Influence of corrosion behavior of X80 steel in silty soil containing composite sodium salt based on orthogonal test

Yuting Wang, P. Han, Funan Sun, Ruizhen Xie, X. Bai, B. He, Xiaoyuan Wang
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Abstract

The corrosion law of X80 steel in silty soils with different contents of sodium chloride and sodium sulfate is studied at different temperatures by using an orthogonal test group of three factors and three levels L9 (34) in conjunction with the results of electrochemical impedance spectroscopy, polarization curve, and microscopic images. The steel corrosion rate increases with the silty soil temperature. The presence of SO42− in silty soil inhibits corrosion in X80 steel. The corrosion mechanism involves competition between Cl− and SO42− for adsorption sites: SO42− ions occupy some corrosion pits, and FeS and other corrosion products are generated and adhere to the surface of the corrosion pits, inhibiting further reaction. A range analysis of the fitted electrochemical impedance spectra and polarization curves of X80 steel shows that the temperature has the strongest effect on the corrosion of X80 steel, followed by the Cl− content, whereas the SO42− content has the least effect. The lowest corrosion rate is found for a silty soil Cl− content of 0.3%, a SO42− content of 2.0%, and a temperature of −20°C.
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基于正交试验的X80钢在含复合钠盐粉质土中腐蚀行为的影响
采用三因素三水平L9(34)正交试验组,结合电化学阻抗谱、极化曲线和显微图像,研究了不同温度下X80钢在不同氯化钠和硫酸钠含量粉质土中的腐蚀规律。钢的腐蚀速率随粉土温度的升高而增大。粉质土壤中SO42−的存在抑制了X80钢的腐蚀。腐蚀机制涉及Cl -和SO42 -对吸附位点的竞争,SO42 -离子占据了一些腐蚀坑,产生了FeS等腐蚀产物并附着在腐蚀坑表面,抑制了进一步的反应。对X80钢的电化学阻抗谱和极化曲线进行极差分析表明,温度对X80钢腐蚀的影响最大,其次是Cl−含量,SO42−含量的影响最小。当粉质土壤Cl−含量为0.3%、SO42−含量为2.0%、温度为- 20℃时,腐蚀速率最低。
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