Microstructure and Solute Segregation around the Melt-Pool Boundary of Orientation-Controlled 316L Austenitic Stainless Steel Produced by Laser Powder Bed Fusion

Author:

Sato KazuhisaORCID,Takagi Shunya,Ichikawa Satoshi,Ishimoto TakuyaORCID,Nakano TakayoshiORCID

Abstract

For this article, we studied the microstructure and solute segregation seen around the melt pool boundary of orientation-controlled 316L austenitic stainless steel produced by laser powder bed fusion, using transmission electron microscopy and energy-dispersive x-ray spectroscopy. We found that the solidification cellular microstructures could be visualized with the aid of solute segregation (Cr and Mo) during solidification. Mn–Si–O inclusions (10–15 nm in diameter) were distributed along the lamellar boundaries, as well as in the dislocation cell walls. It is believed that the grain growth of the inclusions can be effectively suppressed by rapid quenching during the laser powder-bed fusion process. A thin region without cellular microstructures was observed at the melt-pool boundary. The cellular spacing widened near the bottom of the melt-pool boundary, owing to the decrease in the cooling rate. Atomic-structure analysis at the lamellar boundary by high-resolution transmission electron microscopy revealed a local interfacial structure, which is complementary to the results of electron back-scatter diffraction.

Funder

Japan Society for the Promotion of Science

Publisher

MDPI AG

Subject

General Materials Science

Reference23 articles.

1. Additive manufacturing of metals;Herzog;Acta Mater.,2016

2. Multiprocess 3D printing for increasing component functionality;MacDonald;Science,2016

3. Digital twin science of metal powder bed fusion additive manufacturing: A selective review of simulations for integrated computational materials engineering and science;Koizumi;ISIJ Int.,2022

4. Laser powder-bed fusion additive manufacturing: Physics of complex melt flow and formation mechanisms of pores, spatter, and denudation zones;Khairallah;Acta Mater.,2016

5. Role of operating and environmental conditions in determining molten pool dynamics during electron beam melting and selective laser melting;Zhao;Addt. Manuf.,2020

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