Anticorrosive pipeline paint and its prepn

A technology for anti-corrosion coatings and coatings, applied in the direction of anti-corrosion coatings, coatings, polyamide coatings, etc., can solve the problems of high epoxy brittleness, high cost, complex production process, etc., and achieve good mechanical impact resistance and chemical reagent resistance Good performance and high heat deflection temperature

Inactive Publication Date: 2007-01-03
NEW MATERIAL INST OF SHANDONG ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] One is the PE structure anti-corrosion pipe. This kind of anti-corrosion pipe is widely used and its service life can reach 50 years. promotion application;
[0004] The second is the single FBE sprayed anti-corrosion pipe. This kind of anti-corrosion pipe is widely used and has good anti-corrosion effect, but its impact resistance and surface scratch resistance are poor. Cracks will appear under heavy impact and the anti-corrosion effect will be lost; and it is only suitable for external anti-corrosion of pipelines.
[0005] The third is the epoxy powder system. The double-layer epoxy powder anti-corrosion pipe adopted by 3M Company and DuPont Company of the United States solves the problems in

Method used

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Examples

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Embodiment Construction

[0023] The present invention will be described in detail below through examples. This example is only used to further illustrate the present invention and should not be construed as limiting the scope of protection of the present invention. Those skilled in the art can make some non-essential things based on the content of the present invention. Improvements and adjustments.

[0024] Ingredients

Epoxy resin

E12

Fluorocarbon resin

Nylon resin

1212

Zinc Aluminum Alloy Flake / Mica Iron Oxide

(Treated with titanate coupling agent)

Sebacic Acid

Hydrazide

Weight

(Kg)

100

8

15

10 / 15

10

[0025] Preparation:

[0026] (1) Treatment of inorganic filler: first treat the inorganic filler with titanate coupling agent. The inorganic filler was put into a 5% NaOH solution, soaked at 70°C for 30 minutes, and then taken out and washed with water until the pH was neutral. Then, put it into 150Kg of tita...

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PUM

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Abstract

The anticorrosive pipeline paint consists of epoxy resin 100 weight portions, fluorocarbon resin 5-15 weight portions, nylon resin 5-15 weight portions, inorganic filler 10-40 weight portions and compound curing agent 10-25 weight portions. The preparation process includes the following steps: treating the inorganic filler with titanate coupler; mixing epoxy resin, fluorocarbon resin, nylon resin and compound curing agent and smelting and extruding in a double screw extruder; freezing and crushing to 100-300 mesh, adding the inorganic filler through stirring. The anticorrosive pipeline paint has the advantages of short curing period, high corrosion resistance, high strength, low friction coefficient, hydrophobicity and lipophobicity.

Description

1. Technical Field [0001] The invention relates to an anticorrosive coating paint for high-efficiency low-friction pipelines and a preparation method thereof. 2. Background technology [0002] At present, the external anti-corrosion technologies for steel pipelines usually have the following types: [0003] One is PE structure anti-corrosion pipe. This kind of anti-corrosion pipe has a large application volume and a service life of up to 50 years. However, the production process is complicated and the cost is high. It is difficult to achieve cathodic protection by cathode shielding during use, and it is only suitable for external anti-corrosion of pipelines. Promotion and application; [0004] The second is a single FBE sprayed anti-corrosion pipe. This kind of anti-corrosion pipe has a large amount of application and good anti-corrosion effect, but it has poor impact resistance and surface scratch resistance. Cracks will appear on heavy impact and lose the anti-corrosion effect;...

Claims

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Application Information

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IPC IPC(8): C09D163/00C09D5/08F16L58/10C09D201/02C09D177/00
Inventor 李晓俊刘丰
Owner NEW MATERIAL INST OF SHANDONG ACADEMY OF SCI
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