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Solute trapping and non-equilibrium microstructure during rapid solidification of additive manufacturing

  • Neng Ren
  • , Jun Li*
  • , Ruiyao Zhang
  • , Chinnapat Panwisawas*
  • , Mingxu Xia
  • , Hongbiao Dong
  • , Jianguo Li
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

Solute transport during rapid and repeated thermal cycle in additive manufacturing (AM) leading to non-equilibrium, non-uniform microstructure remains to be studied. Here, a fully-coupled fluid dynamics and microstructure modelling is developed to rationalise the dynamic solute transport process and elemental segregation in AM, and to gain better understanding of non-equilibrium nature of intercellular solute segregation and cellular structures at sub-grain scale during the melting-solidification of the laser powder bed fusion process. It reveals the solute transport induced by melt convection dilutes the partitioned solute at the solidification front and promotes solute trapping, and elucidates the mechanisms of the subsequent microstructural morphology transitions to ultra-fine cells and then to coarse cells. These suggest solute trapping effect could be made used for reducing crack susceptibility by accelerating the solidification process. The rapid solidification characteristics exhibit promising potential of additive manufacturing for hard-to-print superalloys and aid in alloy design for better printability.

Original languageEnglish
Article number7990
Number of pages13
JournalNature Communications
Volume14
DOIs
Publication statusPublished - 2 Dec 2023

ASJC Scopus subject areas

  • General Chemistry
  • General Biochemistry,Genetics and Molecular Biology
  • General
  • General Physics and Astronomy

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