Environment-friendly polyaniline anti-corrosion and antistatic coating

A polyaniline and antistatic technology, applied in the field of environmentally friendly polyaniline anti-corrosion and anti-static coatings, can solve the problems of poor mechanical processing performance, poor resin compatibility, affecting the anti-corrosion performance of polyaniline, poor dispersion and stability, and achieve metal adhesion. Good, high hardness, good stability effect

Inactive Publication Date: 2015-02-11
QINGDAO YIQUN PANT GRP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Although polyaniline has excellent anti-corrosion properties, its mechanical processing properties and compatibility with resins are poor, which limits its use.
The conventional methods for combining polyaniline with resin mainly include: Dissolution method: use a special solvent to dissolve and add it to the resin. This method will cause environmental pollution, poor construction conditions, and the expensive solvent will increase the cost sharply; Physical blending method: such as ball milling method, consumes a lot of energy and time, and its dispersion and stability in the resin are poor, which ultimately affects the performance of polyaniline's anti-corrosion performance; (3) first dissolve polyaniline in the amine curing agent , and then compounded with epoxy resin, this method has insurmountable defects: the content of polyaniline is low, and the content with the best anti-corrosion effect cannot be achieved

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] Embodiment 1: prepare a kind of anticorrosion coating, step is as follows:

[0028] (1) Preparation of Component A: The number of raw materials used in the preparation of Component A is as follows:

[0029] Liquid epoxy resin E56 40 grams;

[0030] Diethylene glycol dibenzoate 4 grams;

[0031] OP-10 0.5 g;

[0032] 10 grams of n-pentanol;

[0033] Ammonium persulfate 3 grams;

[0034] 1.5 grams of distilled water;

[0035] 1 gram of 0.4mol / L aqueous solution of camphorsulfonic acid;

[0036] 10 grams of aniline;

[0037] 0.5 grams of methyl silicone oil;

[0038] Neopentyl Glycol Diglycidyl Ether 4g.

[0039] Under the protection of nitrogen, add liquid epoxy resin E56, plasticizer diethylene glycol dibenzoate, OP-10, 0.9g n-pentanol (as a co-emulsifier), distilled water, Ammonium sulfate was stirred rapidly for 2 hours to form a stable microemulsion system with epoxy resin and plasticizer as the oil phase and an aqueous solution of oxidant...

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PUM

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Abstract

The invention discloses an environment-friendly polyaniline anti-corrosion and antistatic coating. The coating comprises a component A and a component B, wherein the weight ratio of the component A to the component B is (10 to 1)-(20 to 1); the component A is prepared from the following components: (1) 40g of liquid epoxy resin E56, (2) 4g of diethylene glycol dibenzoate, (3) 0.5g of OP-10, (4) 10g of n-amyl alcohol, (5) 3g of ammonium persulfate, (6) 1.5g of distilled water, (7) 1g of 0.4mol / L camphorsulfonic acid water solution, (8) 10g of aniline, (9) 0.5g of methyl silicone oil and (10) 4g of neopentyl glycol diglycidyl ether; the component B comprises the following components: 110g of liquid fatty polyamine, 30g of polyaniline, 5g of titanium dioxide, 10g of ethylene glycol phenyl ether, 5g of xylene and 5g of castor oil. The coating has the advantages of high polyaniline content, good anti-corrosion property, no pollution, low cost, and the like.

Description

technical field [0001] The invention relates to an environment-friendly polyaniline anticorrosion and antistatic coating. Background technique [0002] The loss caused by metal corrosion to human beings is staggering. According to statistics, the global annual metal loss due to corrosion is as high as 20%-40% of global metal production, and the economic loss is about 1 trillion US dollars. Practice has proved that the use of coatings for corrosion protection of metals is the most economical, practical and effective method. However, the current commonly used anti-corrosion coatings contain a large amount of organic solvents, which cause great pollution to the environment during the construction process and pose a huge threat to the health of workers; at the same time, commonly used anti-corrosion coatings are also rich in zinc, which not only consumes a lot of zinc resources, but also affects the health of workers. The environment is seriously polluted by heavy metals. ...

Claims

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Application Information

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IPC IPC(8): C09D163/02C09D179/02C09D5/08C09D7/12C08G73/02
CPCC08K2003/2241C09D163/00C08G73/0266C08L2205/025C08L2205/035C09D5/08C09D5/24C09D7/61C09D7/65
Inventor 董善刚刘永屏祝洒虎王伯凤张喆李春波殷晓燕潘金婷
Owner QINGDAO YIQUN PANT GRP
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