CN220353193U - Angle-adjustable grille curtain wall - Google Patents

Angle-adjustable grille curtain wall Download PDF

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Publication number
CN220353193U
CN220353193U CN202322157647.2U CN202322157647U CN220353193U CN 220353193 U CN220353193 U CN 220353193U CN 202322157647 U CN202322157647 U CN 202322157647U CN 220353193 U CN220353193 U CN 220353193U
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China
Prior art keywords
steel
angle
embedded
spherical hinge
curtain wall
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CN202322157647.2U
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Chinese (zh)
Inventor
雷佳芳
杨浩
武超
赵厚俊
李佳俊
饶亮
熊占温
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China Construction Third Engineering Bureau General Contracting Construction Co ltd
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China Construction Third Engineering Bureau General Contracting Construction Co ltd
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Abstract

The utility model discloses an angle-adjustable grid curtain wall, which comprises embedded parts, channel steel and steel square tubes; the embedded part is an embedded bracket on a pre-installation wall, the steel square pipe is fixed on the embedded part in a mode of being perpendicular to the installation wall, one end of the steel square pipe is provided with a plurality of vertical long waist holes, the channel steel is vertically connected with one or more groups of steel square pipes in a mode that the inner notch of the channel steel is externally embedded at the long waist hole end of the steel square pipe, then bolts penetrate through the long waist holes to connect and fix the channel steel and the steel square pipe, and the channel steel and a plurality of aluminum alloy grids are connected through spherical hinges capable of adjusting deflection angles; the utility model has the following beneficial effects: the angle of the grid curtain wall can be adjusted; the angle of the grid curtain wall can be synchronously adjusted.

Description

Angle-adjustable grille curtain wall
Technical Field
The utility model belongs to the technical field of grid curtain wall installation, and particularly relates to an angle-adjustable grid curtain wall.
Background
At present, in order to improve the shading performance of curtain and give consideration to the outer facade effect of building, more and more glass curtain walls outside have designed the grid curtain, and in the conventional practice, the grid is fixed to the curtain fossil fragments through the adaptor, generally adopts bolted connection between grid and the adaptor, adopts bolt or joint to be connected between adaptor and the fossil fragments. In the traditional method, the angle is fixed after the grid is installed, and cannot be adjusted (such as an aluminum alloy grid curtain wall disclosed in CN 218952534U), so that the angle of illumination under different time is difficult to adapt. And its regulating capacity is poor, and the installation accuracy is difficult to control, influences the whole effect of building facade.
Disclosure of Invention
The utility model aims to provide an angle-adjustable grille curtain wall, which solves the problems in the background art.
The technical aim of the utility model is realized by the following technical scheme:
an angle-adjustable grid curtain wall comprises an embedded part, channel steel and a steel square pipe; the embedded part is an embedded bracket on a pre-installation wall, the steel square tube is fixed on the embedded part in a mode of being perpendicular to the installation wall, one end of the steel square tube is provided with a plurality of vertical long waist holes, the channel steel is perpendicularly connected with one or more groups of steel square tubes in a mode that an inner notch of the channel steel is externally embedded at the long waist hole end of the steel square tube, bolts penetrate through the long waist holes to fix the channel steel and the steel square tubes in a connecting mode, and the channel steel is connected with a plurality of aluminum alloy grids through spherical hinges capable of adjusting deflection angles.
The spherical hinge includes: the device comprises a spherical hinge sphere, a grid fixing plate, a connecting rod and a spherical hinge base; the spherical hinge base is a metal flat plate and is fixed on the vertical side surface of the channel steel, which is far away from the steel square pipe, by utilizing a stainless steel bolt, a connecting rod with a cylindrical structure is vertically fixed at the center of the side surface of the spherical hinge base, which is far away from the steel square pipe, a spherical hinge sphere made of metal is fixed at the other end of the connecting rod, and the spherical hinge sphere is embedded and limited in the external embedding seat and can rotate in the external embedding seat by a certain angle; a grid fixing plate of a metal flat plate structure is fixed on one side of the outer embedded seat, which is far away from the spherical hinge sphere, and the grid fixing plate is fixedly connected with the aluminum alloy grid through bolts.
Furthermore, in order to fix the angle of the aluminum alloy grid which is adjusted, a clamping bolt is connected in the outer embedded seat through threads, and the outer embedded seat and the spherical hinge sphere can be locked through a rotary clamping bolt.
Furthermore, in order to realize synchronous deflection among a plurality of aluminum alloy grids, adjacent grid fixing plates on the aluminum alloy grids are synchronously connected by adopting a synchronous assembly; the synchronization assembly includes: the hinge comprises a rear support plate, a hinge seat, a connecting rod and a reinforcing plate; two ends of one side of the grid fixing plate far away from the aluminum alloy grid are respectively and vertically fixed with a rear support plate, one side of the two groups of rear support plates far away from the spherical hinge body is fixed with two groups of hinge seats of the same type, two groups of parallel connecting rods are adopted to connect every two adjacent hinge seats of different spherical hinges, and the connecting rods are in rotary fit with the hinge seats, so that a parallelogram structure is formed between the two groups of connecting rods and the two adjacent groups of rear support plates.
Further, in order to increase the structural strength of the rear support plate, the rear support plate and the grid fixing plate are connected and fixed by adopting right triangle reinforcing plates.
Further, in order to keep the connection firmness between the channel steel and the steel square pipe, a first gasket is arranged between the adjacent surfaces of the channel steel and the steel square pipe in a cushioning mode.
Further, in order to keep the pretightening force of the stainless steel bolt, an elastic washer is embedded on the stainless steel bolt, and a second gasket with elasticity is arranged between the spherical hinge base and the channel steel in a cushioning mode.
In summary, the utility model has the following beneficial effects:
(1) the angle of the grid curtain wall can be adjusted: through the setting up of the spherical hinge, the channel steel and the steel square tube, when the angle of the aluminum alloy grid needs to be adjusted, the aluminum alloy grid is deflected left and right around the spherical hinge, and then the outer embedded seat of the latch lock and the spherical hinge sphere are rotated to fix the adjusted angle of the aluminum alloy grid; the angle deflection of the aluminum alloy grille can be completed.
(2) The angle of the grid curtain wall can be synchronously adjusted: through the establishment of the synchronous component, when any aluminum alloy grid connected through the synchronous component is deflected, the grid fixing plate and the rear support plate connected with the synchronous component can follow the deflection, and because a parallelogram structure is formed between two groups of connecting rods and two adjacent groups of rear support plates in the synchronous component, according to the parallelogram principle, when one side of the rear support plate is driven to deflect by the aluminum alloy grid, the other group of aluminum alloy grid connected with the aluminum alloy grid through the synchronous component can also follow the synchronous deflection, so that the synchronous adjustment of the angle of the aluminum alloy grid is completed.
Drawings
FIG. 1 is a schematic side elevational view of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic view of the structure of the spherical hinge according to the present utility model;
FIG. 4 is a schematic view of a second embodiment of the present utility model;
FIG. 5 is an enlarged view of the structure of FIG. 4 at A;
FIG. 6 is an enlarged view of the structure at B in FIG. 1;
in the figure, 1, an aluminum alloy grid; 2. spherical hinge; 3. stainless steel bolts; 4. a long waist hole; 5. channel steel; 6. a steel square tube; 7. an embedded part; 8. a first gasket; 9. a second gasket; 10. a synchronization component; 21. spherical hinge sphere; 22. a grid fixing plate; 23. a connecting rod; 24. a spherical hinge base; 25. an externally embedded seat; 26. a latch; 101. a rear support plate; 102. a hinge base; 103. a connecting rod; 104. reinforcing plate.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Examples:
referring to fig. 1-6, the present utility model provides the following technical solutions: an angle-adjustable grid curtain wall comprises an embedded part 7, channel steel 5 and a steel square pipe 6; the embedded part 7 is an embedded bracket on a pre-installation wall, the steel square pipe 6 is fixed on the embedded part 7 in a mode of being perpendicular to the installation wall, one end of the steel square pipe 6 is provided with a plurality of vertical long waist holes 4, the channel steel 5 is vertically connected with one or more groups of steel square pipes 6 in a mode that inner notches of the channel steel 5 are embedded at the long waist holes 4 ends of the steel square pipe 6, the channel steel 5 and the steel square pipes 6 are fixedly connected by penetrating through the long waist holes 4 through bolts, and the channel steel 5 and the aluminum alloy grids 1 are connected through spherical hinges 2 capable of adjusting deflection angles.
The spherical hinge 2 includes: spherical hinge sphere 21, grid fixing plate 22, connecting rod 23, spherical hinge base 24; the spherical hinge base 24 is a metal flat plate, and is fixed on the vertical side surface of the channel steel 5 far away from the steel square tube 6 by using a stainless steel bolt 3, a connecting rod 23 with a cylindrical structure is vertically fixed at the center of the side surface of the spherical hinge base 24 far away from the steel square tube 6, a spherical hinge sphere 21 made of metal is fixed at the other end of the connecting rod 23, and the spherical hinge sphere 21 is embedded and limited in the external embedding seat 25 and can rotate in the external embedding seat 25 at a certain angle; a grid fixing plate 22 with a metal flat plate structure is fixed on one side of the outer embedded seat 25 far away from the spherical hinge sphere 21, and the grid fixing plate 22 is fixedly connected with the aluminum alloy grid 1 through bolts.
The outer embedding seat 25 is internally connected with a latch 26 through threads, and the outer embedding seat 25 and the spherical hinge sphere 21 can be locked through rotating the latch 26.
The adjacent grid fixing plates 22 on the aluminum alloy grid 1 are synchronously connected by adopting a synchronous assembly 10; the synchronization assembly 10 includes: a rear stay 101, a hinge base 102, a link 103, and a reinforcing plate 104; two ends of one side, far away from the aluminum alloy grid 1, of the grid fixing plate 22 are respectively and vertically fixed with a rear support plate 101, two groups of hinge seats 102 with the same type are fixed on one side, far away from the spherical hinge sphere 21, of the two groups of rear support plates 101, two groups of parallel connecting rods 103 are adopted to connect the adjacent hinge seats 102 of different spherical hinges 2 in pairs, the connecting rods 103 are in rotary fit with the hinge seats 102, and a parallelogram structure is formed between the two groups of connecting rods 103 and the adjacent two groups of rear support plates 101.
The rear support plate 101 and the grid fixing plate 22 are fixedly connected by adopting a right triangle reinforcing plate 104.
And a first gasket 8 is arranged between the adjacent surfaces of the channel steel 5 and the steel square pipe 6.
An elastic washer is embedded on the stainless steel bolt 3, and a second gasket 9 with elasticity is arranged between the spherical hinge base 24 and the channel steel 5 in a cushioning mode.
First embodiment:
when the aluminum alloy grid 1 is used, as shown in fig. 2, the embedded part 7 is pre-embedded in a building wall, then the steel square pipe 6 and the embedded part 7 are connected and fixed, the channel steel 5 is vertically connected with one or more groups of steel square pipes 6 in a mode that the inner notch of the channel steel is externally embedded at the long waist hole 4 end of the steel square pipe 6, then the aluminum alloy grid 1 is vertically fixed on the channel steel 5 through the spherical hinge 2, when the angle of the aluminum alloy grid 1 needs to be adjusted, the aluminum alloy grid 1 is deflected left and right around the spherical hinge 2, and then the outer embedded seat 25 and the spherical hinge sphere 21 are locked by the rotary latch 26 so as to fix the adjusted angle of the aluminum alloy grid 1; the angle deflection of the aluminum alloy grid 1 can be completed, and when the size deviation exists between the steel square pipe 6 and the steel groove 5, the deviation between the steel square pipe 6 and the steel groove 5 can be adjusted by adjusting the number of the first gaskets 8.
Second embodiment:
when in use, as shown in fig. 4, the basic principle is the same as that of the first embodiment, so the description is not repeated, and the differences are that: the adjacent grid fixing plates 22 on the aluminum alloy grid 1 are synchronously connected by adopting a synchronous assembly 10; that is, when any one of the aluminum alloy grids 1 connected through the synchronizing assembly 10 is deflected, the connected grid fixing plate 22 and the rear support plate 101 follow the deflection, because a parallelogram structure is formed between two groups of connecting rods 103 and two adjacent groups of rear support plates 101 in the synchronizing assembly 10, when one side of the rear support plates 101 is deflected by the aluminum alloy grids 1 according to the parallelogram principle, the other group of the aluminum alloy grids 1 connected with the aluminum alloy grids 1 through the synchronizing assembly 10 also follow the synchronous deflection, thereby completing the synchronous adjustment of the angles of the aluminum alloy grids 1, and after the angle adjustment is completed, the outer embedded seat 25 and the spherical hinge sphere 21 are locked by the rotary latch 26 to fix the adjusted angles of the aluminum alloy grids 1.
The present embodiment is only for explanation of the present utility model and is not to be construed as limiting the present utility model, and modifications to the present embodiment, which may not creatively contribute to the present utility model as required by those skilled in the art after reading the present specification, are all protected by patent laws within the scope of claims of the present utility model.

Claims (7)

1. An angle-adjustable grille curtain wall, comprising: the embedded part (7) and the channel steel (5) and the steel square tube (6); the method is characterized in that: the embedded part (7) is an embedded bracket on a pre-installation wall, the steel square pipe (6) is fixed on the embedded part (7) in a mode of being perpendicular to the installation wall, one end of the steel square pipe (6) is provided with a plurality of vertical long waist holes (4), the channel steel (5) is perpendicularly connected with one or more groups of steel square pipes (6) in a mode that an inner notch of the channel steel is embedded at the long waist holes (4) end of the steel square pipe (6), and then bolts penetrate through the long waist holes (4) to connect and fix the channel steel (5) and the steel square pipe (6), and the channel steel (5) and a plurality of aluminum alloy grids (1) are connected through spherical hinges (2) capable of adjusting deflection angles.
2. An angle-adjustable grille curtain wall according to claim 1, wherein: the spherical hinge (2) comprises: the device comprises a spherical hinge sphere (21), a grid fixing plate (22), a connecting rod (23) and a spherical hinge base (24); the spherical hinge base (24) is a metal flat plate and is fixed on the vertical side surface of the channel steel (5) far away from the steel square tube (6) by utilizing a stainless steel bolt (3), a connecting rod (23) with a cylindrical structure is vertically fixed in the center of the side surface of the spherical hinge base (24) far away from the steel square tube (6), a spherical hinge sphere (21) made of metal is fixed at the other end of the connecting rod (23), and the spherical hinge sphere (21) is embedded and limited in the external embedding seat (25) and can rotate in the external embedding seat (25) at a certain angle; a grid fixing plate (22) with a metal flat plate structure is fixed on one side of the outer embedded seat (25) far away from the spherical hinge sphere (21), and the grid fixing plate (22) is fixedly connected with the aluminum alloy grid (1) through bolts.
3. An angle-adjustable grille curtain wall according to claim 2, wherein: the outer embedded seat (25) is internally connected with a clamping bolt (26) through threads, and the outer embedded seat (25) and the spherical hinge sphere (21) can be locked through rotating the clamping bolt (26).
4. An angle-adjustable grille curtain wall according to claim 2, wherein: the adjacent grid fixing plates (22) on the aluminum alloy grid (1) are synchronously connected by adopting a synchronous assembly (10); the synchronization assembly (10) comprises: a rear support plate (101), a hinge seat (102), a connecting rod (103) and a reinforcing plate (104); two ends of one side of the grid fixing plate (22) far away from the aluminum alloy grid (1) are respectively and vertically fixed with a rear support plate (101), one side of the two groups of rear support plates (101) far away from the spherical hinge sphere (21) is fixed with two groups of hinge bases (102) with the same model, two groups of parallel connecting rods (103) are adopted to connect two by two between the adjacent hinge bases (102) of different spherical hinges (2), and the connecting rods (103) and the hinge bases (102) are in rotary fit, so that a parallelogram structure is formed between the two groups of connecting rods (103) and the adjacent two groups of rear support plates (101).
5. The angle-adjustable grille curtain wall of claim 4, wherein: the rear support plate (101) and the grid fixing plate (22) are fixedly connected by adopting a right triangle reinforcing plate (104).
6. An angle-adjustable grille curtain wall according to claim 1, wherein: a first gasket (8) is arranged between the adjacent surfaces of the channel steel (5) and the steel square pipe (6).
7. An angle-adjustable grille curtain wall according to claim 2, wherein: an elastic washer is embedded on the stainless steel bolt (3), and a second gasket (9) with elasticity is arranged between the spherical hinge base (24) and the channel steel (5).
CN202322157647.2U 2023-08-10 2023-08-10 Angle-adjustable grille curtain wall Active CN220353193U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322157647.2U CN220353193U (en) 2023-08-10 2023-08-10 Angle-adjustable grille curtain wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322157647.2U CN220353193U (en) 2023-08-10 2023-08-10 Angle-adjustable grille curtain wall

Publications (1)

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CN220353193U true CN220353193U (en) 2024-01-16

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CN202322157647.2U Active CN220353193U (en) 2023-08-10 2023-08-10 Angle-adjustable grille curtain wall

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118148277A (en) * 2024-05-11 2024-06-07 成都锦城学院 Building assembled wall structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118148277A (en) * 2024-05-11 2024-06-07 成都锦城学院 Building assembled wall structure

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