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Metal-Ceramic/Ceramic Nanostructured Layered Composites for Solid Oxide Fuel Cells by Spark Plasma Sintering

机译:火花等离子体烧结固体氧化物燃料电池金属陶瓷/陶瓷纳米结构层状复合材料

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摘要

In this work, bi-layered Fe-Ni-Co-YSZ/YSZ nanostructured composites for solid oxide fuel cells were obtained using the spark plasma sintering (SPS) technique. The microstructures of the anode and electrolyte were controlled by optimization of SPS consolidation parameters. The resulting bilayers have a full dense YSZ electrolyte and porous Fe-Ni-Co/YSZ anode as well as crack-free and well-bonded anode/electrolyte interface. On the other hand, SPS under non-optimized processing parameters cannot yield the desired results. The high resistance to thermal stresses of the fabricated half-cells was achieved with Fe-Ni-Co/YSZ anode. The developed anode showed higher thermal compatibility with YSZ electrolyte than usual Ni/YSZ cermet. Thus, with the successful combination of SPS parameters and anode material, we have obtained bi-layers for SOFCs with required microstructure and thermal compatibility.
机译:在这项工作中,使用火花等离子体烧结(SPS)技术获得了用于固体氧化物燃料电池的双层Fe-Ni-Co-YSZ / YSZ纳米结构复合材料。通过优化SPS固结参数来控制阳极和电解质的微观结构。所得的双层具有完全致密的YSZ电解质和多孔的Fe-Ni-Co / YSZ阳极,以及无裂纹且结合良好的阳极/电解质界面。另一方面,在未优化的处理参数下,SPS无法产生所需的结果。 Fe-Ni-Co / YSZ阳极可实现对制成的半电池的高抗热应力性能。与常规的Ni / YSZ金属陶瓷相比,已开发的阳极与YSZ电解质的热相容性更高。因此,通过成功结合SPS参数和阳极材料,我们获得了具有所需微结构和热相容性的SOFC双层。

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