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A kind of highly wear-resistant and high-hardness nano-scale titanium crystal coating solution and its preparation method

A nano-scale, high-hardness technology, applied in the field of coating solution, can solve problems such as being unable to be effective for a long time, affecting use and promotion, and easy to adhere to dust, so as to prevent atmospheric oxidation of noble commodities, and the production method is simple and easy. shedding effect

Active Publication Date: 2016-02-03
昆仑中天(广州)创新科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At this time, it is easier to attach dust, and it is easier to cause fine scratches when cleaning
There are also coatings on the surface of objects in the market, which generally can only last for three months to half a year, and cannot be effective for a long time
At the same time, the functions are relatively simple, most of which are professional-specific, and the versatility is relatively poor
[0004] Although there are effective coating solutions on the market, their use and promotion are affected due to their high price

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] The weight percentage of each component is, wax mixed TiO 2 : 40%; Dispersant Troysol98c: 5%; Trimethylolpropane ester: 25%; Dodecylbenzene: 30%; TiC1 4 The purity is 98%. The production steps are as follows:

[0041] Step 1, heating; preheat TiC1 by indirect heating of fuel oil 4 , the preheated TiC1 4 into the generator; at the same time, chlorine and aluminum powder are sent into the generator to react to generate AlCl 3 , the molar ratio of chlorine to aluminum powder is 3:2; generate AlCl 3 The heat of reaction further preheats the TiC1 4 , to obtain TiC1 4 and AlC1 3 mixture;

[0042] Step 2, replacement; the TiC1 4 and AIC1 3 The mixture is sent to the oxidation reactor. At the same time, the oxygen is indirectly heated by the fuel oil through the oxygen preheater. The preheated oxygen is introduced into the combustion chamber, and the fuel oil is added to burn to further increase the oxygen temperature, and the heated oxygen is sent to the oxidation re...

Embodiment 2

[0048] The weight percentage of each component is, wax mixed TiO 2 : 35%; Dispersant Troysol98c: 3%; Trimethylol propane ester: 22%; Dodecylbenzene: 40%; TiC1 4 The purity is 99%. The production steps are as follows:

[0049] Step 1, heating; preheating TiC1 by means of indirect current heating 4 , the preheated TiC1 4 into the generator; at the same time, chlorine and aluminum powder are sent into the generator to react to generate AlCl 3 , the molar ratio of chlorine to aluminum powder is 3:2; generate AlCl 3 The heat of reaction further preheats the TiC1 4 , to obtain TiC1 4 and AlC1 3 mixture;

[0050] Step 2, replacement; the TiC1 4 and AIC13 3 The mixture is sent to the oxidation reactor, and at the same time, the oxygen is indirectly heated by an electric current through the oxygen preheater, the preheated oxygen is introduced into the combustion chamber, fuel oil is added to burn to further increase the oxygen temperature, and the heated oxygen is sent to the...

Embodiment 3

[0055] The weight percentage of each component is, wax mixed TiO 2 : 50%; Dispersant Troysol98c: 8%; Trimethylolpropane ester: 20%; Dodecylbenzene: 22%; TiC1 4 The purity is 99.99%. The production steps are as follows:

[0056] Step 1, heating; preheating TiC1 by means of indirect diesel heating 4 , the preheated TiC1 4 into the generator; at the same time, chlorine and aluminum powder are sent into the generator to react to generate AlCl 3 , the molar ratio of chlorine to aluminum powder is 3:2; generate AlCl 3 The heat of reaction further preheats the TiC1 4 , to obtain TiC1 4 and AlC1 3 mixture;

[0057] Step 2, replacement; the TiC1 4 and AIC1 3 The mixture is sent to the oxidation reactor, and at the same time, the oxygen is indirectly heated by the diesel oil through the oxygen preheater, the preheated oxygen is introduced into the combustion chamber, fuel oil is added to burn to further increase the oxygen temperature, and the heated oxygen is sent to the oxidat...

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Abstract

The invention discloses high-wear-resistant high-hardness nanoscale titanium crystal coating liquid and a preparation method thereof. The coating liquid comprises the following components by weight percent: 30%-60% of wax-doped TiO2, 2%-8% of a dispersant, 20%-40% of a hydroxyl solvent and 20%-50% of an alkyl solvent, wherein the hydroxyl solvent is, for example, trimethylolpropane; the alkyl solvent is, for example, dodecylbenzene; the dispersant is, for example, Troysol 98c. The preparation method comprises the following steps: heating, displacing, performing wax mixing, and forming. The coating liquid has the characteristics of improving the hardness, brightening the surface, avoiding oxidation and the like, is long-acting and has a safety protection effect; the coating liquid is simple to prepare and low in cost, can be applied to coating protection and lubricating oil protection, and is suitable for the fields of machinery such as vehicles and household appliances, buildings and others.

Description

technical field [0001] The invention relates to a coating liquid, which can also be used as a lubricating liquid, in particular to a nano-scale titanium crystal coating liquid with high wear resistance and high hardness. Background technique [0002] At present, coating products mainly include fluorine and silicone oil. The difference between coating products containing silicone oil and the oil in car wax is that it is a 100% silicon compound, which is different from oil in nature. It will not Oxidative deterioration. Fluorine-containing coating products, that is, coating products contain fluorine-containing polymers represented by polytetrafluoroethylene, and use the unique characteristics of fluorine to improve the tension and adsorption performance of the paint surface, because it has unique properties that other materials do not have Features, such as its surface properties, heat resistance, stability and chemical resistance, etc., the use of this coating can prevent ac...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09D1/00C09D191/06C10M163/00
Inventor 杨发祥
Owner 昆仑中天(广州)创新科技有限公司