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首页> 外文期刊>Corrosion Engineering, Science and Technology >Study of respective roles of anodic and cathodic reactions in acoustic emission recorded during crevice corrosion of 304L austenitic stainless steel
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Study of respective roles of anodic and cathodic reactions in acoustic emission recorded during crevice corrosion of 304L austenitic stainless steel

机译:阳极和阴极反应在304L奥氏体不锈钢缝隙腐蚀过程中记录的声发射中的作用研究

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The contributions of anodic and cathodic reactions to the acoustic emission recorded during crevice corrosion of 304L austenitic stainless steel have been investigated. During the experiments, crevice propagation was localised on an anodic sample, whereas the cathodic reactions were isolated on a separate specimen. The application of shot-peening to the anodic and/or cathodic sample surfaces allowed control over the distribution of anodic and cathodic reactions on both specimens. The shot-peening treatment led to an increased crevice propagation rate, due to an increase in the cathodic current density. It has been established that the most energetic acoustic emissions originate from cathodic reactions, whereas anodic processes are associated with more numerous but shorter AE signals. During crevice development, the cathodic reactions begin with the reduction of O_2 and/or H_2O_2 on the cathodic specimen, but later involve H~+ reduction in the so-called 'anodic' confined area. The involvement of proton reduction within the crevice as a driving force for crevice propagation has been confirmed by analysis of the acoustic emission data.
机译:研究了阳极和阴极反应对304L奥氏体不锈钢缝隙腐蚀期间记录的声发射的贡献。在实验过程中,缝隙扩散位于阳极样品上,而阴极反应则在单独的样品上分离。通过对阳极和/或阴极样品表面进行喷丸处理,可以控制两个样品上的阳极和阴极反应的分布。由于阴极电流密度的增加,喷丸处理导致缝隙传播速率增加。已经确定,最有力的声发射源于阴极反应,而阳极过程与更多但更短的AE信号相关。在缝隙发展过程中,阴极反应始于阴极样品上O_2和/或H_2O_2的还原,但随后涉及所谓的“阳极”密闭区中的H〜+还原。通过声发射数据的分析已经证实了质子减少在缝隙中作为缝隙传播的驱动力。

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