Processing and production method of anticorrosive latex paint

A production method and technology of latex paint, applied in the field of latex paint, can solve the problems of interface compatibility between inorganic zinc and organic raw materials, difficulty in significantly improving anti-corrosion performance, and difficulty in significantly improving material corrosion resistance, so as to improve hydrophobic effect, The effect of stabilizing the system and improving the degree of crosslinking

Inactive Publication Date: 2021-04-09
台州来智科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] In the prior art, in order to improve the anti-corrosion performance of latex paint, zinc-based inorganic preservatives are added to latex paint to improve the anti-corrosion performance of latex paint. Although the corrosion resistance of latex paint can be improved, the problem of interface compatibility between inorganic zinc and organic raw materials is prone to occur. , it is difficult to significantly improve the corrosion resistance of the material
[0004] Disclosed a kind of water-based graphene conductive anticorrosion coating and preparation method thereof as Chinese patent document publication number CN111286258B, its raw material comprises component A and component B; Described component A is mainly prepared from the raw material of following weight part: water-based 40-60 parts of epoxy resin, 20-60 parts of filler, 2-4 parts of additives, 10-20 parts of water; the component B is mainly prepared from the following raw materials in parts by weight: graphene aqueous dispersion 5- 10 parts, 10-20 parts of zinc oxide, 40-60 parts of water-based epoxy curing agent; the preparation method of the graphene aqueous dispersion comprises the following steps: mixing graphene, carboxymethyl cellulose and water, shearing and dispersing for 1h -2h, the mixture is obtained; the mixture is ultrasonically treated for 3h-4h; the zinc oxide and graphene aqueous dispersions added in this document are likely to cause interfacial compatibility problems between the inorganic raw materials and the water-based epoxy resin, resulting in difficult corrosion resistance. significant improvement

Method used

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  • Processing and production method of anticorrosive latex paint

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Embodiment 1

[0028] A kind of processing production method of anticorrosion latex paint of the present embodiment, comprises the following steps:

[0029] Step 1, the preparation of modified zinc oxide powder:

[0030] S1: Pre-calcine 40 parts of zinc oxide for 15 minutes at a pre-calcination temperature of 350°C, then cool to 65°C and keep warm for later use;

[0031] S2: Then add 10 parts of polyethylene glycol to 100 parts of ethanol solution, first stir at a speed of 100r / min for 255min, then add 30 parts of isophorone diisocyanate, and then add 1 part of organotin catalyst , get modifier;

[0032] S3: Add the heat-preserved zinc oxide into the modifier, then stir at a speed of 1500r / min for 25min at a stirring temperature of 105°C, then add 20 parts of aspartic acid with a molar concentration of 0.5 mol / L boric acid solution, and continue Stir for 20 minutes, finally wash with water, filter, and centrifuge to obtain modified zinc oxide powder;

[0033] Step 2, weighing of raw mater...

Embodiment 2

[0044] A kind of processing production method of anticorrosion latex paint of the present embodiment, comprises the following steps:

[0045] Step 1, the preparation of modified zinc oxide powder:

[0046] S1: Pre-calcine 50 parts of zinc oxide for 25 minutes at a temperature of 450°C, then cool to 75°C and keep it warm for later use;

[0047] S2: Then add 20 parts of polyethylene glycol to 200 parts of ethanol solution, first stir at a speed of 200r / min for 35 minutes, then add 40 parts of isophorone diisocyanate, and then add 5 parts of organotin catalyst , get modifier;

[0048] S3: Add the heat-preserved zinc oxide into the modifier, then stir at a speed of 250r / min for 35min at a stirring temperature of 115°C, then add 30 parts of aspartic acid with a molar concentration of 0.9 mol / L boric acid aqueous solution, and continue Stir for 30 minutes, finally wash with water, filter, and centrifuge to obtain modified zinc oxide powder;

[0049] Step 2, weighing of raw materi...

Embodiment 3

[0060] A kind of processing production method of anticorrosion latex paint of the present embodiment, comprises the following steps:

[0061] Step 1, the preparation of modified zinc oxide powder:

[0062] S1: 45 parts of zinc oxide were pre-calcined for 20 minutes at a pre-calcination temperature of 400°C, then cooled to 70°C, and kept warm for later use;

[0063] S2: Then add 15 parts of polyethylene glycol to 150 parts of ethanol solution, first stir at a speed of 150r / min for 30min, then add 35 parts of isophorone diisocyanate, and then add 3 parts of organotin catalyst , get modifier;

[0064] S3: Add the heat-preserved zinc oxide into the modifier, then stir at a speed of 200r / min for 30min at a stirring temperature of 110°C, then add 25 parts of aspartic acid with a molar concentration of 0.7 mol / L boric acid aqueous solution, and continue Stir for 25 minutes, finally wash with water, filter, and centrifuge to obtain modified zinc oxide powder;

[0065] Step 2, weigh...

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Abstract

The invention discloses a processing and production method of anticorrosive latex paint. The processing and production method comprises the following steps: step 1, preparation of modified zinc oxide powder; and step 2, weighing of the following raw materials: 55-65 parts of waterborne epoxy resin, 10-20 parts of modified zinc oxide powder, 5-10 parts of a blocking interface agent, 2-10 parts of polyester polyol, 1-3 parts of an assistant cross-linking agent, 1-2 parts of a curing agent and 50-60 parts of a solvent. According to the production method of the anticorrosive latex paint, the anticorrosive latex paint is prepared from the water-borne epoxy resin, the modified zinc oxide powder, the blocking interface agent, the assistant cross-linking agent and other raw materials, and the zinc oxide powder is modified to serve as a preservative, so the problem of poor interfacial compatibility of inorganic raw materials and epoxy resin in the prior art is solved; and in zinc oxide modification, zinc oxide is pre-calcined to activate the surface active energy of zinc oxide, and then polyethylene glycol and an ethanol solution are used as medium solvents.

Description

technical field [0001] The invention relates to the technical field of latex paint, in particular to a processing and production method of anti-corrosion latex paint. Background technique [0002] Latex paint is a large class of synthetic resin emulsion paints represented by acrylate copolymer emulsions. Latex paint is a water-dispersible paint. It is based on synthetic resin emulsion, and the filler is refined by adding various additives after grinding and dispersing. Latex paint has many advantages that are different from traditional wall paints, such as easy to paint, fast drying, water-resistant paint film, and good scrub resistance. In my country, it is customary for people to use synthetic resin emulsion as the base material, use water as the dispersion medium, add pigments, fillers (also known as body pigments) and additives, and the paint made through a certain process is called latex paint, also called latex. coating. [0003] In the prior art, in order to improve...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D163/00C09D169/00C09D167/04C09D7/62C09D7/65C09D5/08C09D5/02
CPCC08K2003/221C08K2003/2296C08L2205/02C08L2205/035C09D5/024C09D5/08C09D163/00C08L67/04C08L69/00C08L83/08C08L83/06C08K9/06C08K3/22C08K9/08C08K9/04C08K5/14
Inventor 郑贝贝
Owner 台州来智科技有限公司
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