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Electrochemical corrosion behavior of novel Cu-containing antimicrobial austenitic and ferritic stainless steels in chloride media

机译:新型含铜抗菌奥氏体和铁素体不锈钢在氯化物介质中的电化学腐蚀行为

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摘要

The electrochemical corrosion behavior of novel Cu-containing antibacterial austenitic and ferritic stainless steels in 0.05 mol/L NaCl solution has been investigated by dc polarization and ac impedance measurements and compared with that of the conventional stainless steels. Cu was found to particularly affect the kinetics of the anodic reaction. The corrosion performance of the austenite was greatly improved by Cu addition in the studied anodic potential range, whereas Cu effects on the ferrite showed remarkable sensitivity to the applied potential and improved corrosion resistance only in the low anodic potential range. Three-dimensional presentation of the variable-potential impedance data was employed in analyzing the electrochemical corrosion processes and revealed a close relationship between the impedance parameters and the applied potential. The trends of impedance results agree well with those obtained from potentiodynamic polarization measurements.
机译:通过直流极化和交流阻抗测量研究了新型含铜抗菌奥氏体和铁素体不锈钢在0.05 mol / L NaCl溶液中的电化学腐蚀行为,并将其与常规不锈钢进行了比较。发现铜特别影响阳极反应的动力学。通过在所研究的阳极电位范围内添加铜,奥氏体的腐蚀性能得到了极大的改善,而铜对铁素体的影响表现出对施加电势的显着敏感性,并且仅在低阳极电位范围内才提高了耐腐蚀性。可变电位阻抗数据的三维表示被用于分析电化学腐蚀过程,并揭示了阻抗参数与施加电位之间的密切关系。阻抗结果的趋势与通过电位动力极化测量获得的结果非常吻合。

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