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Diffusion of Nickel into Ferritic Steel Interconnects of Solid Oxide Fuel/Electrolysis Stacks

机译:镍扩散到固体氧化物燃料/电解堆的铁素体钢互连中

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Stainless steels are used as interconnects in Solid Oxide Fuel Cell/Electrolysis stacks. Their high temperature corrosion resistance has been studied mainly to describe oxide scale formation processes. Other corrosion/degradation processes may also be of relevance to overall life time, for example diffusion of nickel from the Ni/YSZ electrode or the contact layer into the interconnect plate. Such diffusion can cause austenization of the ferritic structure and could possibly alter corrosion properties of the steel. Whereas this process has already been recognized by SOFC stack developers, only a limited number of studies have been devoted to the phenomenon. Here, diffusion of Ni into ferritic Crofer 22 APU steel is studied in a wet hydrogen atmosphere after 250 hours of exposure at 800 °C using Ni-plated (~ 10 micron thick coatings) sheet steel samples as a model system. Even after this relatively short time all the metallic nickel in the coating has reacted and formed solid solutions with iron and chromium. Diffusion of Ni into the steel causes formation of the austenite FCC phase. The microstructure and composition of the oxide scale formed on the sample surface after 250 hours is similar to the one observed with no Ni coating. The results show that over the time studied the overall corrosion rate of the interconnect in wet hydrogen is not affected by the Ni diffusion and formation of the austenitic phase.
机译:不锈钢用作固体氧化物燃料电池/电解堆中的互连件。主要研究了它们的高温耐腐蚀性,以描述氧化物垢的形成过程。其他腐蚀/降解过程也可能与整个使用寿命有关,例如镍从Ni / YSZ电极或接触层扩散到互连板中。这种扩散会引起铁素体组织的奥氏体化,并可能改变钢的腐蚀性能。尽管此过程已为SOFC堆栈开发人员所认可,但仅对这种现象进行了有限的研究。在此,以镀镍(〜10微米厚的涂层)钢板样品为模型系统,研究了镍在800℃下暴露250小时后,在湿氢气氛中研究了Ni在铁素体Crofer 22 APU钢中的扩散。即使经过相对较短的时间,涂层中的所有金属镍也已反应并与铁和铬形成固溶体。 Ni扩散到钢中会导致奥氏体FCC相的形成。 250小时后在样品表面上形成的氧化皮的微观结构和组成与未镀镍时观察到的相似。结果表明,经过一段时间的研究,湿氢中互连的整体腐蚀速率不受镍扩散和奥氏体相形成的影响。

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