Polymeric compound coating and preparation method and application thereof

A composite coating and polymer technology, applied in coatings, metal material coating technology, antifouling/underwater coatings, etc., can solve problems such as accumulation, harm to the marine ecological environment, and even human health, and achieve simple and excellent processes Anti-corrosion performance and anti-biofouling performance, pollution reduction effect

Inactive Publication Date: 2017-06-20
NINGBO INST OF MATERIALS TECH & ENG CHINESE ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] At present, the slow release of antifouling agents in coatings or coatings is an effective means of preventing marine damage. In the past few decades, antifouling coatings containing toxic antifouling agents such as organotins have been widely used.

Method used

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  • Polymeric compound coating and preparation method and application thereof
  • Polymeric compound coating and preparation method and application thereof
  • Polymeric compound coating and preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1~3

[0049] In the following three examples, the prepared polymer composite coating is a polyethylene / garlic powder composite coating, wherein the mass fraction of garlic powder is respectively 10%, 30%, and 50%, which are successively recorded as PE-10%Garlic, PE-30% Garlic and PE-50% Garlic. The thickness of the coating is 80 μm, the substrate is a Q235 steel sheet with a thickness of about 2 mm, and the coating is well combined with the substrate material.

[0050] The concrete preparation method of this polyethylene / garlic powder composite coating is as follows:

[0051] 1. Weigh 100g of polyethylene (PE) powder, ultrasonically, and dry; add garlic powder (about 20 μm in size) to the polyethylene powder in proportion, and mechanically stir until uniform, and finally obtain a mixed powder of polyethylene / garlic powder;

[0052] 2. Clean the substrate with acetone, ethanol, and deionized water in sequence, and use 60 mesh brown corundum sand to roughen the surface of the Q235 st...

Embodiment 4~6

[0060] In the following three examples, the prepared polymer composite coating is polyethylene / paprika composite coating, wherein the mass fraction of paprika is respectively 10%, 30%, 50%, and the coating thickness is 80 μm, and the substrate is For Q235 steel sheets with a thickness of about 2mm, the coating is well combined with the base material.

[0061] The concrete preparation method of this polyethylene / paprika composite coating is as follows:

[0062] 1. Weigh 100g of polyethylene (PE) powder, ultrasonically, and dry; add chili powder (about 20 μm in size) to the polyethylene powder in proportion, and mechanically stir until uniform, and finally obtain a mixed powder of polyethylene / paprika;

[0063] 2. Clean the substrate with acetone, ethanol, and deionized water in sequence, and use 60 mesh brown corundum sand to roughen the surface of the Q235 steel sheet. The air pressure used for sandblasting is 0.5MPa to make its roughness reach the Requirements, it is benefic...

Embodiment 7~9

[0070] In the following three examples, the prepared polymer composite coating is a polyethylene / ginger powder composite coating, wherein the mass fraction of ginger powder is respectively 10%, 30%, 50%, and the coating thickness is 80 μm, and the matrix is For Q235 steel sheets with a thickness of about 2mm, the coating is well combined with the base material.

[0071] The concrete preparation method of this polyethylene / ginger powder composite coating is as follows:

[0072] 1. Weigh 100g of polyethylene (PE) powder, ultrasonically, and dry; add ginger powder (about 20 μm in size) to the polyethylene powder in proportion, and mechanically stir until uniform, and finally obtain a mixed powder of polyethylene / ginger powder;

[0073] 2. Clean the substrate with acetone, ethanol, and deionized water in sequence, and use 60 mesh brown corundum sand to roughen the surface of the Q235 steel sheet. The air pressure used for sandblasting is 0.5MPa to make its roughness reach the Req...

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Abstract

The invention discloses a polymeric compound coating and a preparation method and an application thereof. The polymeric compound coating disclosed by the invention has excellent corrosion resistant performance and biological stain resistance, and has a wide-spectral, efficient and lasting antibacterial effect. The preparation method disclosed by the invention is simple in process, few in environmental pollution and high in efficiency, spraying is not limited by dimension and shape of a workpiece, and the coating is low in cost and suitable for being prepared in a large area. The polymeric compound coating disclosed by the invention has good application prospect and economical benefit in the field of corrosion resistance and marine stain prevention.

Description

technical field [0001] The invention relates to the technical field of composite coatings, in particular to a polymer composite coating and its preparation method and application. Background technique [0002] In recent years, with the rapid development of marine transportation, seabed oil and minerals, mariculture, seawater desalination, marine power generation and other industries, marine biofouling and corrosion have attracted more and more attention. When a material or object is immersed in seawater, the surface is quickly covered by a single layer of polymer material to form a regulating film. Immediately afterwards, bacteria and single-cell diatoms will quickly adhere to the regulatory membrane, and the bacteria will secrete exopolysaccharides, which will connect the bacteria and the substrate, and the bacteria and the substrate to form a thin layer of mucous membrane. The shells below the waterline of ships and docks have been in contact with seawater for a long time...

Claims

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Application Information

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IPC IPC(8): C23C4/04C23C4/12C23C4/129C23C4/134C09D123/06C09D5/16C09D5/14
CPCC09D123/06C09D5/1606C23C4/04C23C4/12
Inventor 王鑫刘奕龚永锋所新坤黄晶周平李华
Owner NINGBO INST OF MATERIALS TECH & ENG CHINESE ACADEMY OF SCI
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