Aluminum titanate powder prepared by taking metal aluminum as aluminum source through non-hydrolytic sol-gel process at low temperature and preparation method thereof

A technology of aluminum titanate powder and metal aluminum, which is applied in the field of aluminum titanate powder prepared by non-hydrolytic sol-gel process at low temperature and its preparation, can solve problems such as difficult storage, high synthesis temperature, and complicated control process, and achieve Low cost, easy storage and weighing, and the effect of improving the synthesis effect

Active Publication Date: 2012-05-02
JINGDEZHEN CERAMIC INSTITUTE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The solid-phase method directly uses solid alumina and titanium oxide as raw materials. After mechanical mixing, it generally needs to be calcined at 1400-1500°C to synthesize aluminum titanate powder; the combustion method needs to add a large amount of fuel to provide the energy required for the synthesis of aluminum titanate, and The synthesis temperature is above 1300°C; the co-precipitation method needs to adjust the pH value to make the aluminum and titanium ions precipitate evenly, the control process is more complicated, and the synthesis temperature is generally around 1300°C (see Y.X.Huang, Materials Research Bulletin, 2002, Vol.37, P99~111); The sol-gel method has the advantages of small particles, uniform dispersion, and easy control of stoichiometry, but most of the precursor raw materials used are expensive meta

Method used

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  • Aluminum titanate powder prepared by taking metal aluminum as aluminum source through non-hydrolytic sol-gel process at low temperature and preparation method thereof
  • Aluminum titanate powder prepared by taking metal aluminum as aluminum source through non-hydrolytic sol-gel process at low temperature and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Weigh 1.9683g of aluminum powder and put it into a dry Erlenmeyer flask filled with 22ml of absolute ethanol, use a pipette to measure 4ml of titanium tetrachloride according to the stoichiometric ratio of aluminum titanate and slowly drop it into the Erlenmeyer flask, then add 0.59g ferric chloride, after vigorous stirring, put the Erlenmeyer flask into an 80°C oil bath, condense and reflux for 7 hours to obtain an aluminum titanate precursor mixture, and obtain an aluminum titanate xerogel powder after 3 hours of infrared drying. The dry gel powder is ground and heat-treated at 750° C. for 30 minutes to obtain the aluminum titanate powder of the present invention.

Embodiment 2

[0020] Weigh 1.9683g of aluminum powder and put it into a dry Erlenmeyer flask filled with 22ml of absolute ethanol, use a pipette to measure 4ml of titanium tetrachloride according to the stoichiometric ratio of aluminum titanate and slowly drop it into the Erlenmeyer flask, then add 0.95g of aluminum chloride, after vigorous stirring, the conical flask was placed in an oil bath at 110°C, condensed and refluxed for 15 hours to obtain an aluminum titanate precursor mixture, and after 3 hours of infrared drying to obtain an aluminum titanate xerogel powder. The dry gel powder is ground and heat-treated at 750° C. for 60 minutes to obtain the aluminum titanate powder of the present invention.

Embodiment 3

[0022] Weigh 1.9683g of aluminum powder and put it into a dry Erlenmeyer flask filled with 24ml of anhydrous isopropanol, and slowly drop 4ml of titanium tetrachloride into the Erlenmeyer flask according to the stoichiometric ratio of aluminum titanate with a pipette. Then add 0.1 g of iodine, stir vigorously, put the Erlenmeyer flask into an oil bath at 130° C., condense and reflux for 24 hours to obtain an aluminum titanate precursor mixture, and obtain an aluminum titanate xerogel powder after 3 hours of infrared drying. The dry gel powder is ground and heat-treated at 750° C. for 60 minutes to obtain the aluminum titanate powder of the present invention.

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Abstract

The invention discloses aluminum titanate powder prepared by taking metal aluminum as an aluminum source through a non-hydrolytic sol-gel process at a low temperature and a preparation method thereof. The metal aluminum and titanium tetrachloride are used as precursor raw materials, anhydrous low-carbon alcohol is used as an oxygen donor, and a proper catalyst is selected to prepare the aluminum titanate powder at the low temperature of 750 DEG C. According to the invention, the metal aluminum is utilized to replace aluminum alkoxide and inorganic aluminum salt as the aluminum source, so the preparation method disclosed by the invention has the outstanding advantages of cheap reaction raw material, simple process, low synthesis temperature and the like, and is suitable for industrial massproduction.

Description

technical field [0001] The invention relates to the technical field of ceramic powder preparation, in particular to an aluminum titanate powder prepared at low temperature by a non-hydrolytic sol-gel process using aluminum as an aluminum source and a preparation method thereof. Background technique [0002] Aluminum titanate combines low expansion and high temperature resistance, and also has high melting point, low thermal conductivity, small expansion coefficient, good thermal shock resistance, strong corrosion resistance and non-wetting of various metals and glass melts. And other characteristics, it has broad application prospects in the fields of steel, non-ferrous metals, glass, chemical industry, automobile, military industry and so on. Aluminum titanate powder is an important raw material for preparing aluminum titanate ceramic materials. The key to the industrialization and wide application of aluminum titanate ceramic materials is to select cheap reaction raw mate...

Claims

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Application Information

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IPC IPC(8): C04B35/478C04B35/626C04B35/624
Inventor 江伟辉张权刘健敏朱庆霞谭训彦包镇红苗立锋虞澎澎
Owner JINGDEZHEN CERAMIC INSTITUTE
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