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Development of silicon carbide composites for fusion

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

The use of silicon carbide composites for structural materials is of growing interest in the fusion community. However, radiation effects in these materials are virtually unexplored, and the general state of ceramic matrix composites for nonnuclear applications is still in its infancy. Research into the radiation response of the most popular silicon carbide composite, namely, the chemically vapor-deposited (CVD) SiC-carbon-Nicalon fiber system is discussed. These areas of interest are the stability of the fiber and matrix materials, the stability of the fiber-matrix interface, and the true activation of these ″reduced activity″ materials. Two methods are presented that quantitatively measure the effect of radiation on fiber-matrix interfacial strength. The results of these studies show that the factor limiting the radiation performance of the CVD SiC-carbon-Nicalon system is degradation of the Nicalon fiber, which leads to a weakened carbon interface. The activity of these composites is significantly higher than expected and is dominated by impurity isotopes.

Original languageEnglish
Pages (from-to)65-82
Number of pages18
JournalFusion Technology
Volume24
Issue number1
DOIs
StatePublished - 1993

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