溶接学会論文集
Online ISSN : 2434-8252
Print ISSN : 0288-4771
溶接時のα/γ変態によって生じるりんの粒界偏析
Cr-Mo鋼熱影響部の低延性クリープ破壊に関する研究(第3報)
玉置 維昭鈴木 実平川上 博士渡邊 靖之
著者情報
ジャーナル フリー

2001 年 19 巻 1 号 p. 60-69

詳細
抄録
Two types of intergranular fractures (type I and II) were observed in the specimens after the creep-rupture test on the synthetic HAZ of Cr-Mo steel. The types I and II fractures, respectively, may be induced by the weld-thermal-cycle, and by some mechanism of secondary segregation. The authors assumed that the type I fracture will be brought about by the segregation induced by the α/γ transformation ("the transformation-induced segregation") during welding. The possibility of arising the transformation-induced segregation was examined by the experiments on the synthetic HAZ and also by the calculations. The grain boundaries of prior-austenite was analyzed by using two methods ; "the EDX analysis in a micro-region" and "the grain boundary etching method". The experimental results informed that phosphorus was concentrated in the grain boundary at the time when the α/γ transformation occurred. The greater the heating rate, the larger the quantity of phosphorus in grain boundary. The segregation of phosphorus will be induced by a great heating rate such as 1000 K/s. The mechanism of this type of segregation could be explained from the view point of the distribution of phosphorus in transformed phase (austenite) and original one (ferrite). Phosphorus is accumulated at the α/γ interface as the distribution coefficient ko (=[P]γ/[P]α) is smaller than the unit.
著者関連情報
© 一般社団法人 溶接学会
前の記事 次の記事
feedback
Top