CN218374567U - Can fix a position ALC wallboard reinforced structure that can exempt from to plaster - Google Patents
Can fix a position ALC wallboard reinforced structure that can exempt from to plaster Download PDFInfo
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- CN218374567U CN218374567U CN202222703597.9U CN202222703597U CN218374567U CN 218374567 U CN218374567 U CN 218374567U CN 202222703597 U CN202222703597 U CN 202222703597U CN 218374567 U CN218374567 U CN 218374567U
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Abstract
The utility model discloses a positionable ALC wallboard reinforcing structure without plastering, which comprises a structural beam slab, ALC partition boards and a structural floor slab; a plurality of ALC partition boards are arranged between the structural floor slab and the structural beam slab; the ALC partition wall boards are arranged on the outer wall of the ALC partition wall board, and the ALC partition wall boards are arranged on the outer wall of the ALC partition wall board; a partition plate mounting pressure groove is formed in the structural floor slab; a positioning reinforcing steel bar is arranged in the middle under the ALC partition wall plate; after the ALC partition board is installed, a plate fixing tie bar is arranged in the joint rabbet, the adjacent ALC partition boards are connected, and then the ALC partition boards are smeared to be flush with the surface of the ALC partition board by using bonding mortar. The utility model discloses not only can thoroughly solve the location and the reinforcement problem of ALC light partition plate, can guarantee the fashioned whole roughness of wall moreover, guarantee that fitment putty and coating insert in advance, shorten the whole time limit for a project.
Description
Technical Field
The utility model relates to a construction technical field especially relates to a can fix a position ALC wallboard reinforced structure that can exempt from to plaster.
Background
Along with the rapid increase of the comprehensive national force in China, the requirements on energy conservation, environmental protection and green construction of building structures are higher and higher, the ALC light partition board with the advantages of fire resistance, energy conservation, environmental protection and the like is widely accepted and applied, and compared with the traditional wall material, the ALC light partition board has the advantages of light dead weight, high strength, good ductility, strong shock resistance, good heat insulation and sound insulation, fire resistance, durability and the like. However, the use of ALC lightweight partition boards presents several problems: (1) The ALC light partition wall board adopts the traditional wall building method in some processes and tools, so that the guarantee on the construction quality cannot be ensured; (2) Due to the structural reasons of the ALC light partition board, a plastering layer on the surface layer is easy to bulge; (3) The positioning determines the integral flatness of the wall, and if the later repair condition occurs, the repair position can easily fall off.
Disclosure of Invention
The utility model aims at overcoming the defects of the prior art, and providing a can fix a position and exempt from ALC wallboard reinforced structure that plasters.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a kind of can position, can avoid the reinforced structure of ALC wallboard that plaster, including structural beam slab, ALC partition wall board and structural floor; a plurality of ALC partition boards are arranged between the structural floor slab and the structural beam slab; the ALC partition boards are arranged in the outer wall of the ALC partition board, and the ALC partition boards are arranged in the outer wall of the ALC partition board; a partition board mounting pressure groove is formed in the structural floor slab; a positioning reinforcing steel bar is arranged in the middle under the ALC partition wall plate; after the ALC partition board is installed, a plate fixing tie bar is arranged in the joint rabbet, the adjacent ALC partition boards are connected, and then the ALC partition boards are smeared to be flush with the surface of the ALC partition board by using bonding mortar.
Furthermore, the lateral surface of the ALC partition board is vertically provided with a positioning chamfer, and the positioning chamfer of the adjacent ALC partition board is naturally closed, positioned, assembled and fixed through a pipe clamp.
Furthermore, the partition board mounting pressure groove is a groove which is extruded and corresponds to the width of the lower part of the ALC partition board when the structural floor slab is poured; and then embedding positioning reinforcing steel bars in the installation pressing grooves of the partition boards.
Furthermore, the seam rabbet is arranged at intervals of 300mm, and the height of the seam rabbet is 50mm.
Furthermore, a plate jacking seam is arranged at the joint of the upper end of the ALC partition plate and the structural beam plate; the foam rubber plugs are sprayed in the plate top pressing seams, and the two sides of the wall are leveled with the plate surface of the ALC partition plate through bonding mortar.
Furthermore, the lower end of the ALC partition wall board is connected with the structural floor slab through cement mortar joint pointing and filling joints.
The utility model discloses set up simply, realize ALC light partition plate construction quality control through this mode to and the difficult problem that the wall levelly and smoothly exempts from to plaster reduces the holistic cost of maintenance in later stage moreover, can guarantee moreover that the fitment putty and the coating of interior decoration construction insert in advance, shorten the whole time limit for a project.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic diagram of the structure of the splicing tongue-and-groove between the plates of the present invention.
Fig. 3 is a schematic view of the top seam connection of the present invention.
Wherein: the partition board is provided with a pressure groove 1; positioning the reinforcing steel bar 2; fixing a lacing wire 3 between plates; a joint tongue and groove 4; pressing the seam 5 on the top of the plate; a structural beam panel 6; a pipe clamp 7; a rabbet joint 8; ALC partition wall board 9; a structural floor 10; the chamfer 11 is positioned.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
As shown in fig. 1 to 3, a locatable plastering-free ALC wallboard reinforcement structure comprises a structural beam plate 6, an ALC partition plate 9 and a structural floor slab 10; a plurality of ALC partition boards 9 are arranged between the structural floor slab 10 and the structural beam slab 6; the ALC partition boards 9 are arranged between adjacent ALC partition boards and are provided with groove joints 8, and sunken joint grooves and tongues 4 are arranged at the groove joints 8; a partition board mounting pressure groove 1 is formed in the structural floor slab 10; a positioning reinforcing steel bar 2 is arranged in the middle under the ALC partition board 9; after the ALC partition board 9 is installed, the inter-board fixed lacing wires 3 are arranged in the joint tongue-and-groove 4, the adjacent ALC partition boards 9 are connected, and then the ALC partition boards are smeared to be flush with the surface of the ALC partition board 9 by using bonding mortar. The ALC partition wall boards 9 are not provided with joint tongue-and-groove 4 at the adjacent positions of the structural wall, the column and the constructional column, and the plate-to-plate fixing tie bars 3 with the type C8 are arranged in the joint tongue-and-groove 4 between the ALC partition wall boards 9 and are used for plate-to-plate pulling and reinforcing. Through the structures of the rabbet joints 8 and the sunken joint rabbet 4 arranged at the rabbet joints 8, a plastering layer on the surface layer of the ALC partition board 9 is not easy to bulge, the reinforced structure is stable, the problems of smoothness of the wall surface and no plastering are solved, the later-stage integral maintenance cost is reduced, the decoration putty and paint for indoor decoration construction can be ensured to be inserted in advance, and the integral construction period of a project is shortened.
As a preferred embodiment, the lateral surface of the ALC partition board 9 is vertically provided with a positioning chamfer 11, and the positioning chamfer 11 of the adjacent ALC partition board 9 is naturally closed, positioned, assembled and then fixed through the pipe clamp 7. The pipe clamp 7 is of a U-shaped buckle structure, and is leveled with the board surface by ALC board bonding mortar together with the joint rabbet 4.
As a preferred embodiment, the partition board installation pressing groove 1 is a groove which is pressed out and corresponds to the width of the lower part of the ALC partition board 9 when the structural floor slab 10 is poured; then pre-burying a positioning reinforcing steel bar 2 in the partition board mounting pressure groove 1, wherein the type of the positioning reinforcing steel bar 2 is C6.
As a preferred embodiment, the seam grooves 4 are arranged at intervals of 300mm, and the height of the seam groove 4 is 50mm. The joint rabbet 4 is a rabbet with the inward concave length of 135mm, and the rabbet height is 50mm.
As a preferred embodiment, a plate top pressing seam 5 is arranged at the joint of the upper end of the ALC partition plate 9 and the structural beam plate 6; the foam rubber plugs are sprayed in the plate top pressing seams 5, and the two sides of the wall are leveled with the plate surface of the ALC partition plate 9 through bonding mortar.
As a preferred embodiment, the lower end of the ALC partition board 9 is connected with the structural floor slab 10 through a cement mortar joint pointing and filling abutted seam.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.
Claims (6)
1. A kind of can position can avoid the reinforced structure of ALC wallboard that plasters, including structural beam slab, ALC partition wall board and structural floor; a plurality of ALC partition boards are arranged between the structural floor slab and the structural beam slab; the method is characterized in that: the ALC partition boards are arranged in the outer wall of the ALC partition board, and the ALC partition boards are arranged in the outer wall of the ALC partition board; a partition plate mounting pressure groove is formed in the structural floor slab; a positioning reinforcing steel bar is arranged in the middle under the ALC partition wall plate; after the ALC partition board is installed, a plate fixing tie bar is arranged in the joint rabbet, the adjacent ALC partition boards are connected, and then the ALC partition boards are smeared to be flush with the surface of the ALC partition board by using bonding mortar.
2. The positionable plastering-free ALC wallboard reinforcement structure of claim 1, wherein: the lateral surface of the ALC partition board is vertically provided with a positioning chamfer, and the positioning chamfer of the adjacent ALC partition board is naturally closed, positioned and assembled and then fixed through a pipe clamp.
3. The ALC wallboard reinforcing structure positionable free of plastering of claim 1, wherein: the partition board mounting pressure groove is a groove which is extruded and corresponds to the width of the lower part of the ALC partition board when the structural floor slab is poured; then, positioning reinforcing steel bars are pre-buried in the partition board installation pressing grooves.
4. The positionable plastering-free ALC wallboard reinforcement structure of claim 1, wherein: the seam rabbet is arranged at intervals of 300mm, and the height of the seam rabbet is 50mm.
5. The positionable plastering-free ALC wallboard reinforcement structure of claim 1, wherein: a plate jacking seam is arranged at the joint of the upper end of the ALC partition plate and the structural beam plate; the foam rubber plugs are sprayed in the plate top pressing seams, and the two sides of the wall are leveled with the plate surface of the ALC partition plate through bonding mortar.
6. The positionable plastering-free ALC wallboard reinforcement structure of claim 1, wherein: and the lower end of the ALC partition wall board is connected with the structural floor slab through a cement mortar joint pointing and filling abutted seam.
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CN202222703597.9U CN218374567U (en) | 2022-10-14 | 2022-10-14 | Can fix a position ALC wallboard reinforced structure that can exempt from to plaster |
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CN202222703597.9U CN218374567U (en) | 2022-10-14 | 2022-10-14 | Can fix a position ALC wallboard reinforced structure that can exempt from to plaster |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116290550A (en) * | 2023-03-30 | 2023-06-23 | 中国十七冶集团有限公司 | ALC wallboard plane integrity reinforcing method for high-fortification intensity area |
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2022
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116290550A (en) * | 2023-03-30 | 2023-06-23 | 中国十七冶集团有限公司 | ALC wallboard plane integrity reinforcing method for high-fortification intensity area |
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