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Improvement on the pitting corrosion resistance of 304 stainless steel via duplex passivation treatment

机译:通过双面钝化处理改善304不锈钢的蚀腐蚀性

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摘要

A remarkable improvement in the pitting corrosion resistance of 304 stainless steel was attempted using a novel duplex passivation treatment method. First, chemical passivation in nitric acid followed electrochemical passivation via potential polarization of step cycling in sodium nitrate electrolyte. Compared with traditional chemical passivation, breakdown potential was increased from 0.31 V-SCE to positive than 0.9 V-SCE at 70 degrees C in a solution bearing 0.6 M [Cl-] concentration. The critical pitting temperature was enhanced from 21.5 degrees C to above 70 degrees C in a solution with 6 M [Cl-] concentration. Impedance analysis and X-ray photoelectron spectroscopy results show that a more compact passive film with a higher ratio of chromium oxide on iron oxide was achieved by electrochemical passivation compared with chemical passivation. Morphology observation suggested that the potential polarization of step cycling slightly increased the dissolution of inclusions after being subjected to chemical passivation. The probable reason for the improvement on pitting resistance is discussed in detail based on inclusion dissolution and the protectiveness in passive film.
机译:尝试使用新型双相钝化处理方法对304不锈钢进行蚀腐蚀性的显着改善。首先,通过硝酸钠电解质中的步骤循环循环偏振,硝酸中的化学钝化沿着电化学钝化。与传统的化学钝化相比,在轴承0.6M [Cl-]浓度的溶液中,分解电位从0.31V-SCE增加到70℃的0.9V-SCE。在具有6m [Cl-]浓度的溶液中,临界点蚀温度从21.5℃达到70摄氏度增强。阻抗分析和X射线光电子能谱结果表明,通过电化学钝化与化学钝化相比,通过电化学钝化实现了具有较高比例的紧凑型无源膜。形态学观察表明,在经受化学钝化之后,步骤循环的潜在极化略微增加了夹杂物的溶解。基于包涵体溶解和无源膜中的保护性,详细讨论了蚀性电阻改善的可能原因。

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