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Nano-organic titanium polyalloy polymer, coating and preparation method thereof

A titanium polymer and nano-organic technology, which is applied in the fields of nano-organic titanium polymer alloy polymers and coatings and their preparation, can solve the problems of affecting popularization and application, high price of titanium metal materials, etc., so as to improve economic benefits and solve industrial corrosion. , the effect of reducing manufacturing costs

Active Publication Date: 2013-06-05
GUANGZHOU GEMBOND CHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, due to the high price of titanium metal materials, it has been affecting its popularization and application in general industry and special industry.

Method used

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  • Nano-organic titanium polyalloy polymer, coating and preparation method thereof
  • Nano-organic titanium polyalloy polymer, coating and preparation method thereof
  • Nano-organic titanium polyalloy polymer, coating and preparation method thereof

Examples

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Comparison scheme
Effect test

Embodiment 1

[0050] The present embodiment nano-organic titanium polymer alloy polymer, its main raw material and parts by weight are:

[0051]

[0052]

[0053] The preparation method of the above-mentioned nano organic titanium polymer alloy polymer comprises the following steps:

[0054] (1) Take each raw material by weight and place it in the planetary ball mill reactor, add three kinds of zirconium balls with different particle sizes (the particle diameters of the three kinds of zirconium balls are respectively φ15mm, φ10mm, φ5mm, and their mass ratio is 50:30 : 20), the ratio of the mass sum of the raw materials to the mass sum of the zirconium balls is 1: 6, and the reactor is sealed;

[0055] (2) Start the planetary ball mill reactor, stop every 3 hours to check the temperature and pressure in the reactor until the temperature in the reactor reaches 180°C, and the pressure reaches 0.6MPa, then the reactor continues to react until the cumulative reaction time reaches 60h and t...

Embodiment 2

[0069] The present embodiment nano-organic titanium polymer alloy polymer, its main raw material and parts by weight are:

[0070]

[0071]

[0072] The preparation method of the above-mentioned nano organic titanium polymer alloy polymer comprises the following steps:

[0073] (1) Take each raw material by weight and place it in the planetary ball mill reactor, add three kinds of zirconium balls with different particle sizes (the particle diameters of the three kinds of zirconium balls are respectively φ15mm, φ10mm, φ5mm, and their mass ratio is 50:30 : 20), the ratio of the mass sum of the raw materials to the mass sum of the zirconium balls is 1: 5, and the reactor is sealed;

[0074] (2) Start the planetary ball mill reactor, stop every 3 hours to check the temperature and pressure in the reactor until the temperature in the reactor reaches 180°C, and the pressure reaches 0.6MPa, then the reactor continues to react until the cumulative reaction time reaches 60h and t...

Embodiment 3

[0085] The present embodiment nano-organic titanium polymer alloy polymer, its main raw material and parts by weight are:

[0086]

[0087] The preparation method of the above-mentioned nano organic titanium polymer alloy polymer comprises the following steps:

[0088] (1) Take each raw material by weight and place it in the planetary ball mill reactor, add three kinds of zirconium balls with different particle sizes (the particle diameters of the three kinds of zirconium balls are respectively φ15mm, φ10mm, φ5mm, and their mass ratio is 50:30 : 20), the ratio of the mass sum of the raw materials to the mass sum of the zirconium balls is 1: 7, and the reactor is sealed;

[0089] (2) Start the planetary ball mill reactor, stop every 3 hours to check the temperature and pressure in the reactor until the temperature in the reactor reaches 180°C, and the pressure reaches 0.6MPa, then the reactor continues to react until the cumulative reaction time reaches 60h and then shut dow...

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Abstract

The invention discloses a nano-organic titanium polyalloy polymer, a coating and a preparation method thereof. The preparation method disclosed by the invention comprises the following steps of: grafting a titanium metal with an organic polymer material to form an alloy state polymer, and further preparing the nano-organic titanium polyalloy coating by taking the alloy state polymer as a base material. The nano-organic titanium polyalloy polymer can be popularized and applied in the field of corrosion prevention of industrial metal structures, not only be used for replacing a stainless steel material and solve the difficult problem of industrial corrosion, but also greatly reduce manufacturing cost and improve economic benefits of an enterprise.

Description

technical field [0001] The invention belongs to the field of nano-materials, in particular to a nano-organic titanium polymer alloy polymer, a coating and a preparation method thereof. Background technique [0002] As we all know, titanium is a metal material with excellent corrosion resistance, non-toxic, light specific gravity and high specific strength. Its alloy materials have long been used in petroleum, chemical, metallurgy, manufacturing, food, pharmaceutical, marine and other projects, especially in aerospace, Widely used in aviation high-tech fields. However, due to the high price of titanium metal materials, it has been affecting its popularization and application in general industry and special industry. If titanium metal and organic polymer materials are "grafted" into alloy state polymers, and then popularized and applied in the field of corrosion protection of industrial metal structures in the form of coatings, it can not only replace stainless steel material...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08G79/00C09D185/00C09D5/08
Inventor 张涛张中秋张弛姚迪胡安华
Owner GUANGZHOU GEMBOND CHEM