Honeycomb thermal insulation mortar as well as manufacturing method and application thereof

A thermal insulation mortar and honeycomb technology, which is applied in the field of building thermal insulation materials, can solve problems affecting the popularization and application of thermal insulation mortar, increase the thickness of the external wall insulation layer, and increase the cost of the project, so as to increase the fireproof package area, enhance the thermal insulation effect, and reduce the cost of the project. The effect of cost

Active Publication Date: 2017-06-30
江苏艾菲特环保材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] With the improvement of building fire protection requirements, A-level thermal insulation material inorganic thermal insulation mortar is widely used in external wall thermal insulation projects due to its excellent fireproof performance. However, due to its relatively high thermal conductivity and poor thermal insulation effect, the thickness of the external wall thermal insulation layer The increase will also bring about the increase of the project cost, the continuous fall of the external wall, serious cracking and falling off, the anchor nail is too long, and the anchor is not reliable; while the organic thermal insulation mortar has a low thermal conductivity and excellent thermal insulation effect, but its fire performance is poor.
[0008] These defects have seriously affected the promotion and application of traditional thermal insulation mortar, so the market urgently needs to develop a new type of thermal insulation mortar product with excellent fire resistance, low thermal conductivity and excellent thermal insulation performance.

Method used

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  • Honeycomb thermal insulation mortar as well as manufacturing method and application thereof

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0071] As described in this embodiment, a honeycomb thermal insulation mortar, the raw material formula is measured in parts by weight, and includes the following components:

[0072] Silica powder: 120 parts;

[0073] Silica airgel: 5 parts;

[0074] Polystyrene particles: 14 parts;

[0075] Dispersible latex powder: 4.85 parts;

[0076] Cellulose hydroxypropyl methyl ether: 0.15 parts;

[0077] Foaming agent: 3 parts.

[0078] Described in this embodiment, the particle size is 325 mesh silicon micropowder as an example for illustration;

[0079] Described in the present embodiment, adopt particle size to be that 400 order dispersible latex powders are taken as an example to illustrate;

[0080] As described in this embodiment, cellulose hydroxypropyl methyl ether with a particle size of 400 mesh is used as an example for illustration;

[0081] As described in the present embodiment, the foaming agent with a particle size of 200 mesh is used as an example for illustrati...

Embodiment 2

[0088] This embodiment is improved on the basis of Embodiment 1, and the content described in Embodiment 1 is also included in this embodiment, and will not be described in detail here.

[0089] As described in this embodiment, a honeycomb thermal insulation mortar, the raw material formula is measured in parts by weight, and includes the following components:

[0090] Silica powder: 128 parts;

[0091] Silica airgel: 5.8 parts;

[0092] Polystyrene particles: 14 parts;

[0093] Dispersible latex powder: 5 parts;

[0094] Cellulose hydroxypropyl methyl ether: 0.16 parts;

[0095] Foaming agent: 3.4 parts.

[0096] As described in this embodiment, a method for manufacturing honeycomb thermal insulation mortar comprises the following steps:

[0097] 128 parts of the microsilica powder, 5.8 parts of the silica airgel, 14 parts of the polyphenylene particles, 5 parts of the dispersible latex powder, 0.16 parts of the cellulose hydroxypropyl methyl ether and the 3.4 parts of ...

Embodiment 3

[0100] This embodiment is improved on the basis of Embodiment 1, and the content described in Embodiment 1 is also included in this embodiment, and will not be described in detail here.

[0101] As described in this embodiment, a honeycomb thermal insulation mortar, the raw material formula is measured in parts by weight, and includes the following components:

[0102] Silica powder: 110 parts;

[0103] Silica airgel: 5 parts;

[0104] Polystyrene particles: 13 parts;

[0105] Dispersible latex powder: 5.8 parts;

[0106] Cellulose hydroxypropyl methyl ether: 0.18 parts;

[0107] Foaming agent: 3.5 parts.

[0108] As described in this embodiment, a method for manufacturing honeycomb thermal insulation mortar comprises the following steps:

[0109] 110 parts of the microsilica powder, 5 parts of the silica airgel, 13 parts of the polyphenylene particles, 5.8 parts of the dispersible latex powder, 0.18 parts of the cellulose hydroxypropyl methyl ether and the 3.5 parts of ...

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Abstract

The invention relates to the field of building thermal insulation materials, in particular to honeycomb thermal insulation mortar as well as a manufacturing method and a using method thereof. The raw material formula of the honeycomb thermal insulation mortar comprises the following ingredients in parts by weight: 110-130 parts of silica powder, 5-6 parts of silica aerogel, 13-15 parts of polyphenyl granules, 3.8-5.8 parts of dispersible emulsion powder, 0.12-0.19 part of HPMC (hydroxy propyl methyl cellulose), and 3-3.5 parts of a foaming agent. The honeycomb thermal insulation mortar has the beneficial effects that the fireproof performance reaches the class A, the thermal conductivity is lower than 0.035 W/(m.k), the traditional thermal insulation mortar can be replaced, the safety performance of building fire protection is added, and an effect of building energy conservation is enhanced; the manufacturing method and the using method are simple, and problems existing in the prior art are economically and effectively solved.

Description

technical field [0001] The invention relates to the field of building thermal insulation materials, in particular to a honeycomb thermal insulation mortar and its manufacturing method and application. Background technique [0002] Insulation mortar refers to a building material that is mixed with barrier insulation material and mortar material and used to construct the insulation layer of the building surface. There are mainly two types of traditional thermal insulation mortar: inorganic thermal insulation mortar and organic thermal insulation mortar; among them, inorganic thermal insulation mortar is mainly vitrified microbead fireproof thermal insulation mortar, composite aluminum silicate thermal insulation mortar and perlite thermal insulation mortar; organic thermal insulation mortar is mainly glue Powdered polystyrene particle insulation mortar. [0003] Inorganic thermal insulation mortar is a kind of thermal insulation and energy-saving mortar material used for pain...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B38/08C04B38/02C04B28/24C04B22/06C04B14/06C04B16/08E04B1/76C04B111/28
CPCC04B14/064C04B16/08C04B22/06C04B28/24C04B38/02C04B38/08C04B38/085C04B2111/00482C04B2111/28C04B2201/20C04B2201/32C04B2201/50E04B1/762C04B38/0006C04B38/0067C04B24/24C04B24/383Y02A30/00Y02B30/90
Inventor 张宏朝贺小岭谢丽丽
Owner 江苏艾菲特环保材料有限公司
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