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Effects of ultrasonic frequency pulse arc on corrosion behaviors of wire-arc directed energy-deposited Inconel 690 alloys

  • Yubin Zhou
  • , Yan Zhang
  • , Zewu Qi*
  • , Baoqiang Cong
  • , Qingfu Yang
  • , Lingwei Cai
  • , Li Lu
  • , Zhongbing Chen
  • , Zhenxin Liang
  • , Jianping Yang
  • , Jiankun Xiong
  • , Zhaoyang Yan
  • , Bojin Qi
  • *Corresponding author for this work
  • Beihang University
  • Harbin Welding Institute
  • National Key Laboratory for Remanufacturing
  • Suzhou Nuclear Power Research Institute Co., Ltd.
  • LTD
  • Beijing University of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

This study examined the impact of an ultrasonic frequency pulse (UFP) arc on the corrosion behavior of wire-arc directed energy-deposited (WADED) Inconel 690 alloys. The UFP-WADED Inconel 690 exhibited more random grain orientation, refined grains, and minor-sized carbide precipitates than the direct current (DC) sample. The introduction of the UFP arc improved electrochemical behavior, including the open circuit potential value and impedance loop, and reduced the corrosion current. The UFP component exhibited a wider passive range and higher pitting potential. Corrosion pitting occurred near the Al-enriched γ'-phase and carbide precipitates owing to the microgalvanic corrosion in the DC and UFP samples. The larger carbide precipitates in the DC sample induced defects in the passive film. The UFP arc significantly reduced element segregation and led to minor pittings, which resulted in improved corrosion resistance.

Original languageEnglish
Article number200287
JournalAdditive Manufacturing Frontiers
Volume5
Issue number2
DOIs
StatePublished - Jun 2026

Keywords

  • Corrosion behaviors
  • Inconel 690 alloy
  • Microstructure
  • Ultrasonic frequency pulse arc
  • Wire-arc directed energy deposition

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