CN219219494U - Connection structure of hyperboloid glass curtain wall - Google Patents
Connection structure of hyperboloid glass curtain wall Download PDFInfo
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- CN219219494U CN219219494U CN202320335889.3U CN202320335889U CN219219494U CN 219219494 U CN219219494 U CN 219219494U CN 202320335889 U CN202320335889 U CN 202320335889U CN 219219494 U CN219219494 U CN 219219494U
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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
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Abstract
The utility model discloses a connecting structure of a hyperboloid glass curtain wall, which comprises a curved surface glass and a curved surface keel frame, and is characterized in that the curved surface keel frame is formed by connecting a plurality of curved surface steel pipe transverse keels and a plurality of curved surface T-shaped steel vertical keels, the curved surface steel pipe transverse keels and the curved surface T-shaped steel vertical keels are connected with the curved surface glass, the bending radian of the curved surface keel frame is completely corresponding and consistent with the bending radian of the curved surface glass, and the curved surface glass and the curved surface keel frame are completely matched together; the curved surface T-shaped steel vertical keel is connected with the main steel structure through a channel steel adaptor; the curved surface keel frame has the advantages of high precision, small error, good installation stability of curved surface glass, good sealing effect, good flexibility, high safety performance, good heat preservation and insulation effect, remarkably improved energy-saving effect, convenient and fast field installation, construction period saving, safety, reliability, wide application range and suitability for installation and construction of hyperboloid glass curtain walls with different bending radians.
Description
Technical Field
The utility model relates to a connecting structure of a hyperboloid glass curtain wall, and belongs to the technical field of curtain wall installation.
Background
At present, when the hyperboloid glass curtain wall is installed, cold bending treatment is generally carried out on a steel keel, then a worker adopts a welding mode to assemble an integral metal frame to be attached to a main body structure, then an aluminum alloy base is fixed on the metal frame, finally glass sheets are installed in the aluminum alloy base, and then an aluminum alloy pressing block is installed and fixed. Because the deviation of the bending radius of the cold-bent steel joist is large, the rebound value is unstable, the precision of the whole metal frame is low, and the installation precision errors of the subsequent aluminum alloy base and glass are further increased. This approach results in low installation efficiency, great difficulty, prolonged construction period, increased cost and poor aesthetic effect after completion.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art and provide a connecting structure of a hyperboloid glass curtain wall.
The technical scheme provided by the utility model is as follows: the connecting structure of the hyperboloid glass curtain wall comprises curved glass and a curved keel frame, and is characterized in that the curved keel frame is formed by connecting a plurality of curved steel pipe transverse keels and a plurality of curved T-shaped steel vertical keels, the curved steel pipe transverse keels and the curved T-shaped steel vertical keels are connected with the curved glass, the bending radian of the curved keel frame is completely corresponding to the bending radian of the curved glass, and the curved glass and the curved keel frame are completely matched together; the curved surface T-shaped steel vertical keel is connected with the main steel structure through the channel steel adapter.
Further, the curved surface steel pipe transverse keel is connected with the aluminum alloy transverse base through the first stainless steel screw assembly, the aluminum alloy transverse base is connected with the curved surface glass and is fastened through the first stainless steel screw assembly and the aluminum alloy pressing plate, the aluminum alloy pressing plate is provided with an aluminum alloy pinch plate, a transverse anti-corrosion gasket is arranged between the rear end of the aluminum alloy transverse base and the curved surface steel pipe transverse keel, and a transverse ethylene propylene diene monomer rubber strip is arranged between the rear part of the aluminum alloy transverse base and the curved surface glass; a first silicone sealant and a first foam rod are arranged between the front part of the aluminum alloy transverse base and the curved glass, a rubber heat insulation cushion block is arranged between the front end of the aluminum alloy transverse base and the aluminum alloy pressing plate, and an ethylene propylene diene monomer rubber strip and a third silicone sealant are arranged between the aluminum alloy pressing plate and the curved glass; the curved surface T-shaped steel vertical keel is connected with the aluminum alloy vertical base through the second stainless steel screw assembly, the aluminum alloy vertical base is connected with curved surface glass and is fastened through the second stainless steel screw assembly and the aluminum alloy pressing block, a second silicone sealant and a second foam rod are arranged between the aluminum alloy pressing block and the curved surface glass, a vertical anti-corrosion gasket is arranged between the rear end of the aluminum alloy vertical base and the curved surface T-shaped steel vertical keel, and a vertical ethylene propylene diene monomer rubber strip is arranged between the aluminum alloy vertical base and the curved surface glass.
Further, the curved surface steel pipe transverse keel is a fluorocarbon-sprayed curved surface steel pipe transverse keel, the curved surface T-shaped steel vertical keel is a fluorocarbon-sprayed curved surface T-shaped steel vertical keel, the channel steel adapter is a fluorocarbon-sprayed channel steel adapter, and the aluminum alloy buckle plate is a fluorocarbon-sprayed aluminum alloy buckle plate.
Further, the curved glass adopts super-white toughened interlayer hollow Low-E glass.
The beneficial effects of the utility model are as follows: the utility model is provided with the curved surface keel frame formed by connecting the plurality of curved surface steel pipe transverse keels and the plurality of curved surface T-shaped steel vertical keels, the bending radian of the curved surface keel frame is completely corresponding and consistent with the bending radian of the curved surface glass, the curved surface glass and the curved surface keel frame are perfectly combined together, and smooth transition between glass plates of the curved surface glass curtain wall is ensured, thereby overcoming the defects of low precision and large error of the cold-bent steel keel metal frame. The aluminum alloy base, the aluminum alloy pressing plate, the aluminum alloy buckle plate and the like are arranged, so that the curved surface keel frame and the curved surface glass arranged on the curved surface keel frame are provided with supporting points, and meanwhile, the installation stability of the curved surface glass is better. Set up EPDM rubber strip, foam stick, silicone sealant for elasticity is flexible, and the flexibility is better, and can play sealed effect, avoids the rainwater to inwards permeate from curved surface glass curtain wall's gap, and when the installation, avoided curved surface glass directly to produce the condition emergence of collision with curved surface fossil fragments frame moreover. The curved glass adopts the hollow Low-E glass with the super-white toughened interlayer, so that the safety performance is high, the heat preservation and insulation effect is good, and the energy-saving effect is remarkably improved. The utility model has the advantages of convenient field installation, construction period saving, safety, reliability and wide application range, and is suitable for the installation and construction of hyperboloid glass curtain walls with different bending radians.
Drawings
FIG. 1 is a schematic view of the longitudinal structure of the present utility model;
FIG. 2 is a schematic view of the transverse structure of the present utility model;
fig. 3 is an enlarged view of a portion a of fig. 1;
fig. 4 is an enlarged view of a portion B of fig. 2.
Description of the embodiments
The following detailed description of specific embodiments of the utility model refers to the accompanying drawings:
as shown in fig. 1 and 2, the connecting structure of the hyperboloid glass curtain wall comprises a curved surface glass 1 and a curved surface keel frame, wherein the curved surface keel frame is formed by connecting a plurality of fluorocarbon-sprayed curved surface steel pipe transverse keels 2 and a plurality of fluorocarbon-sprayed curved surface T-shaped steel vertical keels 3, the bending radian of the curved surface keel frame is completely corresponding to the bending radian of the curved surface glass 1, and the curved surface glass 1 and the curved surface keel frame are completely matched together. The curved surface T-shaped steel vertical keel 3 of the curved surface keel frame is connected with the main body steel structure 5 through the fluorocarbon-sprayed channel steel adapter 4.
As shown in fig. 3, the curved steel pipe transverse keel 2 is connected with the aluminum alloy transverse base 6 through the first stainless steel screw assembly 7, the aluminum alloy transverse base 6 is connected with the curved glass 1 and is fastened through the first stainless steel screw assembly 11 and the aluminum alloy pressing plate 10, the aluminum alloy pressing plate 10 is provided with the fluorocarbon-sprayed aluminum alloy pinch plate 12, a transverse anti-corrosion gasket 8 is arranged between the rear end of the aluminum alloy transverse base 6 and the curved steel pipe transverse keel 2, and a transverse ethylene propylene diene monomer rubber strip 9 is arranged between the rear part of the aluminum alloy transverse base 6 and the curved glass 1. A first silicone sealant 13 and a first foam rod 14 are arranged between the front part of the aluminum alloy transverse base 6 and the curved glass 1, a rubber heat insulation cushion block 15 is arranged between the front end of the aluminum alloy transverse base 6 and the aluminum alloy pressing plate 10, and an ethylene propylene diene monomer rubber strip 16 and a third silicone sealant 26 are arranged between the aluminum alloy pressing plate 10 and the curved glass 1.
As shown in fig. 4, the curved surface T-shaped steel vertical keel 3 is connected with the aluminum alloy vertical base 19 through the second stainless steel screw assembly 18, the aluminum alloy vertical base 19 is connected with the curved surface glass 1 and is fastened through the second stainless steel screw assembly 23 and the aluminum alloy pressing block 22, a second silicone sealant 24 and a second foam rod 25 are arranged between the aluminum alloy pressing block 22 and the curved surface glass 1, a vertical anti-corrosion gasket 20 is arranged between the rear end of the aluminum alloy vertical base 19 and the curved surface T-shaped steel vertical keel 3, and a vertical ethylene propylene diene monomer rubber strip 21 is arranged between the aluminum alloy vertical base 19 and the curved surface glass 1.
The curved glass 1 adopts the hollow Low-E glass with the super-white toughened interlayer, so that the safety performance is high, the heat preservation and insulation effects are good, and the energy-saving effect is remarkably improved.
It should be understood that parts of the present specification not specifically described are prior art. The above examples are only illustrative of the preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model, and various modifications and improvements made by those skilled in the art to the technical solution of the present utility model should fall within the scope of protection defined by the claims of the present utility model without departing from the spirit of the design of the present utility model.
Claims (3)
1. The connecting structure of the hyperboloid glass curtain wall comprises curved glass (1) and a curved keel frame, and is characterized in that the curved keel frame is formed by connecting a plurality of curved steel pipe transverse keels (2) and a plurality of curved T-shaped steel vertical keels (3), the curved steel pipe transverse keels (2) and the curved T-shaped steel vertical keels (3) are connected with the curved glass (1), the bending radian of the curved keel frame is completely corresponding to the bending radian of the curved glass (1), and the curved glass (1) and the curved keel frame are completely matched together; the curved surface T-shaped steel vertical keel (3) is connected with the main body steel structure (5) through the channel steel adapter (4).
2. The connection structure of the hyperboloid glass curtain wall according to claim 1, characterized in that the curved steel pipe transverse keel (2) is connected with the aluminum alloy transverse base (6) through a first stainless steel screw assembly (7), the aluminum alloy transverse base (6) is connected with the curved glass (1) and is fastened through a first stainless steel bolt assembly (11) and an aluminum alloy pressing plate (10), the aluminum alloy pressing plate (10) is provided with an aluminum alloy pinch plate (12), a transverse anti-corrosion gasket (8) is arranged between the rear end of the aluminum alloy transverse base (6) and the curved steel pipe transverse keel (2), and a transverse ethylene propylene diene monomer rubber strip (9) is arranged between the rear part of the aluminum alloy transverse base (6) and the curved glass (1); a first silicone sealant (13) and a first foam rod (14) are arranged between the front part of the aluminum alloy transverse base (6) and the curved glass (1), a rubber heat insulation cushion block (15) is arranged between the front end of the aluminum alloy transverse base (6) and the aluminum alloy pressing plate (10), and an ethylene propylene diene monomer rubber strip (16) and a third silicone sealant (26) are arranged between the aluminum alloy pressing plate (10) and the curved glass (1); the curved surface T shaped steel vertical keel (3) pass through second stainless steel screw assembly (18) and connect aluminium alloy vertical base (19), aluminium alloy vertical base (19) link to each other with curved surface glass (1) and fasten through second stainless steel bolt set (23), aluminium alloy briquetting (22), be equipped with second silicone sealant (24), second foam rod (25) between aluminium alloy briquetting (22) and curved surface glass (1), be equipped with vertical anticorrosive gasket (20) between aluminium alloy vertical base (19) rear end and curved surface T shaped steel vertical keel (3), be equipped with vertical ethylene propylene diene monomer rubber strip (21) between aluminium alloy vertical base (19) and curved surface glass (1).
3. The connecting structure of the hyperboloid glass curtain wall is characterized in that the curved steel pipe transverse keels (2) are fluorocarbon-sprayed curved steel pipe transverse keels, the curved T-shaped steel vertical keels (3) are fluorocarbon-sprayed curved T-shaped steel vertical keels, the channel steel adapter (4) is a fluorocarbon-sprayed channel steel adapter, and the aluminum alloy buckle plates (12) are fluorocarbon-sprayed aluminum alloy buckle plates.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320335889.3U CN219219494U (en) | 2023-02-28 | 2023-02-28 | Connection structure of hyperboloid glass curtain wall |
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CN202320335889.3U CN219219494U (en) | 2023-02-28 | 2023-02-28 | Connection structure of hyperboloid glass curtain wall |
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CN219219494U true CN219219494U (en) | 2023-06-20 |
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CN202320335889.3U Active CN219219494U (en) | 2023-02-28 | 2023-02-28 | Connection structure of hyperboloid glass curtain wall |
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- 2023-02-28 CN CN202320335889.3U patent/CN219219494U/en active Active
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