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Impact deformation behavior of duplex and superaustenitic stainless steels welds by split hopkinson pressure bar
Journal article   Peer reviewed

Impact deformation behavior of duplex and superaustenitic stainless steels welds by split hopkinson pressure bar

Shing-Hoa Wang, Chih-Sheng Huang, Woei-Shyan Lee, Tao-Hsing Chen, Chia-Chang Wu, Charles Lien and Hung-Yin Tsai
Metals and Materials International, Vol.15(6), pp.1007-1015
12/2009

Abstract

Duplex stainless steel High strain rate impact Strain-induced phase transformation Superaustenitic stainless steel Weldment
A considerable volume of γ phase increases in the fusion zone (weld metal) for two duplex stainless steels after a high-strain-rate impact. The strain-induced γ phase formation in the fusion zone results in local hardness variation depending on the strain rate. The α phase content in the fusion zone decreases as the impact strain rate increases for SAF 2205 DSS and SAF 2507 DSS. The results of the two-phase content measured by Ferritoscope correspond to that assessed by image analyses. In contrast, superaustenite stainless steel is unaffected by such an impact owing to its fully stable austenization. Impacted welds at a high strain rate of 5 × 10 3 s -1 reveal feather-like surface creases along the solidified curved columnar grain boundaries. The apparent surface creases are formed due to the presence of diffuse Lüders bands, which are caused by heavy plastic deformation in coarse-grain materials. © KIM and Springer.

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