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Effects of Environmental Factors on the Electronic Properties of Interfacial Oxide Film on 304L Stainless Steel in High Temperature Pure Water

机译:环境因素对高温纯水304L不锈钢界面氧化膜电子性质的影响

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The electronic properties of the interfacial oxide film formed on 304L stainless steel in high temperature water are investigated by contact electric resistance (CER) measurements. Tests are performed in pure water with a wide range of dissolved oxygen (DO) content at 200, 250, and 288°C. The electrochemical potential (ECP) moves in the noble direction and CER increases when increasing DO. Results show that DO content has a dominant effect on the electronic properties of oxide film. The change of oxide film properties can also be attributed to the variation of the electrochemical potential, which is directly affected by DO content. Critical potentials exist for the formation and reduction of oxide films in high temperature water. Multiple steps are found for the reduction of oxide films due to de-aeration in 200, 250, and 288°C water, implying the presence of multiple-layer interfacial oxide films. The film reduction process is relatively slower than the film formation process. Present results show that even in high purity water, a moderate change of DO content can result in different surface conditions. Dissolved hydrogen has a moderate effect on interfacial surface films in deaerated water. In-situ monitoring of the oxide film properties by CER technique provides information on the interfacial reactions that are related to the SCC behavior of materials in high temperature water environments.
机译:通过接触电阻(CER)测量,研究了在高温水中形成的在304L不锈钢上形成的界面氧化膜的电子性质。测试在纯水中进行,在200,250,250℃下具有宽范围的溶解氧(DO)含量。电化学电位(ECP)在惰性方向上移动,CER在增加时增加。结果表明,含量对氧化膜的电子性质具有显着影响。氧化物膜性能的变化也可以归因于电化学电位的变化,其直接受到含量的影响。高温水中氧化膜的形成和还原存在临界电位。由于200,250和288℃的水中的脱气,发现了多个步骤用于减少氧化膜,这意味着存在多层界面氧化膜的存在。薄膜还原过程比膜形成过程相对较慢。目前的结果表明,即使在高纯度水中,也可以导致不同的表面条件的中等变化。溶解的氢对脱气水中的界面表面膜具有中等的效果。通过CER技术的原位监测氧化膜特性提供了关于与高温水环境中材料的SCC行为有关的界面反应的信息。

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