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Investigation of the Effects of Solution Temperature on the Corrosion Behavior of Austenitic Low-Nickel Stainless Steels in Citric Acid using Impedance and Polarization Measurements

机译:用阻抗和极化测量研究固溶温度对奥氏体低镍不锈钢在柠檬酸中腐蚀行为的影响

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Stainless steels may be classified according to alloy microstructure – ferritic, austenitic, martensitic, duplex, and precipitation hardening grades. Among these, austenitic grade has the largest contribution to market due to the alloy’s numerous industrial and domestic applications. In this study, the corrosion behavior of low-Nickel stainless steel in citric acid was investigated using potentiodynamic polarization techniques and Electrochemical Impedance Spectroscopy (EIS). The corrosion current density which is directly related to corrosion rate was extracted from the generated anodic polarization curve. Increasing the temperature of the citric acid resulted to increased corrosion current densities indicating higher corrosion rates at initial corrosion condition. EIS was performed to generate Nyquist plots whose shape and size depicts the corrosion mechanism and corrosion resistance of the alloy in citric acid, respectively. All the generated Nyquist plots have depressed semi-circle shapes implying that corrosion process takes place with charge-transfer as the rate-determining step. Based from the extracted values of polarization resistance (Rp), the temperature of the solution has negative correlation with the corrosion resistance of the studied alloy.
机译:不锈钢可以根据合金的微观结构进行分类-铁素体,奥氏体,马氏体,双相和沉淀硬化等级。其中,由于该合金在工业和家庭中的众多应用,对市场的贡献最大。在这项研究中,使用电位动力学极化技术和电化学阻抗谱(EIS)研究了低镍不锈钢在柠檬酸中的腐蚀行为。从产生的阳极极化曲线中提取出与腐蚀速率直接相关的腐蚀电流密度。柠檬酸温度的升高导致腐蚀电流密度的增加,表明在初始腐蚀条件下腐蚀速率更高。进行EIS生成奈奎斯特图,其形状和大小分别描述了合金在柠檬酸中的腐蚀机理和耐蚀性。所有生成的奈奎斯特图都具有凹陷的半圆形,这表明腐蚀过程是通过电荷转移作为速率确定步骤而发生的。从极化电阻(Rp)的提取值来看,溶液的温度与所研究合金的耐蚀性呈负相关。

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