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Manufacture method and structure of composite cellular floor or roof

A manufacturing method and honeycomb-shaped technology, which is applied to floors, building components, building structures, etc., can solve problems such as insufficient support of hollow floor structures, reduced strength of floors and roofs, and poor impact and twisting force to ensure pouring Effects of mass, weight reduction, and strength improvement

Active Publication Date: 2011-01-12
珏石屋生态科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Its disadvantages are that the hollow structure adopted by most technologies is mostly rectangular, the structure is not stable enough, the impact resistance is poor, and the pouring consumes a large amount of formwork, the construction period is long, and the noise and sewage dust pollution are serious
Most of the materials used are light materials such as wood boards and plastics. Although the self-weight is reduced, the strength of the materials will decrease after long-term use, or even rot, resulting in a decrease in the strength of the floor and roof.
Due to problems in structure and materials, some existing hollow floor structures have insufficient support and low earthquake resistance, so they cannot be used for a long time

Method used

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  • Manufacture method and structure of composite cellular floor or roof
  • Manufacture method and structure of composite cellular floor or roof
  • Manufacture method and structure of composite cellular floor or roof

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Embodiment Construction

[0023] Embodiments of the invention. The manufacturing method of composite honeycomb floor and roof comprises the following steps:

[0024] a. On a vacant operating platform, prefabricate the reinforced concrete floor 1 and panel 3 respectively according to the designed building unit area, pour the floor 1 first, and lay the isolation film after the floor 1 is initially set, and then pour the same size For the panel 3, steel bars 6 are reserved around the two panels, and after the reinforced concrete is poured and solidified, the bottom panel 1 and the panel 3 are obtained. The length of the reserved reinforcing bar 6 is the sum of the thickness of the two-layer slab plus the height of the stone honeycomb member in the middle.

[0025] b. Cut the stone into stone slabs according to the specifications required by the designed honeycomb, and bond the stone slabs according to the shape of the honeycomb to form a stone honeycomb component 2, such as figure 2 shown.

[0026] c....

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Abstract

The invention discloses a manufacture method and a structure of a composite cellular floor or roof. The method is characterized by comprising the following steps of: manufacturing a reinforced concrete bottom plate on a floor or a roof of a building; manufacturing the bottom plate into a stone cellular component; manufacturing a reinforced concrete panel, and putting and fixing the stone cellular component on the reinforced concrete panel; turning over the stone cellular component and the reinforced concrete panel to ensure that the stone cellular component is arranged between a reinforced concrete bottom layer and the reinforced concrete panel; and connecting a reserved reinforcing steel bar with a side steel plate of the stone cellular component to form a composite cellular supporting body so as to obtain a floor or the floor or the roof. The structure has the advantages of high structural strength and long service life and can achieve the same strength effect as the traditional reinforced concrete floor. The structure of the floor or the roof can greatly lighten the dead weight without the supporting of a floor beam and also can reach relative standards of the construction industry, thereby reducing the construction cost.

Description

technical field [0001] The invention relates to a manufacturing method and structure of a composite honeycomb floor and roof, belonging to the technical field of building floors and roofs. Background technique [0002] In the prior art, floors and roofs are usually made of reinforced concrete, which leads to the heavy weight of the floors and roofs and high construction costs. When the span of the floor is greater than 4 meters, floor beams are usually required for support. The high cost of the beam will also affect the floor height of the floor. Chinese patent discloses the structure of some hollow floors and roofs to reduce the dead weight and construction cost of the floors and roofs. Its disadvantages are that the hollow structure used by most technologies is mostly rectangular, the structure is not stable enough, the impact resistance is poor, the pouring, the consumption of formwork is large, the construction period is long, the noise, sewage and dust pollution are se...

Claims

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Application Information

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IPC IPC(8): E04B5/02E04B5/08
Inventor 王泽飞
Owner 珏石屋生态科技有限公司