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Influence of chloride ion concentration and temperature on the electrochemical properties of passive films formed on a superduplex stainless steel

机译:氯离子浓度和温度对超双相不锈钢表面钝化膜电化学性能的影响

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摘要

Polarization measurements were conducted to monitor the corrosion behavior of superduplex stainless steel ASTM A995M-Gr.5A/EN 10283-Mat#1.4469(GX2CrNiMo26-7-4) when exposed to a) an electrolyte containing 22,700 parts per million (ppm) of chloride ions at seven different temperatures and b) an electrolyte at 25 °C and different chloride ion concentrations (5800, 22,700, 58,000 and 80,000 ppm of Cl~-). The polarization curves indicate that the passive films formed are only slightly affected by NaCl concentration, but the pitting potential decreases drastically increasing the temperature, in particular >60 °C. The image analysis of the microstructure after potentiodynamic polarization showed that the pitting number and size vary in function of the temperature of the tested medium. Nyquist diagrams were determined by electrochemical impedance spectroscopy to characterize the resistance of the passive layer. According to Nyquist plots, the arc polarization resistance decreases increasing the temperature due to a catalytic degradation of the oxide passive films.
机译:进行极化测量以监测超双相不锈钢ASTM A995M-Gr.5A / EN 10283-Mat#1.4469(GX2CrNiMo26-7-4)的腐蚀行为a)电解液中含有22,700百万分之一(ppm)的氯化物离子在七个不同的温度下; b)25°C的电解质和不同的氯离子浓度(Cl〜-的5800、22,700、58,000和80,000 ppm)。极化曲线表明,形成的钝化膜仅受NaCl浓度的轻微影响,但点蚀电位会急剧降低,从而使温度升高,尤其是> 60°C。电位动力极化后的微观结构的图像分析表明,点蚀次数和尺寸随被测介质温度的变化而变化。通过电化学阻抗光谱法确定奈奎斯特图以表征无源层的电阻。根据奈奎斯特图,由于氧化物钝化膜的催化降解,电弧极化电阻降低,温度升高。

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