CN216109240U - Novel integrated two-way close rib superstructure structure of prefabricated building integration - Google Patents

Novel integrated two-way close rib superstructure structure of prefabricated building integration Download PDF

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CN216109240U
CN216109240U CN202122406724.4U CN202122406724U CN216109240U CN 216109240 U CN216109240 U CN 216109240U CN 202122406724 U CN202122406724 U CN 202122406724U CN 216109240 U CN216109240 U CN 216109240U
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ribbed
prefabricated
prefabricated multi
equipment
cavity
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彭林立
李霆
叶赪
张建
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Central South Architectural Design Institute Co Ltd
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Central South Architectural Design Institute Co Ltd
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Abstract

The utility model discloses a novel assembled building integrated two-way multi-ribbed floor structure which comprises a prefabricated multi-ribbed beam, a plurality of prefabricated multi-ribbed top plates and a plurality of prefabricated multi-ribbed bottom plates, wherein the prefabricated multi-ribbed top plates are arranged at the top of the prefabricated multi-ribbed beam, and the prefabricated multi-ribbed bottom plates are arranged at the bottom of the prefabricated multi-ribbed beam; the prefabricated multi-ribbed top plate and the prefabricated multi-ribbed bottom plate are arranged in parallel, the prefabricated multi-ribbed top plate, the prefabricated multi-ribbed bottom plate and the prefabricated multi-ribbed beam enclose to form a plurality of multi-ribbed cavities, the multi-ribbed cavity on the outermost side is an equipment cavity, and equipment pipelines are arranged in the equipment cavity; and water supply and drainage pipelines are arranged in other multi-ribbed cavities. The utility model has the beneficial effects that: the bidirectional multi-ribbed floor structure integrates the structural layer, electromechanical equipment and a decoration layer, reduces the layer height of the original design, can save space, reduce the layer height, reduce energy-saving space and reduce the consumption of various building materials.

Description

Novel integrated two-way close rib superstructure structure of prefabricated building integration
Technical Field
The utility model relates to the field of building construction, in particular to a novel assembly type building integrated bidirectional ribbed floor structure.
Background
In recent years, relevant national departments point out that the assembly type construction mode needs to be popularized vigorously, the assembly type building can be promoted to be popularized and implemented vigorously in China, a production mode is smoothly changed for building enterprises, and transformation and upgrading of the enterprises are completed; and a plurality of relevant standards are issued to guide the development of the assembly type building, provide basis for the design and construction of the assembly type building, ensure the design quality, comprehensively plan the building structure, the electromechanical equipment, the part components, the assembly construction and the decoration, and push forward the integrated design of the assembly type building.
However, the prefabricated building is still only on the integrated wall board, and the integrated wall board is used as a prefabricated unit for splicing the floor structure; the related design of the integrated floor structure of the assembly type building is very few; the structural layer, the electromechanical equipment and the decoration layer are not designed in an integrated mode, so that the available headroom of the building is low.
Disclosure of Invention
The utility model aims to provide a novel assembled building integrated bidirectional ribbed floor structure with high and low floor height and simple structure aiming at the defects of the prior art.
The technical scheme adopted by the utility model is as follows: a novel assembly type building integrated bidirectional multi-ribbed floor structure comprises a prefabricated multi-ribbed beam, a plurality of prefabricated multi-ribbed top plates and a plurality of prefabricated multi-ribbed bottom plates, wherein the prefabricated multi-ribbed top plates are arranged at the top of the prefabricated multi-ribbed beam, and the prefabricated multi-ribbed bottom plates are arranged at the bottom of the prefabricated multi-ribbed beam; the prefabricated multi-ribbed top plate and the prefabricated multi-ribbed bottom plate are arranged in parallel, the prefabricated multi-ribbed top plate, the prefabricated multi-ribbed bottom plate and the prefabricated multi-ribbed beam enclose to form a plurality of multi-ribbed cavities, the multi-ribbed cavity on the outermost side is an equipment cavity, and equipment pipelines are arranged in the equipment cavity; and water supply and drainage pipelines are arranged in other multi-ribbed cavities.
According to the scheme, the center of the bottom of the prefabricated multi-ribbed beam is not provided with a prefabricated multi-ribbed bottom plate, and the prefabricated multi-ribbed beam and a prefabricated multi-ribbed top plate at the center form a ventilation opening communicated with the outside; the prefabricated multi-ribbed beam is provided with a vent hole, and the multi-ribbed cavity is communicated with the vent hole through the vent hole.
According to the scheme, the prefabricated multi-ribbed beam comprises a plurality of main beams and a plurality of secondary beams which are spaced in parallel, wherein the main beams and the secondary beams are arranged in a crossed manner; the main beam, the secondary beam, the prefabricated multi-ribbed top plate and the prefabricated multi-ribbed bottom plate on the two outer sides of the prefabricated multi-ribbed beam are enclosed to form an equipment cavity.
According to the scheme, the prefabricated ribbed bottom plate is a prefabricated ceiling plate, and lamps and fire fighting equipment are integrally arranged.
The utility model has the beneficial effects that: in the utility model, the multi-ribbed cavity communicated with the ventilation opening can be directly used as a heating and ventilation pipeline, and the ventilation holes arranged on the prefabricated multi-ribbed beam are communicated with the adjacent multi-ribbed cavity to form an air channel; the equipment pipeline is arranged in the equipment cavity at the outer side, and the drainage pipeline can be arranged in other multi-ribbed cavities; the bottom plate of the ribbed floor is a prefabricated ceiling plate, and various facilities required by decoration, lamps, fire fighting and the like are integrally arranged; the bidirectional multi-ribbed floor structure integrates the structural layer, electromechanical equipment and a decoration layer, reduces the originally designed layer height, can save space, reduce the layer height, reduce energy-saving space and reduce the consumption of various construction materials; the utility model can be widely applied to various structural systems of multi-high-rise public buildings such as office buildings, businesses, hospitals, schools and the like; the utility model can be used for a reinforced concrete structure, and after the prefabricated multi-ribbed beam is made of a steel structure, the bidirectional multi-ribbed floor joint cover can also be used for a steel structure building.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention.
Figure 2 is a top view of a pre-fabricated multi-ribbed beam.
In the figure, 1-prefabricated ribbed top plate, 2-prefabricated ribbed beam, 3-vent, 4-equipment pipeline, 5-ribbed cavity and 6-prefabricated ribbed bottom plate; 7-equipment cavity; 8-vent.
Detailed Description
For a better understanding of the present invention, reference is made to the following detailed description taken in conjunction with the accompanying drawings.
As shown in fig. 1, the novel assembly type building integrated bidirectional multi-ribbed floor structure comprises a prefabricated multi-ribbed beam 2, a plurality of prefabricated multi-ribbed top plates 1 and a plurality of prefabricated multi-ribbed bottom plates 6, wherein the prefabricated multi-ribbed top plates 1 are installed at the top of the prefabricated multi-ribbed beam 2, and the prefabricated multi-ribbed bottom plates 6 are installed at the bottom of the prefabricated multi-ribbed beam 2; the prefabricated multi-ribbed top plate 1 and the prefabricated multi-ribbed bottom plate 6 are arranged in parallel, the prefabricated multi-ribbed top plate 1, the prefabricated multi-ribbed bottom plate 6 and the prefabricated multi-ribbed beam 2 enclose to form a plurality of multi-ribbed cavities 5, the multi-ribbed cavity on the outermost side is an equipment cavity 7, and equipment pipelines 4 are arranged in the equipment cavity 7; and water supply and drainage pipelines are arranged in other multi-ribbed cavities 5.
Preferably, the center of the bottom of the prefabricated multi-ribbed beam 2 is not provided with a prefabricated multi-ribbed bottom plate 6, and the prefabricated multi-ribbed beam 2 and the prefabricated multi-ribbed top plate 1 at the center form a ventilation opening 8 communicated with the outside; the prefabricated multi-ribbed beam 2 is provided with a vent hole 3, and the multi-ribbed cavity 5 is communicated with a vent hole 8 through the vent hole 3. In the embodiment, the multi-ribbed cavity 5 communicated with the vent 8 can be directly used as a heating and ventilation pipeline, and the vent holes 3 formed in the prefabricated multi-ribbed beam 2 are communicated with the adjacent multi-ribbed cavities 5 to form a two-way air duct; the device cavity 7 is not in communication with the vent 8.
Preferably, as shown in fig. 2, the prefabricated multi-ribbed beam 2 comprises a plurality of parallel spaced main beams and a plurality of parallel spaced secondary beams, wherein the main beams and the secondary beams are arranged in a crossed manner; the main beam, the secondary beam, the prefabricated multi-ribbed top plate 1 and the prefabricated multi-ribbed bottom plate 6 on the two outer sides of the prefabricated multi-ribbed beam 2 enclose to form an equipment cavity 7.
Preferably, the prefabricated ribbed bottom plate 6 is a prefabricated ceiling plate, and is integrated with lamps and fire fighting equipment.
In the utility model, the related equipment pipelines 4 are arranged in the equipment cavities 7 (when the equipment pipelines 4 are transversely or longitudinally arranged, the main beam or the secondary beam shared by the two adjacent equipment cavities 7 on the same side is required to be provided with the channels of the equipment pipelines 4). The water supply and drainage pipeline is arranged in other proper multi-ribbed cavities 5 according to design requirements, related electrical appliance pipelines are arranged at positions required by the design, including cable bridges, various lighting, sockets, electric wires required by lamps and the like, and various holes are reserved in the prefabricated multi-ribbed beam 2. The center of the bottom of the prefabricated multi-ribbed beam 2 is not provided with a prefabricated multi-ribbed bottom plate 6, and a main beam, a secondary beam and a prefabricated multi-ribbed top plate 1 at the center are enclosed to form a ventilation opening 8 communicated with the outside; the main beam and/or the secondary beam are/is provided with vent holes 3, and the multi-ribbed cavity 5 is communicated with the vent holes 8 through the vent holes 3 to form an air duct; the device cavity 7 does not communicate with other multi-ribbed cavities 5 or vents 8. The prefabricated ribbed bottom plate 6 is a prefabricated ceiling plate, and is integrated with various facilities required by decoration, lamps, fire fighting and the like.
The design and construction process of the utility model is as follows: designing the bidirectional multi-ribbed floor structure, prefabricating various components such as a prefabricated multi-ribbed beam 2, a prefabricated multi-ribbed bottom plate 6 and a prefabricated multi-ribbed top plate 1 in a factory, and reserving a vent hole 3 and an equipment pipeline 4 channel on a corresponding main beam or secondary beam of the prefabricated multi-ribbed beam 2; constructing the bidirectional multi-ribbed floor structure, fixing the prefabricated multi-ribbed beam 2, assembling the prefabricated multi-ribbed top plate 1, installing an inner laying equipment pipeline 4 in the equipment cavity 7, and finally packaging the floor bottom plate.
The above description is only for the preferred embodiment of the present invention and is not intended to limit the scope of the present invention, and all equivalent structural changes made by using the contents of the present specification and the drawings, or any other related technical fields, are intended to be covered by the scope of the present invention.

Claims (4)

1. A novel assembly type building integrated bidirectional multi-ribbed floor structure is characterized by comprising a prefabricated multi-ribbed beam, a plurality of prefabricated multi-ribbed top plates and a plurality of prefabricated multi-ribbed bottom plates, wherein the prefabricated multi-ribbed top plates are arranged at the top of the prefabricated multi-ribbed beam, and the prefabricated multi-ribbed bottom plates are arranged at the bottom of the prefabricated multi-ribbed beam; the prefabricated multi-ribbed top plate and the prefabricated multi-ribbed bottom plate are arranged in parallel, the prefabricated multi-ribbed top plate, the prefabricated multi-ribbed bottom plate and the prefabricated multi-ribbed beam enclose to form a plurality of multi-ribbed cavities, the multi-ribbed cavity on the outermost side is an equipment cavity, and equipment pipelines are arranged in the equipment cavity; and water supply and drainage pipelines are arranged in other multi-ribbed cavities.
2. The bidirectional multi-ribbed floor structure of claim 1, wherein no prefabricated multi-ribbed bottom plate is disposed at the center of the bottom of the prefabricated multi-ribbed beam, and the prefabricated multi-ribbed beam and the prefabricated multi-ribbed top plate at the center form a vent communicated with the outside; the prefabricated multi-ribbed beam is provided with a vent hole, and the multi-ribbed cavity is communicated with the vent hole through the vent hole.
3. The bi-directional multi-ribbed floor structure of claim 1, wherein said pre-fabricated multi-ribbed beams include a plurality of parallel spaced-apart primary beams and a plurality of parallel spaced-apart secondary beams, the primary beams being arranged in a criss-cross relationship with the secondary beams; the main beam, the secondary beam, the prefabricated multi-ribbed top plate and the prefabricated multi-ribbed bottom plate on the two outer sides of the prefabricated multi-ribbed beam are enclosed to form an equipment cavity.
4. The bidirectional multi-ribbed floor structure of claim 1, wherein said prefabricated multi-ribbed floor slab is a prefabricated ceiling slab, integrated with lighting fixtures and fire-fighting equipment.
CN202122406724.4U 2021-09-30 2021-09-30 Novel integrated two-way close rib superstructure structure of prefabricated building integration Active CN216109240U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122406724.4U CN216109240U (en) 2021-09-30 2021-09-30 Novel integrated two-way close rib superstructure structure of prefabricated building integration

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122406724.4U CN216109240U (en) 2021-09-30 2021-09-30 Novel integrated two-way close rib superstructure structure of prefabricated building integration

Publications (1)

Publication Number Publication Date
CN216109240U true CN216109240U (en) 2022-03-22

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ID=80690766

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122406724.4U Active CN216109240U (en) 2021-09-30 2021-09-30 Novel integrated two-way close rib superstructure structure of prefabricated building integration

Country Status (1)

Country Link
CN (1) CN216109240U (en)

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