Enhanced long-term reliability of seal deltaspot welded dissimilar joint between 6061 aluminum alloy and galvannealed steel via excimer laser irradiation

  • Sung Min Joo
  • , Young Gon Kim
  • , Young Jin Kwak
  • , Dong Jin Yoo
  • , Chang U. Jeong
  • , Jeshin Park
  • , Min Suk Oh*
  • *Corresponding author for this work

Research output: Contribution to journalJournal articlepeer-review

Abstract

Structural-adhesive-assisted DeltaSpot welding was used to improve the weldability and mechanical properties of dissimilar joints between 6061 aluminum alloy and galvannealed HSLA steel. Evaluation of the spot-weld-bonded surfaces from lap shear tests after long-term exposure to chloride and a humid atmosphere (5% NaCl, 35 °C) indicated that the long-term mechanical reliability of the dissimilar weld in a corrosive environment depends strongly on the adhesive–Al6061 alloy bond strength. Corrosive electrolyte infiltrated the epoxy-based adhesive/Al alloy interface, disrupting the chemical interactions and decreasing the adhesion via anodic undercutting of the Al alloy. Due to localized electrochemical galvanic reactions, the surrounding nugget matrix suffered accelerated anodic dissolution, resulting in an Al6061-T6 alloy plate with degraded adhesive strength and mechanical properties. KrF excimer laser irradiation of the Al alloy before adhesive bonding removed the weakly bonded native oxidic overlayers and altered the substrate topogra-phy. This afforded a low electrolyte permeability and prevented adhesive delamination, thereby enhancing the long-term stability of the chemical interactions between the adhesive and Al alloy substrate. The results demonstrate the application of excimer laser irradiation as a simple and envi-ronmentally friendly processing technology for robust adhesion and reliable bonding between 6061 aluminum alloy and galvannealed steel.

Original languageEnglish
Article number6756
JournalMaterials
Volume14
Issue number22
DOIs
StatePublished - 2021.11.1

Keywords

  • Adhesive bonding
  • Dissimilar joint
  • Excimer laser irradiation
  • Galvanic corrosion

Quacquarelli Symonds(QS) Subject Topics

  • Materials Science
  • Physics & Astronomy

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