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An All-Ceramic Interconnect for Use in Solid-Oxide Fuel Cell Stacks

机译:用于固态氧化物燃料电池堆的全陶瓷互连

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This article summarizes a unique approach in which all-ceramic interconnects are used in place of metal interconnects in solid-oxide fuel cell (SOFC) stacks. The approach combines advanced SOFC materials with the manufacturing technology and infrastructure established for multilayer ceramic (MLC) packaging for the microelectronics industry. The MLC interconnect is fabricated using multiple layers of yttria-stabilized zirconia (YSZ) tape, with each layer containing conductive vias to provide for electrical current flow through the interconnect. The all-ceramic interconnect design facilitates uniform distribution of air and fuel gas to the respective electrodes of adjacent cells. The multilayer interconnects are fabricated using traditional MLC manufacturing processes. A detailed description of the processes for fabricating the all-ceramic interconnect is presented. To aid in moving from prototype fabrication to commercialization of these fuel cell systems, a detailed cost model has been used as a roadmap for commercial stack development. Cost model projections are presented for three different interconnect footprint sizes. These projections show an SOFC stack cost of less than $150 per kilowatt for the optimized SOFC stack design produced at high volume.
机译:本文总结了一种独特的方法,其中在固态氧化物燃料电池(SOFC)堆栈中使用全陶瓷互连代替金属互连。该方法将先进的SOFC材料与为微电子行业的多层陶瓷(MLC)包装建立的制造技术和基础设施相结合。使用多层氧化钇稳定的氧化锆(YSZ)胶带制造MLC互连,其中每一层均包含导电通孔,以提供电流流过互连。全陶瓷互连设计有助于将空气和燃料气体均匀分布到相邻电池的各个电极上。使用传统的MLC制造工艺来制造多层互连。给出了用于制造全陶瓷互连的工艺的详细描述。为了帮助从这些燃料电池系统的原型制造过渡到商业化,详细的成本模型已用作商业堆栈开发的路线图。提出了针对三种不同互连尺寸的成本模型预测。这些预测表明,针对大批量生产的优化SOFC堆设计,SOFC堆成本低于每千瓦150美元。

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