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Building energy-saving assembling module

A kind of technology for construction and shell, which is applied in the direction of buildings, building components, building structures, etc. It can solve the problems of house structure influence, poor wall flatness, and failure to reach 2cm, so as to avoid vibration and not dense, and the material performance is stable. , The effect of fire performance improvement

Pending Publication Date: 2020-12-18
乙天智能科技(天津)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, it has been found in practice that the EPS modules currently on the market have the following defects: (1) The module wall is soft as a whole before concrete pouring, which easily leads to poor flatness of the wall; (2) Due to the thickness of the wall (25cm) and the module The thickness (6cm+6cm=12cm) is limited, and the thickness of the concrete wall is 13cm, which will easily cause the concrete to be vibrated and not compacted during the construction process, causing serious problems to the house structure; the 13cm thick wall will easily make the concrete of the structural column reinforced The protective layer cannot reach 2cm, which will affect the structure of the house; (3) the energy-saving assembled module is a non-transparent formwork, and the internal concrete density cannot be detected; (4) to hang stone slabs or other heavy objects, it is easy to use long expansion screws. break through the wall

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0040] Such as figure 1 Shown, a kind of energy-saving assembly module (also can be referred to as straight mold) for straight plate building, the module of the present invention is to improve on the structure of traditional energy-saving assembly module, make the technology of self-built house more scientific, more environmental protection, Easier construction, more stable seismic performance. The module has excellent characteristics such as high strength, good thermal insulation, sound insulation, flame retardant, cold resistance, corrosion resistance, moisture resistance, and simple and quick construction.

[0041] Specifically, the energy-saving assembly module described in this embodiment is composed of an inner panel 10 and an outer panel 20, both of which are in the shape of a straight plate and made of energy-saving assembled materials.

[0042] More specifically, both inner and outer panels are composed of an inner panel 101 close to the concrete layer and an outer p...

Embodiment 2

[0057] refer to Figure 4 , the present embodiment provides an L-shaped building energy-saving assembled module (also called a corner form), the difference from Embodiment 1 is as follows: the shape of the inner panel 10 and the outer panel 20 are both L-shaped.

Embodiment 3

[0059] refer to Figure 5 , the present embodiment provides an L-shaped building energy-saving assembly module (also called a three-way mold), the difference from Embodiment 1 is as follows: the shape of the outer plate 20 is straight, and the shape of the inner plate 10 is L-shaped. .

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Abstract

The invention provides a building energy-saving assembling module. The building energy-saving assembling module comprises an inner side plate, an outer side plate and a connecting bridge arranged between the inner side plate and the outer side plate and used for connecting the inner side plate and the outer side plate, wherein the inner side plate and the outer side plate are each composed of an inner plate close to a concrete layer and an outer plate away from the concrete layer, the inner plates and the outer plates are arranged in a staggered mode in the vertical direction and the horizontal direction so that rabbets can be formed in the four edges of the side plates, a plurality of first protrusions are arranged at the tops of the inner plates, and first grooves matched with the firstprotrusions in shape and size are formed in the bottoms of the inner plates. According to the module, the structure of a traditional energy-saving splicing module is improved, so that the process of aself-built house is more scientific, more environmentally friendly, easier to construct and more stable in anti-seismic property, the module has the excellent characteristics of high strength, good thermal insulation, sound insulation, flame retardance, cold resistance, corrosion resistance, moisture resistance, simplicity, convenience and quickness in construction and the like.

Description

technical field [0001] The invention belongs to the technical field of building materials, and in particular relates to an energy-saving assembled module for building. Background technique [0002] EPS is the abbreviation of polystyrene foam. It is a light-weight high molecular polymer. It uses polystyrene resin to add foaming agent, and heats it to soften at the same time to generate gas to form a foam with a rigid closed-cell structure. The energy-saving assembled module used in the building is a composite wall formed by pouring concrete in the center and plastering the surface by using the flame-retardant polystyrene foam plastic module as a formwork and thermal insulation layer. During the construction process, energy-saving EPS is added layer by layer to form an EPS module building. The EPS module building is made of flame-retardant polystyrene foam plastic modules as a template and insulation layer, and the center core is poured with concrete surface, plastered or radi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B2/86E04B1/94E04B1/80
CPCE04B1/80E04B1/942E04B2/8617
Inventor 李广普
Owner 乙天智能科技(天津)有限公司
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