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Method for preparing high-strength high-density isotropic graphite material

A graphite material and isotropic technology, applied in the field of preparation of graphite materials, can solve the problems of poor performance of isotropic graphite materials, low cost of MCMB, low volatile content, etc., and achieve fine and uniform graphite structure, stable source of raw materials, The effect of high yield

Active Publication Date: 2016-01-27
HUNAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the raw materials used in the self-sintering method include raw petroleum coke powder, insoluble pitch powder, and pitch mesophase carbon microspheres (MCMB for short), among which MCMB is a more commonly used self-sintering raw material. And pre-oxidation modification treatment to obtain MCMB that meets the requirements of the self-sintering process, which complicates the original simple process and increases the cost, so it is not possible for large-scale production
[0004] At present, the cost of industrially produced MCMB is low and the raw materials are easy to obtain, but the particle size is relatively coarse, D50 is above 20 μm, and the volatile content is very low, less than 7%, so the self-sintering property is poor. Using this MCMB for direct molding and heat treatment, The resulting product does not perform well
Adding asphalt to increase the volatile content to improve its self-sintering property is currently the most commonly used method, but it is difficult to make the asphalt Uniform mixing with pitch mesophase carbon microspheres leads to poor performance of the prepared isotropic graphite material

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A kind of preparation method of isotropic graphite material, make according to the following steps:

[0021] 1) First, add 44.4g of asphalt powder to 300ml of toluene solvent at room temperature, stir, and gradually dissolve to form a toluene solution of asphalt;

[0022] 2) Weigh 400g of MCMB powder, and add the MCMB powder into the asphalt toluene solution under stirring at room temperature to form a paste, and the volume ratio of MCMB powder to toluene is 5:3;

[0023] 3) Spread the above paste evenly on a stainless steel plate, put it into a fume hood to volatilize naturally for 30 minutes, and then place it in an oven at 110°C for 12 hours to remove the toluene solvent;

[0024] 4) Use a pulverizer with a lower power to pulverize and disperse the desolventized raw material particles at a speed of 200 r / min until the pass rate of a 100 mesh sieve is 95%, and obtain pressed powder, the content of volatile matter in the pressed powder accounts for the pressure The to...

Embodiment 2

[0030] The steps are basically the same as in Example 1, the difference: asphalt powder is 42.6g; the non-polar organic solvent is tetrahydrofuran, and the consumption is 400ml; The volatile content accounts for 12.5wt% of the total mass of the pressed powder; the maximum molding pressure is 150MPa. The prepared graphite material has been tested and its bulk density is 1.83g / cm 3 , the flexural strength is 49.4MPa, the compressive strength is 73.8MPa, the resistivity is 15.8μΩm, and the isotropy is 1.05.

Embodiment 3

[0032] Substantially the same step as in Example 1, the difference: asphalt powder is 42.6g; the non-polar organic solvent is carbon tetrachloride, and the consumption is 350ml; in the pulverizing raw material particle step, the rotating speed of the pulverizer is 100r / min; The volatile matter content in the pressed powder accounts for 11.3wt% of the total mass of the pressed powder; the maximum molding pressure is 150MPa. The prepared graphite material has been tested and its bulk density is 1.81g / cm 3, the flexural strength is 49.0MPa, the compressive strength is 75.7MPa, the resistivity is 17.3μΩm, and the isotropy is 1.04.

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Abstract

The invention provides a method for preparing a high-strength high-density isotropic graphite material. According to the method, pitch mesocarbon micro bead (MCMB) powder of which the D50 is larger than 20 micrometers, and the volatile content is less than 7 percent is taken as a raw material, and the high-strength high-density isotropic graphite material is prepared by adopting the self-sintering process that the raw material powder is added into an organic solvent of pitch, the solvent is removed, the powder is pressed, a green briquette is formed through isostatic compaction, roasting and carbonization are performed, and graphitization is performed. According to the method, an organic solvent method is utilized to disperse bitumastic cement, so as to realize the modification on MCMB powder with large size and low volatile matter, the original shapes and sizes of the MCMB particles are basically kept after modification, good self sinterability is realized, and the finally obtained graphite is fine and uniform in structure, high in density and excellent in mechanical property. The pitch of the dispersed and modified MCMB is distributed uniformly, the inner stress of the green briquette in the isostatic compaction step is more uniformly distributed, and balanced expansion and shrinkage in the working procedures of roasting and graphitization are realized, and therefore, a product is not liable to crack, and the yield reaches not less than 90 percent.

Description

technical field [0001] The invention relates to a preparation method of a graphite material, in particular to a preparation method of an isotropic graphite material using pitch mesophase carbon microspheres as raw materials. Background technique [0002] Isotropic graphite has the characteristics of small specific gravity, high mechanical strength, good electrical and thermal conductivity and high temperature resistance, and is widely used. In the EDM precision mold processing (precision forging mold, precision parts, engineering plastic mold, etc.) industry, fine-structure and ultra-fine-structure isotropic graphite are often used as tool electrodes; Crystalline silicon furnaces use fine-structure isotropic graphite components as the thermal field; high-temperature gas-cooled reactors in the nuclear industry require a large number of large-scale isotropic graphite materials as deceleration materials and reflective materials, such as graphite core bricks and hot gas pipes fo...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B31/04
Inventor 刘洪波秦东杰陈惠
Owner HUNAN UNIV
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