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Ferritic-austenitic solidification mode in austenitic stainless steel welds

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Abstract

The macro-and microstructures of about fifty different stainless welds of the AISI/ AWS 300 series are analyzed. The results indicate that under conditions corresponding to a typical shielded metal arc (SMA) welding the welds with a ratio in the range 1.48≾Cr eq /Ni eq ≾1.95, where Ni eq and Cr eq are the nickel and chromium equivalents on the Schaeffler diagram, solidify in accordance with a duplex mode with the delta ferrite as the primary (leading) phase. The austenite forms between ferrite dendrites through a three-phase reaction between liquid, ferrite and austenite, and subsequently grows into the ferrite by either an equiaxial or an acicular mechanism, resulting in a drastic decrease in the volume fraction of the delta ferrite. The micro-structure at room temperature is characterized by a general irregularity and the varied morphology of the ferrite. The compositional differences observed at room temperature are a consequence both of the solidification and the solid state transformation.

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Formerly Research Staff Member, Laboratory of Physical Metallurgy, University of Oulu.

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Suutala, N., Takalo, T. & Moisio, T. Ferritic-austenitic solidification mode in austenitic stainless steel welds. Metall Trans A 11, 717–725 (1980). https://doi.org/10.1007/BF02661201

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