Multiscale defects enable synergetic improvement in yield strength of CrCoNi-based medium-entropy alloy fabricated via laser-powder bed fusion

  • Jung, Heechan; 
  • Lee, Jungwan; 
  • Gu, Gang Hee; 
  • Lee, Hyungsoo; 
  • Seo, Seong-Moon; 
  • ... Sohn, Seok Su; 
  • 외 2명
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초록

Recently, laser-powder bed fusion (L-PBF) has overcome a shortcoming concerning the relatively modest yield strength in the face-centered cubic structure of CrCoNi medium-entropy alloy (MEA); nevertheless, further enhancement remains challenging because the as-built defects are limited to dislocation cell structures and nano -inclusions. In this study, several the types of hierarchical defect structures are explored (including stacking faults, nano-twins, Sigma phase, and nano-precipitates) with the addition of Si to reduce the stacking fault energy and promote segregation at dislocation cells with Cr. The CrCoNiSi0.3 alloy is fabricated by the L-PBF process, and the effects of the Si addition and L-PBF processing on the hierarchical multiscale defects and corresponding me-chanical responses are unraveled. The highest apparent density above 99.5 % is achieved under optimized conditions, exhibiting a high yield strength of 929 MPa owing to a synergetic effect from the generated defects comprising Sigma phase, nano-twins, and planar defects with moderate ductility of 14 %. In addition, the reduced stacking fault energy promotes deformation twinning, resulting in steady strain hardening. The alloy ultimately exhibits a tensile strength of 1264 MPa, with a moderate ductility of 14 %. A post-heat treatment induces a morphological change in the Sigma phase from a film-type at the cell walls to particulates at the cell junctions, leading to a significant increase in ductility without a loss of tensile strength, despite a loss of yield strength. This work provides insights to overcome the pre-existing limitations by imposing and adjusting multiscale defects.

키워드

Additive manufacturing; Laser -powder bed fusion; Segregation; Multiscale defects; Mechanical property; ULTRA-HIGH STRENGTH; MECHANICAL-PROPERTIES; NONEQUILIBRIUM MICROSTRUCTURE; PRECIPITATION BEHAVIOR; STAINLESS-STEEL; HEAT-TREATMENT; SIGMA-PHASE; EVOLUTION; DENSIFICATION; DEFORMATION
제목
Multiscale defects enable synergetic improvement in yield strength of CrCoNi-based medium-entropy alloy fabricated via laser-powder bed fusion
저자
Jung, Heechan; Lee, Jungwan; Gu, Gang Hee; Lee, Hyungsoo; Seo, Seong-Moon; Zargaran, Alireza; Kim, Hyoung Seop; Sohn, Seok Su
DOI
10.1016/j.addma.2022.103360
발행일
2023-01-05
유형
Article
저널명
Additive Manufacturing
권
61