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Consideration of the oxide particle-dislocation interaction in 9Cr-ODS steel

9Cr-ODS鋼における酸化物粒子と転位の相互作用について

井尻 佑太*; 大野 直子*; 鵜飼 重治*; Yu, H.*; 大塚 智史   ; 阿部 陽介  ; 松川 義孝*

Ijiri, Yuta*; Ono, Naoko*; Ukai, Shigeharu*; Yu, H.*; Otsuka, Satoshi; Abe, Yosuke; Matsukawa, Yoshitaka*

室温でのTEM内引張その場観察により、9Cr-ODSフェライト鋼における酸化物粒子と転位の相互作用について調べた。測定した酸化物粒子の障害物強度($$alpha$$)は高々0.80で平均は0.63だった。いくつかの粗大化した粒子の周辺には転位ループが観察された。Orowan機構による応力評価式に基づく障害物強度は実験データの平均値とほぼ等しいことが分かった。交差すべり系の相互作用のみならず、Orowan機構が9Cr-ODSフェライト鋼における酸化物粒子と転位の主な相互作用機構であると考えられる。

The interaction between oxide particles and dislocations in a 9Cr-ODS ferritic steel is investigated by both static and in-situ TEM observation under dynamic straining conditions and room temperature. The measured obstacle strength ($$alpha$$) of the oxide particles was no greater than 0.80 and the average was 0.63. The dislocation loops around some coarsened particles were also observed. The calculated obstacle strength by a stress formula of the Orowan interaction is nearly equaled to the average experimental value. Not only cross-slip system but also the Orowan interaction should be considered as the main interaction mechanism between oxide particles and dislocation in 9Cr-ODS ferritic steel.

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パーセンタイル:11.52

分野:Materials Science, Multidisciplinary

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