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Coating process of rare earth corrosion-resistant coating

A technology of anti-corrosion coating and coating process, which is applied in the direction of anti-corrosion coating and coating, and can solve the problems of poor stability of the treatment process

Inactive Publication Date: 2013-04-17
QINGDAO SHENGHAN CHROMATOGRAPH TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the presence of strong oxidants, the stability of the treatment process is poor

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] (1) Prepare the following components (parts by mass):

[0028] a Vinyltriethoxysilane 11;

[0029] b ethanol 61;

[0030] c SiO 2 Particle 6;

[0031] d cerium oxide 6;

[0032] e deionized water 26;

[0033] f acetic acid 4;

[0034] g carbon fiber 8;

[0035] hpolyimide4;

[0036] (2) After mixing the above components, carry out aging treatment, and then spray, brush or dip on the surface of the substrate, and form a coating on the surface of the substrate after deposition to achieve surface anti-corrosion treatment.

Embodiment 2

[0038] (1) Prepare the following components (parts by mass):

[0039] a Vinyltriethoxysilane 20;

[0040] b ethanol 80;

[0041] c SiO 2 grain 10;

[0042] d cerium oxide 10;

[0043] e deionized water 50;

[0044] f acetic acid 6;

[0045] g carbon fiber 10;

[0046] h polyimide 6;

[0047] (2) After mixing the above components, carry out aging treatment, and then spray, brush or dip on the surface of the substrate, and form a coating on the surface of the substrate after deposition to achieve surface anti-corrosion treatment.

Embodiment 3

[0049] (1) Prepare the following components (parts by mass):

[0050] a Vinyltriethoxysilane 15;

[0051] b ethanol 70;

[0052] c SiO 2 particle 8;

[0053] d cerium oxide 8;

[0054] e deionized water 38;

[0055] f acetic acid 5;

[0056] g carbon fiber 9;

[0057] h polyimide 5;

[0058] (2) After mixing the above components, carry out aging treatment, and then spray, brush or dip on the surface of the substrate, and form a coating on the surface of the substrate after deposition to realize surface anti-corrosion treatment.

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Abstract

The invention discloses a coating process of a rare earth corrosion-resistant coating. The coating process comprises the following steps: mixing and curing components comprising siloxane, solvent, silica particles, rare earth compounds, deionized water, catalyst, carbon fiber, polyimide and the like; filtering the cured mixture; spraying, brushing or dipping on the surface of a base material; and forming a coating on the surface of the base material after depositing so as to realize surface corrosion prevention.

Description

technical field [0001] The invention relates to an anti-corrosion paint coating method, in particular to a coating method for an environmentally friendly paint which is suitable for the surface of a metal structure, has excellent gloss and mechanical and physical properties, and does not contain aromatic hydrocarbon solvents. Background technique [0002] In modern industry and daily life, metal corrosion can be seen everywhere, especially in the form of crevice corrosion, stress corrosion and corrosion fatigue in the storage containers of fuel oil and hazardous chemicals, which cause great safety hazards to people's lives. [0003] The metal protection methods currently used can be roughly divided into three categories: one is anodic oxidation treatment, that is, an anodic oxidation film with a thickness of tens of microns is formed on the metal surface, but due to the large energy consumption of the anodic oxidation process and the contamination of the electrolyte solution ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09D183/07C09D179/08C09D7/12C09D5/08
Inventor 朱新勇崔成来
Owner QINGDAO SHENGHAN CHROMATOGRAPH TECH CO LTD