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Characterization of Inconel 625 Fabricated Using Powder-Bed-Based Additive Manufacturing Technologies

J.A. Gonzalez, J. Mireles

2018enadditive manufacturingInconel 625powder bed3D printingfabrication

Abstract

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The purpose of this study was to perform a comparative analysis of powder-bed-based additive manufacturing (AM) technologies during the production of metallic components using Inconel 625 powder material. The AM technologies explored in this study include electron powder bed fusion (EPBF), laser powder bed fusion (LPBF), and binder jetting technology. Samples were fabricated in two build directions (X and Z built orientations) for this evaluation process, where all specimens underwent a hot isostatic pressing (HIP) post-process. The comparison was made in terms of microstructure and mechanical properties including ultimate tensile strength (UTS), yield strength (YS), percent elongation, and modulus of elasticity (E). The results indicated that the mechanical properties varied significantly across the different AM technologies, highlighting essential insights for optimizing the use of Inconel 625 in industrial applications. This research provides valuable data for understanding the performance and reliability of parts manufactured by different powder-bed-based technologies.

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Cite This Work

@article{285e6405-0f39-4e1b-bcee-cbf4d9fed428,
  title={Characterization of Inconel 625 Fabricated Using Powder-Bed-Based Additive Manufacturing Technologies},
  author={J.A. Gonzalez and J. Mireles},
  year={2018},
  language={en}
}
TY  - JOUR
TI  - Characterization of Inconel 625 Fabricated Using Powder-Bed-Based Additive Manufacturing Technologies
AU  - J.A. Gonzalez
AU  - J. Mireles
PY  - 2018
LA  - en
ER  -

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