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Very high cycle fatigue behavior of dissimilar martensitic stainless-steel diffusion-bonded joints

  • Baohua Nie
  • , Zihua Zhao
  • , Dongchu Chen*
  • , Fangjun Liu
  • , Jishi Zhao
  • , Lianyu Zhao
  • *Corresponding author for this work
  • Foshan University
  • Yunfu(Foshan) R&D Center for Innovation in Hydrogen Energy Standardization

Research output: Contribution to journalArticlepeer-review

Abstract

Very high cycle fatigue (VHCF) behavior of the diffusion bonded joints between 3Cr13 and 2Cr13 were investigated. Results showed that the diffusion bonded joints obtained a comparable fatigue property of 2Cr13, and the S–N curves exhibited a decreasing shape characteristic.However,fatigue life was dramatically decreased by occasional non-diffusion defects. Fatigue cracks in diffusion bonded joints occurred at specimen’s surface in high cycle regimes, whereas VHCF cracks Delivered were originated from inclusions on the side of 2Cr13 based materials, in which the fine granular area (FGA) characteristics were observed around the internal inclusion. Furthermore, fatigue strength of the diffusion joints was interpreted based on the Murakami model. The crack propagation life estimated by Paris-Hertzberg-McClintock model mainly contributed for the fatigue life of the specimens with occasional non-fusion defects, in which non-fusion defects acted as pre-cracks.

Original languageEnglish
Pages (from-to)1120-1126
Number of pages7
JournalMaterials Express
Volume9
Issue number9
DOIs
StatePublished - Dec 2019

Keywords

  • Crack Initiation
  • Diffusion Bonding
  • Fatigue Strength
  • Very High Cycle Fatigue

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