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A kind of masterbatch and preparation method for graphene anticorrosion coating

A technology of anti-corrosion coatings and graphene, applied in the direction of anti-corrosion coatings, epoxy resin coatings, coatings, etc., can solve problems such as difficult to disperse, easy to overlap and agglomerate, graphene is easy to re-overlap and aggregate, etc., to achieve enhanced anti-corrosion performance and compatibility Good performance, uniform effect of graphene anti-corrosion masterbatch

Active Publication Date: 2018-08-24
湖南邦泽科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0009] Aiming at the defects that graphene is difficult to disperse in the application of anti-corrosion coatings and the layers of graphene are easy to re-overlap and gather, the present invention proposes a masterbatch and preparation method for graphene anti-corrosion coatings, by using porous redispersible latex powder The particles are equipped with graphene to indirectly improve its dispersion performance, which solves the problem that graphene is easy to overlap and agglomerate when applied in anti-corrosion coatings

Method used

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  • A kind of masterbatch and preparation method for graphene anticorrosion coating

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Embodiment 1

[0031](1) Put the ethylene / vinyl acetate copolymer of redispersible latex powder particles with a particle size of 80 μm into the vibrating fluidized bed, control the vibration frequency to 50 Hz, and redispersible latex powder particles after blowing and boiling , the deposition thickness of the redispersible latex powder in the vibrating fluidized bed is 30mm, and the redispersible latex powder particles with uniform distribution are obtained;

[0032] (2) Etching the redispersible latex powder particles with a laser array, the laser array is distributed at the bottom of the vibrating fluidized bed, the laser array is composed of 5×4 laser units, and the laser units are Krypton ion laser, control the energy density of the laser unit to 350mJ / cm 2 , when performing etching, adjust the working distance between the laser emission surface of the laser array and the deposited redispersible latex powder particles to be 25 mm, the vibrating fluidized bed keeps vibrating, and the vi...

Embodiment 2

[0036] (1) Put the redispersible latex powder particles with a particle size of 50 μm into the vibrating fluidized bed, and control the vibration frequency to 55 Hz. After the redispersible latex powder particles are blown and boiled , the deposition thickness of the redispersible latex powder in the vibrating fluidized bed is 15mm, and the redispersible latex powder particles with uniform distribution are obtained;

[0037] (2) Etching the redispersible latex powder particles with a laser array, the laser array is distributed at the bottom of the vibrating fluidized bed, the laser array is composed of 15×10 laser units, and the laser units are Xenon ion laser, control the energy density of the laser unit to be 320mJ / cm 2 , when performing etching, adjust the working distance between the laser emission surface of the laser array and the deposited redispersible latex powder particles to be 50 mm, the vibrating fluidized bed keeps vibrating, and the vibration frequency is 30 Hz,...

Embodiment 3

[0041] (1) Put the ethylene / vinyl acetate copolymer of redispersible latex powder particles with a particle size of 60 μm into the vibrating fluidized bed, control the vibration frequency to 40 Hz, and redispersible latex powder particles after blowing and boiling treatment , the deposition thickness of the redispersible latex powder in the vibrating fluidized bed is 30mm, and the redispersible latex powder particles with uniform distribution are obtained;

[0042] (2) Etching the redispersible latex powder particles with a laser array, the laser array is distributed at the bottom of the vibrating fluidized bed, the laser array is composed of 15×15 laser units, and the laser units are Excimer laser, control the energy density of the laser unit to be 200mJ / cm 2 , when performing etching, adjust the working distance between the laser emission surface of the laser array and the deposited redispersible latex powder particles to be 10mm, the vibrating fluidized bed keeps vibrating,...

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Abstract

The invention provides a masterbatch for a graphene anticorrosive coating and a preparation method of the masterbatch. The preparation method comprises the following steps: carrying out depth etchingon rubber powder particles by using laser for improving porosity of the rubber powder particles; then filling graphene into holes of a porous rubber powder material for carrying out high-speed stirring, enabling the porous rubber powder to effectively adsorb and carry graphene and finally obtaining the masterbatch. The prepared masterbatch is added into a waterborne resin coating for reacting withwater and quickly dispersing, and a continuous film is formed inside the coating, so that the graphene is driven to be uniformly dispersed into the coating, and further the problem that the grapheneis easy to overlap and aggregate in the application of anticorrosive coatings is effectively solved. Furthermore, porous emulsion powder particles are used as a carrier, has good compatiblity with thecoating and does not contain any impurity components; besides, the graphene anticorrosive masterbatch prepared by the method, disclosed by the invention, has the advantages of convenience in storage,no environmental pollution and remarkable market application value.

Description

technical field [0001] The invention relates to the field of graphene materials, in particular to a masterbatch for graphene anti-corrosion coatings and a preparation method. Background technique [0002] Anti-corrosion coatings are widely used in modern industry, transportation, energy, marine engineering and other departments. According to the corrosion resistance of the coating film and the use requirements, it is usually divided into two types: conventional type and heavy anti-corrosion type. At present, the market size of my country's anti-corrosion coatings ranks second only to architectural coatings. According to Qianzhan.com, the total output of anti-corrosion coatings in my country will reach about 6 million tons by 2017, and the total output of anti-corrosion coatings in my country will reach about 6.8 million tons by 2018. Among them, heavy-duty anti-corrosion coatings have the fastest growth rate and have promising development prospects. Compared with conventi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D163/00C09D5/08C09D7/62C08J3/22
Inventor 陈庆昝航
Owner 湖南邦泽科技有限公司
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