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Study of oxygen reduction on stainless steel surfaces and its contribution to acoustic emission recorded during corrosion processes

机译:研究腐蚀过程中记录的不锈钢表面上的氧气还原及其对声发射的贡献

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Acoustic emission technique is often used to monitor corrosion processes. Yet, among the potential sources of AE associated to corrosion phenomena, the emissivity of oxygen reduction on metallic surfaces has never been studied up to now. In that context, dissolved oxygen reduction was monitored by acoustic emission (AE) on as polished, pre-reduced,' electrochemically or chemically passiv-ated surfaces of AISI 316L austenitic stainless steel. The influence of the composition of the passive film on the oxygen reduction reaction has been confirmed. Moreover, in our experimental configuration, it has been demonstrated that proton reduction or iron oxide reduction were not at the origin of AE signals recorded during cathodic polarization of the specimens. On the other hand, oxygen reduction involving O-O bond rupture and/or atomic oxygen desorption from metallic surface appears to be the source of detected acoustic emission. However, these mechanisms generally occur too slowly during free corrosion processes, such as crevice corrosion, to promote any significant acoustic emission when developing naturally on metallic surfaces.
机译:声发射技术通常用于监测腐蚀过程。然而,在与腐蚀现象相关的AE的潜在来源中,到目前为止,尚未研究金属表面上氧还原的发射率。在这种情况下,通过在AISI 316L奥氏体不锈钢的抛光,预还原,电化学或化学钝化表面上通过声发射(AE)监测溶解氧的还原。已经证实了钝化膜的组成对氧还原反应的影响。此外,在我们的实验配置中,已经证明质子还原或氧化铁还原并不是在样品的阴极极化过程中记录的AE信号的起源。另一方面,涉及O-O键断裂和/或原子氧从金属表面脱附的氧还原似乎是检测到的声发射的来源。但是,这些机制通常在自由腐蚀过程(例如缝隙腐蚀)中发生得太慢,以至于在金属表面自然发展时会促进任何明显的声发射。

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