CN210797995U - Assembled construction is with stone curtain wall - Google Patents
Assembled construction is with stone curtain wall Download PDFInfo
- Publication number
- CN210797995U CN210797995U CN201921341909.8U CN201921341909U CN210797995U CN 210797995 U CN210797995 U CN 210797995U CN 201921341909 U CN201921341909 U CN 201921341909U CN 210797995 U CN210797995 U CN 210797995U
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- 239000004575 stone Substances 0.000 title claims abstract description 66
- 238000010276 construction Methods 0.000 title claims abstract description 26
- 239000000853 adhesive Substances 0.000 claims abstract description 4
- 230000001070 adhesive effect Effects 0.000 claims abstract description 4
- 229910000831 Steel Inorganic materials 0.000 claims description 33
- 239000010959 steel Substances 0.000 claims description 33
- 238000009413 insulation Methods 0.000 claims description 22
- 229910052782 aluminium Inorganic materials 0.000 claims description 20
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 claims description 20
- 239000005357 flat glass Substances 0.000 claims description 14
- 239000004568 cement Substances 0.000 claims description 9
- 238000003466 welding Methods 0.000 claims description 6
- 229910000838 Al alloy Inorganic materials 0.000 claims description 3
- 238000003825 pressing Methods 0.000 claims description 3
- 238000009434 installation Methods 0.000 abstract description 9
- 239000000463 material Substances 0.000 description 16
- 230000000694 effects Effects 0.000 description 9
- 239000004411 aluminium Substances 0.000 description 8
- 239000000178 monomer Substances 0.000 description 6
- 238000007789 sealing Methods 0.000 description 6
- 239000002390 adhesive tape Substances 0.000 description 3
- 230000000712 assembly Effects 0.000 description 2
- 238000000429 assembly Methods 0.000 description 2
- 238000005034 decoration Methods 0.000 description 2
- 229920006351 engineering plastic Polymers 0.000 description 2
- 239000011521 glass Substances 0.000 description 2
- 238000004321 preservation Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 1
- 239000003292 glue Substances 0.000 description 1
- 229910052751 metal Inorganic materials 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 238000010079 rubber tapping Methods 0.000 description 1
- 239000000565 sealant Substances 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
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- Load-Bearing And Curtain Walls (AREA)
Abstract
The utility model relates to a stone curtain wall for assembly type structure. The concrete wall comprises a vertical square tube which is arranged on a concrete wall body by adopting a plurality of groups of long screws; a plurality of stone hangers are mounted at the middle upper part of the square tube, a front-side stone slab is mounted on each stone hanger in a hanging manner, a top-side stone slab with an L-shaped section is arranged at the top of the front-side stone slab, and the top-side stone slab is fixedly bonded with the concrete wall body through structural adhesive; the utility model discloses a supporting structure, the installation of well lower part at side pipe is fixed with the eaves internal frame, the bottom installation is fixed with the supporting shoe, the outside at the eaves internal frame is equipped with the eaves support, the eaves support includes the flat support in top, the inclined support, vertical support and the flat support in bottom, the flat support in top, inclined support and vertical support three all pass through the angle sign indicating number with the eaves internal frame and be connected fixedly, the flat support. The utility model discloses simple structure, be convenient for construction, construction back stable in structure.
Description
Technical Field
The utility model belongs to the technical field of the building curtain, especially, relate to a stone curtain wall for assembly type structure.
Background
In the field of building decoration, stone curtain walls are increasingly widely used as decorative curtain walls. The stone curtain wall is generally composed of stone panels and supporting structures (beams, columns, steel structures, connecting pieces and the like), and is a building envelope structure which does not bear the load and the action of a main structure.
For the design of prefabricated building structures, in order to enhance the aesthetic effect of buildings and provide a rain shielding function, an eave structure is usually designed on the surface of the building. The technical problem always exists in the aspect of the installation of traditional eave structure at aluminium veneer and stone material decorative board, because the mounting means of stone material decorative board and aluminium veneer is different, therefore just there are the loaded down with trivial details, the construction cost height of mounting structure, the poor scheduling problem of structural stability after the construction when carrying out the synchronous installation of stone material decorative board and aluminium veneer at same wall, consequently must carry out structural optimal design to stone material curtain wall structure to solve above-mentioned technical problem.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a solve the technical problem that exists among the known art and provide a simple structure, be convenient for construction, construction back stable in structure's assembled construction stone curtain wall.
The utility model discloses a solve the technical scheme that technical problem that exists among the well-known technique took and be: a kind of assembled building uses the stone curtain wall to include adopting the multiunit long screw to install on concrete wall, the vertical square tube, there are upper window assemblies on the top of the concrete wall, the bottom has lower window assemblies; a plurality of stone hangers are mounted at the middle upper part of the square tube, a front-side stone slab is mounted on each stone hanger in a hanging manner, a top-side stone slab with an L-shaped section is arranged at the top of the front-side stone slab, and the top-side stone slab is fixedly bonded with the concrete wall body through structural adhesive; the utility model discloses a supporting structure, the installation of well lower part at side pipe is fixed with the eaves internal frame, the bottom installation is fixed with the supporting shoe, the outside at the eaves internal frame is equipped with the eaves support, the eaves support includes the flat support in top, the inclined support, vertical support and the flat support in bottom, the flat support in top, inclined support and vertical support three all pass through the angle sign indicating number with the eaves internal frame and be connected fixedly, the flat support.
The utility model has the advantages that: the utility model provides a simple reasonable assembled construction is with stone material curtain wall of structural design compares with current stone material curtain wall construction, has optimized the mounting structure between stone material curtain wall and the aluminium veneer part among this technical scheme, combines together the eave part of aluminium veneer structural style and the mounting structure of holistic stone material curtain wall, has simplified the structure of installation, makes the construction more convenient, and construction cost has also reduced. Decorate slabstone and aluminium veneer and install same square tubular construction on, decorate slabstone through the setting and directly to square tubular carry the installation, set up the eave of aluminium veneer structure and directly with square tubular fixed connection to eave inside casing frame mounting and eave internal frame, make whole curtain structure firm, because do not introduce other supplementary fixed subassemblies and overall structure is compact, whole curtain structural stability is high after the construction, aluminium veneer and decoration slabstone are difficult for droing.
Preferably: the upper window assembly comprises a trapezoidal upper window frame which is fixedly connected with the concrete wall body through a cement nail, and an upper inner support is arranged inside the upper window frame; an upper window inner frame is arranged on the inner side of the top of the upper window frame, and an upper window outer frame is arranged on the outer side of the top; the window frame comprises an upper window sash and an upper window sash, wherein the upper window sash comprises an upper window sash inner frame, an upper window sash outer frame and upper window glass, an upper window sash inner buckle cover is installed at the top of the upper window sash inner frame, an upper limit stop block is installed at the bottom of the upper window sash inner frame, and an upper limit support block matched with the upper limit stop block is installed at the top of the upper window inner frame.
Preferably: the lower window assembly comprises a trapezoidal lower window frame which is fixedly connected with the concrete wall body through a cement nail, and a lower inner support is arranged inside the lower window frame; a lower window inner frame is arranged on the inner side of the bottom of the lower window frame, and a lower window outer frame is arranged on the outer side of the bottom; the window frame comprises a lower window sash and is characterized by further comprising a lower window sash, wherein the lower window sash comprises a lower window sash inner frame, a lower window sash outer frame and a lower window glass, a lower window sash inner buckle cover is installed at the bottom of the lower window sash inner frame, a lower limit stop block is installed at the top of the lower window sash inner frame, and a lower limit support block matched with the lower limit stop block is installed at the bottom of the lower window inner frame.
Preferably: the aluminum single plate is formed by pressing the same aluminum alloy plate, and the aluminum single plate is fixedly bonded with the eave bracket.
Preferably: the eave inner frame is made by splicing and welding a plurality of angle steels and comprises a vertical angle steel fixed by welding with a square pipe and a first horizontal angle steel and a second horizontal angle steel fixed by welding with the middle upper part of the vertical angle steel, wherein the length of the second horizontal angle steel is smaller than that of the first horizontal angle steel, and an oblique angle steel is fixed between the outer ends of the first horizontal angle steel and the second horizontal angle steel by welding.
Preferably: the angle sign indicating number is L shape, and its one folded plate and eave support riveted connection, another folded plate pass through the screw connection with eave inner frame.
Preferably: each group of long screws comprise an upper screw monomer and a lower screw monomer, the main body part of each screw monomer is screwed into a mounting hole formed in the concrete wall, a back plate is welded and fixed at the outer end of each group of long screws, and a square tube is welded and fixed with the back plate.
Preferably: and an insulation board is also arranged between the square pipe and the concrete wall.
Preferably: the stone material pendant includes the angle steel with square pipe welded fastening, is fixed with V type link plate through the bolt mounting on the angle steel, is equipped with a plurality of oblique slots at the dorsal part of positive slabstone, and the V type link plate of each stone material pendant inserts in the corresponding oblique slot.
Drawings
Fig. 1 is a schematic cross-sectional structure of the present invention;
fig. 2 is a schematic cross-sectional structure diagram of the window position in the present invention.
In the figure: 1. an upper window assembly; 1-1, upper window glass; 1-2, covering the upper window sash with an inner buckle; 1-3, mounting an inner frame of a window sash; 1-4, an upper limit stop block; 1-5, an upper limiting support block; 1-6, arranging an inner frame on the upper window; 1-7, a window frame; 1-8, an upper window sash outer frame; 1-9, an upper cushion block; 1-10, arranging a sound insulation adhesive tape; 1-11, an upper window outer frame; 1-12, upper inner support; 2. a top stone slab; 3. a stone pendant; 4. a square tube; 5. a front stone plate; 6. a long screw; 7. a back plate; 8. a concrete wall; 9. a thermal insulation board; 10. an eave bracket; 10-1, a top flat support; 10-2, an inclined bracket; 10-3, a vertical bracket; 10-4, a bottom flat bracket; 11. corner connectors; 12. an aluminum veneer; 13. an eave inner frame; 14. a support block; 15. a lower window assembly; 15-1, lower window glass; 15-2, an inner buckle cover of the lower window sash; 15-3, a lower window sash inner frame; 15-4, a lower limit stop block; 15-5, lower limit supporting block; 15-6, a lower window inner frame; 15-7, a lower window frame; 15-8, a lower window sash outer frame; 15-9 parts of lower cushion blocks; 15-10 parts of lower sound insulation rubber strip; 15-11 parts of lower window outer frame; 15-12, lower inner support; 16. and (5) a cement nail.
Detailed Description
To further understand the contents, features and functions of the present invention, the following embodiments are described in detail:
referring to fig. 1, the assembled building stone curtain wall of the present invention adopts a plurality of long screws 6 installed on a concrete wall 8, a vertical square tube 4, an upper window assembly 1 installed on the top of the concrete wall 8, and a lower window assembly 15 installed on the bottom of the concrete wall 8.
The concrete wall body 8 is provided with mounting holes through electric drills, the long screws 6 are screwed into the corresponding mounting holes, the long screws 6 are special screws for concrete, certain self-tapping effect is achieved when the long screws 6 are screwed into the mounting holes, and the long screws cannot be separated from the mounting holes after being screwed completely. In this embodiment, each group of long screws 6 includes an upper screw monomer and a lower screw monomer, a main body portion of each screw monomer is screwed into a mounting hole formed in the concrete wall 8, a back plate 7 is welded and fixed to an outer end of each group of long screws 6, and the square tube 4 is welded and fixed to the back plate 7. The construction method comprises the following steps: after the groups of long screws 6 are installed on the concrete wall 8, the back plates 7 are welded and fixed at the outer ends of the groups of long screws 6, and then the square pipes 4 are welded and fixed on the back plates 7. The number of the long screws 6 and the back plate 7 is determined by the span (height) of the concrete wall 8, and the larger the span is, the more fixing points need to be provided for the square pipes 4.
In this embodiment, an insulation board 9 is further disposed between the square pipe 4 and the concrete wall 8 for providing an insulation effect. The heat insulation board 9 is tiled on the outer wall of the concrete wall body 8 and fixed with the wall in a bonding and fixing mode. The square pipe 4 is positioned on the outer side of the heat insulation plate 9, and the heat insulation plate 9 is clamped between the square pipe 4 and the concrete wall 8. Here, the outer ends of the groups of long screws 6 penetrate through the heat insulation plate 9 and are welded and fixed with the square pipe 4. It is conceivable that another form of connection is also possible: the square pipe 4 directly pastes with concrete wall 8 mutually promptly, and heated board 9 is laid in the both sides of square pipe 4, does not have heated board 9 also between square pipe 4 and concrete wall 8, and the construction can be more convenient under this kind of structural style, nevertheless lacks the heat preservation measure in the position of square pipe 4, can lead to the heat preservation effect to a certain extent to worsen. Therefore, the former scheme, that is, the scheme in which the insulation board 9 is clamped between the square pipe 4 and the concrete wall 8, is preferable.
A plurality of stone material pendants 3 are installed on the middle upper portion of the square pipe 4, a front face stone slab 5 is installed on each stone material pendant 3 in a hanging mode, a top stone slab 2 with an L-shaped cross section is arranged on the top of the front face stone slab 5, and the top stone slab 2 is fixedly bonded with a concrete wall 8 through structural adhesive. In this embodiment, stone material pendant 3 includes the angle steel with 4 welded fastening of square pipe, is fixed with V type link plate through the bolt mounting on the angle steel, is equipped with a plurality of oblique slots at the dorsal part of positive slabstone 5, and the V type link plate of each stone material pendant 3 inserts in corresponding oblique slot, and it glues to embed the structure in each oblique slot during construction installation, makes positive slabstone 5 and stone material pendant 3 combine more firmly. The top stone slab 2 can be made by cutting and processing a whole stone, and also can be made by splicing two stone slabs, and under the latter form, corner assembling pieces are arranged between the stone slabs and sealant is coated to ensure the sealing effect.
An eave inner frame 13 is fixedly installed at the middle lower part of the square pipe 4, a supporting block 14 is fixedly installed at the bottom of the square pipe, an eave support 10 is arranged on the outer side of the eave inner frame 13, the eave support 10 comprises a top flat support 10-1, an inclined support 10-2, a vertical support 10-3 and a bottom flat support 10-4, the top flat support 10-1, the inclined support 10-2 and the vertical support 10-3 are all fixedly connected with the eave inner frame 13 through an angle code 11, and the bottom flat support 10-4 is fixedly connected with the supporting block 14 through an angle code 11. The top flat bracket 10-1 and the inclined bracket 10-2 form an eaves structure protruding outwards, and the supporting block 14 and the square pipe 4 are welded and fixed.
In this embodiment, eaves inner frame 13 adopts a plurality of angle steel concatenation welding to make, including with square 4 welded fastening's of pipe vertical angle steel and with the well upper portion welded fastening's of vertical angle steel first horizontal angle steel, the horizontal angle steel of second, the length of the horizontal angle steel of second is less than the length of first horizontal angle steel and welded fastening has oblique angle steel between outer end between the two. Accordingly, the cross-sectional shape of the eave inner frame 13 is an isosceles right trapezoid shape, and accordingly, the upper portion of the eave support 10 is also an isosceles right trapezoid shape, forming an outwardly convex eave structure in the shape of an isosceles right trapezoid.
In this embodiment, the corner brace 11 is L-shaped, one of which is riveted to the eave bracket 10, and the other of which is screwed to the eave inner frame 13.
An aluminum veneer 12 is arranged on the upper surface of the top flat bracket 10-1, the outer surfaces of the inclined bracket 10-2 and the vertical bracket 10-3 and the lower surface of the bottom flat bracket 10-4. In this embodiment, the aluminum single plate 12 is formed by pressing the same aluminum alloy plate, and the aluminum single plate 12 is bonded and fixed to the eave support 10. The top flat support 10-1, the inclined support 10-2, the vertical support 10-3 and the bottom flat support 10-4 can be of metal tube structures, the adjacent two parts are welded and fixed, and after the eave support 10 is assembled, the integrally formed aluminum single plate 12 covers the outer part of the eave support 10 and is adhered and fixed. It is conceivable that the aluminum veneer 12 may also be made by cutting and assembling aluminum plates, and in such a structure, the sealing performance of the assembled position needs to be ensured.
Fig. 2 is a schematic structural view of the upper window assembly 1 and the lower window assembly 15, and it can be seen that:
the upper window assembly 1 comprises a trapezoidal upper window frame 1-7 which is fixedly connected with a concrete wall 8 through cement nails 16, upper inner supports 1-12 are arranged inside the upper window frame 1-7, and the upper inner supports 1-12 are made of engineering plastics and play a supporting role. As shown in the figures, the upper jambs 1-7 are provided on either side with outwardly extending flanges which are secured to the concrete wall 8 by a plurality of cement nails 16.
An upper window inner frame 1-6 is arranged on the inner side of the top of the upper window frame 1-7, and an upper window outer frame 1-11 is arranged on the outer side of the top. The window frame further comprises an upper window sash, the upper window sash comprises an upper window sash inner frame 1-3, an upper window sash outer frame 1-8 and upper window glass 1-1 (double-layer hollow glass), an upper window sash inner buckle cover 1-2 is installed at the top of the upper window sash inner frame 1-3, an upper limit stop block 1-4 is installed at the bottom of the upper window sash inner frame 1-3, and an upper limit support block 1-5 matched with the upper limit stop block 1-4 is installed at the top of the upper window inner frame 1-3. Double-layer heat-insulating strips are arranged between the upper window inner frames 1-6 and the upper window outer frames 1-11, between the upper window inner frames 1-3 and the upper window outer frames 1-8, and sealing strips are arranged between the upper window inner frames 1-3 and the upper window inner frames 1-6, and between the upper window outer frames 1-8 and the upper window outer frames 1-11.
The upper limit stop block 1-4 and the upper limit support block 1-5 matched with the upper limit stop block are used for positioning when the upper window assembly 1 is assembled, and the assembling precision of the upper window assembly 1 is improved.
The upper window glass 1-1 is buckled and clamped on the upper window sash outer frame 1-8 by the upper window sash inner buckle cover 1-2, and a sealing strip is arranged between the upper window glass 1-1 and the upper window sash outer frame 1-8 as well as the upper window sash inner buckle cover 1-2. An upper cushion block 1-9 is arranged between the lower edge of the upper window glass 1-1 and the upper window sash inner frame 1-3 and the upper window sash outer frame 1-8. In order to ensure the sound insulation effect, the upper sound insulation adhesive tapes 1-10 are arranged on the upper window outer frames 1-11, the upper edges of the upper sound insulation adhesive tapes 1-10 are in contact with the heat insulation strips between the upper window sash inner frames 1-3 and the upper window sash outer frames 1-8, and the inner and outer channels are isolated, so that the sound insulation effect is achieved.
The lower window assembly 15 comprises a trapezoidal lower window frame 15-7 which is fixedly connected with the concrete wall 8 through cement nails 16, a lower inner support 15-12 is arranged inside the lower window frame 15-7, and the lower inner support 15-12 is made of engineering plastic materials and plays a supporting role. As shown in the drawing, both sides of the lower window jamb 15-7 are provided with wings extending outward, and the wings are fixed to the concrete wall 8 by a plurality of cement nails 16.
The inner side of the bottom of the lower window frame 15-7 is provided with a lower window inner frame 15-6, and the outer side of the bottom is provided with a lower window outer frame 15-11. The window frame further comprises a lower window sash, the lower window sash comprises a lower window sash inner frame 15-3, a lower window sash outer frame 15-8 and lower window glass 15-1 (double-layer hollow glass), a lower window sash inner buckle cover 15-2 is installed at the bottom of the lower window sash inner frame 15-3, a lower limiting stop block 15-4 is installed at the top of the lower window sash inner frame 15-3, and a lower limiting support block 15-5 matched with the lower limiting stop block 15-4 is installed at the bottom of the lower window inner frame 15-3. Double-layer heat-insulating strips are arranged between the lower window inner frame 15-6 and the lower window outer frame 15-11, between the lower window sash inner frame 15-3 and the lower window sash outer frame 15-8, and sealing strips are arranged between the lower window sash inner frame 15-3 and the lower window inner frame 15-6, and between the lower window sash outer frame 15-8 and the lower window outer frame 15-11.
The lower limit stop block 15-4 and the lower limit support block 15-5 matched with the lower limit stop block are used for positioning when the lower window assembly 15 is assembled, and the assembling precision of the lower window assembly 15 is improved.
The lower window glass 15-1 is clamped on the lower window sash outer frame 15-8 by the lower window sash inner buckle cover 15-2, and sealing strips are arranged between the lower window glass 15-1 and the lower window sash outer frame 15-8 as well as the lower window sash inner buckle cover 15-2. A lower cushion block 15-9 is arranged between the upper edge of the lower window glass 15-1 and the lower window sash inner frame 15-3 and the lower window sash outer frame 15-8. In order to ensure the sound insulation effect, the lower window outer frame 15-11 is provided with a lower sound insulation rubber strip 15-10, the upper edge of the lower sound insulation rubber strip 15-10 is contacted with the heat insulation strip between the lower window sash inner frame 15-3 and the lower window sash outer frame 15-8, and the inner channel and the outer channel are isolated, so that the sound insulation effect is achieved.
Claims (9)
1. The utility model provides a stone curtain wall for assembly type structure, characterized by: the window frame comprises a vertical square pipe (4) which is arranged on a concrete wall (8) by adopting a plurality of groups of long screws (6), wherein an upper window component (1) is arranged at the top of the concrete wall (8), and a lower window component (15) is arranged at the bottom of the concrete wall; a plurality of stone hangers (3) are mounted at the middle upper part of the square pipe (4), a front-side stone plate (5) is mounted on each stone hanger (3), a top stone plate (2) with an L-shaped section is arranged at the top of the front-side stone plate (5), and the top stone plate (2) is fixedly bonded with a concrete wall (8) through structural adhesive; the middle lower part of the square pipe (4) is provided with an eave inner frame (13) and the bottom is provided with a supporting block (14), an eave support (10) is arranged on the outer side of the eave inner frame (13), the eave support (10) comprises a top flat support (10-1), an inclined support (10-2), a vertical support (10-3) and a bottom flat support (10-4), the top flat support (10-1), the inclined support (10-2) and the vertical support (10-3) are fixedly connected with the eave inner frame (13) through an angle connector (11), the bottom flat support (10-4) is fixedly connected with a supporting block (14) through an angle connector (11), aluminum veneers (12) are arranged on the upper surface of the top flat support (10-1), the outer surfaces of the inclined support (10-2) and the vertical support (10-3) and the lower surface of the bottom flat support (10-4).
2. The assembled construction stone curtain wall as set forth in claim 1, wherein: the upper window assembly (1) comprises a trapezoidal upper window frame (1-7) which is fixedly connected with a concrete wall body (8) by adopting cement nails (16), and an upper inner support (1-12) is arranged inside the upper window frame (1-7); an upper window inner frame (1-6) is arranged on the inner side of the top of the upper window frame (1-7), and an upper window outer frame (1-11) is arranged on the outer side of the top; the window frame further comprises an upper window sash, the upper window sash comprises an upper window sash inner frame (1-3), an upper window sash outer frame (1-8) and upper window glass (1-1), an upper window sash inner buckle cover (1-2) is installed at the top of the upper window sash inner frame (1-3), an upper limit stop block (1-4) is installed at the bottom of the upper window sash inner frame, and an upper limit support block (1-5) matched with the upper limit stop block (1-4) is installed at the top of the upper window inner frame (1-6).
3. The assembled construction stone curtain wall as set forth in claim 1, wherein: the lower window assembly (15) comprises a trapezoidal lower window frame (15-7) which is fixedly connected with the concrete wall body (8) by adopting cement nails (16), and a lower inner support (15-12) is arranged inside the lower window frame (15-7); a lower window inner frame (15-6) is arranged at the inner side of the bottom of the lower window frame (15-7), and a lower window outer frame (15-11) is arranged at the outer side of the bottom; the window frame further comprises a lower window sash, the lower window sash comprises a lower window sash inner frame (15-3), a lower window sash outer frame (15-8) and a lower window glass (15-1), a lower window sash inner buckle cover (15-2) is installed at the bottom of the lower window sash inner frame (15-3), a lower limit stop block (15-4) is installed at the top of the lower window sash inner frame, and a lower limit support block (15-5) matched with the lower limit stop block (15-4) is installed at the bottom of the lower window inner frame (15-6).
4. The assembled construction stone curtain wall as set forth in claim 1, wherein: the aluminum single plate (12) is formed by pressing the same aluminum alloy plate, and the aluminum single plate (12) is fixedly bonded with the eave bracket (10).
5. The assembled construction stone curtain wall as set forth in claim 1, wherein: eaves inner frame (13) adopt a plurality of angle steel concatenation welding to make, include with square pipe (4) welded fastening's vertical angle steel and with the well upper portion welded fastening's of vertical angle steel first horizontal angle steel, the horizontal angle steel of second, the length of the horizontal angle steel of second is less than the length of first horizontal angle steel and welded fastening has oblique angle steel between outer end between the two.
6. The assembled construction stone curtain wall as set forth in claim 1, wherein: the corner connector (11) is L-shaped, one folded plate of the corner connector is riveted with the eave bracket (10), and the other folded plate is connected with the eave inner frame (13) through screws.
7. The assembled construction stone curtain wall as set forth in claim 1, wherein: each group of long screws (6) comprises an upper screw body and a lower screw body, the main body part of each screw body is screwed into a mounting hole formed in the concrete wall body (8), a back plate (7) is welded and fixed at the outer end of each group of long screws (6), and a square tube (4) is welded and fixed with the back plate (7).
8. The assembled construction stone curtain wall as set forth in claim 7, wherein: an insulation board (9) is arranged between the square pipe (4) and the concrete wall (8).
9. The assembled construction stone curtain wall as set forth in claim 1, wherein: the stone hanging pieces (3) comprise angle steel fixedly welded with the square pipes (4), V-shaped hanging plates are fixedly installed on the angle steel through bolts, a plurality of oblique inserting grooves are formed in the back sides of the front side stone plates (5), and the V-shaped hanging plates of the stone hanging pieces (3) are inserted into the corresponding oblique inserting grooves.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921341909.8U CN210797995U (en) | 2019-08-17 | 2019-08-17 | Assembled construction is with stone curtain wall |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921341909.8U CN210797995U (en) | 2019-08-17 | 2019-08-17 | Assembled construction is with stone curtain wall |
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| Publication Number | Publication Date |
|---|---|
| CN210797995U true CN210797995U (en) | 2020-06-19 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201921341909.8U Active CN210797995U (en) | 2019-08-17 | 2019-08-17 | Assembled construction is with stone curtain wall |
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| Country | Link |
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| CN (1) | CN210797995U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114908903A (en) * | 2022-03-14 | 2022-08-16 | 中建二局装饰工程有限公司 | A curtain wall in northern Shaanxi style |
-
2019
- 2019-08-17 CN CN201921341909.8U patent/CN210797995U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114908903A (en) * | 2022-03-14 | 2022-08-16 | 中建二局装饰工程有限公司 | A curtain wall in northern Shaanxi style |
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