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IN SITU IMAGING OF CORROSION EVENTS IN AUSTENITIC STEELS BY SCANNING ELECTROCHEMICAL MICROSCOPY

机译:通过扫描电化学显微镜,奥氏体钢腐蚀事件的原位成像

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Scanning electrochemical microscopy (SECM) was used to study the corrosion behavior of 300 Series austenitic steels. Using the substrate generation / tip collection (SG/TC) mode, the I~- ion was used as both the aggressive species and the method of detecting oxide breakdown. With the microelectrode tuned to detection of the oxidized product (I_3~-), it was brought to within 10 mu m of the sample surface. Mapping of the surface showed that current was isolated to discrete locations where pitting corrosion was observed. The SECM maps of the surface followed the expected trend of stability: 316 304L > 304. The 316L sample did not pit in I~- solution unless Cl~- was added. As a test of the technique, the corrosion of a cross-sectioned 316 weld was imaged. The expected behavior was pitting surrounding the weld due to heat sensitization. The results showed that the base 316 material was contaminated with non-metallic inclusions and showed high activity compared to the filler material which showed no activity. The potential of SECM in studying corrosion was discussed.
机译:扫描电化学显微镜(SECM)用于研究300系列奥氏体钢的腐蚀行为。使用基板生成/尖端采集(SG / TC)模式,使用I〜离子作为侵蚀性物种和检测氧化物分解的方法。通过调节微电极以检测氧化产物(I_3〜 - ),将其达到样品表面的10μm。表面的映射显示,电流被分离到观察到点腐蚀的离散位置。表面的SECM地图遵循预期的稳定性趋势:316 304L> 304.除非加入Cl〜 - 否则,除非加入316L样品,否则在溶液中没有坑。作为该技术的测试,成像横截面316焊缝的腐蚀。由于热致敏,预期的行为围绕焊缝。结果表明,与填充材料相比,碱基316材料被非金属夹杂物污染并显示出高活性,与填充材料显示没有活动。讨论了SECM在研究腐蚀中的潜力。

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