This application is based upon and claims priority to Chinese Patent Application No. 202210423326.X, filed on Apr. 21, 2022, the entire content of which is incorporated herein by reference.
The invention relates to the technical field of construction and in particular to a shear wall connector and an assembled shear wall and assembly method.
Assembly concrete shear wall structure factory prefabricated, on-site assembly, can significantly reduce labour costs, improve the quality of components, with good economic efficiency and application effect. At present, the main connection of the assembled concrete shear wall structure for there are two ways: the first is in the wall on both sides of the exposed ring hoop, assembled in place in the middle of the hoop inserted longitudinal reinforcement, on-site pouring of concrete will be connected to the same layer of shear wall plate; the second is in the lower wall plate top exposed reinforcement, the lower part of the upper wall plate and the lower wall plate pre-reinforced steel parts of the corresponding position pre-buried sleeve, in the lower wall plate installed in place, after The precast floor slab is installed, the cast-in-place floor slab is poured, the upper wall slab is installed at the upper part of the floor slab elevation and the upper and lower wall slabs are connected by grouting. The existing concrete shear wall slab connection method has the disadvantages of a large amount of temporary support to fix the wall slab, a large amount of wet work on site, difficulty in ensuring the quality of grouting in the sleeve and slow construction progress. How to reduce the amount of wet work on site, reduce the amount of temporary support, guarantee the quality of connection, achieve modular dry connection of shear wall panels, further reduce the construction cost of assembled shear walls, improve economic efficiency, innovative concrete assembled shear wall connection technology is an urgent problem.
To overcome the above-mentioned deficiencies of existing assembled concrete shear walls, the technical problem to be solved by the present invention is: to provide a shear wall connector and an assembled shear wall and assembly method that can reduce construction costs and improve assembly efficiency.
The technical solution used by the present invention to solve its technical problems is:
Shear wall connection, comprising a pre-built member and a connection member, said pre-built member comprising a side plate, pegs and shear keys, said side plate being provided with a plurality of first through-holes at intervals, said pegs and shear keys also comprising a plurality and being provided at intervals on the inner and outer sides of the side plate, said pegs being provided with threaded holes at the end connected to the side plate and having the threaded holes aligned with the first through-holes, said connection member comprising an H-beam and a rib plate provided at intervals between the two flange plates of the H-beam, said flange plate of the H-beam being provided with second through-holes and shear key adaptation holes matching the first through-holes and shear keys on the side plate.
Further, the first through-hole and the shear key on the described pre-built member are spaced alternately with each other.
Further, the described anti-shear key is of conical construction and the larger end is fixed to the side plate, and the said anti-shear key adaptation hole is an inverted conical hole adapted to the anti-shear key.
Further, the height of the described shear-resistant key is 5-10 mm higher than the depth of the shear-resistant key adaptation hole.
Further, the described shear key adaptation holes are provided at the corners formed by the webs and ribs of the H-beam.
Further, the described peg is provided with a hemispherical top cap at the end of the peg away from the side plate, the outer diameter of the hemispherical top cap being approximately 5 mm greater than the outer diameter of the peg.
Assembled shear wall, comprising a reinforced concrete precast wall panel, further comprising a shear wall connector, wherein the side plates of the precast are provided on the assembly surface of the precast wall panel and the wall panel reinforcement in the precast wall panel is welded to the inside of the side plates, said connector is located between the assembly surfaces of two adjacent precast wall panels, said precast and connector are matched and welded together by means of shear keys and shear key adaptor holes and are secured together by bolts passing through a second through hole, a first through hole and a threaded hole in that order.
Further, for shear walls requiring a floor slab, transverse connections are provided at the top of the shear wall, the described floor slab comprising a prefabricated floor slab and a cast-in-place floor slab, the lapped end of said prefabricated floor slab being lapped on the lower flange plate of the H-beam by means of exposed reinforcement with bending hooks, said cast-in-place floor slab being cast in place on the prefabricated floor slab and having its negative moment reinforcement end welded to the web of the H-beam.
Further, the side plates of the described pre-embedded member are located in the centre of the assembly surface of the prefabricated wall panel and their sides are 8-12 mm from the two sides of the prefabricated wall panel, and the width of the said connection member is equal to the width of the side plates.
Further, the side plates of the described pre-embedded member are located in the centre of the assembly surface of the prefabricated wall panel and their sides are 8-12 mm from the two sides of the prefabricated wall panel, and the width of the described connection member is equal to the width of the side plates.
Method of assembling an assembled shear wall, comprising the steps:
The beneficial effects of the present invention are:
The drawings are marked as, 1—pre-built, 2—connection, 3—prefabricated wall slab, 4—prefabricated floor slab, 5—cast-in-place floor slab, 11—side slab, 12—peg, 13—shear key, 14—first through-hole, 15—threaded hole, 16—hemispherical top cap, 21—H-beam, 22—flange plate, 23—shear key adaptation hole, 24—second through-hole, 25—ribbed plate, 26—web, 31—wall slab reinforcement, 41—floor slab reinforcement, 51—negative moment reinforcement.
The present invention is further described below in conjunction with the accompanying drawings.
As shown in
The described pre-buried parts 1 are pre-buried on the surface of the concrete wall to facilitate the assembly of the concrete wall by means of the connecting parts 2. During installation the shear key 13 on the pre-buried member 1 is inserted into the shear key adaptation hole 23 to provide shear resistance, which is then fixed by means of bolts passing through the second through hole 24, the first through hole 14 and the peg 12. Compared with the existing assembly methods, the shear wall connectors of the present application do not require temporary support and can achieve dry modular construction, ensuring safe and reliable transmission of tension and shear between the connectors and the prefabricated wall panels, enhancing the integrity of the shear wall; at the same time, the adaptability of the pre-buried parts and connectors has been verified in the factory, which can ensure precise seating of the pre-buried parts and connectors during on-site installation, speeding up the This speeds up the construction process, helps to save costs and has better economic benefits.
To facilitate construction and to ensure the reliability of the assembly, the present application provides some preferred ways of doing so as follows:
To provide a good connection, said first through-hole 14 and shear-resistant key 13 on the described pre-embedded member 1 are alternately spaced apart from each other.
To facilitate alignment of the anti-shear key 13 with the anti-shear key adaptation hole 23 during assembly, the described anti-shear key 13 is a conical table structure and the larger end is fixed to the side plate 11, and the described anti-shear key adaptation hole 23 is an inverted conical hole adapted to the anti-shear key 13.
In the installation process, in order to play a good shear and tensile effect, it is necessary to weld the anti-shear key 13 with the anti-shear key adaptation hole 23 after the docking is completed, therefore, in order to facilitate welding, the height of the described anti-shear key 13 is preferably 5-10 mm higher than the depth of the anti-shear key adaptation hole 23 to ensure that the anti-shear key 13 can pass through the anti-shear key adaptation hole 23 during installation, so as to facilitate subsequent welding around the anti-shear key 13.
Further, as shown in
For the peg 12, in order to facilitate the processing of the threaded hole 15, a threaded sleeve structure can be used, but in order to avoid concrete entering the threaded hole during the production of the precast wall panel, a hemispherical top cap 16 can be set at the end of the peg 12 away from the side plate 11, as shown in
The assembled shear wall made with the above-mentioned shear wall connectors, as shown in
Further, in order to accommodate the construction of the floor slab, a transverse connection 2 is provided at the top of the shear wall where the floor slab is to be erected. according to the Technical Specification for Assembled Concrete Structures (JGJ 1-2014), the floor slab of an assembled concrete frame structure is to be provided with a cast-in-place layer to ensure structural integrity, so that the described floor slab comprises a prefabricated floor slab 4 and a cast-in-place floor slab 5, the said prefabricated floor slab 4 having The lap end of the described prefabricated floor slab 4 is lapped on the lower flange of the H-beam 21 by means of exposed floor bars 41 with bending hooks, and the said cast-in-place floor slab 5 is cast-in-place on the prefabricated floor slab 4 and the end of its negative moment bars 51 are welded to the web 26 of the H-beam 21.
In order to avoid rusting of the exposed steel structure, the side plates 11 of the described prefabricated part 1 are located in the centre of the assembly surface of the prefabricated wall panel 3, and their sides are 8-12 mm away from the two sides of the prefabricated wall panel 3. The width of the described connection 2 is comparable to the width of the side plates 11. This leaves a gap after the assembly is completed, which facilitates subsequent painting with cement mortar and ensures a flat wall surface.
For the specific assembly method of assembled shear walls, as shown in
Using the shear wall connectors and assembly method of the present invention, dry modular construction of assembled shear walls can be achieved, which enhances the integrity of the shear walls, helps to speed up the construction progress, saves costs and has better economic benefits.
Number | Date | Country | Kind |
---|---|---|---|
202210423326.X | Apr 2022 | CN | national |