CN113638531B - Vertical and horizontal hidden glass curtain wall system and installation method - Google Patents

Vertical and horizontal hidden glass curtain wall system and installation method Download PDF

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Publication number
CN113638531B
CN113638531B CN202111207396.3A CN202111207396A CN113638531B CN 113638531 B CN113638531 B CN 113638531B CN 202111207396 A CN202111207396 A CN 202111207396A CN 113638531 B CN113638531 B CN 113638531B
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plate
glass
shaped
groove
upright post
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CN113638531A (en
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覃斌
胡朝一
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Hunan Kurbon Curtain Wall Decoration Co ltd
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Hunan Kurbon Curtain Wall Decoration Co ltd
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • E04B2/965Connections of mullions and transoms

Abstract

The invention relates to the field of building curtain walls, in particular to a vertical and horizontal hidden glass curtain wall system and an installation method thereof High quality installation.

Description

Vertical and horizontal hidden glass curtain wall system and installation method
Technical Field
The invention relates to the field of building curtain walls, in particular to a vertical and horizontal hidden glass curtain wall system and an installation method.
Background
The glass curtain wall is a beautiful and novel building wall decoration method, is a remarkable characteristic of the modern meaning high-rise building era, comprises an exposed frame glass curtain wall and a hidden frame glass curtain wall, and with the improvement of safety requirements, but the pursuit of people for building facade beauty is not reduced or increased, and a semi-hidden frame curtain wall is favored, wherein the application in a vertical exposed and horizontal hidden mode is more, for example, a hidden frame beam structure is disclosed in the patent with the application number of CN 202110353045.7. Meanwhile, various functional components are arranged on the outer side of the glass curtain wall, and the new characteristic of curtain wall development is realized by the integrated design and construction of decoration and sun shading. On one hand, the specification of the decorative sunshade component is larger and larger, and the additional effect on the main frame of the curtain wall, particularly the upright post is obvious; on the other hand, people pursue permeability, the use of large glass is more and more common, and the eccentric loading problem of the beam is prominent; in addition, the installation of the decorative sunshade component needs additional operation, so that the whole curtain wall has higher requirements on the construction progress and the construction quality. In the prior art, a mounting structure of a closed cross beam and a spring pin is mainly adopted, so that repeated positioning and hole aligning are needed during operation, and the operation efficiency is not high; glass and the auxiliary frame are bonded in a factory in advance and then transported to a field for installation, the coordination management difficulty is high, and an obvious gap exists between the auxiliary frame and the cross beam after loading; the difficulty of installing the decorative sunshade component is high, and the like.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides a vertical and horizontal hidden glass curtain wall system which comprises upright posts, cross beams and laminated hollow glass; the upright column comprises an upright column main cavity and a connecting cavity, first elastic piece mounting structures are arranged on left and right side surrounding plates of the upright column main cavity, first bulges are arranged on two sides of a front surrounding plate close to the outer side, the front surrounding plate of the upright column main cavity is connected with the connecting cavity, the first bulges of the upright column main cavity and the connecting cavity form a first notch, and the front surrounding plate of the connecting cavity is connected with a vertical pressing block;
the beam comprises a beam main cavity and a connecting groove, a second elastic part mounting structure is arranged on a rear enclosing plate of the beam main cavity, upper and lower enclosing plates extend to the front part to form a cantilever plate, the connecting groove is arranged on a front enclosing plate, a second notch is formed by the front enclosing plate of the beam and the cantilever plate, and the connecting groove is connected with a transverse pressing code;
the upright post and the cross beam are connected with the connecting block through elastic pieces, and the first elastic piece mounting structure corresponds to the second elastic piece mounting structure in position and is used for mounting the elastic pieces; the first notch corresponds to the second notch in position and is used for installing a connecting block.
Furthermore, U-shaped strips are arranged in the upper sealed edge and the lower sealed edge of the laminated hollow glass, and the transverse pressing codes are installed in the U-shaped strips.
Further, transversely press sign indicating number one end to form inward mounting groove, the width of mounting groove with spread groove width phase-match, the other end is provided with bellied arc muscle inwards, and the screw passes the mounting groove with the spread groove is connected, the arc muscle compresses tightly the U-shaped strip, thereby transversely press the sign indicating number to compress tightly doubling cavity glass.
Further, if the upper and lower grid units adopt laminated hollow glass with different thicknesses, the transverse pressing code is arranged into a Z-shaped plate structure; and if the upper and lower grid units adopt laminated hollow glass with the same thickness, the transverse pressing codes are arranged into a flat plate structure.
Furthermore, the connecting block is formed by combining two Z-shaped plate structures through 1 surface in a coplanar manner, one end of the connecting block is in concave-convex fit with a turning structure formed by the first notch and the first protrusion, and two sides of a flat plate part of which the other end is inserted into the second notch are respectively provided with through long ribs.
Further, the end part of the cantilever plate of the crossbeam main cavity body is provided with a second protrusion, a T-shaped groove is formed in the first protrusion and the second protrusion, and an adjusting piece and an adhesive tape can be installed in the T-shaped groove.
Further, the upright post connecting cavity comprises a first connecting cavity and a second connecting cavity; the first connecting cavity is connected with the middle of the front wall plate of the main upright cavity body, a plurality of irregular trapezoid-shaped bulges are arranged on the front wall plate of the first connecting cavity, and a plurality of irregular trapezoid-shaped grooves are formed among the bulges; the second is connected and is had on the chamber back panel with arch and the recess that the preceding bounding wall of first connection chamber corresponds, and the heat insulating strip embedding in the recess of first connection chamber and second connection chamber, connect first connection chamber and second connection chamber, the second is connected and has been seted up the third notch on the chamber front panel, be provided with first connecting bolt in the third notch, be used for with vertical briquetting is connected.
Further, the vertical pressing block is composed of a bottom plate and a left and right extending plate, the extending plate is vertically connected with the bottom plate, an inward installation groove is formed in the middle of the bottom plate, the width of the installation groove is matched with that of the second connection cavity, the first connection bolt penetrates through the installation groove to fix the second connection cavity and the vertical pressing block, and therefore the vertical pressing block presses the laminated hollow glass.
The rear enclosing plate of the decorative sunshade component is provided with two L-shaped structures extending outwards, the rear enclosing plate of the decorative sunshade component and the L-shaped structures form a C-shaped groove, and a second connecting bolt penetrates through the C-shaped groove and is fixedly connected with the outward extending plate of the vertical pressing block; the C-shaped groove is also provided with a buckle cover, and the buckle cover and the C-shaped groove are provided with mutually matched connecting structures.
The invention also provides an installation method of the vertical and horizontal hidden glass curtain wall system, which comprises the following steps:
the method comprises the following steps: blanking the stand columns with specified quantity and specification according to the field installation requirement, marking horizontal marking lines for installing the cross beams on the enclosing plates on the two sides of the stand columns, processing installation holes of spring pins at the rear parts of the enclosing plates on the two sides, filling a specified quantity of connecting bolts into the second connecting cavity, determining whether an adjusting piece is installed in the T-shaped groove or not according to the thickness of the left glass and the right glass, penetrating an adhesive tape, paying attention to the fact that the position of the cross beam is disconnected, and determining the disconnection length according to the length of the connecting block;
step two: blanking beams with specified quantity and specification according to the field installation requirement, firstly installing and fixing spring pins in rib grooves of the beams, then inserting connecting blocks into second grooves formed between cantilever plates and front surrounding plates of the beams from two end parts, marking short transverse lines at the rib grooves of the rear surrounding plates of the beams, determining whether an adjusting part is installed in a T-shaped groove or not according to the thicknesses of upper glass and lower glass, and penetrating adhesive tapes;
step three: the method comprises the following steps of (1) conveying an upright post and a cross beam to an operation surface, firstly connecting and installing the upright post and a main body, then aligning a marked short transverse line of a rear enclosing plate of the cross beam with a horizontal marked line on an side enclosing plate of the upright post, horizontally pushing a group of cross beams with corresponding sizes from the front part of the upright post by compressing a spring pin, automatically popping the spring pin into an installation hole when a connecting block is matched with a turning structure on the upright post in a concave-convex mode and is pushed immovable, finally fastening the connecting block and the upright post through screws, and repeating to complete installation of the cross beam;
step four: selecting laminated hollow glass plates with corresponding specifications, inserting corresponding transverse pressing codes into U-shaped strips on the upper and lower sides of glass according to design requirements, temporarily fixing the laminated hollow glass plates through rubber gaskets, horizontally and integrally pushing the laminated hollow glass plates into a frame consisting of cross beams and upright posts by means of machines, and fastening the transverse pressing codes through screws to fix the glass plates after the laminated hollow glass plates are in place;
step five: and (3) installing a vertical pressing block on the outer side of the upright post according to design requirements, and finally connecting and fixing the decorative sun-shading component and the vertical pressing block.
The scheme of the invention has the following beneficial effects:
1. the closed cross beam is optimized from the assembly structure of the multi-spring pin to the assembly structure of the single-spring pin and the connecting block, so that on one hand, the distance between connecting points is increased, the stress form is changed from point to point and surface, and the bearing performance of a frame formed by the cross beam and the upright post is better; on the other hand, the machining work of the beam is simplified, any auxiliary devices such as a mounting explorator and the like are not needed when the beam is mounted, the mounting position in one direction only needs to be concerned, and the mounting complexity and difficulty are greatly simplified;
2. the glass auxiliary-frame-free assembly structure removes the processing procedure of bonding the auxiliary frame and the glass in a factory on the premise of realizing the frame hiding effect, only needs to be horizontally pushed in during field installation, does not need extra lifting action, and is more convenient to install;
3. based on the assembly structure of the upright post and the cross beam, the glass and the frame, and the decoration and sunshade component and the upright post, the high-efficiency and high-quality decoration and sunshade integrated vertical and horizontal hidden glass curtain wall system installation is realized.
Drawings
FIG. 1 is a cross-sectional view of the overall structure of the present invention;
FIG. 2 is a vertical sectional view of the overall structure of the present invention;
fig. 3 is a schematic view of a connection block of the present invention.
[ description of reference ]
1-upright column; 11-a main cavity of the upright post; 12-a first connection chamber; 13-a second connection chamber; 14-a first projection; 15-heat insulating strips; 16-vertical briquetting; 17-a first connecting bolt; 2-a cross beam; 21-a beam main cavity; 22-U-shaped connecting grooves; 23-rib grooves; 24-a second projection; 25-a screw; 26-transverse briquetting; 3-doubling hollow glass; 31-U-shaped strips; 4-decorative sun-shading components; 41-second connecting bolt; 42-buckling cover; 5-a spring pin; 6-connecting blocks; 7-supporting strip.
Detailed Description
In order to make the technical problems, technical solutions and advantages of the present invention more apparent, the following detailed description is given with reference to the accompanying drawings and specific embodiments. It is to be understood that the embodiments described are only a few embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. The terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. Unless expressly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning a locked connection, a releasable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art. In addition, the technical features related to the different embodiments of the present invention described below may be combined with each other as long as they do not conflict with each other.
Example 1
As shown in fig. 1 and 2, embodiment 1 of the present invention provides a system for erecting and hiding a glass curtain wall, including: the device comprises a column 1, a beam 2, laminated hollow glass 3 and a decorative sunshade component 4.
The column comprises a main cavity 11, a first connection cavity 12 and a second connection cavity 13. The main cavity 11 is a rectangular structure (other embodiments may be multi-cavity or other shapes), the rear portions of the side plates on the left and right sides of the main cavity 11 are respectively provided with a mounting boss having a certain width, the spring pin 5 mounted on the cross beam is arranged on the mounting boss, and the thickness and width of the mounting boss can be determined according to the specific size of the spring pin 5. The front wall plate is of a structure with two locally thickened sides, first bulges 14 are arranged on the two sides close to the outer side, T-shaped grooves are formed in the first bulges 14, and adjusting pieces and adhesive tapes can be installed in the T-shaped grooves. The first connecting cavity 12 is connected to the middle of the front wall, and a plurality of trapezoidal through-length protrusions (three in this embodiment) are arranged on the outer side plate of the front wall, and a plurality of trapezoidal grooves are formed between the through-length protrusions. The second connecting cavity 13 is also provided with a plurality of trapezoidal through-length protrusions corresponding to the first connecting cavity on the inner side plate, and a corresponding number of trapezoidal grooves are formed between the through-length protrusions. The two ends of the heat insulation strip 15 are respectively embedded into the grooves of the first connecting cavity 12 and the second connecting cavity 13 through rolling to connect the first connecting cavity 12 and the second connecting cavity 13. A third through-length notch is formed in the outer side plate of the second connecting cavity 13, and a first connecting bolt 17 is arranged in the third notch and used for being connected with the vertical pressing block 16. The first protrusion 14 and the first connecting cavity 12 form a first notch, and the first notch and the first protrusion 14 are in concave-convex fit with the folding structure of the connecting block 6.
The vertical pressing block 16 is composed of a bottom plate and two overhanging plates, and the two overhanging plates are vertically connected with the bottom plate and are of a bull-head-shaped structure. The inboard of bottom plate is provided with three mounting grooves, is located the middle part and the both ends position of bottom plate respectively. The local thickening in bottom plate middle part forms the installation boss, and mounting groove both sides limit is hypotenuse transitional coupling with the non-thickening part of bottom plate to reduce local stress. The width of mounting groove and second connection chamber 13 width phase-match, and it has the bolted connection hole to open on the mounting groove, and first connecting bolt 17 passes the bolted connection hole and fixes second connection chamber 13 and vertical briquetting 16 to vertical tight glass. The mounting grooves at the two ends of the bottom plate are symmetrically arranged into T-shaped grooves, and adhesive tapes can be mounted in the T-shaped grooves. The two overhanging plates are in cantilever form, and are provided with bolt connecting holes and penetrated by second connecting bolts 41.
The cross beam 2 comprises a main cavity 21 and a U-shaped connecting slot 22. The main cavity 21 is a rectangular structure (other embodiments may be multi-cavity or other shapes), and a rib groove 23 is provided in the middle of the rear side plate of the main cavity 21 for accommodating the spring pin 5 connecting the beam 2 and the column 1. The curb plate of main cavity 21 upper and lower both sides extends to the front portion for cantilever plate, and its tip sets up second arch 24, sets up to T shape recess in the second arch 24, can install regulating part and adhesive tape in the T shape recess. The middle of the front wall plate is connected with a U-shaped connecting groove 22, and a connecting screw 25 is arranged in the U-shaped connecting groove 22 and is used for being connected with a transverse pressing code 26. A second notch is formed between the cantilever plate and the front wall plate, and a connecting block 6 and a supporting strip 7 can be installed in the second notch. As shown in fig. 3, the connecting block 6 is formed by combining two Z-shaped plate structures through 1 surface in a coplanar manner, and rectangular through long ribs are respectively arranged at two sides of a flat plate inserted into the second notch and play a role in limiting when inserted; the whole supporting strip 7 is of a seven-shaped structure, the edge of the short part is provided with a circular arc rib, and the end part can be integrally buckled into the second notch.
The laminated hollow glass 3 is improved in the edge sealing structure on the basis that the periphery of the conventional hollow glass is sealed through structural adhesive, and metal U-shaped strips 31 which are outwards opened and are parallel to the edges of the glass are arranged in the upper edge sealing and the lower edge sealing. The U-shaped strip 31 is internally provided with a transverse pressing code 26, the transverse pressing code 26 is divided into two types according to whether the thicknesses of the glass adopted by the upper and lower grid units are the same, one type is a Z-shaped plate structure for adapting to the glass with different thicknesses, one end of the whole Z-shaped plate structure is locally thickened to form a mounting groove, and the width of the mounting groove is matched with that of the U-shaped connecting groove 22 of the cross beam; the other end is provided with a convex arc rib inwards, a screw 25 penetrates through the mounting groove to go deep into the U-shaped connecting groove 22, the transverse pressing code 26 is fixed with the U-shaped connecting groove 22 of the cross beam, and the arc rib presses the U-shaped strip 31 of the laminated hollow glass 3 to fasten the glass transversely. The other whole is a glass whole which is suitable for the same thickness and has a flat plate structure, and the rest parts are the same.
The decorative sunshade component 4 is a variable cross-section box-shaped structure with a small front part and a large rear part, and rib grooves are arranged on four enclosing plates of the box-shaped structure towards the inside of the cavity body for splicing and butting the decorative sunshade component up and down. In order to connect with the two overhanging plates of the vertical pressing block, two L-shaped structures extending outwards are arranged on the back panel of the decorative sunshade component to form a C-shaped groove with the back panel, and the second connecting bolt 41 penetrates through the C-shaped groove and the overhanging plates of the vertical pressing block to connect and fix the decorative sunshade component 4. The C-shaped groove is also provided with a buckle cover, and the buckle cover and the C-shaped groove are provided with mutually matched teeth-biting structures.
Example 2
The embodiment 2 of the invention provides an installation method of the erect and horizontal hidden glass curtain wall system in the embodiment 1, which specifically comprises the following steps:
the method comprises the following steps: blanking the stand columns with specified quantity and specification according to the field installation requirement, marking horizontal marking lines for installing the cross beams on the enclosing plates on the two sides of the stand columns, processing installation holes of spring pins at the rear parts of the enclosing plates on the two sides, filling a specified quantity of connecting bolts into the second connecting cavity, determining whether an adjusting piece is installed in the T-shaped groove or not according to the thickness of the left glass and the right glass, penetrating an adhesive tape, paying attention to the fact that the position of the cross beam is disconnected, and determining the disconnection length according to the length of the connecting block;
step two: blanking beams with specified quantity and specification according to the field installation requirement, firstly installing and fixing spring pins in rib grooves of the beams, then inserting connecting blocks into second grooves formed between cantilever plates and front surrounding plates of the beams from two end parts, marking short transverse lines at the rib grooves of the rear surrounding plates of the beams, determining whether an adjusting part is installed in a T-shaped groove or not according to the thicknesses of upper glass and lower glass, and penetrating adhesive tapes; step three: the method comprises the following steps of (1) conveying upright posts and cross beams to an operation surface, firstly connecting and installing the upright posts and a main body, then aligning a marked short transverse line of a rear enclosing plate of the cross beam with a horizontal marked line on an enclosing plate of the upright posts, horizontally pushing a group of cross beams with corresponding sizes from the front parts of the upright posts by compressing spring pins, automatically popping the spring pins into installation holes when a connecting block is matched with a turning structure on the upright posts in a concave-convex mode and is pushed immovable, finally fastening the connecting block and the upright posts through screws, repeating to complete installation of the cross beams, and installing supporting strips on the cross beams according to the designed number and the designed intervals;
step four: selecting laminated hollow glass plates with corresponding specifications, inserting corresponding transverse pressing codes into U-shaped strips on the upper side and the lower side of glass according to design requirements, temporarily fixing the laminated hollow glass plates through rubber gaskets, horizontally and integrally pushing the laminated hollow glass plates into a frame consisting of cross beams and upright columns by means of machines, fastening the transverse pressing codes through screws after the laminated hollow glass plates are in place to fix the glass plates, paying attention to the fact that the rubber gaskets can be repeatedly used after being detached, the pressing codes of the upper glass plate and the lower glass plate are staggered, and the supporting strips and the pressing codes on the lower side of the same glass plate are also staggered.
Step five: and vertical pressing blocks are arranged on the outer sides of the upright posts according to the designed number and the designed intervals, and finally the decorative sun-shading component is connected and fixed with the vertical pressing blocks.
While the foregoing is directed to the preferred embodiment of the present invention, it will be understood by those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (10)

1. A vertical and horizontal hidden glass curtain wall system is characterized by comprising upright posts (1), cross beams (2) and laminated hollow glass (3); the upright post (1) comprises an upright post main cavity body (11) and a connecting cavity body, wherein first elastic piece mounting structures are arranged on a left side wall plate and a right side wall plate of the upright post main cavity body (11), first bulges (14) are arranged on two sides of the front wall plate close to the outer side, the front wall plate of the upright post main cavity body (11) is connected with the connecting cavity body, the first bulges (14) of the upright post main cavity body (11) and the connecting cavity body form a first notch, and the front wall plate of the connecting cavity body is connected with a vertical pressing block (16);
the beam (2) comprises a beam main cavity (21) and a connecting groove (22), a second elastic piece mounting structure is arranged on a rear enclosing plate of the beam main cavity (21), upper and lower enclosing plates extend to the front part to form a cantilever plate, the connecting groove (22) is arranged on a front enclosing plate, a second notch is formed between the front enclosing plate and the cantilever plate of the beam (2), and the connecting groove (22) is connected with a transverse pressing code (26);
the upright post (1) and the cross beam (2) are connected through an elastic piece (5) and a connecting block (6), and the position of the first elastic piece mounting structure corresponds to the position of the second elastic piece mounting structure and is used for mounting the elastic piece (5); the first notch corresponds to the second notch in position and is used for installing a connecting block (6), and the connecting block (6) is formed by combining two Z-shaped plate structures through 1 surface in a coplanar mode.
2. A system according to claim 1, wherein the laminated insulating glass (3) is provided with a U-shaped strip (31) in the upper and lower edge seals, and the transverse press code (26) is mounted in the U-shaped strip (31).
3. A system as claimed in claim 2, wherein the transverse pressing member (26) has an inward-facing mounting groove formed at one end thereof, the width of the mounting groove matches with the width of the connecting groove (22), and a convex arc rib is inwardly disposed at the other end thereof, a screw (25) passes through the mounting groove to connect with the connecting groove (22), and the arc rib presses the U-shaped strip (31), so that the transverse pressing member (26) presses the laminated hollow glass (3).
4. A system of vertical and horizontal hidden glass curtain wall as claimed in claim 3, wherein if the upper and lower cell units adopt laminated hollow glass (3) with different thickness, the horizontal pressing code (26) is arranged in a zigzag plate structure; if the upper and lower grid units adopt laminated hollow glass with the same thickness, the transverse pressing code (26) is of a flat plate structure.
5. A system of erecting and horizontally hidden glass curtain wall as claimed in claim 1, wherein one end of said connecting block (6) is concave-convex fitted with the folded structure formed by said first notch and said first protrusion (14), and the flat plate portion at the other end is inserted into said second notch, and both sides of said flat plate portion are respectively provided with through long ribs.
6. A system for erecting and hiding a glass curtain wall as claimed in claim 1, wherein the end of the cantilever plate of the crossbeam main cavity (21) is provided with a second protrusion (24), the first protrusion (14) and the second protrusion (24) are internally provided with a T-shaped groove, and an adjusting piece and an adhesive tape can be arranged in the T-shaped groove.
7. A system of erectly or horizontally concealed glass curtain walls according to claim 1, wherein the pillar connecting cavity comprises a first connecting cavity (12) and a second connecting cavity (13); the first connecting cavity (12) is connected with the middle part of a front panel of the upright main cavity (11), a plurality of irregular trapezoid-shaped bulges are arranged on the front panel of the first connecting cavity (12), and a plurality of irregular trapezoid-shaped grooves are formed among the bulges; have on the second connection chamber (13) back wall board with arch and the recess that the bounding wall corresponds before first connection chamber, heat insulating strip (15) embedding in the recess of first connection chamber (12) and second connection chamber (13), connect first connection chamber (12) and second connection chamber (13), the third notch has been seted up on the second connection chamber (13) front wall board, be provided with first connecting bolt (17) in the third notch for with vertical briquetting (16) are connected.
8. A vertical and horizontal hidden glass curtain wall system as claimed in claim 7, wherein the vertical pressing block (16) is composed of a bottom plate and a left and a right overhanging plates, the overhanging plates are vertically connected with the bottom plate, an inward installation groove is formed in the middle of the bottom plate, the width of the installation groove is matched with that of the second connection cavity (13), the first connection bolt (17) penetrates through the installation groove to fix the second connection cavity (13) and the vertical pressing block (16), and therefore the vertical pressing block (16) presses the laminated hollow glass (3).
9. The system of claim 8, further comprising a decorative sunshade element (4), wherein two L-shaped structures extending outwards are arranged on a back panel of the decorative sunshade element (4), the back panel of the decorative sunshade element (4) and the L-shaped structures form a C-shaped groove, and a second connecting bolt (41) penetrates through the C-shaped groove to be fixedly connected with an outward extending plate of the vertical pressing block (16); the C-shaped groove is also provided with a buckle cover, and the buckle cover and the C-shaped groove are provided with mutually matched connecting structures.
10. A method of installing a facade hidden-in-the-wall glass curtain wall system as claimed in any one of claims 1 to 9, comprising the steps of:
the method comprises the following steps: blanking the stand columns with specified quantity and specification according to the field installation requirement, marking horizontal marking lines for installing the cross beams on the enclosing plates on the two sides of the stand columns, processing installation holes of spring pins at the rear parts of the enclosing plates on the two sides, filling a specified quantity of connecting bolts into the second connecting cavity, determining whether an adjusting piece is installed in the T-shaped groove or not according to the thickness of the left glass and the right glass, penetrating an adhesive tape, paying attention to the fact that the position of the cross beam is disconnected, and determining the disconnection length according to the length of the connecting block;
step two: blanking beams with specified quantity and specification according to the field installation requirement, firstly installing and fixing spring pins in rib grooves of the beams, then inserting connecting blocks into second grooves formed between cantilever plates and front surrounding plates of the beams from two end parts, marking short transverse lines at the rib grooves of the rear surrounding plates of the beams, determining whether an adjusting part is installed in a T-shaped groove or not according to the thicknesses of upper glass and lower glass, and penetrating adhesive tapes;
step three: the method comprises the following steps of (1) conveying an upright post and a cross beam to an operation surface, firstly connecting and installing the upright post and a main body, then aligning a marked short transverse line of a rear enclosing plate of the cross beam with a horizontal marked line on an side enclosing plate of the upright post, horizontally pushing a group of cross beams with corresponding sizes from the front part of the upright post by compressing a spring pin, automatically popping the spring pin into an installation hole when a connecting block is matched with a turning structure on the upright post in a concave-convex mode and is pushed immovable, finally fastening the connecting block and the upright post through screws, and repeating to complete installation of the cross beam;
step four: selecting laminated hollow glass plates with corresponding specifications, inserting corresponding transverse pressing codes into U-shaped strips on the upper and lower sides of glass according to design requirements, temporarily fixing the laminated hollow glass plates through rubber gaskets, horizontally and integrally pushing the laminated hollow glass plates into a frame consisting of cross beams and upright posts by means of machines, and fastening the transverse pressing codes through screws to fix the glass plates after the laminated hollow glass plates are in place;
step five: and (3) installing a vertical pressing block on the outer side of the upright post according to design requirements, and finally connecting and fixing the decorative sun-shading component and the vertical pressing block.
CN202111207396.3A 2021-10-18 2021-10-18 Vertical and horizontal hidden glass curtain wall system and installation method Active CN113638531B (en)

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Application Number Priority Date Filing Date Title
CN202111207396.3A CN113638531B (en) 2021-10-18 2021-10-18 Vertical and horizontal hidden glass curtain wall system and installation method

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Application Number Priority Date Filing Date Title
CN202111207396.3A CN113638531B (en) 2021-10-18 2021-10-18 Vertical and horizontal hidden glass curtain wall system and installation method

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202706273U (en) * 2012-05-29 2013-01-30 深圳广田高科新材料有限公司 Installing structure of all-hidden frame glass curtain wall
CN105155743A (en) * 2015-09-21 2015-12-16 武汉丽岛科技有限公司 Frame-hidden glass curtain wall without auxiliary frame
CN208792572U (en) * 2018-08-31 2019-04-26 上海富艺幕墙工程有限公司 The mounting structure of crossbeam closed chamber formula glass curtain wall
CN110080498A (en) * 2019-04-17 2019-08-02 金鼎幕墙股份有限公司 A kind of aluminium alloy decorative line
CN213174372U (en) * 2021-04-02 2021-05-11 中铁城建集团有限公司 Exposed frame beam structure

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Publication number Priority date Publication date Assignee Title
US20150135615A1 (en) * 2013-11-08 2015-05-21 Cupples International Inc. Perimeter wall

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202706273U (en) * 2012-05-29 2013-01-30 深圳广田高科新材料有限公司 Installing structure of all-hidden frame glass curtain wall
CN105155743A (en) * 2015-09-21 2015-12-16 武汉丽岛科技有限公司 Frame-hidden glass curtain wall without auxiliary frame
CN208792572U (en) * 2018-08-31 2019-04-26 上海富艺幕墙工程有限公司 The mounting structure of crossbeam closed chamber formula glass curtain wall
CN110080498A (en) * 2019-04-17 2019-08-02 金鼎幕墙股份有限公司 A kind of aluminium alloy decorative line
CN213174372U (en) * 2021-04-02 2021-05-11 中铁城建集团有限公司 Exposed frame beam structure

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Denomination of invention: A vertical and horizontal concealed glass curtain wall system and installation method

Granted publication date: 20220111

Pledgee: Bank of Changsha Limited by Share Ltd. Hualong branch

Pledgor: HUNAN KURBON CURTAIN WALL DECORATION CO.,LTD.

Registration number: Y2021430000001