Prepn process of tantalum-containing carbon-base composite material precursor

A technology of composite materials and precursors, which is applied in the field of preparation of tantalum-containing carbon-based composite material precursors, can solve problems such as weak bonding force between the tantalum carbide layer and the carbon material interface, limited size of the prepared material, and poor thermal shock resistance. , to achieve the effect of uniform distribution of tantalum elements, low cost and small particle size

Inactive Publication Date: 2005-07-13
SHANXI INST OF COAL CHEM CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the above-mentioned preparation methods have the following disadvantages: long manufacturing cycle, high price, greatly limited size of the prepared material, and weak bonding force between the tantalum carbide layer and the carbon material interface, poor thermal shock resistance at instantaneous high temperature, resulting in easy cracking of the sample , the application is very limited
The use of powder doping can reduce the cost, uniform mixing can eliminate the influence of the interface, and improve the thermal shock resistance. It is an effective means of modification. 2 o 5 : 8.7g / cm 3 ;TaC: 14.4g / cm 3 ) and carbon matrix (3 ) has a large difference in density, and it is difficult to mix evenly by traditional mechanical and physical mixing methods, resulting in easy cracking of the product.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Take 400 grams of coal tar pitch with a softening point of 60° C., 8 grams of tantalum pentachloride, and react at 350° C. for 4 hours to obtain tantalum-containing pitch. The softening point of the pitch is 85°C, the tantalum content is 1.67wt%, and the carbon production rate is 48.0wt%.

Embodiment 2

[0020] Take 400 grams of coal tar pitch with a softening point of 64° C., 16 grams of tantalum tetrachloride, and react at 370° C. for 6 hours to obtain tantalum-containing pitch. The softening point of the pitch is 104°C, the content of tantalum is 3.37wt%, and the carbon yield is 52.8wt%.

Embodiment 3

[0022] Take 400 grams of coal tar pitch with a softening point of 68° C., and 48 grams of tantalum trichloride, and react at 260° C. and a pressure of 0.3 Mpa for 6 hours to obtain tantalum-containing pitch. The softening point of the pitch is 136°C, it contains tantalum 8.82wt%, and the carbon yield is 64.7%.

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Abstract

The preparation process of tantalum-containing carbon-base composite material precursor includes mixing coal tar pitch or petroleum asphalt of softening point of 60-80 deg.c and tantalum chloride in the mass ratio of 100 to 1-20 in inert atmosphere and water-less environment; and reaction at 260-420 deg.c and self pressurizing or 0.3-1.0 MPa pressure while mechanical stirring for 4-10 hr. The preparation process is simple and low in cost, and the tantalum-containing carbon-base composite material precursor may be used as the soaking agent, adhesive or self-sintering material for preparing high performance tantalum-containing carbon-base composite material.

Description

technical field [0001] The invention belongs to a method for preparing a carbon-based composite material precursor containing tantalum, and in particular relates to a method for preparing a carbon material precursor by doping transition metal inorganic salts with pitch as a raw material. Background technique [0002] Carbon materials have remarkable characteristics such as good electrical conductivity, excellent high-temperature strength, excellent thermal shock resistance and chemical stability, and are widely used in high-tech fields such as aerospace and aviation. However, oxidation and ablation will occur in a high temperature oxidizing atmosphere. The rapid development of aerospace technology requires materials to have high mechanical strength, good thermal shock resistance, ablation resistance and oxidation resistance under extreme environments (ultra-high temperature, ultra-vacuum, strong erosion, strong radiation, etc.). [0003] Tantalum carbide has a high melting ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/56
Inventor 刘朗李秀涛史景利郭全贵
Owner SHANXI INST OF COAL CHEM CHINESE ACAD OF SCI
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