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High temperature-resisting high-hardness waterproof wall coating and preparation method thereof

A technology with high hardness and high temperature resistance, applied in the field of coatings, can solve the problems of easy fading, aging, yellowing, etc., achieve the effect of reducing process steps, increasing crosslinking density, and preventing the system from being too brittle

Inactive Publication Date: 2017-06-20
广东至诚紫光新材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, most of the interior and exterior decoration materials on the market are organic materials or organic-inorganic composite materials, which contain a large amount of volatile organic compounds (VOC), such as formaldehyde, benzene and other toxic substances, and are easy to fade, yellow, mold, and fall off after being exposed to moisture. And there are problems of easy aging and flammable safety hazards

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0058] 25 grams of Portland cement, 6 grams of montmorillonite, 3 grams of cellulose ether, 8 grams of polyoxyethylene polyoxypropanol amine ether, 4 grams of KH-5604, polyquaternium modified sulfonated polyetheramine-overrun Add 6 grams of polypyrrolene copolymer, 3 grams of 1,3-dibromopropane, 6 grams of graphene oxide and 3 grams of chitosan into a mixer and mix thoroughly for 25 minutes before discharging, and the stirring speed is 600 rpm ;

[0059] The preparation method of described polyquaternium modified sulfonated polyetheramine-hyperbranched polypyrrole copolymer is:

[0060] (1) Preparation of polyquaternium salt

[0061] In a 1000ml dry three-neck flask, add 0.1mol of 1,12-dibromododecane, 0.092mol of 1,4-dimethylpiperazine and 80ml of solvent dimethyl sulfoxide, and react at 50°C for 5 hours, Then add 0.0025mol of N-methylimidazole and 0.0025mol of N-methylmorpholine, and react at 50°C for 5 hours, then distill off the solvent under reduced pressure to obtain p...

Embodiment 2

[0073] 25 grams of Portland cement, 6 grams of montmorillonite, 3 grams of cellulose ether, 8 grams of polyoxyethylene polyoxypropanol amine ether, 4 grams of KH-5604, polyquaternium modified polyetheramine-hyperbranched poly Add 6 grams of pyrolone copolymer, 3 grams of 1,3-dibromopropane, 6 grams of graphene oxide, and 3 grams of chitosan into a mixer and mix thoroughly for 25 minutes before discharging, and the stirring rate is 600 rpm;

[0074] The preparation method of described polyquaternary ammonium salt modified polyether amine-hyperbranched polypyrrole copolymer is:

[0075] (1) Preparation of polyquaternium salt

[0076] In a 1000ml dry three-neck flask, add 0.1mol of 1,12-dibromododecane, 0.092mol of 1,4-dimethylpiperazine and 80ml of solvent dimethyl sulfoxide, and react at 50°C for 5 hours, Then add 0.0025mol of N-methylimidazole and 0.0025mol of N-methylmorpholine, and react at 50°C for 5 hours, then distill off the solvent under reduced pressure to obtain poly...

Embodiment 3

[0086] 25 grams of Portland cement, 6 grams of montmorillonite, 3 grams of cellulose ether, 8 grams of polyoxyethylene polyoxypropanolamine ether, 4 grams of KH-5604, sulfonated polyetheramine-hyperbranched polypyrrole copolymer 6 grams, 3 grams of 1,3-dibromopropane, 6 grams of graphene oxide and 3 grams of chitosan were added to the mixer and mixed thoroughly for 25 minutes, then the material was discharged, and the stirring speed was 600 rpm;

[0087] The preparation method of described sulfonated polyetheramine-hyperbranched polypyrrole copolymer is:

[0088] (1) Preparation of amino-terminated polyetheramine

[0089] Add 95 grams of epoxy resin E51, 0.26 mol of benzylamine and 700 grams of dimethyl sulfoxide in sequence to a 1000 mL dry three-necked bottle, protect with nitrogen and magnetically stir; after stirring at room temperature for 1 hour, heat up to 95°C for 6 hours , After the reaction, cool down to room temperature, and quickly pour it into 2000mL deionized wa...

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Abstract

The invention discloses a high temperature-resisting high-hardness waterproof wall coating which comprises portland cement, imvite, cellulose ether, polyoxyethylene polyoxypropylene glycol ethers, KH-560, polyquaternary amine modified sulfonated polyether amine-hyperbranched polypyrrolone copolymer, 1,3-dibromopropane, graphene oxide and chitosan. The invention also discloses a preparation method for the high temperature-resisting high-hardness waterproof wall coating.

Description

technical field [0001] The invention belongs to the technical field of coatings, and more specifically, the invention relates to a high-temperature-resistant high-hardness waterproof wall coating and a preparation method thereof. Background technique [0002] With the progress of society, the development of science and technology, and the continuous enhancement of people's awareness of environmental protection, people's requirements for house decoration are getting higher and higher, not only needing to be beautiful and beautiful, but also requiring environmental protection and health. However, most of the interior and exterior decoration materials on the market are organic materials or organic-inorganic composite materials, which contain a large amount of volatile organic compounds (VOC), such as formaldehyde, benzene and other toxic substances, and are easy to fade, yellow, mold, and fall off after being exposed to moisture. And there are problems of easy aging and flammab...

Claims

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Application Information

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IPC IPC(8): C04B28/04C08G81/00C04B111/27
CPCC04B28/04C04B2111/00482C04B2111/27C08G81/00C04B14/104C04B24/383C04B24/32C04B24/166C04B24/005C04B14/024C04B24/38C04B24/24
Inventor 周建兰
Owner 广东至诚紫光新材料有限公司
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