CN219261443U - Novel zigzag glass curtain wall system - Google Patents
Novel zigzag glass curtain wall system Download PDFInfo
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- CN219261443U CN219261443U CN202223227285.1U CN202223227285U CN219261443U CN 219261443 U CN219261443 U CN 219261443U CN 202223227285 U CN202223227285 U CN 202223227285U CN 219261443 U CN219261443 U CN 219261443U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
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Abstract
The utility model discloses a novel serrated glass curtain wall system, which comprises upright posts, cross beams, stay ropes, glass panels and connection claws; the cross beam is in a zigzag shape and can be divided into a crest section and a trough section; the plurality of upright posts are fixedly connected with the trough sections of the cross beam; a guy cable is arranged on the cross beam; the glass panels are spliced into a zigzag shape and fixed on the cross beam, and the glass panels are connected with each other through the connection claw. The utility model greatly strengthens the strength of the serrated glass curtain wall, reduces the arrangement of the stand columns, is more convenient to install and reduces the manufacturing cost; and the cross beam is less stressed, so that the abnormal beam is prevented from being deformed too much due to the dead weight of glass.
Description
Technical Field
The utility model belongs to the technical field of building curtain walls, and particularly relates to a novel serrated glass curtain wall system.
Background
The serrated curtain wall has the characteristics of being used as a frequently used element in building design, and has outstanding effects mainly in four aspects of outdoor effect, indoor effect, energy conservation and emission reduction, and light pollution reduction.
The serrated curtain wall as shown in CN201920703032.6 has the following disadvantages:
1. the zigzag curtain wall is provided with the stand columns at the zigzag peaks and the zigzag troughs, and the processing and construction difficulties are increased.
2. The stand is arranged too much, influences visual effect, and improves the cost.
Disclosure of Invention
The utility model mainly aims to provide a novel serrated glass curtain wall system which is convenient to install and has fewer upright posts.
The novel serrated glass curtain wall system provided by the utility model comprises upright posts, cross beams, stay ropes, glass panels and connection claws; the cross beam is in a zigzag shape and can be divided into a crest section and a trough section; the plurality of upright posts are fixedly connected with the trough sections of the cross beam; a guy cable is arranged on the cross beam; the glass panels are spliced into a zigzag shape and fixed on the cross beam, and the glass panels are connected with each other through the connection claw.
In one embodiment of the above system, the upright comprises two vertically disposed cylinders and a riser fixedly connected between the two cylinders, and the front end cylinder is provided with a connecting plate extending forward.
In one embodiment of the system, the inner side of the cross beam is fixedly connected with the upright post through a T-shaped connecting piece, a bottom plate of the T-shaped connecting piece is inserted into the cross beam, an ear plate is arranged on a wing plate of the T-shaped connecting piece, and a connecting plate in front of the upright post is clamped and fixedly connected through a bolt.
In one embodiment of the above system, each peak segment and each trough segment of the cross beam is provided with the cable at a central position.
In one embodiment of the system, the cross beam is fixed with a U-shaped protrusion in a through length in a reverse buckling manner, and a plurality of supporting plates are distributed on the outer side of the cross beam at certain intervals.
In one embodiment of the system, the cross section of the supporting plate can be divided into an inner section and an outer section, the inner section is pi-shaped, a connecting plate protruding outwards is arranged on the bottom plate of the outer section, and the top plate of the inner section is connected with the bottom plate of the outer section; the inner section of the supporting plate clamps the bulges of the cross beam and is fixedly connected.
In one embodiment of the above system, the plurality of glass panels are arranged on the outer side of the beam, the bottom ends of the glass panels are placed on the connecting plates of the outer sections of the supporting plates through the base plates and fixed, and the top ends of the glass panels are fixed with the connecting plates of the outer sections of the supporting plates above.
In one embodiment of the system, the splicing positions of the glass panels are respectively provided with a backing plate made of aluminum alloy, and two ends of the backing plate are respectively connected and fixed with the glass panels through sealing rubber strips.
In one embodiment of the system, adjacent glass panels are reinforced and fixed through the spider claw; the near end part of the glass panel is provided with a penetrating spider claw, and the tail ends of the two adjacent spider claws are fixedly connected through a base plate.
In one embodiment of the system, the tail end of the supporting plate is inserted with a transversely through-long plugboard and fixed by a fastener, and the decorative strip is clamped and fixed with the plugboard.
According to the utility model, the vertical steel ropes are added at the wave crest and the wave trough of the cross beam, and the adjacent glass plates are fixed by adopting stainless steel spider claws, so that the design of mutually forming glass ribs is formed, the strength of the serrated glass curtain wall is greatly enhanced, the arrangement of stand columns is reduced, the installation is more convenient, and the manufacturing cost is reduced; and the cross beam is less stressed, so that the abnormal beam is prevented from being deformed too much due to the dead weight of glass.
Drawings
Fig. 1 is a schematic diagram of a node structure according to an embodiment of the present utility model.
Fig. 2 is a schematic cross-sectional view of the vertical glass panel of fig. 1.
Fig. 3 is a schematic diagram of the structure at the peak of fig. 1.
Fig. 4 is a schematic view of the structure of the trough in fig. 1.
Detailed Description
As shown in fig. 1, the novel serrated glass curtain wall system disclosed in the embodiment comprises an upright column 1, a cross beam 2, a guy rope 3, a supporting plate 4, a glass panel 5, a spider 6 and a decorative strip 7.
The upright column 1 comprises a column and a vertical plate, wherein two columns are vertically arranged, and the two columns are fixedly connected through the vertical plate and form a whole. The front end cylinder of the upright post is provided with a connecting plate which extends forwards. The cross beam 2 is zigzag and can be divided into a crest section and a trough section. The cross beam is spliced and fixed and formed through a plurality of sections of rectangular steel pipes.
A column is fixed on the inner side of the cross beam at intervals of a section of trough through a T-shaped connecting piece. The bottom plate of the T-shaped connecting piece is inserted into the cross beam for fixed connection; the flange plate of the T-shaped connecting piece is provided with an ear plate, and the connecting plate in front of the upright post is clamped and fixedly connected through a bolt.
The peak section and the trough section of the cross beam 2 are provided with a guy rope 3 at the center. The inhaul cable is positioned between the upper cross beam and the lower cross beam to tighten the upper cross beam and the lower cross beam.
The overall strength of the glass curtain wall system can be enhanced by arranging the inhaul cable, and the use of the stand column is reduced.
As shown in fig. 2, the cross section of the supporting plate 4 can be divided into an inner section and an outer section, the inner section is pi-shaped, a connecting plate protruding outwards is arranged on the bottom plate of the outer section, and the top plate of the inner section and the bottom plate of the outer section are connected to form a rectangle.
The U-shaped bulges with the through length are reversely buckled on the outer side of the cross beam 2, and a plurality of supporting plates are distributed on the outer side of the cross beam at certain intervals, and are clamped by the bulges of the cross beam through the inner section and fixedly connected through bolts.
The glass panels 5 are spliced into a zigzag shape and are arranged outside the cross beam. The glass panel is toughened laminated hollow glass, the bottom end of the glass panel is placed on and fixed to the connecting plate at the outer section of the supporting plate through a base plate, and the top end of the glass panel is fixed to the connecting plate at the outer section of the supporting plate above the glass panel.
The splicing positions of the glass panels are respectively provided with a backing plate made of aluminum alloy, and two ends of the backing plate are respectively connected and fixed with the glass panels through sealing rubber strips. The adjacent panels are strengthened and fixed through the spider 6.
As can be seen from fig. 3 and 4, the proximal end portion of the glass panel is provided with a through connection claw, and the ends of two adjacent connection claws are fixedly connected by a backing plate. The adjacent glass panels are mutually glass ribs through the arrangement of the connection claws, so that the strength of the panels is greatly enhanced.
The tail end of the supporting plate 4 is inserted with a plugboard with a transverse through length and is fixed on the supporting plate through bolts, and the decorative strip 7 is clamped and fixed with the plugboard.
When the glass curtain wall system is used, the upright posts are firstly installed, and the cross beams are spliced along the sawtooth direction; fixing the cross beam on the upright post, installing the inhaul cable on the crest section and the trough section of the cross beam, and connecting the inhaul cable with the main structure of the building; finally, installing glass panels, and connecting adjacent panels through connection claws to form a glass rib design.
The glass curtain wall system has the advantages that;
1. vertical steel ropes are added at the wave crest and the wave trough of the cross beam, and adjacent glass plates are fixed by stainless steel connection claws, so that a mutually-designed glass rib is formed, the strength of the serrated glass curtain wall is greatly enhanced, the arrangement of stand columns is reduced, the installation is more convenient, and the manufacturing cost is reduced.
2. The cross beam is less stressed, so that the abnormal beam is prevented from being deformed too much due to the dead weight of glass.
Claims (10)
1. A novel serrated glass curtain wall system, characterized in that: the glass panel connecting device comprises an upright post, a cross beam, a stay rope, a glass panel and a connecting claw; the cross beam is in a zigzag shape and can be divided into a crest section and a trough section; the plurality of upright posts are fixedly connected with the trough sections of the cross beam; a guy cable is arranged on the cross beam; the glass panels are spliced into a zigzag shape and fixed on the cross beam, and the glass panels are connected with each other through the connection claw.
2. The novel serrated glass curtain wall system of claim 1, wherein: the upright post comprises two vertically placed cylinders and a vertical plate fixedly connected between the two cylinders, and a connecting plate extending forwards is arranged on the front end cylinder.
3. The novel serrated glass curtain wall system of claim 2, wherein: the inner side of the cross beam is fixedly connected with the upright post through a T-shaped connecting piece, a bottom plate of the T-shaped connecting piece is inserted into the cross beam, an ear plate is arranged on a wing plate of the T-shaped connecting piece, and a connecting plate in front of the upright post is clamped and fixedly connected through a bolt.
4. The novel serrated glass curtain wall system of claim 1, wherein: and each crest section and each trough section of the cross beam are provided with the inhaul cable at the central position.
5. The novel serrated glass curtain wall system of claim 3, wherein: the cross beam is characterized in that a U-shaped bulge with a through length is reversely buckled on the outer side of the cross beam, and a plurality of supporting plates are distributed on the outer side of the cross beam at certain intervals.
6. The novel serrated glass curtain wall system of claim 5, wherein: the cross section of the supporting plate can be divided into an inner section and an outer section, the inner section is pi-shaped, a connecting plate protruding outwards is arranged on a bottom plate of the outer section, and a top plate of the inner section is connected with a bottom plate of the outer section; the inner section of the supporting plate clamps the bulges of the cross beam and is fixedly connected.
7. The novel serrated glass curtain wall system of claim 6, wherein: the outer side of the beam is provided with the plurality of glass panels, the bottom ends of the glass panels are placed on and fixed to the connecting plates of the outer sections of the supporting plates through the base plates, and the top ends of the glass panels are fixed to the connecting plates of the outer sections of the supporting plates above.
8. The novel serrated glass curtain wall system of claim 7, wherein: the splicing positions of the glass panels are respectively provided with a backing plate made of aluminum alloy, and two ends of the backing plate are respectively connected and fixed with the glass panels through sealing rubber strips.
9. The novel serrated glass curtain wall system of claim 8, wherein: the adjacent glass panels are reinforced and fixed through the spider claw; the near end part of the glass panel is provided with a penetrating spider claw, and the tail ends of the two adjacent spider claws are fixedly connected through a base plate.
10. The novel serrated glass curtain wall system of claim 6, wherein: the tail end of the supporting plate is inserted with a transversely-extending plugboard and is fixed through a fastener, and the decorative strip is clamped and fixed with the plugboard.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223227285.1U CN219261443U (en) | 2022-12-02 | 2022-12-02 | Novel zigzag glass curtain wall system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223227285.1U CN219261443U (en) | 2022-12-02 | 2022-12-02 | Novel zigzag glass curtain wall system |
Publications (1)
Publication Number | Publication Date |
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CN219261443U true CN219261443U (en) | 2023-06-27 |
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CN202223227285.1U Active CN219261443U (en) | 2022-12-02 | 2022-12-02 | Novel zigzag glass curtain wall system |
Country Status (1)
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CN (1) | CN219261443U (en) |
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2022
- 2022-12-02 CN CN202223227285.1U patent/CN219261443U/en active Active
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