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Recent advances in metallic interconnects for solid oxide fuel cells

机译:固体氧化物燃料电池金属互连的最新进展

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With the reduction in solid oxide fuel cell (SOFC) operating temperatures into the range 650-800°C, cost effective metallic materials, in particular high temperature oxidation resistant alloys, have become promising candidates, in place of ceramic counterparts, for construction of interconnects in SOFC stacks. For a lifetime of thousands of hours, the alloys must demonstrate excellent surface, structural and electrical stability, and compatibility with other components in SOFC stacks in a very challenging environment. The present paper provides a critical review of metallic interconnects for SOFCs with a focus on recent progress in materials development, as well as advances in understanding materials degradation and interfacial phenomena under the SOFC operating conditions. It also attempts to provide guiding principles for the development of optimised, cost effective metallic interconnect materials that can demonstrate satisfactory life time stability and performance.
机译:随着固体氧化物燃料电池(SOFC)的工作温度降低到650-800°C,具有成本效益的金属材料(尤其是耐高温氧化的合金)已经成为有前途的候选材料,以取代陶瓷对应物,用于互连结构的制造。在SOFC堆栈中。在数千小时的使用寿命中,这些合金必须在极富挑战性的环境中表现出出色的表面,结构和电气稳定性,并与SOFC烟囱中的其他组分具有相容性。本文对SOFC的金属互连进行了严格的审查,重点是材料开发方面的最新进展以及在SOFC工作条件下了解材料降解和界面现象方面的进展。它还尝试为开发可证明令人满意的使用寿命稳定性和性能的经济有效的金属互连材料提供指导原则。

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