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軽水炉圧力容器の寿命予測と延命処理について,1; 照射誘起析出物G相Ni$$_{16}$$Si$$_{7}$$Mn$$_{6}$$

Prediction and extension of lifetime of reactor pressure vessel, 1; Irradiation-induced precipitate G-phase Ni$$_{16}$$Si$$_{7}$$Mn$$_{6}$$

松川 義孝*; 渡邊 大樹*; 連川 貞弘*; Abad, N. M.*; 牟田 浩明*; 吉田 健太*; 笠田 竜太*; 山口 正剛   ; 熊野 秀樹*; 遠藤 美奈子*

Matsukawa, Yoshitaka*; Watanabe, Daiki*; Tsurekawa, Sadahiro*; Abad, N. M.*; Muta, Hiroaki*; Yoshida, Kenta*; Kasada, Ryuta*; Yamaguchi, Masatake; Kumano, Hideki*; Endo, Minako*

軽水炉を80年近くまで運転し続けた場合、G相や$$Gamma_2$$相といったNi-Si-Mn三元系金属間化合物が圧力容器鋼に析出し、それが照射脆化に寄与すると現在一般に考えられている。これらの化合物と拡散係数の関係に着目した基礎研究を開始した。圧力容器鋼の析出物/マトリックス界面における相互拡散の特徴を調査する目的で、化合物のバルク材をアーク溶解で作製し、それを純鉄のバルク材と接合することで、いわゆる拡散対を作製した。本報告ではG相について得られた知見について述べる。

It is now generally believed that when a light water reactor is operated for nearly 80 years, Ni-Si-Mn ternary intermetallic compounds such as the G phase and the $$Gamma_2$$ phase precipitate in the pressure vessel steel, which contribute to irradiation embrittlement. We have started a basic study focusing on the relationship between these compounds and diffusion coefficients. In order to investigate the characteristics of interdiffusion at the precipitate/matrix interface of pressure vessel steels, bulk materials of the compounds were prepared by arc melting and bonded to bulk materials of pure iron to produce so-called diffusion pairs. In this report, we describe our findings for the G phase.

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