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首页> 外文期刊>Journal of engineering materials and technology >The Corrosion Behavior of 9Cr Ferritic-Martensitic Heat-Resistant Steel in Water and Chloride Environment
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The Corrosion Behavior of 9Cr Ferritic-Martensitic Heat-Resistant Steel in Water and Chloride Environment

机译:9Cr铁素体-马氏体耐热钢在水和氯化物环境中的腐蚀行为

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摘要

The corrosion behavior of 9Cr ferritic-martensitic heat-resistant steel was investigated in water and chloride environment at room temperature (RT). The results of linear polarization, electrochemical impedance spectroscopy (EIS), and potentiodynamics (PD) polarization tests on long-term exposure show that 9Cr ferritic-martensitic steel has weaker corrosion resistance and greater pitting corrosion tendency in higher chloride concentrations. Corresponding scanning electron microscopy (SEM) observation displays that higher concentration chloride promotes the pitting initiation. During long-term exposure, pitting susceptibility decreases, the average pit size increases, and the density declines in higher chloride concentrations. Pits in the grains and along the grain boundaries are observed by optical microscope (OM), and it indicates that inclusions in grains and carbide particles at grain boundaries are the sites susceptible to pitting initiation.
机译:研究了9Cr铁素体-马氏体耐热钢在水和氯化物环境下室温下的腐蚀行为。长期暴露的线性极化,电化学阻抗谱(EIS)和电位动力学(PD)极化试验的结果表明,在较高的氯化物浓度下,9Cr铁素体-马氏体钢具有较弱的耐蚀性和较大的点蚀趋势。相应的扫描电子显微镜(SEM)观察表明,较高浓度的氯化物会促进点蚀的产生。在长期暴露期间,在较高的氯化物浓度下,点蚀敏感性降低,平均点蚀尺寸增加,密度降低。用光学显微镜(OM)观察到晶粒中和沿晶界的凹坑,这表明晶粒中的夹杂物和晶界处的碳化物颗粒是易于发生点蚀的部位。

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