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Cast-in-situ hollow floor with pores formed by combined reticular box-shaped component

A hollow floor and combined technology, which is applied in the direction of building components, floor slabs, building structures, etc., can solve the problems of poor integrity of the filling body, easy damage, heavy filling mass, and high control precision.

Inactive Publication Date: 2015-01-28
HUNAN BDF ENERGY SAVING TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When the "T" shaped stress section is used, although the buoyancy is reduced, there is no designed stress reinforcement between the bottom of the filling body and the hollow floor formwork, and a layer of crack-resistant steel mesh must be applied separately, and full-length reinforcement and Defects such as fixed spacer, heavy filling, inconvenient production and transportation, large volume and easy damage of filling
[0004] At the same time, the applicant invented a method of making cavity components using a mechanical mold system (ZL201110258028.1), which realized the mechanized production of hole-forming components for hollow floors; solved the problems of heavy filling, inconvenient production and transportation, and overall filling The problem of poor performance and easy damage, but the buoyancy has not been completely solved; the applicant also invented a hollow floor made of reinforced foam composite filler (ZL201110332999.6), this technology solves the problem of existing technology of cast-in-place hollow floor Displacement, isolation, pads, fixing the filling body with long steel bars, and easy damage; at the same time, it has the advantages of fast production speed, high production efficiency, low cost, convenient construction, and can prevent the steel bars from falling into the plastic foam filling components. engineering hidden dangers
However, since the plastic foam filling components are organic materials, the combination of organic materials and inorganic materials has high control accuracy, the overall buoyancy increases, and the formed hollow floor is essentially solid, which affects the storage of solar heat and the transmission of thermal wind energy. Or the defect of multi-functional comprehensive utilization of dark smoke exhaust pipes for ventilation ducts and fire protection

Method used

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  • Cast-in-situ hollow floor with pores formed by combined reticular box-shaped component
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  • Cast-in-situ hollow floor with pores formed by combined reticular box-shaped component

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Embodiment Construction

[0030] The invention will be further described below in conjunction with the accompanying drawings.

[0031] figure 1 It is a sectional view of the combined netted box-shaped member of the first embodiment of the present invention, as figure 1 As shown, the combined reticulated box-shaped member is composed of a composite plate A1 and a reticulated body A2. The combined reticulated box-shaped component A includes box top 1, box bottom 2 and box body 3. Box top 1 and box bottom 2 are composite panels A1 made of concrete mortar and reinforcing materials under the action of mechanical molds, according to architectural design requirements , choose composite panels A1 of different shapes and specifications. The mesh body A2 is formed by the action of galvanized steel plate on special mechanical equipment. The mesh body A2 includes the mesh plate A21, the reinforcing rib A22 and the connecting piece A23, and the mesh body A2 is connected into a cylindrical mesh body. The mesh bod...

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Abstract

The invention provides a cast-in-situ hollow floor with pores formed by a combined reticular box-shaped component. The cast-in-situ hollow floor comprises a reinforced concrete girder or a profile steel concrete girder, a reinforced concrete ribbed beam, an upper flange plate, a lower flange plate and the combined reticular box-shaped component, wherein the combined reticular box-shaped component comprises a box roof, a box body and a box bottom; the box body and the box bottom are made of reticular bodies; reinforcing ribs of the reticular bodies are vertically placed; each reticular body comprises a reticular plate, the reinforcing rib and a connecting piece, which constitute an integral structure; the lower flange plate is directly compounded with the reticular bodies at the box bottom of the combined reticular box-shaped component. The cast-in-situ hollow floor with the pores formed by the combined reticular box-shaped component adopts the unsealed combined reticular box-shaped component to substitute the existing fully-sealed hollow fillers and solid fillers as the cast-in-situ hollow floor pore-forming technology. The cast-in-situ hollow floor with the pores formed by the combined reticular box-shaped component is beneficial to realization of energy conservation integration of a building and the multifunctional use of hollow floor.

Description

technical field [0001] The invention relates to a cast-in-place hollow floor with holes formed by non-centering hole-forming components, in particular to a cast-in-situ hollow floor with holes formed by combined net-shaped box-shaped components. Background technique [0002] At present, in the technical field of cast-in-place reinforced concrete hollow floors, fully-sealed filler components are usually used to cast hole-filled hollow floors, such as ZL02282207.0 "thin-walled box for pouring hollow-web slab thin-walled box" declared by the inventor. According to the patent, the inorganic gelling material is used to make a sealed filling body to realize the hollow floor, and a non-centering and hole-forming filling body is provided for the realization of the cast-in-place hollow floor. However, due to the hollow filling body made of pure inorganic cementitious material, the buoyancy of the sealed hollow filling body is large, and the cement cementitious material has a high den...

Claims

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Application Information

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IPC IPC(8): E04B5/36E04B5/48
Inventor 王海崴李国强王本淼
Owner HUNAN BDF ENERGY SAVING TECH
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