δフェライト共存下でのオーステナイト系ステンレス鋼溶接金属の鋭敏化挙動のフェーズフィールドシミュレーション
関 彰, 小川 和博, 寺岡 慎一, 相良 雅之
pp. 213-218
DOI:
10.2207/qjjws.36.213抄録
The sensitization behavior in austenitic stainless steel weld metal was simulated using the phase-field method. The simulations were performed for two cases that δ-ferrite does and does not exist in austenitic phase. The calculation results revealed that the Cr-depleted zones do not form both in the vicinity of γ/M23C6 and δ/M23C6 when δ-ferrite exists. On the other hand the Cr-depleted zones form in the interface of γ/M23C6 in the austenitic stainless steel when δ-ferrite dose not exist. The suppression of the formation of Cr-depleted zone can be explained by the model that carbon atoms in the austenitic phase are consumed due to rapid growth of M23C6 in δ-ferrite.