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Fatigue and delamination of 6061 aluminum cold spray on a similar wrought substrate

  • Trevor Bond
  • , Bryer Sousa
  • , Nima Rahbar
  • , Danielle Cote
  • , Kyle Tsaknopoulos
  • , Winston Soboyejo
  • Worcester Polytechnic Institute

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Fatigue crack growth and fracture of a thick 6061 aluminum cold spray coating on 6061-T6 aluminum substrate were studied through in-situ observation of fatigue crack growth through the coating to the interface in notched four-point bend samples. Mode I cracking was observed through the coating before delamination at the substrate. Crack tip strain fields during the delamination event were plotted with DIC. Interfacial steady-state strain energy release rates were measured using the bimaterial four-point bend solutions by Charalambides. The interfacial crack primarily spread cleanly along the coating/substrate interface, with a post-fracture surface morphology containing a wavy structure with an amplitude on the same order of magnitude as the cold spray particle diameters.

Original languageEnglish
Article number147024
JournalMaterials Science and Engineering: A
Volume913
DOIs
StatePublished - Oct 2024

Keywords

  • Cold spray
  • Crack tip strain fields
  • Failure mechanisms
  • Fatigue crack growth
  • Fracture
  • Mode I and II cracking

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