inboard, the water chute sets gradually the connecting rod and installs in the linking bridge of wall from it to the wall direction. According to the utility model, the connecting parts are used for connecting adjacent curved aluminum plates, the outer sides of the adjacent curved aluminum plates are mutually spliced together in a low-leaning manner, and one side of the curved aluminum plate close to the wall body is clamped and connected to the inner side of the mounting notch through the water chute to realize mounting so as to adapt to curved curtain walls with different curvatures.

Description

Hyperboloid aluminum plate curtain facade connection structure
Technical Field
The utility model belongs to the technical field of curtain wall splicing, and relates to a double-curved-surface aluminum plate curtain wall vertical surface connecting structure.
Background
With the development and innovation of construction technology and design modeling technology, curved surfaces have a special effect different from broken lines in terms of spatial modeling: the curtain wall molding machine is continuous, smooth, soft and beautiful, has more impact force, and is increasingly applied to building facade curtain wall molding. However, under the constraint of the current mainstream construction technology and the cost control of the real estate, the floor design of the double-curved-surface curtain wall faces challenges, for example, the curtain wall needs to be reasonably and attractive in appearance, the number of keels is increased due to excessive division, and the construction difficulty is increased; too little division can cause too much vertical face edge folding, the morphological structure is split, the distortion angle of the steel pipe and the processing amount of the special-shaped plate are increased, the rejection rate is high, and the construction cost is increased. Because the curtain wall has curvature change, a connecting part of a curved plate which can adapt to the curtain wall with different curvatures is lacked in the prior art.
Disclosure of Invention
The utility model aims to solve the problems and provides a double-curved-surface aluminum plate curtain wall vertical surface connecting structure.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a hyperboloid aluminum plate curtain facade connection structure, is including splicing into a plurality of curved surface aluminum plates of curved surface curtain for connecting curved surface aluminum plate's adapting unit, adjacent curved surface aluminum plate passes through adapting unit concatenation and is in the same place, the inboard inside extension of one side lateral wall of each other concatenation of curved surface aluminum plate set up the installation breach, adapting unit including setting up in the guiding gutter of installation breach inboard, the guiding gutter sets gradually the connecting rod and installs in the linking bridge of wall from it to the wall direction.
In foretell hyperboloid aluminum plate curtain facade connection structure, the open end setting of guiding gutter be close to one side of curved surface aluminum plate concatenation department, the both sides wall outside of guiding gutter set up first connecting wall.
In foretell hyperboloid aluminum plate curtain facade connection structure, the installation breach include along the first limit of guiding gutter base setting and along the second limit of curved surface aluminum plate thickness direction setting, first connecting wall joint in second limit.
In the double-curved-surface aluminum plate curtain wall vertical face connecting structure, the water guide groove is parallel to the direction of the bottom edge of the water guide groove, the second connecting wall is further arranged, one side, away from the bottom edge of the water guide groove, of the first connecting wall is connected to the second connecting wall, and the second connecting wall is connected to the first side in a clamped mode.
In foretell hyperboloid aluminum plate curtain facade connection structure, the base of guiding gutter extend to the both sides outside, two first connecting walls are close to one side of connecting rod and connect the both ends that extend outward at the base respectively, first connecting wall make for elastic material, the shape on second limit be the curved surface.
In foretell hyperboloid aluminum plate curtain facade connection structure, linking bridge include two support columns, the support column is close to wall one side and sets up the fastener, the wall is provided with the draw-in groove, fastener joint in the draw-in groove inboard.
In foretell hyperboloid aluminum plate curtain facade connection structure, linking bridge still set up the stabilizer blade of installing in the wall, stabilizer blade and connecting rod set up the both sides at the fastener respectively.
In the double-curved-surface aluminum plate curtain wall vertical surface connecting structure, the connecting support is in one of a rectangle shape, a triangle shape, a trapezoid shape and a semicircular shape.
In the double-curved-surface aluminum plate curtain wall vertical surface connecting structure, the screw holes are formed in the positions, corresponding to the clamping grooves, of the clamping pieces, and when the clamping pieces are clamped on the inner sides of the clamping grooves, the screws are inserted into the inner sides of the screw holes in an inserting mode.
In foretell hyperboloid aluminum plate curtain facade connection structure, the connecting rod including be close to the head rod that guiding gutter one side set up and be close to the second connecting rod that linking bridge one side set up, the head rod cup joint in the second connecting rod inboard, second connecting rod lateral wall set up the mounting groove, the head rod sets up the screw with mounting groove relevant position, the screw is pegged graft in mounting groove and screw in proper order.
Compared with the prior art, the utility model has the advantages that:
according to the structural line and curvature change of the model, the hyperboloid curtain wall is subdivided into single-curved-surface units or plane units with fixed specifications, which are collectively called curved-surface aluminum plates in the embodiment. According to the utility model, the connecting parts are used for connecting adjacent curved aluminum plates, the outer sides of the adjacent curved aluminum plates are mutually spliced together in a low-leaning manner, and one side of the curved aluminum plate close to the wall body is clamped and connected to the inner side of the mounting notch through the water chute to realize mounting so as to adapt to curved curtain walls with different curvatures.
In the utility model, the connecting part is provided with the water chute at the position of the adjacent curved aluminum plate, so that rainwater is discharged through the water chute, and a water-proof effect is realized on a building.
According to the utility model, after the second edge is clamped on the first connecting wall, the first connecting wall extends and deforms towards the springback space direction, so that the water chute can be clamped between the curved aluminum plates with different intervals, the problems of different intervals and different angles between the curved aluminum plates with different radians are solved, and the problem that the angles of the splicing positions of the curved aluminum plates at the curved curtain walls with different curvatures are slightly deviated is solved. In the present invention, when the second edge is in contact with the first connecting wall, the second edge having the curved shape does not wear the first connecting wall which is deformed to extend in the rebound space direction.
Additional advantages, objects, and features of the utility model will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the utility model.
Drawings
Fig. 1 is a schematic structural view of the present invention.
Fig. 2 is a structural schematic view of a gutter and a first connecting rod.
Fig. 3 is a schematic structural view of a curved aluminum plate.
Fig. 4 is a schematic structural view of the connecting bracket and the second connecting rod.
Fig. 5 is a schematic structural view of the card slot.
Fig. 6 is a schematic view of the position of the screw hole and the screw.
In the figure: the curved surface curtain wall comprises a curved surface curtain wall 1, a curved surface aluminum plate 2, a connecting part 3, a water chute 5, a connecting rod 6, a connecting bracket 7, a first connecting wall, a first edge 9, a second edge 10, a second connecting wall 11, a supporting column 12, a clamping piece 13, a clamping groove 14, a supporting leg 15, a mounting groove 16, a screw hole 17, a screw 18, a first connecting rod 19 and a second connecting rod 20.
Detailed Description
The present invention is further illustrated by the following specific examples.
As shown in fig. 1-6, a hyperboloid aluminum plate curtain facade structure, including a plurality of curved surface aluminum plates 2 that splice into curved surface curtain 1 for connecting curved surface aluminum plate 2's adapting unit 3, adjacent curved surface aluminum plate 2 splices together through adapting unit 3, curved surface aluminum plate 2 one side lateral wall inboard that splices each other inwards extend and set up installation breach 4, adapting unit 3 including setting up in the water chute 5 of installation breach inboard, water chute 5 sets gradually connecting rod 6 and installs in the linking bridge 7 of wall from it to the wall direction.
According to the structural line and curvature change of the model, the hyperboloid curtain wall is subdivided into single-curved-surface units or plane units with fixed specifications, which are collectively called curved-surface aluminum plates 2 in the embodiment. This embodiment utilizes adapting unit 3 to connect adjacent curved surface aluminum plate 2, and the adjacent curved surface aluminum plate 2 outside is low each other and leans on the concatenation to be in the same place, and curved surface aluminum plate 2 is close to one side of wall body and realizes the installation in the installation breach inboard through 5 joints of guiding gutter to the curved surface curtain of adaptation different curvatures.
As shown in fig. 2, preferably, the open end of the water chute 5 is arranged at one side close to the joint of the curved aluminum plate 2, and the outer sides of the two side walls of the water chute 5 are provided with first connecting walls 8. The connecting part 3 is provided with a water chute 5 at the position of the adjacent curved aluminum plate 2, and rainwater is discharged through the water chute 5, so that the water-proof effect is achieved for the building.
As shown in fig. 3, preferably, the mounting notch includes a first edge 9 disposed along the bottom edge of the water chute 5 and a second edge 10 disposed along the thickness direction of the curved aluminum plate 2, and the second edge 10 is clamped to the first connecting wall 8. The water chute 5 is also provided with a second connecting wall 11 parallel to the bottom edge direction of the water chute 5, one side of the first connecting wall 8, which is far away from the bottom edge of the water chute 5, is connected to the second connecting wall 11, and the second connecting wall 11 is clamped on the first edge 9. First connecting wall 8 joint is in second limit 10, and the concatenation of curved surface aluminum plate 2 is realized in first limit 9 to second connecting wall 11 joint.
In a preferable scheme, the bottom edge of the water chute 5 extends towards the outer sides of two sides, one sides of the two first connecting walls 8, which are close to the connecting rods 6, are respectively connected with two ends of the bottom edge, which extend outwards, the first connecting walls 8 are made of elastic materials, and the second edge 10 is in a curved surface shape. The two ends of the outwardly extending bottom edge are respectively provided with a first connecting wall 8. A rebound space is arranged between the first connecting wall 8 and the side wall of the water chute 5. Second limit 10 joint is behind first connecting wall 8, and first connecting wall 8 extends to resilience space direction and warp, but has ensured guiding gutter 5 joint between different spaced curved surface aluminum plate 2, has solved the problem that interval and angle are different between the curved surface aluminum plate 2 of different radians, has solved the problem that the angle of different camber curved surface curtain department curved surface aluminum plate 2 concatenation departments also slightly deviates promptly. When the second edge 10 comes into contact with the first connecting wall 8, the second edge 10 having a curved shape does not wear against the first connecting wall 8 which is deformed to extend in the rebound space direction.
As shown in fig. 4 and 5, in a preferred embodiment, the connecting bracket 7 includes two supporting columns 12, a clamping member 13 is disposed on one side of the supporting columns 12 close to the wall surface, a clamping groove 14 is disposed on the wall surface, and the clamping member 13 is clamped inside the clamping groove 14. Screw holes 17 are arranged at corresponding positions of the clamping piece 13 and the clamping groove 14, and when the clamping piece 13 is clamped at the inner side of the clamping groove 14, the screws 18 are inserted at the inner side of the screw holes 17. The curved aluminum plate 2 is fixed on the wall surface through the connecting component 3 by clamping the clamping piece 13 on the inner side of the clamping groove 14. The connecting bracket 7 is provided with two supporting columns 12 so that the connecting part 3 is suitable for wall surfaces with different curvatures.
Preferably, the connecting bracket 7 is further provided with a support leg 15 mounted on a wall surface, and the support leg 15 and the connecting rod 6 are respectively arranged on two sides of the clamping piece 13. The connecting bracket 7 is one of rectangular, triangular, trapezoidal and semicircular. The lower ends of the two support columns 12 are provided with the support legs 15, so that the connecting part 3 is suitable for wall surfaces with different curvatures.
As shown in fig. 6, preferably, the connecting rod 6 includes a first connecting rod 19 disposed near one side of the water chute 5 and a second connecting rod 20 disposed near one side of the connecting bracket 7, the first connecting rod 19 is sleeved on the inner side of the second connecting rod 20, a mounting groove 16 is disposed on the side wall of the second connecting rod 20, a screw hole 17 is disposed at a position of the first connecting rod 19 corresponding to the mounting groove 16, and the screw 18 is sequentially inserted into the mounting groove 16 and the screw hole 17. According to the distance between the wall surfaces or the curtain walls with different curvatures and the wall surfaces, after the position of the first connecting rod 19 in the second connecting rod 20 is adjusted, the first connecting rod is sequentially inserted into the mounting groove 16 and the screw hole 17 through the screw 18 to be fixed.
The working process of the embodiment is as follows: (1) according to the structural line and curvature change of the model, the hyperboloid curtain wall is subdivided into single-curved-surface units or plane units with fixed specifications, which are collectively called as curved-surface aluminum plates 2. (2) Utilize adapting unit 3 to connect adjacent curved surface aluminum plate 2, the adjacent curved surface aluminum plate 2 outside is low each other by the concatenation together, and curved surface aluminum plate 2 is close to one side of wall body and passes through 5 joints of guiding gutter in the inboard installation breach realization installations. Specifically, the first connecting wall 8 is clamped to the second edge 10, and the second connecting wall 11 is clamped to the first edge 9, so as to adapt to curved curtain walls with different curvatures. (3) Second limit 10 joint is behind first connecting wall 8, and first connecting wall 8 extends to resilience space direction and warp, has solved the problem that the angle of different camber curved surface curtain department curved surface aluminum plate 2 concatenation departments also slightly deviates. (4) After the position of the first connecting rod 19 in the second connecting rod 20 is adjusted, the first connecting rod is inserted into the mounting groove 16 and the screw hole 17 in sequence through the screw 18 to fix the first connecting rod, so that the wall surface with different curvatures can be applied. (5) The lower ends of the two support columns 12 are provided with the support legs 15, so that the connecting part 3 is suitable for wall surfaces with different curvatures.
The specific embodiments described herein are merely illustrative of the spirit of the utility model. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the utility model as defined in the appended claims.

Claims (10)

1. The utility model provides a hyperboloid aluminum plate curtain facade connection structure, a serial communication port, including a plurality of curved surface aluminum plate (2) of concatenation curved surface curtain (1) for connecting adapting unit (3) of curved surface aluminum plate (2), adjacent curved surface aluminum plate (2) splice together through adapting unit (3), curved surface aluminum plate (2) one side lateral wall inboard of each other concatenation inwards extend and set up the installation breach, adapting unit (3) including setting up in guiding gutter (5) of installation breach inboard, guiding gutter (5) set gradually connecting rod (6) and install in linking bridge (7) of wall from it to the wall direction.
2. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 1, wherein the open end of the water chute (5) is arranged at one side close to the splicing position of the curved-surface aluminum plate (2), and the outer sides of the two side walls of the water chute (5) are provided with first connecting walls (8).
3. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 2, wherein the installation notch comprises a first edge (9) arranged along the bottom edge of the water chute (5) and a second edge (10) arranged along the thickness direction of the curved-surface aluminum plate (2), and the first connecting wall (8) is clamped on the second edge (10).
4. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 3, wherein the water chute (5) is further provided with a second connecting wall (11) in a direction parallel to the bottom edge of the water chute (5), one side of the first connecting wall (8) far away from the bottom edge of the water chute (5) is connected to the second connecting wall (11), and the second connecting wall (11) is clamped on the first edge (9).
5. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 3, wherein the bottom edge of the water chute (5) extends towards the outer sides of two sides, one sides of the two first connecting walls (8) close to the connecting rods (6) are respectively connected with two ends of the bottom edge extending outwards, the first connecting walls (8) are made of elastic materials, and the second edge (10) is in a curved surface shape.
6. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 1, wherein the connecting bracket (7) comprises two supporting columns (12), clamping pieces (13) are arranged on one sides, close to the wall surface, of the supporting columns (12), clamping grooves (14) are formed in the wall surface, and the clamping pieces (13) are clamped inside the clamping grooves (14).
7. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 6, wherein the connecting bracket (7) is further provided with a support leg (15) mounted on the wall surface, and the support leg (15) and the connecting rod (6) are respectively arranged on two sides of the clamping piece (13).
8. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 6, wherein the connecting bracket (7) is one of rectangular, triangular, trapezoidal and semicircular.
9. The double-curved-surface aluminum plate curtain wall facade connecting structure according to claim 6, wherein screw holes (17) are formed in corresponding positions of the clamping piece (13) and the clamping groove (14), and when the clamping piece (13) is clamped on the inner side of the clamping groove (14), the screws (18) are inserted into the inner sides of the screw holes (17).
10. The double-curved-surface aluminum plate curtain wall vertical surface connecting structure as claimed in claim 1, wherein the connecting rod (6) comprises a first connecting rod (19) arranged close to one side of the water chute (5) and a second connecting rod (20) arranged close to one side of the connecting bracket (7), the first connecting rod (19) is sleeved on the inner side of the second connecting rod (20), the side wall of the second connecting rod (20) is provided with a mounting groove (16), the first connecting rod (19) and the mounting groove (16) are provided with screw holes (17) at corresponding positions, and screws (18) are sequentially inserted into the mounting groove (16) and the screw holes (17).
CN202121715610.1U 2021-07-27 2021-07-27 Hyperboloid aluminum plate curtain facade connection structure Active CN215406795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121715610.1U CN215406795U (en) 2021-07-27 2021-07-27 Hyperboloid aluminum plate curtain facade connection structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121715610.1U CN215406795U (en) 2021-07-27 2021-07-27 Hyperboloid aluminum plate curtain facade connection structure

Publications (1)

Publication Number Publication Date
CN215406795U true CN215406795U (en) 2022-01-04

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ID=79653009

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Application Number Title Priority Date Filing Date
CN202121715610.1U Active CN215406795U (en) 2021-07-27 2021-07-27 Hyperboloid aluminum plate curtain facade connection structure

Country Status (1)

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CN (1) CN215406795U (en)

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