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Inorganic functional coating for degrading formaldehyde by negative ions and preparation method of coating

A technology of inorganic functional coatings and negative ions, applied in the field of materials, can solve the problems that inorganic coatings cannot achieve the best effect, affect the release effect of negative ions, and the number of negative ions released is limited, and achieves high thermal hardness, enhanced cross-linking density, high The effect of peel strength

Active Publication Date: 2015-02-25
华夏贝能(北京)生态科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] There have been researches on inorganic coatings capable of releasing negative ions in the prior art, but the negative ion components added in most inorganic coatings are limited in the number of releasing negative ions, and the cost is high. The selection of raw materials for inorganic coatings and the relationship between raw materials The combination cannot achieve the best effect, which will affect the release effect of negative ions and the performance of the coating

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0065] An inorganic functional coating for degrading formaldehyde by negative ions, the coating is composed of component A and component B, wherein the raw materials and weight ratio of component A are as follows,

[0066] Yttria stabilized zirconia powder 2%;

[0067] Aluminum oxide powder 2%;

[0068] Silicon fume 2%;

[0069] Silicon carbide powder 2%;

[0070] Shell powder 5%;

[0071] Ground calcium carbonate powder 10%;

[0072] Coral Pink 1%;

[0073] Pearl powder 1%;

[0074] Kaolin 1%;

[0075] Bentonite 1%;

[0076] Carbon fiber 0.5%;

[0077] Hydroxyethylcellulose 0.8%;

[0078] Sodium hexametaphosphate 0.2%;

[0079] Zinc powder 5%;

[0080] Light calcium carbonate powder 10%;

[0081] Rutile titanium dioxide 1%;

[0082] Negative ion powder 2%

[0083] Talc powder 5%;

[0084] Diatomaceous earth 5%;

[0085] Retarder 0.3%;

[0086] Defoamer 0.2%; deionized water balance;

[0087] The sum of the distribution ratios of the groups in A above is 100%; ...

Embodiment 2

[0108] An inorganic functional coating for degrading formaldehyde by negative ions, the coating is composed of component A and component B, wherein the raw materials and weight ratio of component A are as follows,

[0109] Yttria stabilized zirconia powder 3%;

[0110] Aluminum oxide powder 3%;

[0111] Silicon fume 3%;

[0112] Silicon carbide powder 3%;

[0113] Shell powder 10%;

[0114] Ground calcium carbonate powder 15%;

[0115] Coral Pink 2%;

[0116] Pearl powder 2%;

[0117] Kaolin 5%;

[0118] Bentonite 5%;

[0119] Carbon fiber 0.8%;

[0120] Hydroxyethylcellulose 0.8%;

[0121] Sodium hexametaphosphate 0.5%;

[0122] Zinc powder 10%;

[0123] Light calcium carbonate powder 15%;

[0124] Rutile titanium dioxide 3%;

[0125] Negative ion powder 6%

[0126] Talc powder 5%;

[0127] Diatomaceous earth 5%;

[0128] Defoamer 0.2%; deionized water balance;

[0129] The sum of the distribution ratios of the groups in A above is 100%;

[0130] The raw mat...

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Abstract

The invention relates to an inorganic functional coating for degrading formaldehyde by negative ions and a preparation method of the coating. The coating comprises a component A and a component B, wherein the component A contains negative ion powder. The coating is high in abrasion resistance, hardness and high-temperature hot hardness, adhesive force and peeling strength and can be abraded for 9 hours, cross-linking density is greatly enhanced and compactness of the coating is increased as the coating is compounded with inorganic materials with different particle sizes, gaps among large-particle-size raw materials are filled up as the raw materials with different particle sizes are mixed, thermal stress dispersion among the large-particle-size raw materials is absorbed and buffered by small-particle-size raw materials, thermal stress concentration of the small-particle-size raw materials is resisted and isolated by the large-particle-size raw materials, the coating is environment-friendly and green, VOC (volatile organic compound) is avoided, a large number of negative ions can be generated, and the coating is superior to other products in the field.

Description

technical field [0001] The invention belongs to the field of materials, and in particular relates to an inorganic functional coating for anion-degrading formaldehyde and a preparation method thereof. Background technique [0002] As early as the 1970s, European scientists conducted a comprehensive and systematic study on the impact of indoor air and pointed out that among more than 500 organic substances detected from indoor air, there were more than 20 carcinogens. According to statistics in the World Health Organization's "World Health Report", nearly half of the world's people are exposed to indoor pollution. Patients suffering from respiratory diseases due to indoor environmental pollution account for 36% of the world's population, and chronic disease patients account for 23%. and lung cancer patients accounted for seventeen per thousand. The Indoor Pollution Detection and Observation Center of the China Interior Decoration Association has learned that among the many de...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D1/04C09D7/12
Inventor 朱胜美张晟玮
Owner 华夏贝能(北京)生态科技有限公司
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