Electrochemical evaluation of crevice corrosion of 430 ferritic stainless steel using the microcapillary tube technique
By Na, Eun-Young; Ko, Jae-Yong & Baik, Shin-Young
Published in Desalination
NULL
2005
Abstract
The aim of this study was to investigate the initiation of crevice corrosion for ferritic 430 stainless steel in artificial crevice electrode cells using the IR drop mechanism. The 430 stainless steel artificial crevice electrodes were potentiodynamically polarized in solutions of sodium chloride with different concentrations. The potentiostatic polarization was measured for various artificial crevice sizes by measuring the potentials in the crevice by the depth profile technique using a microcapillary tube which was inserted into the crevice. The criterion for IR>ΔΦ*, where ΔΦ* is the difference between the applied potential, ESURF, and the electrode potential of the active/passive transition, EA/P, was also measured during the process of crevice corrosion. The potentials in the crevice were successfully measured from -220 mV vs. SCE to -360 mV vs. SCE, which is lower than that of the external surface potential of -200 mV vs. SCE. Thus, these results show that evaluation of corrosion using the IR drop mechanism in the crevice was more objective and easier to reproduce than other existing methods.
Microsoft is Ending Support for Windows 7
Microsoft will discontinue support for Windows 7 on January 14, 2020 which means Gamry will also be discontinuing support for Windows 7. If you are upgrading to Windows 10, like many companies and institutions, you need to be running Version 7 of our s oftware . Please note that only USB and Ethernet-based instruments can run in Version 7. Eligible users can download the latest version of our software through our online Client Portal .
If you haven't already registered your instrument, you can do so through the Client Portal .
Please email Technical Support if you have any questions regarding this transition. Please be sure to include your instrument model and serial number when contacting us.