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Electrically Conductive and Protective Coating for Planar SOFC Stacks

机译:用于平面SOFC堆叠的导电和保护涂层

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Ferritic stainless steels are preferred interconnect materials for intermediate temperature SOFCs because of their resistance to oxidation, high formability and low cost. However, their protective oxide layer produces Cr-containing volatile species at SOFC operating temperatures and conditions, which can cause cathode poisoning. Electrically conducting spinel coatings have been developed to prevent cathode poisoning and to maintain an electrically conductive pathway through SOFC stacks. However, this coating is not compatible with the formation of stable, hermetic seals between the interconnect frame component and the ceramic cell. Thus, a new aluminizing process has been developed by PNNL to enable durable sealing, prevent Cr evaporation, and maintain electrical insulation between stack repeat units. Hence, two different types of coating need to have stable operation of SOFC stacks. This paper will focus on the electrically conductive coating process. Moreover, an advanced coating process, compatible with a non-electrically conductive coating will be shown.
机译:铁素体不锈钢是优选的用于中间温度SOFC的互连材料,因为它们对氧化,高成形性和低成本的抵抗力。然而,它们的保护性氧化物层在SOFC操作温度和条件下产生含CR的挥发物质,这会导致阴极中毒。已经开发出导电尖晶石涂层以防止阴极中毒并通过SOFC堆叠保持导电通路。然而,这种涂层与互连框架部件和陶瓷电池之间的稳定,气密密封的形成不兼容。因此,通过PNN1开发了新的铝化工艺,以实现耐用的密封,防止CR蒸发,并保持堆叠重复单元之间的电绝缘。因此,两种不同类型的涂层需要具有SOFC叠层的稳定操作。本文将专注于导电涂层工艺。此外,将示出与非导电涂层相容的先进涂覆方法。

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