Boundary element method predictions of the influence of the electrolyte on the galvanic corrosion of AZ91D coupled to steel

Jia, J. X., Song, G. and Atrens, A. (2005) Boundary element method predictions of the influence of the electrolyte on the galvanic corrosion of AZ91D coupled to steel. Materials And Corrosion-Werkstoffe Und Korrosion, 56 4: 259-270.


Author Jia, J. X.
Song, G.
Atrens, A.
Title Boundary element method predictions of the influence of the electrolyte on the galvanic corrosion of AZ91D coupled to steel
Journal name Materials And Corrosion-Werkstoffe Und Korrosion   Check publisher's open access policy
ISSN 0947-5117
Publication date 2005
Sub-type Article (original research)
DOI 10.1002/maco.200403838
Volume 56
Issue 4
Start page 259
End page 270
Total pages 12
Place of publication Weinheim
Publisher Wiley-V C H Verlag Gmbh
Collection year 2005
Language eng
Subject C1
291499 Materials Engineering not elsewhere classified
671004 Castings
Abstract This research investigated the galvanic corrosion of the magnesium alloy AZ91D coupled to steel. The galvanic current distribution was measured in 5% NaCl solution, corrosive water and an auto coolant. The experimental measurements were compared with predictions from a Boundary Element Method (BEM) model. The boundary condition, required as an input into the BEM model, needs to be a polarization curve that accurately reflects the corrosion process. Provided that the polarization curve does reflect steady state, the BEM model is expected to be able to reflect steady state galvanic corrosion.
Keyword Materials Science, Multidisciplinary
Metallurgy & Metallurgical Engineering
Magnesium Alloys
Behavior
Distributions
Protection
Contact
Models
Rates
Q-Index Code C1

 
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