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Development of Protective Coatings for SOFC Metallic Components

机译:SOFC金属部件保护涂层的开发

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The adoption of oxidation resistant, high-temperature alloys as alternatives to traditional ceramic interconnect materials for intermediate-temperature solid oxide fuel cells is critical to satisfy the aggressive cost targets necessary for their successful development. The effect of processing conditions on the microstructure and electrical performance of manganese cobaltite oxide coatings for the protection of ferritic stainless steel interconnects has been investigated. Using the standard aerosol spray deposition (ASD) based process which includes a reduction firing operation a highly dense MCO coating is formed that acts as an effective barrier to high temperature oxidation and chromium volatilization. Excellent long-term electrical and microstructural stability of the MCO coating has been demonstrated under application specific conditions. Omitting the reduction firing step is shown to significantly degrade the coating microstructure which is unable to densify sufficiently to form an effective protective oxide coating.
机译:对于中温固体氧化物燃料电池,采用抗氧化的高温合金作为传统陶瓷互连材料的替代品,对于满足其成功开发所必需的积极的成本目标至关重要。研究了工艺条件对锰酸钴锰氧化物涂层的微观结构和电性能的影响,以保护铁素体不锈钢互连。使用基于标准气溶胶喷雾沉积(ASD)的工艺(包括还原烧结操作),形成了高致密的MCO涂层,该涂层可作为高温氧化和铬挥发的有效屏障。在特定的应用条件下,MCO涂层具有出色的长期电气和微观结构稳定性。省略还原焙烧步骤显示出显着降低了涂层的微观结构,该微观结构不能充分致密以形成有效的保护性氧化物涂层。

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