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首页> 外文期刊>International journal of hydrogen energy >Optimization of the electrical properties of Ti-Nb stabilized ferritic stainless steel SOFC interconnect alloy upon high-temperature oxidation: The role of excess Mb on the interfacial oxidation at the oxide-metal interface
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Optimization of the electrical properties of Ti-Nb stabilized ferritic stainless steel SOFC interconnect alloy upon high-temperature oxidation: The role of excess Mb on the interfacial oxidation at the oxide-metal interface

机译:Ti-Nb稳定的铁素体不锈钢SOFC互连合金在高温氧化下的电性能的优化:过量的Mb在氧化物-金属界面的界面氧化中的作用

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摘要

Interfacial oxidation of Nb and Si at 650 ℃ on Laves phase forming Ti-Nb stabilized ferritic stainless steel (Fe-19Cr-0.9Si-0.2Nb-0.1Ti (at.%), grade EN 1.4509) was studied by electrochemical impedance spectroscopy and photoelectron spectroscopy. It was found that excess Nb efficiently hinders the formation of electrically resistive SiO_2 layer at the oxide -metal interface. The beneficial role of Nb was attributed to its high segregation rate and the formation of conductive oxides at the interface. However, the oxidation was strongly influenced by age-precipitation of the Laves (FeNbSi)-type intermetallic phase, which removed free Nb from the alloy solution and thus allowed SiO_2 layer to form more easily. These results can be applied to optimize the oxide scale composition by Nb alloying of the ferritic stainless steel to maintain high performance under various operation conditions, particularly in solid oxide fuel cell applications.
机译:通过电化学阻抗谱研究了在Laves相形成Ti-Nb稳定的铁素体不锈钢(Fe-19Cr-0.9Si-0.2Nb-0.1Ti(at。%),等级EN 1.4509)上650℃下Nb和Si的界面氧化。光电子能谱。发现过量的Nb有效地阻碍了在氧化物-金属界面处的电阻SiO_2层的形成。 Nb的有益作用归因于其高偏析率和在界面处形成导电氧化物。但是,氧化受到Laves(FeNbSi)型金属间相的时效沉淀的强烈影响,该相析出从合金溶液中除去了游离Nb,从而使SiO_2层更容易形成。这些结果可用于通过铁素体不锈钢的Nb合金化来优化氧化皮组成,以在各种操作条件下保持高性能,特别是在固体氧化物燃料电池应用中。

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