2012ISIJ InternationalOpen access

Pitting Corrosion of Type 430 Stainless Steel in the Process of Drying of Chloride Solution Layer

Sri Hastuty, Yusuke Tsutsumi, Atsushi Nishikata, Tooru Tsuru

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Abstract

Pitting corrosion of type 430 stainless steel under a chloride solution layer was investigated to clarify the pitting corrosion behavior.The solution layers containing 2 mol/dm 3 chloride ion with four different thicknesses of 1 000, 500, 250, and 125 μ m were placed on the stainless steel surface and dried by decreasing the relative humidity at various rates at 300 K.The corrosion potential and solution resistance were simultaneously monitored during drying in order to determine the concentration of chloride ion at the commencement of pitting corrosion.The results showed that the lowest chloride concentration for occurrence of pitting corrosion for type 430 is about 4.5 mol/dm 3 , and that pitting corrosion occurs at higher chloride concentration as the drying rate increases.

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Pitting corrosion of type 430 stainless steel under a chloride solution layer was investigated to clarify the pitting corrosion behavior.The solution layers containing 2 mol/dm 3 chloride ion with four different thicknesses of 1 000, 500, 250, and 125 μ m were placed on the stainless steel surface and dried by decreasing the relative humidity at various rates at 300 K.The corrosion potential and solution resistance were simultaneously monitored during drying in order to determine the concentration of chloride ion at the commencement of pitting corrosion.The results showed that the lowest chloride concentration for occurrence of pitting corrosion for type 430 is about 4.5 mol/dm 3 , and that pitting corrosion occurs at higher chloride concentration as the drying rate increases.

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Available abstract

Pitting corrosion of type 430 stainless steel under a chloride solution layer was investigated to clarify the pitting corrosion behavior.The solution layers containing 2 mol/dm 3 chloride ion with four different thicknesses of 1 000, 500, 250, and 125 μ m were placed on the stainless steel surface and dried by decreasing the relative humidity at various rates at 300 K.The corrosion potential and solution resistance were simultaneously monitored during drying in order to determine the concentration of chloride ion at the commencement of pitting corrosion.The results showed that the lowest chloride concentration for occurrence of pitting corrosion for type 430 is about 4.5 mol/dm 3 , and that pitting corrosion occurs at higher chloride concentration as the drying rate increases.

Key concepts: Corrosion, Chloride, Pitting corrosion, Materials science, Metallurgy, Relative humidity, Layer (electronics), Composite material

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