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Flatting agent for positive ion electrodeposition coating

A technology of cationic electrodeposition and leveling agent, applied in the field of leveling agent, can solve the problems of electrophoresis tank failure voltage drop, cycle stability deterioration, paint film leveling deterioration and other problems, to achieve excellent substrate wetting ability, Improved stability and excellent adhesion

Active Publication Date: 2017-09-22
HAOLISEN COATING SHANGHAI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This technology improves how well an electrically conductive liquid repellant (ECA) paints are used for coating metals without causing any issues like excessively high levels or cracks that could affect their appearance quality during use. It also enhances adhesion between different layers within the ECA' s layer system compared to previous methods. Additionally, it prevents damage from water vapor penetration through its pores when exposed at certain temperatures. Overall, this new method provides improved durability over existing techniques and makes painting more efficient.

Problems solved by technology

This patented technical solution described for preventing surface flaws during painting processes involves applying special compositions onto surfaces made from metals like steels, hot rolled plates, brass, alloys, zinc, titaniums, and others without causing any issues related to their quality. These solutions include addition of specific compounds called antishouters, which help reduce these flaws while maintaining strong coherence between the primers and paints layers.

Method used

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  • Flatting agent for positive ion electrodeposition coating
  • Flatting agent for positive ion electrodeposition coating
  • Flatting agent for positive ion electrodeposition coating

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024]

[0025]

[0026] The molecular formula of polyglycolamine H-163 is H 2 N-(CH 2 ) 3 -(O-CH 2 -CH 2 ) 2 -OH, available from Union Corbide;

[0027] In a reaction flask equipped with a thermometer, a stirrer and a reflux condenser, sequentially add the prescribed amount of neopentyl glycol diglycidyl ether, bisphenol A, and ethylene glycol monobutyl ether. After heating up to 100°C, add the dimethylbenzylamine catalyst. After the addition, first raise the temperature to 150-170°C to react for 120 minutes. When the epoxy equivalent of the system reaches 850-950, the temperature reaches 70-75°C, quickly add the amine, and finish adding Afterwards, the temperature was raised to 110-120°C for 2 hours. After the reaction, cool down to 60-65°C, add lactic acid, react at 50-60°C for 30 minutes, add pure water and cool down to below 25°C, and finally prepare a leveling agent with a solid content of 33-34%.

Embodiment 2

[0029]

[0030] The molecular formula of polyetheramine M-600 is H 2 N-(CHCH 3 -CH 2 -O) 9 -CH 2 -CH 2 -O-CH 3 , JEFFAMINE;

[0031] In a reaction flask equipped with a thermometer, a stirrer and a reflux condenser, sequentially add the prescribed amount of neopentyl glycol diglycidyl ether, bisphenol A, and ethylene glycol monobutyl ether. After heating up to 100°C, add the dimethylbenzylamine catalyst. After the addition, first raise the temperature to 150-170°C to react for 120 minutes. When the epoxy equivalent of the system reaches 850-950, the temperature reaches 70-75°C, quickly add the amine, and finish adding Afterwards, the temperature was raised to 110-120°C for 2 hours. After the reaction, cool down to 60-65°C, add lactic acid, react at 50-60°C for 30 minutes, add pure water and cool down to below 25°C, and finally prepare a leveling agent with a solid content of 33-34%.

Embodiment 3

[0033]

[0034] The molecular formula of polyetheramine M-600 is H 2 N-(CHCH 3 -CH 2 -O) 9 -CH 2 -CH 2 -O-CH 3 , JEFFAMINE;

[0035] In the reaction flask equipped with a thermometer, a stirrer and a reflux condenser, sequentially add the formula amount of polyethylene glycol diglycidyl ether, bisphenol A, and ethylene glycol monobutyl ether. After heating up to 100°C, add dimethylbenzylamine catalyst. After the addition, first raise the temperature to 150-170°C to react for 120 minutes. When the epoxy equivalent of the system reaches 1050-1150, the temperature reaches 70-75°C, quickly add the amine, and finish adding Afterwards, the temperature was raised to 110-120°C for 2 hours. After the reaction, cool down to 60-65°C, add lactic acid, react at 50-60°C for 30 minutes, add pure water and cool down to below 25°C, and finally prepare a leveling agent with a solid content of 33-34%.

[0036] Second, the preparation of amino-modified novolak epoxy resin

[0037] ...

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Abstract

The invention relates to a flatting agent for a positive ion electrodeposition coating. The flatting agent is prepared from a, A reaction product obtained through ring-opening and chain-extension reaction carried out on non-aromatic diglycidyl ether and aromatic diol, and b, polyalkyloxamine or amidogen polyalkyloxalcohol are reacted to prepare amine-modified epoxy resin, and the flatting agent is prepared through acid neutralization. According to the flatting agent obtained by adopting the process provided by the invention, an electrophoresis paint has a better base material wetting ability, the defects such as leveling abnormity and shrinkage are not easy to occur on the surface of a paint film, the flatting agent also has a good performance on an alloy metal base material, meanwhile, the paint film maintains favorable recoatability, and a bonding force of a priming paint and a finishing paint is excellent; in addition, the flatting agent provided by the invention has favorable compatibility with the epoxy resin, an electrophoresis tank cannot be damaged, the voltage cannot be reduced, and the stability of a tank liquor is improved.

Description

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Claims

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Application Information

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Owner HAOLISEN COATING SHANGHAI