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  1. Russian Journal of Electrochemistry
  2. Russian Journal of Electrochemistry : Volume 44
  3. Russian Journal of Electrochemistry : Volume 44, Issue 7, July 2008
  4. Analysis of pitting corrosion rate
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Russian Journal of Electrochemistry : Volume 53
Russian Journal of Electrochemistry : Volume 52
Russian Journal of Electrochemistry : Volume 51
Russian Journal of Electrochemistry : Volume 50
Russian Journal of Electrochemistry : Volume 49
Russian Journal of Electrochemistry : Volume 48
Russian Journal of Electrochemistry : Volume 47
Russian Journal of Electrochemistry : Volume 46
Russian Journal of Electrochemistry : Volume 45
Russian Journal of Electrochemistry : Volume 44
Russian Journal of Electrochemistry : Volume 44, Issue 12, December 2008
Russian Journal of Electrochemistry : Volume 44, Issue 11, November 2008
Russian Journal of Electrochemistry : Volume 44, Issue 10, October 2008
Russian Journal of Electrochemistry : Volume 44, Issue 9, September 2008
Russian Journal of Electrochemistry : Volume 44, Issue 8, August 2008
Russian Journal of Electrochemistry : Volume 44, Issue 7, July 2008
The effect of sulfide ion chemisorption on the kinetics of gold dissolution in cyanide solutions
Adsorption phenomena on a mercury electrode in aqueous cryptand[2.2.2] solutions by the background of tetraalkylammonium salts
Analytical properties of preexponential factor in expression for conductivity of solid electrolyte
Peculiarities of metal electrodeposition inside a flow-through porous electrode with low initial conductivity in oxidant containing solution
Percolation effects with copper electrodeposition in ion-exchange material
Comparison of the performances of Ti/SnO$_{2}$-Sb, Ti/SnO$_{2}$-Sb/PbO$_{2}$, and Nb/BDD anodes on electrochemical degradation of azo dye
Electrochemical transformations of cycloheptatriene derivatives
Effects of the desalination chamber design on the mass-transfer characteristics of electrodialysis apparatuses at overlimiting current densities
Preparation and study of polyaniline-and multiwall-carbon-nanotube-based composite materials
Analysis of pitting corrosion rate
Initial stages of copper electrocrystallization on polycrystalline platinum and glassy carbon in the presence of acetonitrile
Effects of synthesis conditions on the electrochemical activity of titanium anodes with iridium oxide coating
Electrocatalysis of oxygen reduction by lanthanum-strontium manganate
Temperature evolution for small particles formed during electrocrystallization
Nanocrystalline nitrogenated diamond: An N-type electrode material
Effect of ampere force on electrolyte flow and current passing due to EMF generation in electrochemical cell rotating in magnetic field
Thermodynamics of copper ion resolvation in water-isopropanol mixtures by the method of volta potential differences
Academician of the Georgian Academy of Sciences D. I. Dzhaparidze (1933–2008)
Russian Journal of Electrochemistry : Volume 44, Issue 6, June 2008
Russian Journal of Electrochemistry : Volume 44, Issue 5, May 2008
Russian Journal of Electrochemistry : Volume 44, Issue 4, April 2008
Russian Journal of Electrochemistry : Volume 44, Issue 3, March 2008
Russian Journal of Electrochemistry : Volume 44, Issue 2, February 2008
Russian Journal of Electrochemistry : Volume 44, Issue 1, January 2008
Russian Journal of Electrochemistry : Volume 43
Russian Journal of Electrochemistry : Volume 42
Russian Journal of Electrochemistry : Volume 41
Russian Journal of Electrochemistry : Volume 40
Russian Journal of Electrochemistry : Volume 39
Russian Journal of Electrochemistry : Volume 38
Russian Journal of Electrochemistry : Volume 37
Russian Journal of Electrochemistry : Volume 36

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Analysis of pitting corrosion rate

Content Provider Springer Nature Link
Author Davydov, A. D.
Copyright Year 2008
Abstract A method for estimating pitting corrosion rate is proposed. The method is based on the analysis of anodic and cathodic voltammograms that were measured on the specimens of two types: on the test specimen coated with an oxide film, which formed under the open-circuit conditions, and on the specimen, whose surface was totally activated with aggressive ions. The use of Tafel portions of these voltammograms in various combinations enables us to estimate the corrosion potential and corrosion current for general corrosion proceeding in the induction period, for pitting corrosion at the initial stage of its development, for a highly developed pitting corrosion, when the major area of specimen surface is occupied with pits, and also in the intermediate case.
Starting Page 835
Ending Page 839
Page Count 5
File Format PDF
ISSN 10231935
Journal Russian Journal of Electrochemistry
Volume Number 44
Issue Number 7
e-ISSN 16083342
Language English
Publisher SP MAIK Nauka/Interperiodica
Publisher Date 2008-08-01
Publisher Place Dordrecht
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword pitting corrosion corrosion potential corrosion current repassivation potential Physical Chemistry Electrochemistry
Content Type Text
Resource Type Article
Subject Electrochemistry
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