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Electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating and preparation method thereof

A technology of spiral carbon fiber and stealth coating, applied in the field of coatings, can solve the problems of poor comprehensive performance, corrosion resistance, impact resistance and flexibility of stealth coatings, and achieve the effect of low rust removal requirements, low cost and strong adhesion

Active Publication Date: 2018-05-11
JIANGSU UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, many stealth coatings in my country have poor comprehensive properties, such as poor corrosion resistance, impact resistance, and poor flexibility.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0051] Electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating, which is composed of two components A and B according to the mass ratio of 1:1. In terms of parts by mass, component A includes the following components and content: 100 parts of water-based epoxy resin ; 0.5 parts of defoamer; 10 parts of distilled water. In parts by mass, component B includes the following components and contents: 25 parts of water-based epoxy curing agent; 0.1 part of defoamer; 1.2 parts of dispersant; 25 parts of superfine talcum powder; 20 parts of zinc phosphate; 10 parts of iron red parts; 20 parts of titanium dioxide; 20 parts of spiral carbon fiber loaded nickel wave absorbing agent.

[0052] The preparation method of electroplating helical carbon fiber loaded nickel water-based anti-corrosion stealth coating, the steps include:

[0053] (1) Preparation of spiral carbon fiber loaded nickel absorber, 1) Preparation of spiral carbon fiber, using the hori...

Embodiment 2

[0059] Electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating, which is composed of two components A and B according to the mass ratio of 1:1. In terms of parts by mass, component A includes the following components and content: 100 parts of water-based epoxy resin ; 0.5 parts of defoamer; 10 parts of distilled water. In terms of parts by mass, component B includes the following components and contents: 25 parts of water-based epoxy curing agent; 0.1 part of defoamer; 1.2 parts of dispersant; 25 parts of superfine talcum powder; 25 parts of zinc phosphate; 10 parts of iron red parts; 20 parts of titanium dioxide; 25 parts of spiral carbon fiber loaded nickel wave absorbing agent.

[0060] Electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating, the steps include:

[0061] (1) Preparation of spiral carbon fiber loaded nickel absorber, 1) Preparation of spiral carbon fiber, using the horizontal furnace sub...

Embodiment 3

[0067] Electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating, which is composed of two components A and B according to the mass ratio of 1:1. In terms of parts by mass, component A includes the following components and content: 100 parts of water-based epoxy resin ; 0.5 parts of defoamer; 10 parts of distilled water. In terms of parts by mass, component B includes the following components and contents: 25 parts of water-based epoxy curing agent; 0.1 part of defoamer; 1.2 parts of dispersant; 25 parts of superfine talcum powder; 30 parts of zinc phosphate; 10 parts of iron red parts; 20 parts of titanium dioxide; 30 parts of spiral carbon fiber loaded nickel wave absorbing agent.

[0068] The preparation method of electroplating helical carbon fiber loaded nickel water-based anti-corrosion stealth coating, the steps include:

[0069] (1) Preparation of spiral carbon fiber loaded nickel absorber, 1) Preparation of spiral carbon fiber, using...

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Abstract

The invention discloses an electroplating spiral carbon fiber-loaded nickel water-based anti-corrosion stealth coating, which is composed of two components A and B according to the mass ratio of 1:1. The A component includes: 80-120 parts of water-based epoxy resin; defoaming agent 0.2-0.8 parts; 5-15 parts of distilled water; Component B includes: 20-30 parts of water-based epoxy curing agent; 0.08-0.15 parts of defoamer; 1-1.5 parts of dispersant; 20-30 parts of superfine talc powder; 15-30 parts of zinc phosphate; 0-20 parts of iron red; 15-30 parts of titanium dioxide; 15-30 parts of spiral carbon fiber loaded nickel wave-absorbing agent; the preparation method of the paint is also disclosed. The coating prepared by the present invention has strong bonding force with the substrate, has little environmental pollution, has corrosion resistance, impact resistance, and excellent wave-absorbing characteristics of marine and atmospheric environments, and the coating made of it has a wide frequency band range. It can reduce the detection distance of radar and can be used in many fields.

Description

technical field [0001] The invention relates to a coating technology, in particular to an electroplating spiral carbon fiber loaded nickel water-based anti-corrosion stealth coating and a preparation method thereof. Background technique [0002] With the development of electronic information countermeasure technology, the survivability of military facilities, equipment and weapon systems is seriously threatened. As an effective means to improve the combat effectiveness of weapons, stealth technology has been highly valued by various countries. Stealth paint is a convenient, economical and adaptable stealth technology. The absorbing material coated on the outer surface of military targets has been widely used in aerospace and military equipment. According to the function of stealth paint, it can be divided into radar stealth paint, infrared stealth paint, visible light stealth paint, laser stealth paint, etc., of which radar stealth paint accounts for more than 60%. At pres...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D163/00C09D7/61D01F9/127
Inventor 王泽董观秀徐修玲卢雅琳谈衡叶霞何庆
Owner JIANGSU UNIV OF TECH
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