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51313-02864-Anionic and Cationic Oxidizing Species on Crevice Corrosion Resistance of Titanium in Brine Media

Product Number: 51313-02864-SG
ISBN: 02864 2013 CP
Author: Suresh Divi
Publication Date: 2013
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One of the suggested strategies for preventing crevice corrosion of titanium is by incorporating inhibitors into the solutions. These inhibitors can be anionic species which are intended to inhibit crevice attack when present in solutions especially in halides. It is well known that oxidizing cationic species such as ferric and cupric ions which are very effective in reducing general corrosion resistance tend to accelerate crevice corrosion. At the same time certain anionic oxidizing species such as chlorates are believed to inhibit crevice corrosion in halide solutions. In this study both anionic and cationic oxidizing species were incorporated into halide solutions to observe the effects. This paper presents the crevice corrosion data with these ionic species and discusses the inhibiting/accelerating mechanism.

One of the suggested strategies for preventing crevice corrosion of titanium is by incorporating inhibitors into the solutions. These inhibitors can be anionic species which are intended to inhibit crevice attack when present in solutions especially in halides. It is well known that oxidizing cationic species such as ferric and cupric ions which are very effective in reducing general corrosion resistance tend to accelerate crevice corrosion. At the same time certain anionic oxidizing species such as chlorates are believed to inhibit crevice corrosion in halide solutions. In this study both anionic and cationic oxidizing species were incorporated into halide solutions to observe the effects. This paper presents the crevice corrosion data with these ionic species and discusses the inhibiting/accelerating mechanism.

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