Investigation of pitting potential of carbon steel using experimental design method

M. Ergun, L. Akçay
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引用次数: 6

Abstract

Abstract The dependence of the pitting potential Ep of 1018 carbon steel on chloride concentration, pH and the temperature of the solution was studied by the potentiodynamic method in accordance with a statistical experimental design. The parameters of the empirical pitting potential model determined on the basis of Box-W ilson ex perimental design method were evaluated using the experimental data. Comparison of the predicted values from the model with the observed values showed that the model is a good fit. From the model equation the most noble pitting potential value of -225 mV (SCE) was obtained when the Cl- ion concentration, temperature and pH of the solution were 205 ppm, 25°C, and 6·4, respectively. The Box-Wilson experimental design technique was proved to be applicable in modelling the pitting potential of carbon steel.
用试验设计方法研究碳钢的点蚀电位
摘要采用统计实验设计,采用动电位法研究了1018碳钢的点蚀电位Ep随溶液中氯化物浓度、pH和温度的变化规律。利用实验数据对基于Box-W - wilson实验设计方法确定的经验点蚀电位模型参数进行了评价。模型预测值与实测值的比较表明,模型拟合较好。由模型方程可知,当溶液Cl-离子浓度为205 ppm、温度为25℃、pH为6.4℃时,最大点蚀电位值为-225 mV (SCE)。实验证明,Box-Wilson实验设计技术可用于模拟碳钢的点蚀电位。
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