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Process for mounting splicing type low-carbon heat insulating energy-saving plate

An installation process and energy-saving panel technology, which is applied in covering/lining, building, building structure, etc., can solve the problems of not being as strong as pre-embedded, waste of skeleton materials, and complicated construction technology, so as to reduce garbage removal and reduce The effect of project cost and perfect visual effect

Inactive Publication Date: 2011-12-21
易科美德(天津)环保建材有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The latter is installed in an accurate position, but it takes a lot of work to drill holes, and its firmness is not as good as that of pre-embedded
The above-mentioned two types of dry-hanging type buildings have complex construction techniques for the external eaves and walls, and the connection between the connectors and the decorative materials requires relatively high technical conditions for the operators. Especially, it is time-consuming and damaging to make dry-hanging holes on the side walls of marble. Its strength; the skeleton material of the curtain wall is wasteful, and the construction cost is very high

Method used

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  • Process for mounting splicing type low-carbon heat insulating energy-saving plate
  • Process for mounting splicing type low-carbon heat insulating energy-saving plate
  • Process for mounting splicing type low-carbon heat insulating energy-saving plate

Examples

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Embodiment Construction

[0039]The specific implementation manner of the present invention will be described in detail below in conjunction with the accompanying drawings and preferred embodiments. As shown in the figure, the plug-in low-carbon thermal insulation energy-saving board 4 is mainly composed of a decorative surface layer, a surface layer, a middle layer of glass fiber mesh, a low-carbon plate, stainless steel mesh, a bottom layer of glass fiber mesh, a solid-resistant adhesive layer 7 and SPS extrusion insulation. The plates are connected in turn to form a whole plate. There are several hollow plug-in tubes in the middle of the low-carbon plate 1 , the insertion pipe radially runs through the middle of the low-carbon plate, and its cross-sectional shape is a rectangular tube shape, made of aluminum alloy, and the outer surface of the insertion pipe is provided with several ribs 2 , can ensure that the plug-in tube is firmly connected with the low-carbon plate. The splice tube and stainle...

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Abstract

The invention relates to a process for mounting a splicing type low-carbon heat insulating energy-saving plate. The process is characterized by comprising the following specific steps of: processing a base layer; hanging a wire; anchoring a customized connecting hanging piece A; mounting a low-carbon heat insulating energy-saving plate of a bottom layer starting position; mounting a low-carbon heat insulating energy-saving plate; and cleaning the surface of the low-carbon heat insulating energy-saving plate, wherein a layer construction method from top to bottom is adopted during the installation. The invention has the advantages that the process for mounting the low-carbon heat insulating energy-saving plate is simple and quick; a special adjustable dry hanging connecting piece is matched; and a hollow splicing pipe is pre-embedded in a surface material decoration layer to ensure that the mounting process is firm and reliable and saves labor and time, thereby the construction period is shortened, and the mounting cost is greatly reduced.

Description

technical field [0001] The invention belongs to building materials, in particular to an installation process of a plug-in low-carbon thermal insulation and energy-saving board. Background technique [0002] It is widely used to install marble decorative surface or glass curtain wall on the eaves wall of the building. The dry-hanging process of marble decorative surface is to use corrosion-resistant bolts and corrosion-resistant flexible connectors to dry-hang marble, granite and other decorative stones on the outer surface of the building structure, leaving a gap of 40-50mm between the stone and the structure. cavity. The veneer made by this process is allowed to produce an appropriate amount of displacement under the action of wind and earthquake forces to absorb part of the wind and earthquake forces without cracks and shedding. When the wind and earthquake force disappear, the stone will reset with the structure. Compared with the traditional wet work process, this pro...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04F13/21E04F13/075
Inventor 李欣涛陈栋
Owner 易科美德(天津)环保建材有限公司
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