Reactivity imaging of a passive ferritic FeAlCr steel

Kirsten Agnes Lill, Koji Fushimi, Masahiro Seo, Achim Walter Hassel (Editor)

Research output: Contribution to journalArticlepeer-review

Abstract

A technique named reactivity imaging is introduced. It combines optical imaging of a polycrystalline material with orientation imaging by electron back scattering diffraction (EBSD) for a determination of the crystallographic orientation map and scanning electrochemical microscopy (SECM) for a visualization of the local reactivity. Dissolving metal ions from the substrate are directly detected by the scanning Pt tip of the SECM to measure the amount of locally dissolving material. A ferritic light weight steel (alloy Fe7.5A17Cr) with a strong anisotropic dissolution behaviour was investigated as an example. This steel shows good passivation behaviour both, in air and through anodisation. In the passive state investigated here, the difference in dissolution rate between various crystallographic orientations is only marginal. Grain boundaries on the other hand showed a higher activity as compared to the grains themselves, which is attributed to the electronic tunnelling in the grain boundaries. The results demonstrate that the rate determining step responsible for the anisotropic dissolution does not result from a deficiency in passivation but from the active dissolution kinetics.
Original languageEnglish
Pages (from-to)1339-1345
Number of pages7
JournalJournal of Applied Electrochemistry
Volume38
DOIs
Publication statusPublished - 2008

Fields of science

  • 104005 Electrochemistry
  • 104006 Solid state chemistry
  • 104014 Surface chemistry
  • 104017 Physical chemistry
  • 105113 Crystallography
  • 105116 Mineralogy
  • 503013 Subject didactics of natural sciences
  • 204 Chemical Process Engineering
  • 204001 Inorganic chemical technology
  • 205016 Materials testing
  • 210006 Nanotechnology
  • 211104 Metallurgy

JKU Focus areas

  • Engineering and Natural Sciences (in general)

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