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The solidification sequence in an 18-8 stainless steel, investigated by directional solidification

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TLDR
In this paper, the authors applied the directional solidification technique to investigate the complicated solidification sequence in a commercial austenitic stainless steel which was known to yield a primary precipitation of § ferrite when cast into a 5 tons ingot.
Abstract
The directional solidification technique was applied in order to investigate the complicated solidification sequence in a commercial austenitic stainless steel which was known to yield a primary precipitation of § ferrite when cast into a 5 tons ingot. Three stages of solidification were found. The first precipitation of § ferrite was interrupted by precipitation of austenite and at the end of the solidification there was a transition back to precipitation of § ferrite. The competition between the first two stages is affected by the cooling rate and the nitrogen content. The precipitation of austenite from the melt results in the usual coring whereas o ferrite forms with a very homogeneous composition, presumably due to rapid diffusion in this phase. On cooling austenite forms from the § ferrite and this reaction also results in coring, presumably due to rapid diffusion in § ferrite.

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Fracture Toughness of CF8 Castings at Four Kelvin

TL;DR: The first fracture toughness measurements for CF8 stainless steel castings in liquid helium at 4 K were reported in this article, where single-phase (austenite) and duplex (ausenite + δ-ferrite) castings were tested.
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The influence of temperature gradient zone melting on microsegregation

TL;DR: In this paper, an algorithm for considering temperature gradient zone melting (TGZM) to an existing numerical model for predicting microstructure and microsegregation allows the prediction of migration distances of dendrite arms and asymmetric concentration distributions in the arms.
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Microsegregation and eutectic ferrite-to-austenite transformation in primary austenite solidified CF-8M weld metals

TL;DR: In this paper, solidification and microsegregation studies were performed on alloy CF-8M weld metal which solidified via the primary austenite/eutectic ferrite mode.

Experimental and numerical modeling of the dissolution of delta ferrite in the Fe-Cr-Ni system : application to the austenitic stainless steels

Mahmoud Saied
TL;DR: In this paper, the authors studied the kinetics of high temperature δ→γ transformation in austenitic stainless steels via experimental and numerical modeling, where three ferrite morphologies were identified: lathy at the edge of the ingot, vermicular and lathy in the center.
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Effect of the initial substrate temperature on heat transfer and related phenomena in austenitic stainless steel parts fabricated by additive manufacturing using direct energy deposition

TL;DR: In this paper , the effect of preheating a AISI 304 steel substrate to 300 °C, compared to a room-temperature substrate, just before direct energy deposition (DED) additive manufacturing of a 316 L steel deposit in terms of absorptivity of the laser beam, heat transfer, microstructure, hardness and residual stress was investigated.
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