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Organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint and preparation method thereof

A high-temperature, self-cleaning technology, used in anti-corrosion coatings, coatings, etc.

Active Publication Date: 2012-12-26
荆门市昌元科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004]1. Traditional anti-corrosion paints are mostly solvent-based, and construction in summer is easy to cause damage to workers' bodies and is not friendly to the environment.
[0005]2. The traditional anti-corrosion paint is separated from the bottom and the surface, secondary construction type, low labor efficiency.
[0008]The paint film is not strong and easy to fall off

Method used

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  • Organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

preparation example (1)

[0036] Take 230g of deionized water, PH adjuster AMP-951g, ammonium salt dispersant 1.7g, sodium salt dispersant 5g, wetting agent PE-1001g, ethylene glycol 5g, film forming aid lauryl ester 18g, defoamer NXZ1g , 130g of pretreated titanium dioxide, 80g of pretreated kaolin, 30g of pretreated barium sulfate, 47g of modified aluminum phosphate, 47g of zinc phosphate, 50g of pretreated mica powder, leveling agent RM-20203.3g, Put the above-mentioned raw materials into a high-speed dispersing kettle in turn, disperse at a high speed for 1 hour, feed them to the paint mixing kettle, add 500g of MPM modified emulsion, 1g defoamer NXZ, 35g deionized water, under low-speed stirring, add X-405 (dispersing wetting agent) ) 2g, 5g anti-flash rust agent, 3g of preferred silane coupling agent γ-methacryloxytrimethoxysilane, 3g of antiseptic bactericide, alkali swelling and polyurethane thickener to adjust viscosity When it reaches the appropriate value, filter and package to obtain white w...

preparation example (2)

[0038] Take 230g deionized water, PH adjuster AMP-951g, ammonium salt dispersant 1.7g, sodium salt dispersant 5g, wetting agent (PE-100) 1g, ethylene glycol 5g, film-forming assistant lauryl ester 18g, Foaming agent NXZ1g, pretreated titanium dioxide 150g, pretreated barium sulfate 80g, modified aluminum phosphate 50g, zinc phosphate 40g, pretreated mica powder 60g, medium yellow 10g, pretreated kaolin 50g, bright red 10g, leveling agent (RM-2020) 3g, put the above-mentioned raw materials into the high-speed dispersing kettle in turn, disperse at high speed for 1h, feed to the paint mixing kettle, add 550g MPM modified emulsion, 1g defoamer NXZ, 35g deionized water, Under low-speed stirring, add 2g of X-405 (dispersing wetting agent), 5g of anti-flash rust agent, and 3.3g of preferred silane coupling agent γ-methacryloxytrimethoxysilane, 3g of antiseptic and bactericide, and alkali Swelling and polyurethane thickeners each adjust the viscosity to a suitable value, filter and pa...

preparation example (3)

[0040] Take 300g of deionized water, 1g of PH adjuster (AMP-95), 2.2g of ammonium salt dispersant, 4.8g of sodium salt dispersant, 1g of wetting agent (PE-100), 5g of ethylene glycol, and dodecyl alcohol as a film forming aid Grease 19g, defoamer NXZ1g, pretreated titanium dioxide 110g, phosphorus iron powder 130g, pretreated kaolin 60g, modified aluminum phosphate 50g, zinc phosphate 40g, carbon black 5g, leveling agent (RM-2020) 3g, put the above-mentioned raw materials into a high-speed dispersing kettle in turn, disperse at a high speed for 1h, feed them to the paint mixing kettle, add 530g MPM modified emulsion, 1g defoamer NXZ, 50g deionized water, under low-speed stirring, put in X-405 (dispersion Wetting agent) 2g, anti-flash rust agent 4.7g, preferred silane coupling agent γ-methacryloxytrimethoxysilane 2.9g, adding antiseptic fungicide 3g, adding alkali swelling and polyurethane thickener Adjust the viscosity to an appropriate value by appropriate amount, filter and p...

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Abstract

Provided is organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint. The raw material comprises a resin emulsion. The organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint is characterized in that the resin emulsion is an MPM modified acrylic acid resin microemulsion, the raw material further comprises a coupling agent gamma-methacrylonitrile acyloxy trimethoxy silane, and the adding proportion of the coupling agent gamma-methacrylonitrile acyloxy trimethoxy silane is 0.5-3% of the raw material by mass. The organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint has the advantages that the organosilicone modified heat-resistant self-cleaning waterborne electrochemistry corrosion-resistant paint has perfect waterborne rusted, rust conversion and antirust characteristics; high hiding rate is integrated with high glossiness; weather resistance is high, and for example the products are acid-resisting, alkali-resisting, radiation-resistant and high-low temperature resistant; water repellency and a self-cleaning function are superstrong; the paint film is good in hardness, and the hardness is more than 2H; and organic solvents do not exist, volatile organic compounds (VOC) are low, and environmental protection is benefited.

Description

technical field [0001] The invention relates to the field of anticorrosion paint preparation. technical background [0002] With the development of human society, the use of metals has been ubiquitous in the fields of people's production and life. For a long time, people's protection of metals has also been accompanied by development and utilization. However, due to the limitations of resin technology and other material technologies in the past, metal protection Due to the poor comprehensive weather resistance of the coating, the protection of the metal lags behind the utilization of the metal, and a large amount of metal is corroded in a silent place. [0003] Oxidation reactions between metals, water and oxygen, and chemically corrosive substances such as acids, alkalis, salts, etc., under the action of electrochemistry, the electrons of the metals are lost and become loose and water-absorbing oxides or other salts, thereby Corrodes metals rapidly. According to data, abo...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D151/08C09D7/12C09D5/08C08F290/06
Inventor 熊兵熊满军
Owner 荆门市昌元科技有限公司
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