Assembled low-energy consumption integrated wall

A low-energy, prefabricated technology, applied in the field of building materials, can solve problems such as thermal insulation, heat insulation, sound insulation, and moisture-proof performance are not outstanding, masonry wall construction is labor-intensive, and cement slurry is not allowed to be prepared. Excellent performance, superior cross-section performance, and shortened construction period

Pending Publication Date: 2017-08-29
广东多筑科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Nowadays, the walls in the construction industry mainly include walls made of solid bricks or hollow blocks, walls cast on site and plate walls. The construction of masonry walls is labor-intensive, takes up a lot of human resources, and the process is cumbersome and the construction period is long. Long, this kind of construction method is relatively traditional, which can no longer meet the rapid development of the real estate industry today. On-site casting is the most widely used construction method today, but this method requires special equipment to pour grout on site. According to national laws and regulations, urban areas It is not allowed to prepare cement slurry to avoid dust pollution in urban air. Therefore, cement slurry is generally prepared outside the city, and then transported to the construction site by tank truck. It needs to be poured on site during pouring, and the second pouring is required after the first pouring is completed. , The third pouring, the process is cumbersome, the construction period is long, and the energy consumption is large; although the slab wall improves the construction efficiency, the strength of the wall is low, and there are serious safety hazards, and the slab wall cannot be pre-embedded. , wire pipe grooves, etc., it is necessary to cut grooves on the wall surface as a whole. Cutting grooves will seriously damage the original bearing layer of the board body and reduce the strength of the wall body; As a result, its comprehensive performance is poor, and these materials are not outstanding in thermal insulation, heat insulation, sound insulation, moisture resistance, etc., and it is difficult to meet people's increasing requirements for living conditions. Therefore, there are two or three types of structural panels on the market. Although these walls save the process and shorten the construction period to a certain extent, but because the structure and function layer are too simple, the wall cannot achieve the ideal thermal insulation effect, so a multi- A new type of wall building material with integrated functions and good heat insulation effect, which can even achieve the effect of warm in winter and cool in summer

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0029] see figure 1 , in this embodiment, a prefabricated low energy consumption integrated wall of the present invention includes a mortar board 1, a structural board 3, a sound insulation board 5, a moisture-proof film 4, an airgel board 2 and an interior decoration board 6, and the mortar board 1 Including reinforcement mesh 11 and pouring mortar, wherein the reinforcement mesh 11 can be made by bundling multi-layer staggered peak-stacked wavy steel bars, and the wavy-shaped steel bars are arranged in parallel, cross-arranged and staggered-peak stacked to form a sparse structure with a certain thickness. Cuboid shape, when wavy steel mesh 11 is bound in the present embodiment, the crest of a wavy steel bar along the thickness direction corresponds to the trough of another wavy crest, and the crest is tangent to the trough and bound and fixed, and the bound steel mesh 11 is placed In the pouring tank, the mortar can be directly poured into the cuboid formed by the steel mesh...

Embodiment 2

[0034] see Figure 5 , in this embodiment, each functional layer of the wall is gypsum board 61, structural board 3, sound insulation board 5, moisture-proof film 4, structural board 3, airgel board 2, mortar board 1 sequentially from the inner side of the wall body to the outer side, Among them, the wall trim panel 6 is set as gypsum board 61. Gypsum board 61 is a common decoration material with light weight, high strength, thin thickness, convenient processing, sound insulation, heat insulation and fire prevention. Gypsum board 61 As the innermost structure of the wall, the decoration cost can be greatly saved, and the user can move in as soon as possible; and the steel mesh 11 in the mortar board 1 in this embodiment is a single-layer steel mesh 11 formed by straight steel bars arranged in parallel and vertically intersected. A column is set at the intersection of the single-layer steel mesh 11 to connect two layers of the same single-layer steel mesh 11 to form a three-dim...

Embodiment 3

[0036] see Image 6 , in order to further save costs and optimize the process flow, in this embodiment, the mortar board is poured with a combination of trapezoidal steel mesh 11 and flat mesh 12. When pouring, the mortar is more likely to fill the gaps in the steel mesh and shorten the process cycle of the mortar board. Other than that, other structures of this embodiment are the same as those of Embodiment 1.

[0037] The advantages of the present invention are:

[0038] 1. The assembled low-energy-consumption integrated wall body provided by the present invention is convenient and quick to assemble, and is composed of several functional layers. Each layer of wall panels has at least one outstanding performance. These walls composed of several layers of wall panels The comprehensive performance of the body is more superior, and the user experience is more comfortable. It greatly reduces the difficulty of construction, shortens the construction period, not only meets the st...

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Abstract

The invention discloses an assembled low-energy consumption integrated wall. The assembled low-energy consumption integrated wall comprises a mortar board, a thermal insulation plate moisture-proof film, a structural board, a sound insulation board, an aerogel plate and an interior board. The mortar board comprises a reinforcing mesh and filling mortar. The bonded reinforcing mesh is put into a casting basin and the filling mortar is added into the casting basin so that a mortar plate is obtained. The aerogel plate is tightly close to the mortar board. The sound insulation board comprises a keel and glass fibers. Gaps formed by the keel are filled with the glass fibers. The keel is a skeleton prepared from C-shaped section steel connected through bolts and nuts according to a wall structure. The structural interior board is arranged at the innermost layer of the wall. The mortar board, the structural board, the moisture-proof film, the sound insulation board, the aerogel plate and the interior board of the wall are fastened to form an integral body through elf-drilling screws. The wall has the advantages of low energy consumption, low pollution, short construction period and excellent heat insulation performances.

Description

technical field [0001] The invention relates to the field of building materials, in particular to an assembled low-energy-consumption integrated wall. Background technique [0002] Nowadays, the walls in the construction industry mainly include walls made of solid bricks or hollow blocks, walls cast on site and plate walls. The construction of masonry walls is labor-intensive, takes up a lot of human resources, and the process is cumbersome and the construction period is long. Long, this kind of construction method is relatively traditional, which can no longer meet the rapid development of the real estate industry today. On-site casting is the most widely used construction method today, but this method requires special equipment to pour grout on site. According to national laws and regulations, urban areas It is not allowed to prepare cement slurry to avoid dust pollution in urban air. Therefore, cement slurry is generally prepared outside the city, and then transported to ...

Claims

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Application Information

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IPC IPC(8): E04C2/30E04C2/52E04B2/00
CPCE04B2/00E04C2/30E04C2/46E04C2/521
Inventor 蔡毅华
Owner 广东多筑科技有限公司
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