CN211341125U - Wall-column integrated assembly type building component - Google Patents
Wall-column integrated assembly type building component Download PDFInfo
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- CN211341125U CN211341125U CN201922141116.8U CN201922141116U CN211341125U CN 211341125 U CN211341125 U CN 211341125U CN 201922141116 U CN201922141116 U CN 201922141116U CN 211341125 U CN211341125 U CN 211341125U
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Abstract
The utility model relates to a wall-column integrated assembly type building component, which comprises a wall body and a connecting beam, wherein the wall body is in a plate shape and is internally provided with a plurality of groups of structural holes; each group of structure holes comprises a plurality of through holes which are symmetrically arranged along the longitudinal direction of the wall body to form an X-shaped or rice-shaped bracket; column holes are or not arranged in the wall body; the column holes are arranged along the longitudinal direction of the wall body; the connecting beam is in a strip block shape, the length and the width of the connecting beam are equal to the width and the thickness of the wall body, and the upper surface and the lower surface of the connecting beam are respectively provided with or not provided with a column body; the column body is in a raised short column shape, is matched with the column hole and can be inserted into the column hole; the connecting beam is also provided with a protruding connecting block; the shape and the position of the connecting block are matched with the connecting hole in the wall body and can be inserted into the connecting hole. The utility model relates to a rationally, simple structure can effectively reduce component quantity, simplifies assembly process, improves joint strength, and the fully provided construction demand is favorable to assembly type structure's popularization.
Description
Technical Field
The utility model relates to a building element, especially an assembly type building element, specific wall post integral type assembly type building element that says so.
Background
With the popularization and spread of the fabricated building, the design and use of the fabricated building components are more and more emphasized. At present, most of wall bodies and column bodies in the assembly type building are separated, so that the types of components are increased, and the connection between the column bodies and the wall bodies is complex so as to meet the connection strength. Therefore, the construction cost and the construction time are easily increased, and the popularization of the assembly type building is influenced. Therefore, improvements are needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at prior art not enough, provide a wall post integral type assembled building component, can reduce component quantity, simplify assembly process, improve joint strength, the fully provided demand of building is favorable to assembled building's popularization.
The technical scheme of the utility model is that:
a wall-column integrated assembly type building component comprises a wall body and a connecting beam, wherein the wall body is in a plate shape and is internally provided with a plurality of groups of structural holes; each group of structure holes comprises a plurality of through holes which are symmetrically arranged along the longitudinal direction of the wall body to form an X-shaped or a m-shaped bracket; column holes are or not arranged in the wall body; the column holes are arranged along the longitudinal direction of the wall body; the connecting beam is in a strip block shape, the length and the width of the connecting beam are equal to the width and the thickness of the wall body, and the upper surface and the lower surface of the connecting beam are respectively provided with or not provided with a column body; the column body is in a raised short column shape, is matched with the column hole and can be inserted into the column hole; the connecting beam is also provided with a protruding connecting block; the shape and the position of the connecting block are matched with the connecting hole in the wall body and can be inserted into the connecting hole.
Furthermore, a plurality of through mounting holes corresponding to the positions are formed in the wall body and the connecting beam, and a thin rod-shaped connecting piece can be inserted into the through mounting holes, so that the wall body and the connecting beam are firmly connected.
Furthermore, the column holes and the connecting holes are all communicated with the inside of the wall body.
Furthermore, the connecting block is hollow and is communicated with the connecting beam.
Furthermore, the surface or/and the side surface of the wall body are/is also provided with a through connecting groove, and the two wall bodies can be connected in the horizontal direction through the lock catch strip; the cross section of the connecting groove is tree-shaped, and the top of the connecting groove is open; the lock catch strip is strip-shaped, the cross section of the lock catch strip is in a shape of two trees opposite to each other, and the lock catch strip can be simultaneously inserted into two connecting grooves to splice two walls.
Furthermore, a through sealing groove is arranged on the inner side of the column hole or the structure hole, and the cross section of the sealing groove is in a tree shape; the sealing groove can be inserted with a sealing strip matched with the sealing groove, so that the air tightness between walls is improved.
Furthermore, one side of the connecting beam is provided with a step-shaped flange, so that the floor slab can be conveniently connected.
The utility model has the advantages that:
the utility model relates to a rationally, simple structure can effectively reduce component quantity, simplifies assembly process, improves joint strength, and the fully provided construction demand is favorable to assembly type structure's popularization.
Drawings
Fig. 1 is a schematic view of the wall structure of the present invention.
Fig. 2 is a schematic end view of fig. 1.
Fig. 3 is a schematic view of the structure of the connection beam of the present invention.
Fig. 4 is a schematic view of the construction of the locking strip.
Fig. 5 is a schematic view of the structure of the sealing tape.
Fig. 6 is an assembly diagram of the present invention.
Wherein: 1-a wall body; 2-mounting holes; 3-column pore; 4-connecting holes; 5-structural pores; 6-a scaffold; 7-connecting grooves; 8-sealing groove; 9-connecting the beams; 10-connecting blocks; 11-a flange; 12-a column; 13-a notch; 14-locking strip; 15-sealing strip.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
As shown in fig. 1-6.
A wall-column integrated assembly type building component comprises a wall body 1 and a connecting beam 9.
The wall body 1 is in a plate shape and is internally provided with a plurality of groups of structural holes 5. Each group of structure holes 5 comprises a plurality of through holes which are symmetrically arranged along the longitudinal direction of the wall body 4, so that an X-shaped or m-shaped bracket 6 can be formed, the weight is reduced, and the torsional strength of the wall body can be effectively enhanced. The structure holes 5 are uniformly distributed, gaps 13 are formed between the adjacent through holes, and partition plates can be arranged at the gaps 13, so that the air tightness of the wall surface is improved.
And a column hole 3 is also formed in the wall body 1. The column holes 3 are arranged along the wall body 1 in a longitudinally through mode, so that the wall body 1 can be conveniently produced and intercepted in use. A plurality of connecting holes 4 are also formed in the wall body 1. The connecting holes 4 are rectangular and are symmetrically arranged on two sides of the structural hole 5. The connecting hole 4 is also communicated with the wall body 1, so that the production and the use are convenient.
The surface or/and the side of the wall body 1 are also provided with a through connecting groove 7, and the two wall bodies 1 can be connected in the horizontal direction through a lock catch strip 14. The cross section of the connecting groove 7 is tree-shaped, and the top of the connecting groove is open. The lock catch strip 14 is strip-shaped, the cross section of the lock catch strip is in a shape of two trees opposite to each other, and the lock catch strip can be simultaneously inserted into the two connecting grooves 7 to splice two walls.
The connecting beam 9 is in a strip block shape, the length and the width of the connecting beam are equal to the width and the thickness of the wall body 1, and columns 12 are respectively arranged on the upper surface and the lower surface of the connecting beam. The column body 12 is a raised short column shape, is matched with the column hole 3, and can be inserted into the column hole 3 to play a supporting role. Preferably, the post hole 3 and the post body 12 may be circular or rectangular. The height of the column 12 is typically no less than 60% of its diameter or circumscribed circle diameter. The number and positions of the post holes 3 and the posts 12 can be determined according to design requirements so as to meet the requirements of building support. The coupling beam may also be provided with a column on only one surface for the location of a door or window of a building.
The connecting beam 9 is also provided with a protruding connecting block 10. The shape and position of the connecting block 10 are matched with the connecting hole 4, so that the connecting block can be inserted into the connecting hole 4 to connect the wall body 1 and the connecting beam 9. Preferably, the height of the connecting block 10 is not less than 60% of its length. The connecting block 10 is hollow and is communicated with the connecting beam 9, so that the connecting block and the connecting hole 4 can form a communicated pipeline together, and cables and the like can be laid in the pipeline. One side of the connecting beam 9 can be provided with a step-shaped flange 11, so that the floor slab can be conveniently placed and connected. The flange 11 is also provided with an airtight and waterproof notch.
The wall body 1 and the connecting beam 9 are respectively provided with a plurality of through mounting holes 2 corresponding to the positions, and a thin rod-shaped connecting piece can be inserted into the mounting holes, so that the wall body 1 and the connecting beam 9 are firmly connected. Preferably, the connecting piece can be made of steel bars.
And a sealing groove 8 is arranged on the inner side of the column hole 3 or the structure hole 5, and the cross section of the sealing groove is tree-shaped. The sealing groove 8 can be inserted with a sealing strip 15 matched with the sealing groove, so that the air tightness between walls is improved. Preferably, the cross section of the sealing strip 15 can be the same as that of the locking strip 14, or can be half of the shape of the locking strip 14.
The wall body 1 can be used as a general wall surface without column holes. Correspondingly, the connecting beam 9 may not be provided with a column, and is connected with the wall body only through a connecting block.
The wall body, the connecting beam, the locking strips and the like are all made of composite fiber materials, so that the wall body, the connecting beam, the locking strips and the like are convenient to produce, easy to cut and connect, light in weight, high in strength and convenient to transport and assemble.
The utility model discloses the part that does not relate to all is the same with prior art or can adopt prior art to realize.
Claims (7)
1. The utility model provides a wall post integral type assembled building element, includes wall body and tie-beam, characterized by: the wall body is in a plate shape and is internally provided with a plurality of groups of structural holes; each group of structure holes comprises a plurality of through holes which are symmetrically arranged along the longitudinal direction of the wall body to form an X-shaped or a m-shaped bracket; column holes are or not arranged in the wall body; the column holes are arranged along the longitudinal direction of the wall body; the connecting beam is in a strip block shape, the length and the width of the connecting beam are equal to the width and the thickness of the wall body, and the upper surface and the lower surface of the connecting beam are respectively provided with or not provided with a column body; the column body is in a raised short column shape, is matched with the column hole and can be inserted into the column hole; the connecting beam is also provided with a protruding connecting block; the shape and the position of the connecting block are matched with the connecting hole in the wall body and can be inserted into the connecting hole.
2. A wall and column integrated fabricated building element as claimed in claim 1, wherein: the wall body and the connecting beam are respectively provided with a plurality of through mounting holes corresponding to the positions, and the thin rod-shaped connecting piece can be inserted into the mounting holes, so that the wall body and the connecting beam are firmly connected.
3. A wall and column integrated fabricated building element as claimed in claim 1, wherein: the column holes and the connecting holes are communicated with the inside of the wall body.
4. A wall and column integrated fabricated building element as claimed in claim 1, wherein: the connecting block is hollow and is communicated with the connecting beam.
5. A wall and column integrated fabricated building element as claimed in claim 1, wherein: the surface or/and the side surface of the wall body are/is also provided with a through connecting groove, and the two wall bodies can be connected in the horizontal direction through the lock catch strip; the cross section of the connecting groove is tree-shaped, and the top of the connecting groove is open; the lock catch strip is strip-shaped, the cross section of the lock catch strip is in a shape of two trees opposite to each other, and the lock catch strip can be simultaneously inserted into two connecting grooves to splice two walls.
6. A wall and column integrated fabricated building element as claimed in claim 1, wherein: the inner side of the column hole or the structure hole is provided with a through sealing groove, and the cross section of the sealing groove is in a tree shape; the sealing groove can be inserted with a sealing strip matched with the sealing groove, so that the air tightness between walls is improved.
7. A wall and column integrated fabricated building element as claimed in claim 1, wherein: one side of the connecting beam is provided with a step-shaped flange, so that the floor slab can be conveniently connected.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922141116.8U CN211341125U (en) | 2019-12-04 | 2019-12-04 | Wall-column integrated assembly type building component |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922141116.8U CN211341125U (en) | 2019-12-04 | 2019-12-04 | Wall-column integrated assembly type building component |
Publications (1)
Publication Number | Publication Date |
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CN211341125U true CN211341125U (en) | 2020-08-25 |
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CN201922141116.8U Active CN211341125U (en) | 2019-12-04 | 2019-12-04 | Wall-column integrated assembly type building component |
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CN (1) | CN211341125U (en) |
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2019
- 2019-12-04 CN CN201922141116.8U patent/CN211341125U/en active Active
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