CN210857608U - Concave-character inserting structure for assembled shear wall - Google Patents

Concave-character inserting structure for assembled shear wall Download PDF

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CN210857608U
CN210857608U CN201921362183.6U CN201921362183U CN210857608U CN 210857608 U CN210857608 U CN 210857608U CN 201921362183 U CN201921362183 U CN 201921362183U CN 210857608 U CN210857608 U CN 210857608U
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slot
clamping piece
block
air
columns
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刘桂春
张建华
陈聪
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CSCEC Strait Construction and Development Co Ltd
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CSCEC Strait Construction and Development Co Ltd
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Abstract

The utility model discloses an assembled shear force is concave word grafting structure for wall, including the piece of aerifing and connect the fastener, it is the U-shaped to connect the fastener main part, and its bottom upper surface central authorities have set firmly vertical ascending spliced pole, and lower surface bilateral symmetry is provided with vertical decurrent lower spliced pole, connect two outsides of fastener main part and seted up flutedly respectively, it respectively is provided with a plurality of horizontal fixed column to connect the medial surface that fastener both sides recess is relative, slot and lower slot have been seted up respectively to the top and the bottom of piece of aerifing, the spout has been seted up to the piece both sides of aerifing, last slot in the piece of aerifing, lower slot the spout with connect the corresponding grafting cooperation of lower spliced pole, last spliced pole, horizontal fixed column in the fastener, the piece of aerifing with it constitutes the assembled wall body to connect the continuous grafting coincide of fastener. The utility model discloses it is convenient to peg graft, simple structure, and it is firm to connect, can direct punching press prefabrication shaping.

Description

Concave-character inserting structure for assembled shear wall
Technical Field
The utility model belongs to the technical assembly field that the building was found especially relates to an assembled shear force is concave letter grafting structure for wall.
Background
With the development of modern industrial technology, the house can be assembled and produced like machine production, and compared with the traditional masonry building, the prefabricated building has the advantages of less dust, low noise, high construction speed, energy conservation, environmental protection, guaranteed construction quality, high production efficiency and the like, so that the prefabricated building is actively popularized in government departments and the building industry all the time.
At present, in high-rise buildings, air-entraining blocks are generally adopted, and have the advantages of light volume weight, high heat-insulating efficiency, good sound absorption, processability and the like. For example, patent document CN207647011U discloses an air-filled block assembled wallboard body, which is a sheet of prefabricated wallboard body before the existing wall building construction, and is characterized in that: the air-entraining block fabricated wallboard body is composed of an outer concrete slab body, an air-entraining block core layer and an inner concrete slab body which are sequentially arranged from outside to inside, wherein an outer reinforcing mesh is arranged in the outer concrete slab body, an inner reinforcing mesh is arranged in the inner concrete slab body, connecting reinforcing steel bars are welded or hooked between the inner reinforcing mesh and the outer reinforcing mesh, and the connecting reinforcing steel bars penetrate through the air-entraining block core layer. The prefabricated wall slab has the advantages of safe and firm assembly and the like, and can be used as an assembled filling wall slab or an assembled wall slab of a low-rise and multi-story building.
The existing assembled wall body mainly adopts a hoisting form or a framework assembling form, and due to the large area of the wall body, great limitation is brought to construction, and compared with a block wall body, the wall body has the advantages of high cost, unsatisfactory heat and sound insulation effect, and incapability of exerting the advantages of the traditional block wall body. Now a lot of buildings
All buildings are frame structures, and meanwhile, the inside of the frame is built and constructed by adopting air-adding blocks. 109113255A for example discloses an assembled aerated concrete block and a construction method thereof, comprising a block body and a first bulge arranged at the top of the left side of the block body, wherein a second bulge is arranged at the bottom of the right side of the block body, a connecting block is arranged at the top of the block body, a connecting groove is arranged at the bottom of the block body, the connecting groove is mutually matched with the connecting block, a strip-shaped groove is arranged at the bottom of the first bulge, a strip-shaped block is arranged at the top of the second bulge, the strip-shaped block is mutually matched with the strip-shaped groove, a flow guide hole is arranged in the block body, and an annular flow guide plate is arranged on the inner side wall of the flow guide hole. The invention can ensure the stable horizontal and vertical assembly of the building block body and save a large amount of mortar. But the construction process is complicated, and the construction quality of non-professional personnel can not be ensured.
Therefore, a plug structure which is more convenient to assemble, more stable to connect and simple in structure is needed.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model aims to provide an assembled shear force is concave letter grafting structure for wall, it is convenient to peg graft, simple structure, connects firmly, can direct punching press prefabrication shaping, and integral erection weight is comparatively light.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides an assembled shear force concave letter grafting structure for wall, includes the piece of aerifing and connects the fastener, it is the U-shaped to connect the fastener main part, and its bottom upper surface central authorities have set firmly vertical ascending spliced pole, and the lower surface bilateral symmetry is provided with vertical decurrent spliced pole, connect fastener main part two outsides and seted up the recess respectively, the medial surface that connects fastener both sides recess phase to each other respectively is provided with a plurality of horizontal fixation posts, last slot and lower slot have been seted up respectively to the top and the bottom of piece of aerifing, the air entrainment
The automatic assembling type wall body is characterized in that sliding grooves are formed in two sides of the block, an upper inserting groove and a lower inserting groove in the air-entraining block, the sliding grooves are in corresponding inserting fit with a lower connecting column, an upper connecting column and a horizontal fixing column in the connecting clamping piece, and the air-entraining block and the connecting clamping piece are continuously inserted and superposed to form an assembling type wall body.
Furthermore, the upper connecting columns and the lower connecting columns are respectively arranged into two rows, each row is provided with at least 2 connecting columns, the number of the connecting columns is equal, the total number of the upper connecting columns is equal to that of the lower connecting columns, the upper parts of the upper connecting columns and the lower connecting columns are conical, and the lower parts of the upper connecting columns and the lower connecting columns are cylindrical.
Furthermore, the upper slots and the lower slots are respectively arranged in two rows, each row is provided with at least 2 slots, the number of the slots is equal, the total number of the upper slots is equal to that of the lower slots, the upper slots and the lower slots are consistent with the upper connecting column and the lower connecting column in shape, the upper slots are conical, and the lower slots are cylindrical.
Further, horizontal fixed column sets up to four rows, and every row has at least 1 fixed column, horizontal fixed column is cylinder or cuboid.
Furthermore, the sliding chutes are arranged in four rows, and the lower ends of the sliding chutes penetrate through the air filling blocks to be communicated with the outside.
Furthermore, the groove is matched with the groove of the adjacent connecting clamping piece after the air-filling block is spliced with the connecting clamping piece, and mortar is injected for bonding and fixing.
Further, the width of the connecting clamping piece is smaller than that of the air-entrapping block, and the height of the connecting clamping piece is smaller than that of the air-entrapping block.
The utility model discloses following beneficial effect has: compared with the prior art, the concave-shaped inserting structure for the assembly type shear wall is provided with the U-shaped connecting clamping piece as the connection between the air-adding block and the air-adding block, the steel connecting clamping piece plays a role of a steel plate in the traditional shear wall structure, and the connecting column and the fixing column structure arranged on the connecting clamping piece ensure that the whole wall body is more stably connected, the structure is simple, the factory processing is simpler and more convenient, the concave-shaped inserting structure can be directly formed by stamping and prefabricating,
the whole installation weight is light.
Drawings
Fig. 1 is a schematic front view of a connecting fastener of a concave-shaped splicing structure for an assembled shear wall according to the present invention;
FIG. 2 is a left side view of the connecting fastener of the concave-shaped plugging structure for the fabricated shear wall according to the present invention;
fig. 3 is a schematic top view of a connecting fastener of the concave splicing structure for the fabricated shear wall according to the present invention;
fig. 4 is a schematic front view cross-sectional view of an air-entrapping block of the concave-character inserting structure for the fabricated shear wall of the present invention;
FIG. 5 shows an air-filling block of a concave-shaped plugging structure for an assembled shear wall
A schematic left view;
fig. 6 is a front view cross-sectional view of an assembly structure of the recessed plug-in structure for an assembly type shear wall according to the present invention;
fig. 7 is a schematic front view of a connection fastener of the concave-shaped plugging structure for an assembled shear wall without a lower connection column.
In the figure: 1-an air-filling block, 2-a connecting clamping piece, 3-an upper connecting column, 4-a lower connecting column, 5-a groove, 6-a horizontal fixing column, 7-an upper slot, 8-a lower slot and 9-a sliding chute.
Detailed Description
The technical solution of the present invention is further specifically described below by way of examples and with reference to the accompanying drawings.
Referring to fig. 1-7, the utility model discloses a concave splicing structure for an assembly type shear wall, which comprises an air-adding block 1 and a connecting fastener 2, wherein the main body of the connecting fastener 2 is U-shaped, the center of the upper surface of the bottom part is fixedly provided with an upper connecting column 3 which is vertically upward, the two sides of the lower surface are symmetrically provided with lower connecting columns 4 which are vertically downward, two outer sides of the main body of the connecting clamping piece 2 are respectively provided with a groove 5, the inner side surfaces of the two sides of the connecting clamping piece 2 opposite to the grooves 5 are respectively provided with a plurality of horizontal fixing columns 6, the top and the bottom of the air-entraining block 1 are respectively provided with an upper slot 7 and a lower slot 8, the two sides of the air-entraining block 1 are provided with sliding chutes 9, the upper slot 7 and the lower slot 8 in the air-entraining block 1, the sliding chute 9, the lower connecting column 4, the upper connecting column 3 and the horizontal fixing column 6 in the connecting clamping piece 2 are correspondingly matched in an inserting manner, and the air-entraining block 1 and the connecting clamping piece 2 are continuously inserted and superposed to form an assembly type wall body.
The upper connecting columns 3 and the lower connecting columns 4 are respectively arranged in two rows, at least 2 connecting columns are arranged in each row, the number of the connecting columns is equal, the total number of the upper connecting columns 3 is equal to that of the lower connecting columns 4, the upper parts of the upper connecting columns 3 and the lower parts of the lower connecting columns 4 are conical, and the lower parts of the upper connecting columns 3 and the lower connecting columns 4 are cylindrical.
The upper slots 7 and the lower slots 8 are respectively arranged in two rows, each row is provided with at least 2 slots, the number of the slots is equal, the total number of the upper slots 7 is equal to that of the lower slots 8, the upper slots 7 and the lower slots 8 are consistent with the upper connecting column 3 and the lower connecting column 4 in shape, the upper slots are conical, and the lower portions of the upper slots and the lower slots are cylindrical.
The horizontal fixing columns 6 are arranged in four rows, at least 1 fixing column is arranged in each row, and each horizontal fixing column 6 is a cylinder or a cuboid.
Wherein, the sliding chutes 9 are arranged in four rows, and the lower ends of the sliding chutes 9 penetrate through the air-adding block 1 to be communicated with the outside.
The groove 5 is matched with the groove 5 of the adjacent connecting clamping piece 2 after the air-adding block 1 and the connecting clamping piece 2 are spliced, and mortar is injected for bonding and fixing.
The width of the connecting clamping piece 2 is smaller than that of the air-entrapping block 1, and the height of the connecting clamping piece 2 is smaller than that of the air-entrapping block 1.
The utility model discloses a theory of operation does: during construction, the connecting clamping piece 2 used when the first layer of air-entraining block 1 is laid does not have the lower connecting column 4, and the specific structure is shown in figure 7; the connecting clamping piece 2 used when the air-entrapping block 1 on the second layer and above is laid is provided with a lower connecting column 4, and the specific structure is shown in figure 1. The two connecting clamping pieces 2 are matched for use, and the wall body of the air-adding block 1 is built.
When the first layer of air entrainment piece 1 is under construction, put connecting fastener 2 shown in figure 7 to it is fixed to utilize the mortar to carry out the bottom, then aim at the horizontal fixed column 6 in both sides and the upper connecting post 3 of connecting fastener 2 respectively with the spout 9 and the lower slot 8 of air entrainment piece 1 and insert, it is fixed to pour into the mortar in recess 5 with adjacent air entrainment piece 1 bonding simultaneously. During the construction of the second floor, aim at respectively the spout 9 and the lower slot 8 of air entrainment piece 1 and insert as shown the horizontal fixed column 6 in both sides and the last spliced pole 3 of connecting fastener 2 of attached drawing 1 to carry out dislocation according to showing in attached drawing 6 and put, insert lower spliced pole 4 in the last slot 7 of first floor air entrainment piece 1 simultaneously, then pour into the mortar in the recess 5 and bond fixedly. And repeating the second layer of construction until the actual required height is reached. From the second layer structure, the upper and lower structures of the connection mode do not need mortar, and only two sides are fixed by using the mortar.
The above detailed description of the present invention is only used for illustrating the present invention and is not limited to the technical solutions described in the embodiments of the present invention, and it should be understood by those skilled in the art that the present invention can be modified or replaced with other equivalent devices to achieve the same technical effects; as long as the use requirement is satisfied, the utility model is within the protection scope.

Claims (7)

1. The utility model provides an assembled shear force is concave letter grafting structure for wall, includes air entrainment piece (1) and connects fastener (2), its characterized in that: the main body of the connecting clamping piece (2) is U-shaped, the center of the upper surface of the bottom of the connecting clamping piece is fixedly provided with an upper connecting column (3) which is vertically upward, the two sides of the lower surface are symmetrically provided with lower connecting columns (4) which are vertically downward, two outer sides of the main body of the connecting clamping piece (2) are respectively provided with a groove (5), the inner side surfaces opposite to the grooves (5) on the two sides of the connecting clamping piece (2) are respectively provided with a plurality of horizontal fixing columns (6), the top and the bottom of the air-adding block (1) are respectively provided with an upper slot (7) and a lower slot (8), sliding grooves (9) are formed in two sides of the air-entraining block (1), an upper slot (7) and a lower slot (8) in the air-entraining block (1), the sliding grooves (9) are correspondingly inserted and matched with a lower connecting column (4), an upper connecting column (3) and a horizontal fixing column (6) in the connecting clamping piece (2), the air-filling block (1) and the connecting clamping piece (2) are continuously inserted and superposed to form an assembly type wall body.
2. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: the upper connecting columns (3) and the lower connecting columns (4) are respectively arranged in two rows, each row is provided with at least 2 connecting columns, the number of the connecting columns is equal, the total number of the upper connecting columns (3) is equal to that of the lower connecting columns (4), the upper parts of the upper connecting columns (3) and the lower connecting columns (4) are conical, and the lower parts of the upper connecting columns (3) and the lower connecting columns (4) are cylindrical.
3. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: go up slot (7) and lower slot (8) and set up to two rows respectively, every row has 2 at least slots and quantity to equal, goes up slot (7) and lower slot (8) total quantity and equals, go up slot (7) and lower slot (8) with go up spliced pole (3) and spliced pole (4) shape unanimous down, be upper portion conical, the lower part is cylindrical.
4. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: the horizontal fixing columns (6) are arranged in four rows, each row is provided with at least 1 fixing column, and the horizontal fixing columns are arranged horizontally
The fixing column (6) is a cylinder or a cuboid.
5. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: the sliding chutes (9) are arranged in four rows, and the lower ends of the sliding chutes (9) penetrate through the air-adding block (1) to be communicated with the outside.
6. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: the groove (5) is matched with the groove (5) of the adjacent connecting clamping piece (2) after the air-adding block (1) and the connecting clamping piece (2) are spliced, and mortar is injected for bonding and fixing.
7. The recessed plug structure for the fabricated shear wall according to claim 1, wherein: the width of the connecting clamping piece (2) is smaller than that of the aerating block (1), and the height of the connecting clamping piece (2) is smaller than that of the aerating block (1).
CN201921362183.6U 2019-08-21 2019-08-21 Concave-character inserting structure for assembled shear wall Active CN210857608U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921362183.6U CN210857608U (en) 2019-08-21 2019-08-21 Concave-character inserting structure for assembled shear wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921362183.6U CN210857608U (en) 2019-08-21 2019-08-21 Concave-character inserting structure for assembled shear wall

Publications (1)

Publication Number Publication Date
CN210857608U true CN210857608U (en) 2020-06-26

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112647616A (en) * 2020-12-23 2021-04-13 江苏精享裕建工有限公司 Novel reinforced concrete superimposed shear wall structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112647616A (en) * 2020-12-23 2021-04-13 江苏精享裕建工有限公司 Novel reinforced concrete superimposed shear wall structure

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