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Electrochemical corrosion behavior of Cu-20Fe-12Cr alloys with the different grain size in solutions containing chloride ions

机译:含氯离子溶液中不同晶粒尺寸的Cu-20Fe-12Cr合金的电化学腐蚀行为

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Electrochemical corrosion behavior of Cu-20Fe-12Cr alloys prepared by powder metallurgy (PM) and mechanical alloy (MA) with the different grain size was studied in solutions containing chloride ions. The free corrosion potentials move toward negative values and corrosion rates become faster with the increase of chloride ion concentrations for two alloys. Electrochemical impedance spectroscopy (EIS) plots of PMCu-20Fe-12Cr alloy are composed of a capacitive loop and a diffusion tail. Corrosion processes are controlled by diffusion. EIS plots of MACu-20Fe-12Cr alloy in Na_2SO_4 or 0.02mol·L~(-1)NaCl solution are unable to have characteristics of Warburg impedance. Corrosion processes are controlled by electrochemical reactions. After chloride ion concentrations increase up to 0.05mol·L~(-1), their EIS plots are composed of double capacitive loops with a straight line induced Warburg resistance between two capacitive loops. The above EIS plots imply the existence of pitting corrosion. The corrosion rates of MACu-20Fe-12Cr alloy become faster than those of PMCu-20Fe-12Cr alloy because the reduction in the grain size of MACu-20Fe-12Cr alloy produces large concentrations of grain boundaries.
机译:在含有氯离子的溶液中研究了粉末冶金(PM)和机械合金(MA)制备的Cu-20Fe-12Cr合金的电化学腐蚀行为,含有不同晶粒尺寸。随着两个合金的氯离子浓度的增加,自由腐蚀电位朝向负值和腐蚀速率变得更快。 PMCU-20FE-12CR合金的电化学阻抗光谱(EIS)图由电容回路和扩散尾部组成。腐蚀过程通过扩散来控制。 NA_2SO_4或0.02mol·L〜(-1)NACL溶液中MACU-20FE-12CR合金的EIS图不能具有Warburg阻抗的特征。腐蚀过程由电化学反应控制。氯离子浓度增加至0.05mol·L〜(-1)后,其EIS由双电容环组成,双电容环具有直线诱导的两个电容环之间的Warburg电阻。以上的EIS块意味着存在点腐蚀。 MACU-20FE-12CR合金的腐蚀速率比PMCU-20FE-12CR合金的腐蚀速率更快,因为Macu-20Fe-12Cr合金的晶粒尺寸的降低产生了大量的晶界。

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