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Sound-absorbing fireproof paint

A technology of fire-resistant coatings and average particle size, applied in fire-resistant coatings, coatings, etc., can solve the problems that can not really reduce noise, product weather resistance, water resistance can not meet the requirements, can not prevent fire, etc., to improve weather resistance Effect

Inactive Publication Date: 2017-10-27
楚雄佑琳生科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] (1) The weather resistance and water resistance of the product generally cannot meet the requirements;
[0004] (2) In the event of a fire, the film-forming substances of these fire-resistant coatings cannot withstand the sharply rising temperature and are quickly burned, and cannot play the role of fire prevention;
[0005] (3) Poor anti-corrosion, acid and alkali resistance, antibacterial and other properties
[0006] (4) The sound absorption effect is not ideal, and the noise cannot be really reduced

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] 20 parts by weight of attapulgite, 5 parts by weight of nano-titanium dioxide, 5 parts by weight of aeolian sand, 5 parts by weight of montmorillonite, 1 part by weight of KH-560, 1 part by weight of KH-550, 1 part by weight of Magnesium hydroxide, 1 weight part of ethanol, 1 weight part of sodium carbonate, 10 weight parts of sulfonated polyphosphazene-nano silica composite, 20 weight parts of dimethyl sulfoxide and 50 weight parts of Add the ionized water into the weightless mixer, open the flying knife to avoid adhesion and prevent uneven mixing, the mixing time is 10 minutes, and the material is discharged;

[0032] The sulfonated polyphosphazene-nano silicon dioxide composite is prepared by the following method:

[0033] In a 250 ml round bottom flask, dissolve 0.4 g of hexachlorocyclotriphosphazene and 0.91 g of 4,4'-dihydroxydiphenyl sulfone in 150 ml of acetonitrile, then add 1.1 ml of triethylamine, place at 50 ° C for ultrasonic React in a water bath for 4 h....

Embodiment 2

[0037] 20 parts by weight of attapulgite, 10 parts by weight of nano-titanium dioxide, 10 parts by weight of aeolian sand, 10 parts by weight of montmorillonite, 5 parts by weight of KH-560, 5 parts by weight of KH-550, 5 parts by weight of Magnesium hydroxide, 5 parts by weight of ethanol, 5 parts by weight of sodium carbonate, 15 parts by weight of sulfonated polyphosphazene-nano silica composite, 50 parts by weight of dimethyl sulfoxide and 100 parts by weight of Add the ionized water into the weightless mixer, open the flying knife to avoid adhesion and prevent uneven mixing, the mixing time is 10 minutes, and the material is discharged;

[0038] The sulfonated polyphosphazene-nano silicon dioxide composite is prepared by the following method:

[0039] In a 250 ml round bottom flask, dissolve 0.4 g of hexachlorocyclotriphosphazene and 0.91 g of 4,4'-dihydroxydiphenyl sulfone in 150 ml of acetonitrile, then add 1.1 ml of triethylamine, place at 50 ° C for ultrasonic React ...

Embodiment 3

[0043] 20 parts by weight of attapulgite, 8 parts by weight of nano-titanium dioxide, 7 parts by weight of aeolian sand, 7 parts by weight of montmorillonite, 3 parts by weight of KH-560, 3 parts by weight of KH-550, 3 parts by weight of Magnesium hydroxide, 3 parts by weight of ethanol, 3 parts by weight of sodium carbonate, 15 parts by weight of sulfonated polyphosphazene-nano silica composite, 35 parts by weight of dimethyl sulfoxide and 80 parts by weight of Add the ionized water into the weightless mixer, open the flying knife to avoid adhesion and prevent uneven mixing, the mixing time is 10 minutes, and the material is discharged;

[0044] The sulfonated polyphosphazene-nano silicon dioxide composite is prepared by the following method:

[0045] In a 250 ml round bottom flask, dissolve 0.4 g of hexachlorocyclotriphosphazene and 0.91 g of 4,4'-dihydroxydiphenyl sulfone in 150 ml of acetonitrile, then add 1.1 ml of triethylamine, place at 50 ° C for ultrasonic React in a...

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PUM

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Abstract

The invention discloses a sound-absorbing fireproof paint, which is prepared from the following components in parts by weight: 20 parts of attapulgite, 5-10 parts of nanometer titania, 5-10 parts of aeolian sand, 5-10 parts ofmontmorillonite, 1-5 parts of KH-560, 1-5 parts of KH-550, 1-5 parts of magnesium hydrate, 1-5 parts of ethyl alcohol, 1-5 parts of sodium carbonate, 10-25 parts of a sulfonated polyphosphazene-nano-silica complex, 20-50 parts of dimethyl sulfoxide and 50-100 parts of deionized water. The sound-absorbing fireproof paint has excellent fire resistance, flame retardant property and weather resistance and is wide in application.

Description

technical field [0001] The invention belongs to the technical field of coatings, and more specifically, the invention relates to a sound-absorbing and fire-proof coating. Background technique [0002] Sound-absorbing fireproof coating is a new type of functional coating, which can effectively reduce noise and prevent fire when coated on the surface of objects. It is widely used in tunnels, super high-rise buildings, fire-fighting equipment, military, and camping facilities. Existing sound-absorbing and fireproof coatings have the following disadvantages: [0003] (1) The weather resistance and water resistance of the product generally cannot meet the requirements; [0004] (2) In the event of a fire, the film-forming substances of these fire-resistant coatings cannot withstand the sharply rising temperature and are quickly burned, and cannot play the role of fire prevention; [0005] (3) Poor properties such as anti-corrosion, acid and alkali resistance, and antibacteria...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D185/02C09D5/18C09D7/12C08G79/025
CPCC09D185/02C08G79/025C08K2003/2224C08K2003/2241C08L2201/02C08L2205/025C08L2205/03C09D5/18C08L63/00C08K13/02C08K3/346C08K3/22C08K3/36C08L85/02C08K3/04
Inventor 容七英章慧芹
Owner 楚雄佑琳生科技有限公司