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Corrosion of stainless steel grades in H_2O/KOH 50% at 120℃: AISI304 austenitic and 2205 duplex

机译:120℃下H_2O / KOH中50%不锈钢等级的腐蚀:AISI304奥氏体和2205双相不锈钢

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We report on the corrosion of austenitic (AISI304) and duplex (2205) stainless steels in H_2O/KOH 50% at 120℃. The research is based on a combination of electrochemical, structural and compositional analyses, aimed at assessing the surface modifications resulting from anodic attack and their impact on corrosion resistance. Linear sweep voltammetry and electrochemical impedance spectrometry measurements were carried out in an air-tight high-temperature cell. In-plane and cross-sectional SEM micrography, X-ray diffractometry and EDX profiling were used to characterise samples attacked under electrochemically controlled conditions. Electrochemical results have shown that AISI304 exhibits a complex passivating behaviour, while the anodic electrokinetics of the duplex is characterised by mixed kinetic control. AISI304 was found to fail by intergranular corrosion and to be covered: in passive conditions by acicular compounds and in transpassive conditions by a compact layer of corrosion products. Duplex samples, instead, exhibit an uniform form of corrosion morphology and bear a compact layer of corrosion products both in passive and in transpassive conditions.
机译:我们报告了在120℃下H_2O / KOH 50%时奥氏体(AISI304)和双相(2205)不锈钢的腐蚀情况。这项研究是基于电化学,结构和成分分析的结合,旨在评估阳极侵蚀产生的表面改性及其对耐蚀性的影响。线性扫描伏安法和电化学阻抗光谱法的测量是在气密高温电池中进行的。使用面内和截面SEM显微照片,X射线衍射仪和EDX轮廓分析来表征在电化学控制条件下腐蚀的样品。电化学结果表明,AISI304表现出复杂的钝化行为,而双相的阳极电动动力学则以混合动力学控制为特征。发现AISI304会由于晶间腐蚀而失效,并被覆盖:在针状化合物的被动条件下,在致密条件下的致密腐蚀层覆盖。相反,双相样品在腐蚀和钝化条件下均表现出均匀的腐蚀形态,并带有致密的腐蚀产物层。

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