Characterization of Inconel 718® superalloy fabricated by wire Arc Additive Manufacturing: effect on mechanical properties and machinability: effect on mechanical properties and machinability

Unai Alonso, Fernando Veiga, Alfredo Suárez, Alain Gil Del Val

Research output: Contribution to journalArticlepeer-review

37 Citations (Scopus)
1 Downloads (Pure)

Abstract

Wire and Arc Additive Manufacturing has the potential to become an appropriate technique to produce large complex-shaped metallic parts. However, a post-processing machining operation is necessary to reach the final geometry. In this work, Inconel 718 walls were manufactured in a monitored environment and their microstructure and mechanical properties were characterised. Then, slot milling operations were performed to investigate the influence of cutting speed and machining direction. The conclusions drawn from this article can be used as a guide for a correct definition of strategies and milling parameters. It was observed that at higher cutting speeds a better surface quality and lower torques are obtained. Moreover, the main novelty of this work is that is shows the influence of the anisotropy of WAAM-Inconel 718 on its machinability. Milling along the torch's travel direction offers better dimensional tolerance values with lower cutting torques, being more favourable than machining in the building direction.
Original languageEnglish
Pages (from-to)2665-2676
Number of pages12
JournalJournal of Materials Research and Technology
Volume14
DOIs
Publication statusPublished - Sept 2021

Keywords

  • WAAM
  • Inconel 718
  • Microstructure
  • Machinability
  • Bending moment

Project and Funding Information

  • Funding Info
  • The authors acknowledge the Basque Government for financing the HARIPLUS, HAZITEK 2019 program (ZL-2019/00352) and QUALYFAM project [kk-2020/00042]. The authors are also thankful to the Basque government for supporting the Basque university group on Advanced manufacturing ref: IT1337-19.

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