Mechanistic changes in cut-edge corrosion induced by variation of organic coating porosity

被引:61
作者
Worsley, DA
Williams, D
Ling, JSG
机构
[1] Univ Wales, Dept Mat Engn, Swansea SA2 8PP, W Glam, Wales
[2] Univ Wales, Engn Doctorate Ctr, Swansea SA2 8PP, W Glam, Wales
[3] Corus RD & T Welsh Technol Ctr, Port Talbot Works SA13 2NG, Wales
基金
英国工程与自然科学研究理事会;
关键词
scanning vibrating electrode technique; cut edge corrosion; coating permeability;
D O I
10.1016/S0010-938X(01)00026-9
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The scanning vibrating electrode technique (SVET) has been used to investigate the mechanism of corrosion occurring at exposed metallic cut edges of galvanised steel materials coated with identical thickness organic polymeric layers. Organically coated galvanised steel samples have been prepared by application of a 30 mum polyester coating to both sides of a pretreated hot dip zinc (99.85%) aluminium (0.15%) galvanised steel substrate. In separate samples the coatings were applied to both sides simultaneously and then cured or applied sequentially to each side curing after each application. Electrical impedance spectroscopy (EIS) was used to probe the porosity of the resulting organic coatings. This revealed that simultaneous coating application and curing resulted in both polymer layers showing EIS pore resistance of 0.6 M Omega whereas sequential coating resulted in one side showing a pore resistance of 0.6 M Omega and the other showing a capacitive EIS response with no measurable porosity. When the metallic cut edges of organically coated steel materials, coated with symmetric thicknesses of organic layers of identical pore resistance, are exposed to 5% NaCl the SVET iso-current contour maps show that both zinc layers behaving as local anodes. In addition, there is significant sample passivation in the 24 h exposure period. In the samples coated with materials of identical thicknesses but different porosity, the SVET iso-current contour maps show anodic activity focussed beneath the organic coating with the capacitive EIS signature. The greater porosity of the coating on the opposite side of the exposed cut edge enables oxygen transport to the delaminating surface and this forces anodic activity onto the other zinc laver. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:2335 / 2348
页数:14
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