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Development of doped graphites for plasma-facing components

P Paz, C Garcı́a-Rosales, J Echeberria, M Balden, R Behrisch2001年Fusion Engineering and DesignIF 1.7出版社

AbstractDoping of carbon leads to a reduction of chemical erosion. This reduction is more effective if dopants are in the form of sub-μm precipitates with a very homogeneous distribution. However, dopants should not degrade but rather improve the thermal conductivity of graphite. Taking into account the catalytic effect of some metals and carbides on the graphitization, the potential for a development of improved doped carbon materials with reduced chemical erosion and optimized thermomechanical properties becomes evident. First results on the development of doped carbon materials starting from mesophase carbon powder and with different fine grain carbides as dopants show that VC acts as an effective catalyst for the graphitization. The materials obtained show high densities, a relatively low open porosity and good mechanical properties.

日本語訳

カーボンへのドーピングは、化学エロージョンの低減につながる。この低減は、ドーパントがサブμmの析出物の形で、非常に均一に分布している場合に、より効果的である。しかし、ドーパントは黒鉛の熱伝導率を低下させるのではなく、むしろ向上させるべきである。黒鉛化に対するいくつかの金属および炭化物の触媒効果を考慮すると、化学エロージョンが低減され、熱機械的特性が最適化された、改善されたドープ炭素材料の開発の可能性が明らかになる。メソフェーズ炭素粉末を出発原料とし、種々の微細粒炭化物をドーパントとして作製したドープ炭素材料の開発に関する最初の結果は、VCが黒鉛化の効果的な触媒として作用することを示している。得られた材料は、高密度、比較的低い開気孔率、および良好な機械的特性を示す。

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