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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Local Electrochemical Studies after Heat Treatment of Stainless Steel: Role of Induced Metallurgical and Surface Modifications on Pitting Triggering
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Local Electrochemical Studies after Heat Treatment of Stainless Steel: Role of Induced Metallurgical and Surface Modifications on Pitting Triggering

机译:不锈钢热处理后的局部电化学研究:诱导冶金和表面改性对点蚀触发的作用

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摘要

The morphology, the chemical composition, and the pitting corrosion resistance of a resulfurized stainless steel heated at 1000 deg C for 2 hours were investigated at the microscale using ex-situ (field-emission-scanning electron microscope/electron dispersion spectrometer (FE-SEM/EDS) and secondary ion mass spectroscopy (SIMS)) and in-situ (electrochemical microcell technique and in-situ atomic force microscope (AFM) techniques. Although microcracks, which may have a deleterious effect, exist, the formation of a compound (Cr,Mn)_2(O,S)_3 instead of MnS is responsible for the better pitting corrosion resistance of sites containing an inclusion. Local electrochemical measurements indicate that no pitting was detected on these sites below 800 mV/SCE (saturated calomel electrode), whereas stable pitting was observed at around 350 mV/SCE before heating. Micropores were detected on the highly oxidized grains in which the ionic activity was found to be more marked than on the remaining surface (determined using in-situ AFM). Local electrochemical measurements revealed that the presence of such defects reduces significantly the corrosion resistance of the metallic alloy in NaCl-based media.
机译:使用异位(场发射扫描电子显微镜/电子弥散光谱仪(FE-SEM),在微观尺度上研究了在1000℃加热2小时的重硫化不锈钢的形貌,化学组成和耐点蚀性/ EDS),二次离子质谱(SIMS)和原位(电化学微电池技术和原位原子力显微镜(AFM)技术。尽管存在可能产生有害作用的微裂纹,但化合物( Cr,Mn)_2(O,S)_3代替MnS可以更好地抑制包含夹杂物的部位的抗点蚀性能。局部电化学测量表明,在低于800 mV / SCE的位置(饱和甘汞电极)上未检测到点蚀加热前在350 mV / SCE附近观察到稳定的点蚀,在高度氧化的颗粒上检测到微孔,其离子活性比其余的表面活性高ce(使用原位AFM确定)。局部电化学测量表明,此类缺陷的存在显着降低了NaCl基介质中金属合金的耐腐蚀性。

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