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首页> 外文期刊>International Journal of Electrochemical Science >The Electrochemical Corrosion Behaviour of Q235 Steel in Soil Containing Sodium Chloride
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The Electrochemical Corrosion Behaviour of Q235 Steel in Soil Containing Sodium Chloride

机译:Q235钢在含氯化钠土壤中的电化学腐蚀行为

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In this paper, the silt soil in Shanxi, China was selected and sodium chloride solution was added to the soil as the simulated saline soil. The corrosion characteristics of four contaminated soils with various sodium chloride contents were analysed by electrochemical impedance spectroscopy (EIS), and the electrochemical corrosion behaviour of Q235 steel at three ages in these four different simulated saline soil environments was studied by using EIS and polarization curves. The corrosion mechanism was analysed by scanning electron microscopy (SEM). The test results showed that the soil with a sodium chloride content of 2.3% had the strongest electrical conductivity. The increase in the sodium chloride content in the soil promoted not only the conductivity and corrosiveness of the soil but also the corrosion rate of Q235 steel. By fitting the electrochemical impedance spectra of steel, two equivalent circuits of R(CR(QR))(CR) and LR(QR)(QR) were obtained, and the total impedance formulas were deduced. By analysing the parameters of the equivalent circuit, the corrosion process of Q235 steel was determined. The corrosion area on the surface of the Q235 steel specimen continued to expand, and the degree of corrosion deepened with increasing sodium chloride concentration in the soil.
机译:本文选择了山西,中国的淤泥土,并将氯化钠溶液加入到土壤中作为模拟盐水土壤。通过电化学阻抗光谱(EIS)分析了四种污染土壤具有各种氯化钠含量的腐蚀特性,通过使用EIS和偏振曲线研究了这四种不同模拟盐水环境中三年龄段的Q235钢的电化学腐蚀行为。通过扫描电子显微镜(SEM)分析腐蚀机制。测试结果表明,氯化钠含量为2.3%的土壤具有最强的电导率。土壤中氯化钠含量的增加不仅促进了土壤的电导率和腐蚀性,而且促进了Q235钢的腐蚀速率。通过拟合钢的电化学阻抗光谱,获得了r(Cr(QR))(Cr)和LR(QR)的两种等效电路,推导出总阻抗公式。通过分析等效电路的参数,测定了Q235钢的腐蚀过程。 Q235钢标本表面上的腐蚀区域继续膨胀,随着土壤中氯化钠浓度的增加,腐蚀程度深化。

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