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Correlation of Stainless Steel Pit Morphology to Humidity-Specific Sea Salt Brine Constituents

Research output: Contribution to journalArticlepeer-review

Abstract

Immersion exposures of 304 stainless steel ground to a #4 finish were conducted in brines representative of the chemistry of sea salt aerosols at low (40%) and high (76%) relative humidity (RH). Low-RH-equivalent brines resulted in cross-hatched pits, whereas high-RHequivalent brines produced ellipsoidal, faceted pits. Distinct surface microcracking was observed to be associated only with cross-hatched pits and appeared to correlate with a high concentration of dissolved carbonate species in low-RH-equivalent solutions while being absent in the high-RH-equivalent brines. Correlating these results to brine composition suggested that the concentrations of MgCl2 and dissolved carbonate species in the brines could, in the presence of machining-induced surface microstructure and residual stress, determine pit morphology in marine atmospheres, thereby potentially impacting stress corrosion cracking susceptibility and lifetime prediction.

Original languageEnglish (US)
Pages (from-to)255-267
Number of pages13
JournalCorrosion
Volume79
Issue number3
DOIs
StatePublished - Mar 2023
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2023 AMPP.

Keywords

  • Austenitic stainless steel
  • Marine atmospheric corrosion
  • Relative humidity
  • Stress corrosion cracking

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