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Effects of impurity elements on mechanical properties and microstructures of reduced-activation ferritic/martensitic steels

低放射化フェライト鋼の機械的特性と微細組織に及ぼす不純物元素の影響

澤畠 篤司; 谷川 博康; 芝 清之; 榎本 正人*

Sawahata, Atsushi; Tanigawa, Hiroyasu; Shiba, Kiyoyuki; Enomoto, Masato*

低放射化フェライト鋼F82Hは核融合炉構造材料の第一候補材である。F82H鋼の衝撃特性はTi又はTa量を調整することで改善することができる。一方でF82H-IEA鋼の微細組織観察の結果、Taは酸化物を形成しやすく、衝撃特性の低下の要因になることも報告されている。そこで本研究では、Ti又はTaと衝撃特性の関係を微細組織観察を中心に調査を行った。

Reduced activation ferritic/martensitic steels (RAFs), such as F82H (Fe-8Cr-2W-0.2V-0.04Ta-0.1C, in wt%), are one of the leading candidates for structural materials of fusion reactors. Impact property of F82H can be improved by adjusting the amount of tantalum or titanium concentration. On the other hand, it was reported by microstructure analyses of IEA steel that tantalum has a tendency to form oxides and causes a large dispersion of fracture toughness. In this study, the correlation between titanium or tantalum concentration and the impact property were reported focusing on difference in microstructure.

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