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Preparation method of super-hydrophobic insulator anticorrosive paint

A technology for anti-corrosion coatings and insulators, used in anti-corrosion coatings, fire-retardant coatings, chitin polysaccharide coatings, etc., can solve the problems of affecting electrical conductivity and service life, not having hydrophobic properties, poor anti-corrosion effect, etc., to achieve compatibility between raw materials Good, improve the hydrophobic performance, the effect of fast drying

Inactive Publication Date: 2019-05-31
ANHUI EFARAD ELECTRIC POWER TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Anti-corrosion mainly plays the role of beautifying the appearance and anti-corrosion. Commonly used anti-corrosion coatings are mainly organic solvent coatings, and do not have hydrophobic properties. Traditional anti-corrosion coatings generally use epoxy resin, polyurethane resin, polyester resin or alkyd resin as the polymer matrix. , use the high molecular weight of the polymer to prevent corrosion of the cable metal material, and add graphite powder, titanium dioxide, iron red and other fillers to play the role of pigments and anti-corrosion fillers. Since the wires are generally used outdoors, they are in a dusty environment. In a highly polluted environment, it is very easy to get dirty, which affects the conductivity and service life
[0003] Conventional anti-corrosion coatings play an anti-corrosion effect on metals under normal conditions and protect the service life of non-ferrous metals; however, the existing anti-corrosion coatings have poor anti-corrosion effects, and often crack and fall off after a period of use. Repeated coating is required to achieve the anti-corrosion effect, the cost is high, and it cannot meet the needs of users

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Embodiment 1: the preparation method of superhydrophobic insulator anticorrosion coating specifically comprises the following contents:

[0019] (1) Preparation of modified chitosan: first chitosan is added to deionized water, mixed uniformly to obtain a chitosan suspension, then adding 2.5% sodium lauryl sulfate equivalent to chitosan quality, 6 % acetic acid solution, after mixing, carry out ultrasonic dispersion for half an hour, the power of the ultrasonic treatment is 250W, then add 0.8% zinc oxide and 12% acrylamide equivalent to chitosan quality to the above system, at 68 ℃ Reaction at high temperature for 2.5 hours, after the reaction, distillation and centrifugation were carried out to obtain modified chitosan;

[0020] (2) Weighing of raw materials: 78 parts of silicone modified water-based polyurethane emulsion, 32 parts of water-based epoxy resin, 25 parts of nano-scale titanium dioxide, 22 parts of calcium sulfate, 45 parts of lauryl polyoxyethylene ether, ...

Embodiment 2

[0023] Embodiment 2: the preparation method of superhydrophobic insulator anticorrosion coating specifically comprises the following contents:

[0024] (1) Preparation of modified chitosan: first chitosan is added to deionized water, mixed uniformly to obtain a chitosan suspension, then adding 2.5% sodium lauryl sulfate equivalent to chitosan quality, 6 % acetic acid solution, after mixing, carry out ultrasonic dispersion for half an hour, the power of the ultrasonic treatment is 250W, then add 0.8% zinc oxide and 12% acrylamide equivalent to chitosan quality to the above system, at 68 ℃ Reaction at high temperature for 2.5 hours, after the reaction, distillation and centrifugation were carried out to obtain modified chitosan;

[0025] (2) Weighing of raw materials: 80 parts of silicone modified water-based polyurethane emulsion, 35 parts of water-based epoxy resin, 28 parts of nano-scale titanium dioxide, 25 parts of calcium sulfate, 48 parts of glyceryl trioleate, dodecylben...

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PUM

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Abstract

The invention discloses a preparation method of a super-hydrophobic insulator anticorrosive paint. The super-hydrophobic insulator anticorrosive paint is mainly prepared from the following componentsby mixing: 78-85 parts of organosilicon modified waterborne polyurethane emulsion, 32-45 parts of waterborne epoxy resin, 25-30 parts of nanoscale titanium dioxide, 22-30 parts of calcium sulfate, 45-50 parts of an emulsifier, 8-12 parts of dodecylbenzenesulfonic acid, 3-5 parts of dodecylamine, 6-9 parts of modified chitosan, 6-8 parts of nano carbon powder, 2-4 parts of sodium tripolyphosphate,8-10 parts of calcium lignosulfonate and 155-180 parts of deionized water. The anticorrosive paint disclosed by the invention has the advantages of good low-temperature storage stability, good compatibility among raw materials, no obstacle in scraping in a construction process, smooth coating layer, high drying speed, high bonding strength, good construction property, convenience and rapidness, nobad conditions of cracks, pit points and the like, good flexibility, no cracks, strong hydrophobic heat preservation capacity, good temperature resistance, flame retardance and weather resistance.

Description

technical field [0001] The invention relates to a preparation method of a superhydrophobic insulator anticorrosion coating, which belongs to the technical field of anticorrosion coating processing. Background technique [0002] Anti-corrosion mainly plays the role of beautifying the appearance and anti-corrosion. Commonly used anti-corrosion coatings are mainly organic solvent coatings, and do not have hydrophobic properties. Traditional anti-corrosion coatings generally use epoxy resin, polyurethane resin, polyester resin or alkyd resin as the polymer matrix. , use the high molecular weight of the polymer to anticorrosion the cable metal material, add graphite powder, titanium dioxide, iron red and other fillers to play the role of pigment and anti-corrosion filler, because the wires are generally used outdoors, they are in a dusty, In a highly polluted environment, it is very easy to get dirty, which affects the conductivity and service life. [0003] Conventional anti-co...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D175/04C09D163/00C09D105/08C09D5/25C09D5/08C09D5/18C09D7/61C09D7/63C09D7/65C08B37/08
Inventor 戴文忠戴章戴冕吴钰娟戴超戴玉
Owner ANHUI EFARAD ELECTRIC POWER TECH
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