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EIS analysis on the corrosion resistance of X80 steel under AC interference in simulated soil solution

机译:X80钢在模拟土壤溶液中X80钢耐腐蚀性的EIS分析

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In this work, the corrosion mechanism of X80 steel under AC interference was studied with electrochemical measurements. The surface potential was monitored at various AC current densities. EIS (electrochemical impedance spectroscopy) measurements were conducted at various AC voltage amplitudes and for various time durations. Variations in the modulus values of the real part and imaginary part were studied. In addition, to simplify the problem, EIS was measured under the effect of various DC potentials. The surface potential was of the same frequency as the AC interference, and the amplitude of the electrode surface potential was linear with the applied current density. As the AC current density increased, the charge transfer resistance decreased due to the acceleration of both the anodic and cathodic processes. When the AC current density reached a certain value, hydrogen and oxygen evolution occurred because the effective Faraday potential exceeded the corresponding critical reaction potential. With an increasing AC time, the charge transfer resistance increased, which was due to the formation of a protective corrosion product film. With the application of low-amplitude AC voltages, there was only a small change in the capacitance of the electric double layer. Nevertheless, with the application of AC voltages at higher amplitudes, the modulus values of the real and imaginary parts of EIS were all less rapid, and the ratio of the imaginary part and real part decreased.
机译:在这项工作中,用电化学测量研究了AC干扰下X80钢的腐蚀机制。在各种AC电流密度下监测表面电位。 EIS(电化学阻抗光谱)在各种AC电压幅度和各种时间持续时间下进行测量。研究了真实部件和虚部的模量值的变化。此外,为了简化问题,在各种直流电位的影响下测量EIS。表面电位与AC干扰相同的频率,并且电极表面电位的幅度与施加的电流密度线性。随着AC电流密度的增加,由于阳极和阴极过程的加速,电荷传递电阻降低。当AC电流密度达到一定的值时,发生氢和氧气进化,因为有效的法拉第电位超过相应的关键反应电位。随着AC时间的增加,电荷转移阻力增加,这是由于保护腐蚀产物膜的形成。随着低幅度交流电压的应用,电双层的电容仅有很小的变化。然而,随着AC电压在较高幅度下的应用,EIS的真实和虚部的模量值越快,虚部和实部和实部的比率降低。

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