• Title of article

    Investigation of the cathodic process influence on the electrochemical noise signals arising from pitting corrosion of Al alloys using wavelet analysis

  • Author/Authors

    Shahidi، نويسنده , , M. and Farrehi Moghaddam، نويسنده , , R. and Gholamhosseinzadeh، نويسنده , , M.R. Mostakhdemin Hosseini، نويسنده , , S.M.A.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    114
  • To page
    121
  • Abstract
    The standard deviation of partial signal (SDPS) plot is obtained from wavelet analysis of electrochemical noise (EN) data. This paper employs the SDPS plots of EN current signals arising from pitting corrosion on the symmetrical and asymmetrical cells of AA6061 and AA2024 alloys in 3.5% NaCl solution with different O2 concentrations (3–25 ppm) to obtain a better understanding of the influence of the cathodic reaction on the EN current signals. EIS measurements reveal that an increase of O2 concentration from 3 to 5 ppm leads to the stronger passive oxide layer on the Al alloys. The time records and corresponding SDPS plots arising from symmetrical cells show an increase in the amplitude and the time width of EN current transients with increasing O2 concentration from 3 to 5 ppm. According to an earlier modeling of EN transients this can be attributed to the enhancement of current noise detection. The EIS shows that the thickness of the passive oxide layer decreases with increasing O2 concentration from 5 to 25 ppm. Thus, an increase in the time width of EN current transients with increasing O2 concentration from 5 to 25 ppm can be assigned to an increase in the corrosion activity. The optimal O2 concentration for EN current measurements is 5 ppm (i.e. naturally aerated solutions).
  • Keywords
    Electrochemical noise , Wavelet analysis , Cathodic process , Standard deviation of partial signal (SDPS) , Asymmetrical cell
  • Journal title
    Journal of Electroanalytical Chemistry
  • Serial Year
    2013
  • Journal title
    Journal of Electroanalytical Chemistry
  • Record number

    1677040