Multifunctional heat insulating plaster

A heat insulation and mortar technology, applied in the field of building materials, can solve problems such as low flatness, poor comprehensive benefits, complex production process, etc., and achieve the effects of improving hydration degree, improving construction efficiency, and reducing white pollution

Inactive Publication Date: 2010-03-31
奥捷科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] 2. The existing heat insulation materials are mainly due to poor construction performance, and the construction process must be formed by two or more times of plastering
Although thermal insulation materials are selected from different materials, they all have some common problems: large volume, poor thermal insulation performance, high water absorption, and poor comprehensive benefits when used in non-load-bearing walls of buildings; and the production process is complicated and the cost is high.
There are also problems of polystyrene thermal insulation composite wall surface damage, low flatness, hollow wall and cracking

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] A thermal insulation mortar, its composition and weight content are: 1 part of polystyrene foam particle B, 9 parts of composite dry powder material A, 8 parts of water; wherein the component and weight content of composite dry powder material A are: cement 52%, silica-alumina glass hollow sphere material 40%, water reducing agent 0.6%, air-entraining agent 0.03%, modifier 5%, fiber 0.47%, tackifier 1.9%. Preparation method: Composite dry powder A and polystyrene foam particles B are mixed separately in advance and packaged in a fixed amount, sent to the construction site to be mixed in proportion, stirred evenly and added with water before use. The polystyrene foam particles B used are spherical and other irregular shapes, the particle size is 2-5mm, and the bulk density is 18.6kg / m 3 , the silica-alumina glass hollow sphere material is produced by WISCO, and its specific surface area is 4235m 2 / kg, the particle size of the sphere is 0.5μm~60μm, the content of silico...

Embodiment 2

[0026] A thermal insulation mortar, its composition and weight content are: 1 part of polystyrene foam particle B, 13 parts of composite dry powder material A, 14 parts of water; wherein the composition and weight content of composite dry powder material A are: cement 69%, silica-alumina glass hollow sphere material 24.15%, water reducing agent 1.1%, air-entraining agent 0.05%, modifier 3%, fiber 2%, tackifier 0.7%. Preparation method: Composite dry powder A and polystyrene foam particles B are mixed separately in advance and packaged in a fixed amount, sent to the construction site to be mixed in proportion, stirred evenly and added with water before use. The polystyrene foam particles B used are spherical and other irregular shapes, the particle size is 2-5mm, and the bulk density is 20.3kg / m 3 , the silica-alumina glass hollow sphere material is produced by WISCO, and its specific surface area is 4320m 2 / kg, the particle size of the sphere is 0.5μm~60μm, the content of si...

Embodiment 3

[0028] A thermal insulation mortar, its composition and weight content are: 1 part of polystyrene foam particle B, 9 parts of composite dry powder material A, 8 parts of water; wherein the component and weight content of composite dry powder material A are: cement 60%, silica-alumina glass hollow sphere material 29%, water reducer 1.2%, air-entraining agent 0.03%, modifier 5%, fiber 3.77%, tackifier 1%. Preparation method: Composite dry powder A and polystyrene foam particles B are mixed separately in advance and packaged in a fixed amount, sent to the construction site to be mixed in proportion, stirred evenly and added with water before use. The polystyrene foam particles B used are spherical and other irregular shapes, the particle size is 2-5mm, and the bulk density is 19.1kg / m 3 , the silica-alumina glass hollow sphere material is produced by WISCO, and its specific surface area is 4231m 2 / kg, the particle size of the sphere is 0.5μm~60μm, and the content of silicon oxi...

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PUM

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Abstract

The invention relates to a multifunctional heat insulating plaster comprising a composite dried powder A and a polystyrene foam granule B, wherein the composite dried powder A comprises cement 50-80%,aluminosilicate glass hollow sphere material 10-40%, air-entrainer 0.005-0.05%, modifier 1-5%, water reducing agent 0.2-1.2%, fabric 0.1-5%, viscosifying agent 0.5-2%, the polystyrene foam granule Bis prepared from finished expanded materials or reclaimed discarded polyphenylacetylene boards through slacking.

Description

1. Technical field: [0001] The invention belongs to building materials, and in particular relates to a thermal insulation mortar. 2. Background technology: [0002] With the development of high-rise buildings and large-bay buildings, the requirements for lightness and thermal insulation performance of wall materials are getting higher and higher, so there have been wall insulation materials filled with minerals such as perlite and gypsum; existing insulation materials There are a large number of harmful substances in the formula, such as asbestos and other minerals, and the overall performance of the material such as heat insulation, anti-shrinkage, and impermeability is poor, and the water absorption is large; the traditional process has high transportation costs, short storage period, and inaccurate on-site ingredient measurement , Inconvenient construction and other technical and economic problems. [0003] There have been a lot of research and reports on thermal insulat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B24/38C04B16/08C04B14/22
Inventor 张志峰周强郝先成
Owner 奥捷科技股份有限公司
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