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Corrosion-resisting high-molecular material

A polymer material and corrosion-resistant technology, applied in the field of corrosion-resistant polymer materials, can solve the problem of a single type of corrosion-resistant materials, and achieve the effect of low cost

Active Publication Date: 2013-02-20
WUXI ZHONGYI FILM TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the current types of corrosion-resistant materials are still relatively single

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] A corrosion-resistant polymer material, made of the following components by weight:

[0043] Polyarylether resin: 50 parts;

[0044] Polybutene: 20 parts;

[0045] PET: 20 servings:

[0046] Ferric oxide: 10 parts;

[0047] Ferric oxide: 5 parts;

[0048] Copper oxide: 5 parts;

[0049] Magnesium oxide: 5 parts;

[0050] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 800 mesh.

Embodiment 2

[0052] A corrosion-resistant polymer material, made of the following components by weight:

[0053] Polyarylether resin: 80 parts;

[0054] Polybutene: 10 parts;

[0055] PET: 5 servings:

[0056] Ferric oxide: 5 parts;

[0057] Ferric oxide: 1 part;

[0058] Copper oxide: 1 part;

[0059] Magnesium oxide: 1 part;

[0060] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 2000 mesh.

Embodiment 3

[0062] A corrosion-resistant polymer material, made of the following components by weight:

[0063] Polyarylether resin: 60 parts;

[0064] Polybutene: 15 parts;

[0065] PET: 15 servings:

[0066] Ferric oxide: 8 parts;

[0067] Ferric oxide: 3 parts;

[0068] Copper oxide: 3 parts;

[0069] Magnesium oxide: 3 parts;

[0070] The mesh numbers of the ferric oxide, ferric oxide, copper oxide and magnesium oxide are 1000 mesh.

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Abstract

The invention provides a corrosion-resisting high-molecular material which is prepared from the components of, by weight: 50-80 parts of polyarylether ester, 10-20 parts of polybutylene, 5-20 of parts PET, 5-10 parts of triiron tetroxide, 1-5 parts of ferric oxide, 1-5 parts of copper oxide, and 1-5 parts of magnesium oxide. The specifications of the triiron tetroxide, ferric oxide, copper oxide, and magnesium oxide are 800-2000 meshes. The corrosion-resisting high-molecular material provided by the invention can resist corrosions of strong acids or strong oxidizing agents such as concentrated sulfuric acid, concentrated hydrochloric acid, chlorine-containing solvents, and the like. The application temperature of the material is higher than common high-molecular materials. Also, the cost of the material is lower than common high-molecular materials, and the production processes are existing processes, such that the material is suitable for industrialized productions.

Description

technical field [0001] The invention relates to a polymer material, in particular to a corrosion-resistant polymer material. Background technique [0002] Corrosion refers to the damage or deterioration of materials caused by the reaction between materials and the outside world. Corrosion losses in developed countries account for 2-4% of the total income of the national economy on average. The survey in the United States in 1990 showed that the corrosion loss of the chemical industry reached 82.9 billion US dollars, and my country has also done a survey on corrosion loss. l988 is estimated to be 27-50 billion RMB. In recent years, a large number of application examples at home and abroad show that polymer materials are playing an increasingly important role in the field of enterprise anticorrosion, and are easy to form and process. The advantages of easy repair and cheap price are getting more and more attention. Therefore, the research work of experts and scholars at hom...

Claims

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Application Information

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IPC IPC(8): C08L67/00C08L23/20C08L67/02C08K3/22
Inventor 吴雄燕
Owner WUXI ZHONGYI FILM TECH
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