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Localized Corrosion Behavior of Lean Duplex Stainless Steel in Chloride Containing Synthetic Tap Water

机译:贫双相不锈钢在含氯的合成自来水中的局部腐蚀行为

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The localized corrosion properties of lean duplex stainless steel (LDSS) and type 316L were compared by means of electrochemical testing and X-ray photoelectron spectroscopy (XPS) analysis. Electrochemical testing revealed that the pitting corrosion resistance of LDSS was superior to that of type 316L, but the crevice corrosion resistance of 316L was better than that of LDSS. In potentiodynamic polarization test and electrochemical impedance spectroscopy (EIS) analysis, as the pH decreased, the breakdown potential of type 316L did not change largely. However, the breakdown potential of LDSS sharply decreased at pH 4, and was lower than that of 316L at pH 2. Regardless of the pH, the passive film compositions of 316L and LDSS were the same, except for Mo compounds. Thus, the difference in the passive film stability of the two steels as the pH decreased was attributed to the difference in Mo content. Although pitting and crevice corrosion are similar in many respects, their initiation mechanisms differ. The resistance to these two types of corrosion can change depending on the concentration of Mo oxide in the passive film.
机译:通过电化学测试和X射线光电子能谱(XPS)分析比较了贫双相不锈钢(LDSS)和316L型的局部腐蚀性能。电化学测试表明,LDSS的耐点蚀性能优于316L,但316L的耐缝隙腐蚀性能优于LDSS。在电位极化测试和电化学阻抗谱(EIS)分析中,随着pH值的降低,316L型的击穿电位没有很大变化。然而,LDSS的击穿电位在pH 4时急剧下降,在pH 2时低于316L。击穿电位与316L和LDSS的钝化膜组成相同,除了pH值相同之外,其余均与Mo化合物相同。因此,随着pH的降低,两种钢的钝化膜稳定性的差异归因于Mo含量的差异。尽管点蚀和缝隙腐蚀在许多方面是相似的,但它们的引发机理是不同的。对这两种类型的腐蚀的抵抗力会根据钝化膜中Mo氧化物的浓度而变化。

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