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Insulated fireproof anticorrosive coating and preparation method thereof

An anti-corrosion coating, water-based technology, applied in anti-corrosion coatings, fire-retardant coatings, coatings, etc., can solve the problems of poor weather resistance, single function, monotonous color, etc., to improve poor thermal barrier properties, expand the scope of application, and improve service life. Effect

Inactive Publication Date: 2014-12-24
ZHEJIANG PUJIANG XINZHI COMPOSITE MATERIAL SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Therefore, there are certain defects such as weak compressive strength and poor hydrolysis resistance.
[0005] Due to the limitations of material performance, the existing products have greatly inhibited their consumption potential due to their single function, monotonous color, poor aging resistance and poor weather resistance.

Method used

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preparation example Construction

[0029] For the heat-insulating, fire-proof and anti-corrosion coating containing the above ingredients, it needs to be prepared according to certain methods in the manufacturing process, so as to make the performance of the heat-insulating and fire-proof coating better, so the embodiment of the present invention also provides a corresponding heat-insulating, fire-proof and anti-corrosion coating A preparation method comprising the steps of:

[0030] Step 1, select the weight percentage as each component material of following content, water-based chlorinated resin 26-40%, nano-titanium dioxide 5-9%, vermiculite 6-12%, nano-rector earth 1-5%, calcium sulfate whisker 8-20%, granular cotton 6-12%, potassium octatitanate whisker 4-8%, sepiolite 8-15%, additive 0.3-1.5%, modifier 0.7-2%, and the balance is water Accounting for 10-15%, wherein said auxiliary agent includes dispersant, multifunctional regulator, defoamer, wetting agent and thickener;

[0031] Step 2, put water in the...

Embodiment 1

[0043] Step 1, take the raw material that gross mass is 100kg, water-based chlorinated resin 26kg, nano-titanium dioxide 9kg, vermiculite 11kg, nano-rectorite 5kg, calcium sulfate whisker 20kg, granular cotton 6kg, potassium octatitanate whisker 4kg, Sepiolite 8kg, auxiliary agent 0.3kg, modifier 0.7kg, the balance is water 10kg, the weight percentage of each component is as follows, water-based chlorinated resin 26%, nano-titanium dioxide 9%, vermiculite 11%, nano-pump 5% backing soil, 20% calcium sulfate whiskers, 6% granular cotton, 4% potassium octatitanate whiskers, 8% sepiolite, 0.3% additives, 0.7% modifiers, and the balance is 10% water , wherein the additives include dispersants, multifunctional regulators, defoamers, wetting agents and thickeners;

[0044] Among them, the water-based chlorinated resin is obtained by the following method: put vinyl chloride, vinylidene chloride and water into the reactor in proportion to carry out copolymerization, add active agent, h...

Embodiment 2

[0052] Step 1, weigh the raw materials with a total mass of 150kg, 60kg of water-based chlorinated resin, 7.5kg of nano-titanium dioxide, 9kg of vermiculite, 1.5kg of nano-rectorite, 12kg of calcium sulfate whiskers, 15kg of granular cotton, and potassium octatitanate whiskers 6kg, 22.5kg of sepiolite, 0.45kg of auxiliary agent, 1.05kg of modifier, and the balance is 15kg of water. The weight percentage of each component is as follows, water-based chlorinated resin 40%, nano-titanium dioxide 5%, vermiculite 6 %, nano-rector earth 1%, calcium sulfate whisker 8%, granular cotton 10%, potassium octatitanate whisker 4%, sepiolite 15%, additive 0.3%, modifier 0.7%, and the balance is Water accounts for 10%, and the auxiliary agents include dispersants, multifunctional regulators, defoamers, wetting agents and thickeners;

[0053] Among them, the water-based chlorinated resin is obtained by the following methods: put vinyl chloride, vinylidene chloride and water into the reaction ke...

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Abstract

The embodiment of the invention discloses an insulated fireproof anticorrosive coating and a preparation method thereof. The insulated fireproof anticorrosive coating comprises the following components in percentage by weight: 26-40 percent of water-based chlorinated resin, 5-9 percent of nanometer titania, 6-12 percent of vermiculite, 1-5 percent of nano rectorite, 8-20 percent of calcium sulfate whisker, 6-12 percent of granulated wood, 4-8 percent of potassium octatitanate whisker, 8-15 percent of sepiolite, 0.3-1.5 percent of aids, 0.7-2 percent of modifier and the balance of water which accounts for 10-15 percent. According to the invention, a novel high-water-resistant, anticorrosive and flame-retardant high polymer material is synthesized by utilizing copolymerization of a high-chlorine polymer, the characteristics that inorganic salt whiskers perform almost full spectrum reflection on near infrared rays are matched, mineral fibers are taken as auxiliary materials, low water resistance and low durability of the thermal insulating coating are greatly improved, multiple colors can be selected, the problem that the conventional commercially available coatings are insufficient in performances is effectively solved, and the insulated fireproof anticorrosive coating has the effects of fire resistance, sound insulation, water resistance, corrosion resistance and the like.

Description

[0001] technical field [0002] The invention belongs to the technical field of paint preparation, and in particular relates to a heat-insulating fire-proof and anti-corrosion paint and a preparation method thereof. [0003] Background technique [0004] Most of the existing thermal insulation coatings on the market use styrene-acrylic resin or pure acrylic resin as the linking material, with hollow glass microspheres and ceramic microspheres as functional fillers, and reflective coatings composed of titanium dioxide as the reflective pigment. The main principle is to rely on The reflectivity of titanium dioxide and the blocking of heat conduction by hollow glass beads achieve the effect of cooling and saving energy. The thermal insulation coating made by the above method has the following defects. Because the molecular structure of styrene-acrylic and pure acrylic emulsion contains benzene rings and a large amount of emulsifier, there are certain defects in water resist...

Claims

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Application Information

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IPC IPC(8): C09D127/08C09D5/18C09D5/08C08F214/06C08F214/08
Inventor 陈锦民黄新荣
Owner ZHEJIANG PUJIANG XINZHI COMPOSITE MATERIAL SCI & TECH
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