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The Influence of Coaxial Ultrasound on the Droplet Transfer of High Nitrogen Steel GMAW Process

  • Jiawen Luo
  • , Zhizheng He
  • , Zeng Liu
  • , Zihuan Hua
  • , Bin Teng
  • , Chenglei Fan*
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The nitrogen bubble bursting phenomenon during the welding process of high nitrogen steel (HNS) can lead to unstable droplet transfer and welding process, reducing the quality of weld formation. In this study, a novel approach, ultrasonic-assisted gas metal arc welding (U-GMAW), is proposed to suppress the escape of nitrogen gas during droplet transfer. This study investigates the influence of ultrasound on the metal transfer process during two distinct metal transfer modes: short-circuiting and droplet transfer. Ultrasound has a significant effect on the welding process; as ultrasonic power increases, both the arc length and droplet size decrease, while the droplet transfer frequency increases and the electrical signal stabilizes. Under the experimental conditions of this study, ultrasound has the most effective improvement on the metal transfer behavior when the ultrasonic power reaches 2 kW. Ultrasound enhances the stability of the droplet transfer process, making U-GMAW an effective and novel approach for controlling the droplet transfer behavior of high nitrogen steel.

Original languageEnglish
Article number5509
JournalMaterials
Volume17
Issue number22
DOIs
StatePublished - Nov 2024

Keywords

  • coaxial ultrasound
  • droplet transfer behavior
  • high nitrogen steel
  • ultrasonic-assisted GMAW

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