CN215213040U - Novel opening structure suitable for energy-conserving glass curtain wall - Google Patents
Novel opening structure suitable for energy-conserving glass curtain wall Download PDFInfo
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- CN215213040U CN215213040U CN202120120104.1U CN202120120104U CN215213040U CN 215213040 U CN215213040 U CN 215213040U CN 202120120104 U CN202120120104 U CN 202120120104U CN 215213040 U CN215213040 U CN 215213040U
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Abstract
The utility model discloses a novel opening structure suitable for an energy-saving glass curtain wall, which comprises a curtain wall keel and an opening window connected with the curtain wall keel through a connecting rod hinge; the curtain wall keel consists of an aluminum alloy transverse keel and an aluminum alloy vertical keel; the opening window consists of a window sash and hollow glass; the hollow glass is fixedly connected with the window sash through a double-sided adhesive tape and a structural adhesive; a water cut-off groove is integrally formed above the side of the window sash; two notches are formed in the inner side of the water cut-off groove and the outer side of the aluminum alloy cross keel in a vertically staggered mode; a rubber sealing strip is respectively arranged in the two notches; the rubber sealing strip of the water cut-off groove is tightly pressed with the aluminum alloy cross keel; the rubber sealing strip of the aluminum alloy transverse keel is tightly pressed with the window sash; the utility model discloses a novel structure of opening suitable for energy-conserving glass curtain wall has more directly realized the rain-proof water leakage performance of curtain, has improved the holistic energy-conserving performance of curtain, and application scope is wider.
Description
Technical Field
The utility model relates to a novel structure of opening suitable for energy-conserving glass curtain wall belongs to building element technical field.
Background
The problem of water seepage commonly exists in a curtain wall opening window, and the common method is to improve the sealing performance of the window and prevent water from permeating; but as the adhesive tape has aging problem, the sealing performance is reduced along with the prolonging of the service time of the window; when the curtain wall meets the severe weather of wind and rain, rainwater can easily permeate into the room, and the integral energy-saving performance of the curtain wall is affected. The utility model discloses changed the traditional technology that the frame fan was opened in the installation in original curtain violently erected the fossil fragments, designed curtain fossil fragments and opened the integrative novel section bar structure of frame function.
Disclosure of Invention
In order to solve the problem, the utility model provides a novel structure of opening suitable for energy-conserving glass curtain wall more directly has realized the rain-proof water leakage performance of curtain, has improved the holistic energy-conserving performance of curtain, and application scope is wider.
The utility model discloses a novel opening structure suitable for an energy-saving glass curtain wall, which comprises a curtain wall keel and an opening window connected with the curtain wall keel through a connecting rod hinge transmission; the curtain wall keel consists of an aluminum alloy transverse keel and an aluminum alloy vertical keel; the opening window consists of a window sash and hollow glass; the hollow glass is fixedly connected with the window sash through a double-sided adhesive tape and a structural adhesive; a water cut-off groove is integrally formed above the side of the window sash; two notches are formed in the inner side of the water cut-off groove and the outer side of the aluminum alloy cross keel in a vertically staggered mode; a rubber sealing strip is respectively arranged in the two notches; the rubber sealing strip of the water cut-off groove is tightly pressed with the aluminum alloy cross keel; the rubber sealing strips of the aluminum alloy cross keel are tightly pressed with the window sashes, a novel sectional material structure with the functions of the curtain wall keel and the opening frame (window sash) integrated is designed, a water cut-off groove is arranged between window sash sectional material glass of the opening window and the rubber sealing strips (the joint of the window sash and the aluminum alloy cross keel), the flow direction of rainwater is changed, the rainwater is cut off from flowing from the outdoor side to the indoor side, and the rainwater is guided to flow out from the two sides of the opening window through the water cut-off groove, so that the rainwater is prevented from permeating into the indoor space, and the rainwater leakage resistance of the opening window is improved; when the window sash is installed, the curtain wall keel and a wall body are fixedly installed, then the window sash is connected with the curtain wall keel through a connecting rod, a multipoint lock, a screw and the like, and a rubber sealing strip is installed in the groove.
As a preferred embodiment, the aluminum alloy cross keel is integrally formed with a flashing strip for preventing rainwater from entering at one side close to the water break tank, and the flashing strip is obliquely arranged above the side of the water break tank.
Furthermore, the lower edge of the water cut-off groove extends outwards, and an outer convex strip for supporting the double-sided adhesive tape is integrally formed.
Furthermore, the double-sided adhesive tape on the outer side of the window sash is arranged at the corner where the window sash is connected with the water break groove.
As a preferred embodiment, the rubber weatherstrip is an EPDM strip.
Furthermore, curtain wall hollow glass is arranged above the opening window; the hollow glass of the curtain wall is connected with the aluminum alloy cross keel through a glass supporting strip; the lower bottom surface of the curtain wall hollow glass is glued and fixed on the surface of the glass supporting strip, and one end of the glass supporting strip, which is far away from the curtain wall hollow glass, is fixed with the aluminum alloy cross keel through a pressing block and a bolt; the upper end of the pressing block is connected with the auxiliary frame; one side of the auxiliary frame is glued with the aluminum alloy cross keel, and the other side of the auxiliary frame is fixed with the curtain wall hollow glass through a double-sided adhesive tape and a structural adhesive; and sealant is filled between the lower part of the curtain wall hollow glass and the aluminum alloy cross keel.
Compared with the prior art, the utility model discloses a novel opening structure suitable for energy-conserving glass curtain wall has reduced the holistic section bar of curtain and has consumed, has reduced the curtain cost, and convenient to use, and the installation is convenient; the curtain wall rainwater leakage prevention performance is realized more directly, the integral energy-saving performance of the curtain wall is improved, and the application range is wide.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of the window sash structure of the present invention.
Fig. 3 is a schematic view of the waterproof principle of the present invention.
The components in the drawings are labeled as: 1-water cut-off groove, 2-window sash, 3-curtain wall keel, 31-aluminum alloy transverse keel, 32-aluminum alloy vertical keel, 4-hollow glass 5-double-sided adhesive tape, 6-structural adhesive, 8-rubber sealing strip, 9-water-covering strip, 10-external raised strip, 11-curtain wall hollow glass, 12-glass supporting strip, 13-pressing block, 14-bolt, 15-auxiliary frame and 16-sealant.
Detailed Description
Example 1:
the novel opening structure suitable for the energy-saving glass curtain wall shown in fig. 1 to 3 comprises a curtain wall keel 3 and an opening window in transmission connection with the curtain wall keel 3 through a connecting rod hinge; the curtain wall keel 3 is composed of aluminum alloy cross keels 31 and aluminum alloy vertical keels 32; the opening window consists of a window sash 2 and hollow glass 4; the hollow glass 4 is fixedly connected with the window sash 2 through a double-sided adhesive tape 5 and a structural adhesive 6; a water cut-off groove 1 is integrally formed above the side of the window sash 2; two notches are formed in the inner side of the water cut-off groove 1 and the outer side of the aluminum alloy cross keel 32 in a vertically staggered mode; a rubber sealing strip 8 is respectively arranged in the two notches; the rubber sealing strip 8 of the water cut-off groove 1 is tightly pressed with the aluminum alloy cross keel 32; the rubber sealing strips 8 of the aluminum alloy cross keel 32 are tightly pressed with the window sash 2, a novel sectional material structure with the functions of the curtain wall keel and the opening frame (window sash) integrated is designed, a water cut-off groove is arranged between window sash sectional material glass of the opening window and the rubber sealing strips (the joint of the window sash and the aluminum alloy cross keel), the flow direction of rainwater is changed, the rainwater is cut off from flowing from the outdoor side to the indoor side, the rainwater is guided to flow out from the two sides of the opening window through the water cut-off groove, the rainwater is prevented from permeating into the indoor space, and the rainwater leakage resistance of the opening window is improved; when the window sash is installed, the curtain wall keel and a wall body are fixedly installed, then the window sash is connected with the curtain wall keel through a connecting rod, a multipoint lock, a screw and the like, and a rubber sealing strip is installed in the groove.
The aluminum alloy cross keel 32 is integrally formed with a flashing strip 9 for preventing rainwater from entering the side of the water cut-off tank 1, and the flashing strip 9 is obliquely arranged above the side of the water cut-off tank 1.
The lower edge of the water breaking groove 1 extends outwards, and an outer convex strip 10 for supporting the double-sided adhesive tape is integrally formed.
The double-sided adhesive tape 5 on the outer side of the window sash 2 is arranged at the corner where the window sash 2 is connected with the water cut-off groove 1.
The rubber sealing strip 8 is an EPDM rubber strip.
Curtain wall hollow glass 11 is arranged above the opening window; the hollow glass 11 of the curtain wall is connected with the aluminum alloy cross keel 32 through a glass supporting strip 12; the lower bottom surface of the curtain wall hollow glass 11 is glued and fixed on the surface of the glass supporting strip 12, and one end of the glass supporting strip 12, which is far away from the curtain wall hollow glass 11, is fixed with the aluminum alloy cross keel 32 through a pressing block 13 and a bolt 14; the upper end of the pressing block 13 is connected with the auxiliary frame 15; one side of the auxiliary frame 15 is glued with the aluminum alloy cross keel 32, and the other side of the auxiliary frame is fixed with the curtain wall hollow glass 11 through a double-sided adhesive tape and a structural adhesive; and a sealant 16 is filled between the lower part of the curtain wall hollow glass 11 and the aluminum alloy cross keel 32.
The utility model discloses a novel structure of opening suitable for energy-conserving glass curtain wall has designed curtain fossil fragments and has opened the integrative novel section bar structure of frame (casement) function, during the installation, accomplishes the back with wall body fixed mounting earlier with curtain fossil fragments, passes through connecting rod, screw etc. with the casement again and is connected with curtain fossil fragments to install rubber seal strip in the notch.
The above-mentioned embodiment is only the preferred embodiment of the present invention, so all the equivalent changes or modifications made by the structure, features and principles of the present invention are included in the claims of the present invention.
Claims (6)
1. A novel opening structure suitable for an energy-saving glass curtain wall comprises a curtain wall keel and an opening window in transmission connection with the curtain wall keel through a connecting rod hinge; the curtain wall keel consists of an aluminum alloy transverse keel and an aluminum alloy vertical keel; the method is characterized in that: the opening window consists of a window sash and hollow glass; the hollow glass is fixedly connected with the window sash through a double-sided adhesive tape and a structural adhesive; a water cut-off groove is integrally formed above the side of the window sash; two notches are formed in the inner side of the water cut-off groove and the outer side of the aluminum alloy cross keel in a vertically staggered mode; a rubber sealing strip is respectively arranged in the two notches; the rubber sealing strip of the water cut-off groove is tightly pressed with the aluminum alloy cross keel; and the rubber sealing strip of the aluminum alloy transverse keel is tightly pressed with the window sash.
2. The new opening structure for energy saving glass curtain wall as claimed in claim 1, wherein: the aluminum alloy cross keel is integrally formed with a flashing strip for preventing rainwater from entering the water cut-off groove on one side close to the water cut-off groove, and the flashing strip is obliquely arranged above the side of the water cut-off groove.
3. The new opening structure for energy saving glass curtain wall as claimed in claim 1, wherein: the lower edge of the water breaking groove extends outwards, and an outer convex strip used for supporting the double-sided adhesive tape is integrally formed.
4. The new opening structure for energy saving glass curtain wall as claimed in claim 1, wherein: the double-sided adhesive tape outside the window sash is arranged at the corner where the window sash is connected with the water cut-off groove.
5. The new opening structure for energy saving glass curtain wall as claimed in claim 1, wherein: the rubber sealing strip is an EPDM rubber strip.
6. The new opening structure for energy saving glass curtain wall as claimed in claim 1, wherein: curtain wall hollow glass is arranged above the opening window; the hollow glass of the curtain wall is connected with the aluminum alloy cross keel through a glass supporting strip; the lower bottom surface of the curtain wall hollow glass is glued and fixed on the surface of the glass supporting strip, and one end of the glass supporting strip, which is far away from the curtain wall hollow glass, is fixed with the aluminum alloy cross keel through a pressing block and a bolt; the upper end of the pressing block is connected with the auxiliary frame; one side of the auxiliary frame is glued with the aluminum alloy cross keel, and the other side of the auxiliary frame is fixed with the curtain wall hollow glass through a double-sided adhesive tape and a structural adhesive; and sealant is filled between the lower part of the curtain wall hollow glass and the aluminum alloy cross keel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120120104.1U CN215213040U (en) | 2021-01-18 | 2021-01-18 | Novel opening structure suitable for energy-conserving glass curtain wall |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120120104.1U CN215213040U (en) | 2021-01-18 | 2021-01-18 | Novel opening structure suitable for energy-conserving glass curtain wall |
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Publication Number | Publication Date |
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CN215213040U true CN215213040U (en) | 2021-12-17 |
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CN202120120104.1U Active CN215213040U (en) | 2021-01-18 | 2021-01-18 | Novel opening structure suitable for energy-conserving glass curtain wall |
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2021
- 2021-01-18 CN CN202120120104.1U patent/CN215213040U/en active Active
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