CN212613224U - Large plate glass interlayer supporting system - Google Patents

Large plate glass interlayer supporting system Download PDF

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Publication number
CN212613224U
CN212613224U CN202020895940.2U CN202020895940U CN212613224U CN 212613224 U CN212613224 U CN 212613224U CN 202020895940 U CN202020895940 U CN 202020895940U CN 212613224 U CN212613224 U CN 212613224U
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China
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glass
layer
clamping
fixing piece
piece
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CN202020895940.2U
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李振
张清会
庄海挺
彭初尚
何辉灿
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Shenzhen Keyuan Construction Group Co ltd
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Shenzhen Keyuan Construction Group Co ltd
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Abstract

The utility model discloses a big plate glass interlaminar braced system, including face glass, built-in fitting, switching structure, on the outer terminal surface on layer encorbelment layer between the built-in fitting equidistance interval is pre-buried, the switching structure was located respectively on the built-in fitting, and face glass passes through the clamping piece to be fixed on the switching structure. Compared with the prior art, replace current stand and support and the bearing the face glass to reduce the exterior space size who occupies the building owing to need not the stand.

Description

Large plate glass interlayer supporting system
Technical Field
The utility model relates to a building structure, in particular to braced system between big plate glass layer.
Background
At present, the glass curtain wall becomes an indispensable part in building design, the glass curtain wall is a modern novel wall body, and the glass curtain wall endows the building with the greatest characteristic that factors such as building aesthetics, building functions, building energy conservation, building structures and the like are organically unified, the building presents different tones from different angles, and dynamic beauty is given to people along with changes of sunlight, moonlight and lamplight. The glass curtain wall building is built in main cities of continents all over the world, the glass curtain wall can meet the lighting requirement in a building room, but because the glass curtain wall needs to be provided with a vertical column for bearing and supporting as an adapter, the existing adapter needs to be closed, interlayer fireproof iron plate laying and glass back plate installation, so that the required space is large, and the structures are only arranged to have the function of hiding the interlayer, so that the attractiveness of the building is reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a braced system between big plate glass layer, the technical problem that solve are bearing and the supported mode who replaces traditional stand, not only save the exterior space of building but also pleasing to the eye.
In order to solve the above problem, the utility model discloses a following technical scheme realizes: a large plate glass interlayer supporting system comprises surface glass, embedded parts and a switching structure, wherein the embedded parts are embedded on the outer end face of an interlayer overhanging layer at equal intervals, the switching structure is respectively arranged on the embedded parts, the surface glass is fixed on the switching structure through a clamping part, a fireproof and waterproof structure is laid between the switching structure and the interlayer overhanging layer, the switching structure comprises switching parts and glass fixing parts, the switching parts are symmetrically arranged and fixed on the embedded parts to form a first insertion part between the two switching parts, the switching parts comprise fixing part connecting parts, first connecting holes are arranged on the connecting parts, the glass fixing parts are inserted in the first insertion parts, the glass fixing parts are hollow rectangles, fixing part openings are respectively arranged at the upper end and the lower end of each glass fixing part, and the fixing part openings are communicated with a hollow cavity of the glass fixing parts, the glass wing connecting cavity is formed, the glass wing is arranged between the upper glass fixing piece and the lower glass fixing piece, the first bolt is arranged on the surface of the two ends, opposite to the adapter piece, of the glass fixing piece, the glass fixing piece is inserted into the first connecting hole through the first bolt and locked through the nut, the glass fixing piece is fixedly connected with the adapter piece, a notch communicated with the hollow cavity of the glass fixing piece is arranged on one end face, away from the layer, of the glass fixing piece, the end face is far away from the layer, of the layer, the second inserting portion is formed, a face glass clamping portion is arranged on the glass fixing piece and located on the second inserting portion, and the clamping piece is fixedly connected with the face glass clamping portion to clamp the.
Furthermore, the surfaces of two opposite ends of the glass fixing piece and the adapter piece are provided with connecting wings with screw holes, each connecting wing comprises a first connecting wing part and a second connecting wing part, the first connecting wing part is parallel to the outer end surface of the interlayer overhanging layer, the second connecting wing part is perpendicular to the first connecting wing part to form a T shape, the second connecting wing part extends to the upper part of the adapter piece, one end of the first connecting wing part, which is far away from the interlayer overhanging layer, is provided with a supporting keel group, the supporting keel group comprises a first supporting keel, a second supporting keel and a third supporting keel, the first supporting keel is fixed on the first connecting wing part opposite to the two adjacent glass fixing pieces on the left and right, the second supporting keel and the third supporting keel are respectively arranged on one end surface opposite to the interlayer overhanging layer of the first supporting keel and one end adjacent to the interlayer overhanging layer of the second connecting wing part, the second support keel and the third support keel are arranged at the same height so as to form an installation surface on the second support keel and the third support keel, and the fireproof and waterproof structure is laid between the second support keel and the third support keel.
Further, fire prevention waterproof construction includes fire prevention rock wool, roof panel and bottom surface board, the bottom surface board extends to on the built-in fitting from first support fossil fragments, and is connected fixedly with first support fossil fragments, built-in fitting respectively, and fire prevention rock wool is laid between bottom surface board, second support fossil fragments, third support fossil fragments, and on the roof panel extended to the layer of encorbelmenting between the layer from the second support fossil fragments, the roof panel was fixed with the installation face, the up end on the layer of encorbelmenting between the layer respectively, and the one end surface of keeping away from fire prevention rock wool at the roof panel scribbles waterproof coating.
Furthermore, a decorative plate is arranged outside the first support keel.
Further, the steel sheet has been laid to the top panel top, be equipped with the flute structure on the steel sheet, the flute structure extends towards the layer direction of encorbelmenting between the layer from first support fossil fragments.
Furthermore, the second inserting part penetrates through the surface glass clamping part to enable the surface glass clamping part to form an n shape, the surface glass clamping part comprises two first clamping wings and a second clamping wing arranged between the two first clamping wings, the first clamping wings are symmetrically arranged at two ends, opposite to the adapter, of the glass fixing part and located at corresponding edges of the second inserting part, the second clamping wings are arranged at the upper end of the glass fixing part and located at corresponding edges of the second inserting part, a clamping part fixing seat is arranged on one end face, opposite to the surface glass, of the two first clamping wings, the clamping part fixing seat evenly divides the first clamping wings into an upper part and a lower part, a screw hole is formed in the clamping part fixing seat, and the clamping part is fastened on the clamping part fixing seat through bolts.
Further, first connecting hole is the rectangular hole, and first connecting hole encorbelments the layer direction towards the layer between the layer and extends to the realization is encorbelmented the distance between the layer and is adjusted between glass mounting and the layer.
And in a progressive manner, second connecting holes are respectively formed in two end faces, opposite to the adapter, of the glass fixing piece, holes are formed in positions, corresponding to the second connecting holes, of the glass wings, and the glass wings and the glass fixing piece are fixedly connected through the second connecting holes and the holes of the glass wings through glass bolt pieces.
Compared with the prior art, the utility model, replace current stand to support and the bearing face to face glass through setting up the switching structure, owing to need not the stand to reduce the exterior space size that occupies the building, and improved the pleasing to the eye degree of building, simultaneously because the exterior space size reduces, consequently the material that the waterproof and fireproof structure used also reduces relatively, has saved construction cost.
Drawings
Fig. 1 is a cross-sectional view of the present invention.
Fig. 2 is a schematic structural view of the glass fixing member of the present invention.
Fig. 3 is an installation schematic diagram of the embedded part of the present invention.
Fig. 4 is a schematic view of the connection between the adaptor and the embedded part according to the present invention.
Fig. 5 is a schematic view of the connection between the glass fixing member and the adaptor according to the present invention.
Fig. 6 is a schematic view of the connection between the support keel assembly and the glass fixing member according to the present invention.
Fig. 7 is an installation schematic diagram of the decorative plate and the supporting keel set of the utility model.
Fig. 8 is an installation schematic diagram of the steel plate and the fireproof and waterproof structure of the present invention.
Fig. 9 is a laying view of the indoor floor of the utility model.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
The utility model discloses well upper and lower, left and right, preceding, back all correspond with the upper and lower, left and right, preceding, back of building.
As shown in fig. 1, the utility model discloses a big plate glass interlaminar braced system, including face glass 1, built-in fitting 2, switching structure 3, wherein:
as shown in fig. 3, the embedded parts 2 are embedded on the outer end face of the interlayer overhanging layer 100 at equal intervals; the embedded part 2 is a Halfen groove embedded part;
as shown in fig. 1, the switching structures 3 are respectively arranged on the embedded parts 2, the surface glass 1 is fixed on the switching structures 3 through the clamping parts 4, the fireproof and waterproof structure 5 is laid between the switching structures 3 and the interlayer overhanging layer,
the adapter structure 3 comprises an adapter piece 31 and a glass fixing piece 32; as shown in fig. 4, the adapters 31 are symmetrically disposed and fixed on the embedded part 2 to form a first insertion portion 311 between the two adapters 31, the adapters 31 are L-shaped, the adapters 31 include a fixing member connection portion 312 and a fixing portion 314, the connection portion 312 is provided with a first connection hole 313, and the fixing portion 314 is provided with a third connection hole 315; after the adapter 31 is inserted into the third connecting hole 315 through a bolt arranged on the embedded part 2, the adapter 31 is finally connected and fixed with the embedded part 2 by screwing a nut into the bolt; specifically, the first connection hole 313 and the third connection hole 315 are both rectangular holes, and the first connection hole 313 extends linearly toward the direction of the interlayer overhanging layer 100, so as to adjust the distance between the glass fixing member 32 and the interlayer overhanging layer; the third connection hole 315 extends linearly in the thickness direction of the interlayer cantilever layer 100, so that the height of the adaptor 31 at the interlayer cantilever layer 100 is finely adjusted;
as shown in fig. 1 and 5, the glass fixing member 32 is inserted into the first insertion portion 311, the glass fixing member 32 is a hollow rectangle (square tube), fixing member openings 321 are respectively formed at the upper and lower ends of the glass fixing member 32, the fixing member openings 321 are communicated with the hollow cavity of the glass fixing member 32 to form a glass wing connection cavity, a glass wing 7 is arranged between the upper and lower glass fixing members 32, and the glass wing 7 is a rectangular curtain wall glass;
as shown in fig. 2, first bolts 322 are arranged on two end surfaces (left and right ends) of the glass fixing member 32 opposite to the adaptor 31, the first bolts 322 are connected and fixed with the glass fixing member 32 by welding, the glass fixing member 32 is inserted into the first connecting hole 313 through the first bolts 322 and locked by nuts so as to connect and fix the glass fixing member 32 with the adaptor 31, a notch communicated with a hollow cavity of the glass fixing member 32 is arranged on one end surface of the glass fixing member 32 away from the interlayer overhanging layer 100 so as to form a second inserting part 323, the second inserting part 323 is used for installing the glass wing 7, a face glass clamping part 324 is arranged on the second inserting part 323 on the glass fixing member 32, and the clamping member 4 is connected and fixed with the face glass clamping part 324 so as to clamp and fix the face glass 1; specifically, the surface glass clamping portion 324 has a plate-shaped structure, and the surface of the surface glass clamping portion 324 is attached to an end surface of the glass fixing member 32 away from the interlayer overhanging layer 100 to form a T shape;
as shown in fig. 1, four end corners of the panel glass 1 are respectively disposed on the panel glass clamping portion 324, and the clamping member 4 is fixedly connected to the panel glass clamping portion 324 by the bolt 41, so as to clamp the panel glass 1 between the panel glass clamping portion 324 and the clamping member 4;
as shown in fig. 1, the fireproof and waterproof structure 5 is laid between the glass fixing member 32 and the interlayer cantilever 100, the fireproof and waterproof structure 5 includes fireproof rock wool 51, a top panel 52 and a bottom panel 53, and the fireproof rock wool 51 is disposed between the top panel 52 and the bottom panel 53.
As shown in fig. 1 and 2, on the basis of the above structure, the two end surfaces (left and right ends) of the glass fixing member 32 opposite to the adaptor 31 are provided with connecting wings 325 having screw holes, each of the connecting wings 325 includes a first connecting wing portion 3251 and a second connecting wing portion 3252, the first connecting wing portion 3251 and the second connecting wing portion 3252 are both plate-shaped structures, the surface of the first connecting wing portion 3251 is parallel to the outer end surface of the inter-layer cantilever layer 100, the second connecting wing portion 3252 is perpendicular to the first connecting wing portion 3251 to form a T shape, the second connecting wing portion 3252 extends above the adaptor 31, the connecting wing 325 is provided with a support keel group 6, as shown in fig. 6, the support keel group 6 includes a first support keel fixing member 61, a second support keel 62 and a third support keel 63, the first support keel 61 is fixed on the first connecting wing portion 3251 of two adjacent left and right glass 32 opposite to each other by screws, the second support keel 62 is fixed on one end face of the first support keel 61 opposite to the interlayer overhanging layer and one end of the second connecting wing portion 3252 adjacent to the interlayer overhanging layer 100 through welding and a third support keel 63 through screws, the second support keel 62 and the third support keel 63 are arranged at the same height so as to form an installation surface 64 on the second support keel 62 and the third support keel 63, and the fireproof and waterproof structure 5 is laid between the second support keel 62 and the third support keel 63; specifically, the first support keel 6 is an i-shaped steel beam, which is preferably hot-galvanized with Q235B, and has the size of 160 × 85 × 6 × 10; the second support runner 62 and the third support runner 63 are angle steels of the same size.
As shown in fig. 4 and 5, two opposite end surfaces of the two adapters 31 are respectively provided with a support plate 316 parallel to the second connecting wing portion 3252, and the support plate 316 is located below the second connecting wing portion 3252 with a space therebetween; the backup pad 316 is connected fixedly with mounting connecting portion 312 and fixed part 314 through the welded mode, the screw setting that is located second connection alar part 3252 is connected the alar part 3252 and is close to the layer 100 of encorbelmenting between the layer one end of encorbelmenting at the second, the screw that is located first connection alar part 3251 then distributes on whole first connection alar part 3251, the both ends of first support fossil fragments 6 are connected fixedly through screw and first connection alar part 3251 respectively, second support fossil fragments 62 and third support fossil fragments 63 pass through the screw and are respectively in first support fossil fragments 61, alar part 3252 is connected fixedly to the second, the backup pad 316 is used for supporting the lower extreme of third support fossil fragments 63.
As shown in fig. 1 and 6, the connection of the fireproof and waterproof structure 5 is as follows: the bottom panel 53 extends from the first support keel 61 to the embedded part 2 and is respectively connected and fixed with the first support keel 61 and the embedded part 2 through self-tapping screws, the fireproof rock wool 51 is laid among the bottom panel 53, the second support keel 62 and the third support keel 63, the top panel 52 extends from the second support keel 62 to the interlayer overhanging layer 100, the top panel 52 is respectively fixed with the mounting surface 64 and the upper end surface of the interlayer overhanging layer 100, and a waterproof coating is coated on the surface of one end, far away from the fireproof rock wool 51, of the top panel 52; specifically, one end of the top panel 52 located on the interlayer cantilever layer 100 is provided with an L-shaped first bent portion 531 bent toward the upper end face of the interlayer cantilever layer 100, and the first bent portion 531 is connected and fixed to a connecting member 102 provided on the upper end face of the interlayer cantilever layer 100 by a self-tapping screw; the bottom panel 53 is also provided with a bending portion at an end opposite to the first support keel 61, and the bending portion is fixed on the embedded part 2 by a self-tapping screw.
As shown in fig. 1 and 2, on the basis of the above structure, the second insertion portion 323 penetrates the surface glass clamping portion 324 to make the surface glass clamping portion 324 form an n-shape, the surface glass clamping portion 324 includes two first clamping wings 3241 and a second clamping wing 3242 disposed between the two first clamping wings 3241, the first clamping wings 3241 are symmetrically disposed at two ends of the glass fixing member 32 opposite to the adaptor 31 and located at corresponding edges of the second insertion portion 323, the second clamping wing 3242 is disposed at an upper end of the glass fixing member 32 and located at corresponding edges of the second insertion portion 323, a clamping member fixing seat 3243 is disposed on one end surface of the two first clamping wings 3241 opposite to the surface glass 1, the clamping member fixing seat 3243 equally divides the first clamping wings 41 into an upper portion and a lower portion, a screw hole 3244 is disposed on the clamping member fixing seat 3243, the screw hole 3244 is a through clamping member fixing seat 3243, and the screw 42 is finally screwed with the screw hole 41 disposed on the clamping member 4 from one end screwed into the interlayer suspension layer 100 and is connected with the screw hole 3244 To support the upper surface glass 1, each surface glass holding portion 324 is used to support, clamp and fix four peripheral surface glasses 1.
As shown in fig. 1, a groove 3245 is provided at an end of the clamping member fixing seat 3243 opposite to the clamping member 4, correspondingly, a protrusion 43 adapted to the groove 3245 is provided on an end surface of the clamping member 4 opposite to the clamping member fixing seat 3243, the screw hole 41 is provided on the protrusion 43, and the screw hole 3244 is provided at a position of the clamping member fixing seat 3243 at the groove 3245.
As shown in fig. 1 and fig. 2, the two end faces of the glass fixing member 32 opposite to the adaptor 31 are respectively provided with a second connecting hole 326, a hole is formed on the glass wing 7 corresponding to the second connecting hole 326, and the glass wing 7 is connected and fixed with the glass fixing member 32 through the second connecting hole 326 and the hole of the glass wing 7 by the glass bolt member 71 so as to fix the glass wing 7; specifically, the hole on the glass wing 7 is a rectangular hole, which extends in the height direction of the glass wing 7, thereby adjusting the height of the glass wing 7.
As shown in fig. 1 and 7, a decorative plate 8 is arranged outside the first support keel 61, specifically, the decorative plate 8 includes a first decorative plate 81 located at one end of the first support keel 61 far from the interlayer overhanging layer 100, a second decorative plate 82 located at the lower end of the first support keel 61, and a third decorative plate 83, the first decorative plate 81 is M-shaped and extends along the length direction of the first support keel 61, the upper and lower ends of the first decorative plate 81 are respectively provided with an L-shaped second bending part 811, and the first decorative plate 81 fixes the second bending part 811 to the upper and lower ends of the first support keel 61 through self-tapping screws; the front end and the rear end of the second decorative plate 82 are respectively provided with an L-shaped third bending part 821, the lower end of the adapter 31 is provided with a first angle steel 317, and the third bending part 821 at the front end of the second decorative plate 82 and a second bending part 811 at the lower end of the first decorative plate 81 are mutually overlapped and then fixed on the lower end of the first supporting keel 61 through self-supply screws; the front end of third decorative board 83 is equipped with the fourth kink 831 of L font, the rear end of third decorative board 83 is equipped with the fifth kink 832 of downward buckling, after fourth kink 831 and the third kink that is located second decorative board 82 rear end superpose each other, through supplying the screw fixation on first angle steel 317 certainly, the both ends accessible welded mode of first angle steel 317 is fixed on adaptor 31, fifth kink 832 is fixed on the outer terminal surface of layer 100 of encorbelmenting between the layer through second angle steel 318, set up right fire prevention sealant 91 between first decorative board 81 and face glass 1, correspondingly, all be provided with joint strip 92 between first decorative board 81 and second decorative board 82, second decorative board 82 and third decorative board 83, third decorative board 83 and the outer terminal surface of layer 100 of encorbelmenting between the layer.
In the utility model, the decorative plate 8 is a stainless steel plate with the thickness of 1.5 mm.
As shown in fig. 8, a steel plate 9 may be further laid above the top panel 52, a corrugated structure 91 is provided on the steel plate 9, and the corrugated structure 91 extends from the first support keel 61 toward the inter-floor cantilever 100.
As shown in fig. 9, a floor panel 101 may be laid on the upper end surface (ground surface) of the inter-floor cantilever layer 100 and the upper end surface of the steel plate 9 to form a single plane.
The utility model discloses a set up switching structure and replace current stand and support and bearing face to face glass, owing to need not the stand to reduce the exterior space size that occupies the building, and improved the pleasing to the eye degree of building, simultaneously because the exterior space size reduces, consequently the material that fire prevention and water prevention structure used also reduces relatively, has saved construction cost.

Claims (8)

1. A large plate glass interlaminar support system comprising a face glass (1), characterized in that: the glass panel is characterized by further comprising embedded parts (2) and a switching structure (3), wherein the embedded parts (2) are embedded on the outer end face of the interlayer cantilever layer (100) at equal intervals, the switching structure (3) is arranged on the embedded parts (2) respectively, the face glass (1) is fixed on the switching structure (3) through a clamping piece (4), a fireproof and waterproof structure (5) is laid between the switching structure (3) and the interlayer cantilever layer, the switching structure (3) comprises switching pieces (31) and glass fixing pieces (32), the switching pieces (31) are symmetrically arranged and fixed on the embedded parts (2) to form a first insertion part (311) between the two switching pieces (31), each switching piece (31) comprises a fixing piece connecting part (312), a first connecting hole (313) is formed in each connecting part (312), and the glass fixing pieces (32) are inserted into the first insertion part (311), the glass fixing piece (32) is a hollow rectangle, fixing piece openings (321) are respectively arranged at the upper end and the lower end of the glass fixing piece (32), the fixing piece openings (321) are communicated with the hollow cavity of the glass fixing piece (32) to form a glass wing connection cavity, a glass wing (7) is arranged between the upper glass fixing piece and the lower glass fixing piece (32), first bolts (322) are arranged on the surfaces of the two ends of the glass fixing piece (32) opposite to the adapter piece (31), the glass fixing piece (32) is inserted into the first connecting hole (313) through the first bolts (322) and locked through nuts to connect and fix the glass fixing piece (32) and the adapter piece (31), a notch communicated with the hollow cavity of the glass fixing piece (32) is arranged on one end face, far away from the interlayer cantilever layer, of the glass fixing piece (32) to form a second insertion part (323), a face glass clamping part (324) is arranged on the glass fixing piece (32) and positioned on the second insertion part (323), the clamping piece (4) is fixedly connected with the panel glass clamping part (324) so as to clamp and fix the panel glass (1).
2. The large panel glass ply-bonding system of claim 1, wherein: the glass fixing piece (32) and the adaptor (31) are provided with connecting wings (325) with screw holes on the surfaces of two opposite ends, each connecting wing (325) comprises a first connecting wing part (3251) and a second connecting wing part (3252), the first connecting wing part (3251) is parallel to the outer end face of the interlayer cantilever layer (100), the second connecting wing part (3252) is perpendicular to the first connecting wing part (3251) to form a T shape, the second connecting wing part (3252) extends to the upper part of the adaptor (31), one end of the first connecting wing part (3251) far away from the interlayer cantilever layer is provided with a supporting keel group (6), the supporting keel group (6) comprises a first supporting keel (61), a second supporting keel (62) and a third supporting keel (63), the first supporting keel (61) is fixed on the first connecting fixing piece (3251) opposite to the two adjacent left and right glass fixing pieces (32), second support fossil fragments (62), third support fossil fragments (63) set up respectively on first support fossil fragments (61) and the layer relative terminal surface of encorbelmenting and second connection alar part (3252) and the layer adjacent one of encorbelmenting between the layer, second support fossil fragments (62) and third support fossil fragments (63) set up at same height to form installation face (64) on second support fossil fragments (62) and third support fossil fragments (63), fireproof and waterproof construction (5) are laid between second support fossil fragments (62) and third support fossil fragments (63).
3. The large panel glass ply-bonding system of claim 2, wherein: fireproof and waterproof structure (5) are including fireproof rock wool (51), roof panel (52) and bottom panel (53), bottom panel (53) are followed first support fossil fragments (61) and are extended to on built-in fitting (2), and respectively with first support fossil fragments (61), built-in fitting (2) are connected fixedly, fireproof rock wool (51) are laid between bottom panel (53), second support fossil fragments (62), third support fossil fragments (63), roof panel (52) are extended to layer between layer on encorbelment layer (100) from second support fossil fragments (62), roof panel (52) respectively with installation face (64), the up end of layer (100) of encorbelmenting is fixed, the one end surface of keeping away from fireproof rock wool (51) at roof panel (52) scribbles waterproof coating.
4. The large panel glass ply-bonding system of claim 3, wherein: and a decorative plate (8) is arranged outside the first supporting keel (61).
5. The large panel glass ply-bonding system of claim 4, wherein: steel sheet (9) have been laid to top panel (52) top, be equipped with corrugated structure (91) on steel sheet (9), corrugated structure (91) extend towards layer (100) direction of encorbelmenting between the layer from first support keel (61).
6. The large panel glass ply-bonding system of claim 1, wherein: the second inserting part (323) penetrates through the face glass clamping part (324) to enable the face glass clamping part (324) to form an n shape, the face glass clamping part (324) comprises two first clamping wings (3241) and a second clamping wing (3242) arranged between the two first clamping wings (3241), the first clamping wings (3241) are symmetrically arranged at two ends, opposite to the adapter piece (31), of the glass fixing piece (32) and located at the corresponding edge of the second inserting part (323), the second clamping wings (3242) are arranged at the upper end of the glass fixing piece (32) and located at the corresponding edge of the second inserting part (323), clamping piece fixing seats (3243) are arranged on one end faces, opposite to the face glass (1), of the two first clamping wings (3241), the clamping piece fixing seats (3243) divide the first clamping wings (3241) into an upper portion and a lower portion on average, and screw holes are formed in the clamping piece fixing seats (3243), the clamping piece (4) is fastened on the clamping piece fixing seat (3243) through a bolt.
7. The large panel glass ply-bonding system of claim 1, wherein: first connecting hole (313) are the rectangular hole, and first connecting hole (313) are towards the layer direction extension of encorbelmenting between the layer to the realization is encorbelmented the distance between layer and is adjusted glass mounting (32) and between the layer.
8. The large panel glass ply-bonding system of claim 1, wherein: and second connecting holes (326) are respectively formed in two end faces, opposite to the adapter piece (31), of the glass fixing piece (32), holes are formed in positions, corresponding to the second connecting holes (326), of the glass wings (7), and the glass wings (7) are fixedly connected with the glass fixing piece (32) through the second connecting holes (326) and the holes of the glass wings (7) through glass bolt pieces (71).
CN202020895940.2U 2020-05-25 2020-05-25 Large plate glass interlayer supporting system Active CN212613224U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020895940.2U CN212613224U (en) 2020-05-25 2020-05-25 Large plate glass interlayer supporting system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020895940.2U CN212613224U (en) 2020-05-25 2020-05-25 Large plate glass interlayer supporting system

Publications (1)

Publication Number Publication Date
CN212613224U true CN212613224U (en) 2021-02-26

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Application Number Title Priority Date Filing Date
CN202020895940.2U Active CN212613224U (en) 2020-05-25 2020-05-25 Large plate glass interlayer supporting system

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CN (1) CN212613224U (en)

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