Self-cleaning energy-saving coating with function of purifying air and preparation method and application of self-cleaning energy-saving coating

An energy-saving coating and self-cleaning technology, applied in the field of materials, can solve the problems of powdering, cracking, peeling off of the external coating, the inability to protect the building surface for a long time, and the inability to solve oil pollution and other problems, achieving good environmental protection effect, Good stain resistance, aging resistance, good durability

Inactive Publication Date: 2018-08-31
LIONTRUNK (BEIJING) TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although traditional hydrophobic self-cleaning coatings can effectively reduce the adhesion of dust etc., as Chinese patent application CN106280822A discloses a kind of self-cleaning exterior wall coating, by pure acrylic emulsion, polyorganosiloxane, organosilicon defoamer, mica Powder, calcium carbonate, etc. are stirred, dispersed and ground, and then added with cellulose for reinforcement. Although it can reduce dust adhesion, it cannot solve the problem of oil pollution on the building surface, especially in areas with serious vehicle exhaust and factory exhaust emissions, so it cannot provide long-term protection. purpose of building surfaces
Chinese patent application CN107828288A discloses a formaldehyde-resistant interior wall water paint, which is obtained by stirring acrylic acid emulsion, MCC modified calcium ca

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] 16.00 parts by weight of deionized water, 0.15 parts by weight of antifungal agent, 0.35 parts by weight of dispersant, 1.4 parts by weight of propylene glycol, 0.3 parts by weight of anti-settling agent, 10 parts by weight of Nanophos photocatalytic titanium dioxide, 18 parts by weight of rutile titanium dioxide, carbonic acid Add 15 parts by weight of calcium and 5 parts by weight of talcum powder into the high-speed disperser in turn, and perform high-speed stirring at 1800 RPM, and disperse with high-speed stirring for 60 minutes;

[0037] Add 32 parts by weight of acrylic emulsion, 1 part by weight of film-forming agent, 0.3 parts by weight of thickener, 0.25 parts by weight of defoamer, and 0.25 parts by weight of leveling agent into the dispersion liquid in the previous step, and stir at a medium speed at 600 RPM. Stir and disperse at medium and low speed for 30 minutes, obtained from clean and energy-saving coatings.

Embodiment 2

[0039] 16.00 parts by weight of deionized water, 0.15 parts by weight of antifungal agent, 0.45 parts by weight of dispersant, 1.4 parts by weight of propylene glycol, 0.3 parts by weight of anti-settling agent, 15 parts by weight of Nanophos photocatalytic titanium dioxide, 18 parts by weight of rutile titanium dioxide, carbonic acid Add 10 parts by weight of calcium and 5 parts by weight of talcum powder into the high-speed disperser in turn, and carry out high-speed stirring, 2000RPM, high-speed stirring and dispersing for 50min;

[0040] Add 32 parts by weight of acrylic emulsion, 1 part by weight of film-forming agent, 0.2 parts by weight of thickener, 0.25 parts by weight of defoamer, and 0.25 parts by weight of leveling agent into the dispersion liquid stirred in the previous step, and stir at a medium speed, 600RPM, Stir and disperse at medium and low speed for 30 minutes, obtained from clean and energy-saving coatings.

Embodiment 3

[0042] 10.00 parts by weight of deionized water, 0.15 parts by weight of antifungal agent, 0.45 parts by weight of dispersant, 1.4 parts by weight of propylene glycol, 0.3 parts by weight of anti-settling agent, 15 parts by weight of Nanophos photocatalytic titanium dioxide, 18 parts by weight of rutile titanium dioxide, carbonic acid Add 10 parts by weight of calcium and 5 parts by weight of talcum powder into the high-speed disperser in turn, and perform high-speed stirring at 2500 RPM, and disperse with high-speed stirring for 45 minutes;

[0043] Add 38 parts by weight of acrylic emulsion, 1 part by weight of film-forming agent, 0.3 parts by weight of thickener, 0.2 parts by weight of defoamer, and 0.2 parts by weight of leveling agent into the dispersion liquid in the previous step, and stir at a medium speed at 800 RPM. Stir and disperse at medium and low speed for 30 minutes, obtained from clean and energy-saving coatings.

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PUM

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Abstract

The invention provides a self-cleaning energy-saving coating with a function of purifying the air. The self-cleaning energy-saving coating is prepared from the following raw materials of: in parts byweight, 10.0-20.0 parts of deionized water, 0.1-0.2 part of an antiseptic, 0.3-0.5 part of a dispersing agent, 1.3-2.0 parts of propylene glycol, 0.3-0.5 part of an anti-settling agent, 10.0-15.0 parts of photocatalytic titanium dioxide, 10.0-20.0 parts of rutile titanium dioxide, 10.0-15.0 parts of calcium carbonate, 5.0-10.0 parts of talc powder, 30.0-45.0 parts of acrylic acid emulsion, 1.0-1.5parts of a film-forming assistant, 0.2-0.6 part of a thickener, 0.2-0.4 part of an antifoaming agent and 0.2-0.5 part of a leveling agent. The invention also relates to a preparation method and application of the self-cleaning energy-saving coating. The self-cleaning energy-saving coating can be applied to coatings of interior walls and exterior walls, has the functions of air purification, selfcleaning and energy saving at the same time, and the product has strong adhesion, good durability and a simple preparation process.

Description

technical field [0001] The invention belongs to the field of materials, in particular to the field of coatings, and mainly relates to a self-cleaning energy-saving coating with air purification function and its preparation method and application, especially suitable for use as a building interior wall or exterior wall coating. Background technique [0002] In the past two decades, due to changes in life and work patterns, modern people spend more and more time indoors, and many people spend almost 90% of their time indoors. However, with the increasing incidence of respiratory diseases, leukemia, cancer and other diseases, people's attention and requirements for indoor air quality are also increasing. People have found that due to the widespread use of new building materials, especially chemically synthesized building materials, high-end furniture and household appliances have entered homes and offices one after another. Indispensable supplies lead to the continuous increas...

Claims

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Application Information

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IPC IPC(8): C09D133/04C09D5/16C09D7/61C09D7/63
CPCC08K2003/2241C08K2003/265C08K2201/011C09D5/1662C09D5/1687C09D133/04C09D143/04C08L43/04C08K13/02C08K3/22C08K3/26C08K3/34C08K5/053C08L33/04
Inventor 赵志伟周晓林
Owner LIONTRUNK (BEIJING) TECH CO LTD
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