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Deposition of NiO/YSZ composite and YSZ by suspension plasma spray on porous metal

机译:通过悬浮等离子体喷雾在多孔金属上沉积NiO / YSZ复合材料和YSZ

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The use of a liquid feedstock carrier in suspension plasma spray (SPS) permits injection of fine powders, providing the possibility of producing sprayed coatings that are both thin and dense and have fine microstructures. These characteristics make SPS an attractive process for depositing highly efficient electrodes and electrolytes for solid oxide fuel cell (SOFC) applications. In the present study, NiO-yttria stabilized zirconia (YSZ) anode and YSZ electrolyte half cells were successfully deposited on porous Hastelloy X substrates by SPS. The NiO-YSZ anode deposition process was optimized by design of experiment. The YSZ electrolyte spray process was examined by changing one parameter at a time. The results from the design-of-experiment trials indicate that the porosity of the as-deposited coatings increased with an increase of suspension feed rate while it decreased with an increase of total plasma gas flow rate and standoff distance. The deposition efficiency increased with an increase of total plasma gas flow rate, suspension feed rate and standoff distance. The microstructure examination by SEM shows that the NiO and YSZ phases were homogeneously distributed and that the YSZ phase had a lamellar structure. It was observed that the density of the YSZ electrolyte layer increased as input power of the plasma torch increased.
机译:在悬浮等离子体喷雾(SPS)中使用液体原料载体允许注射细粉末,提供产生薄且致密的喷涂涂层的可能性,并且具有细微结构细胞。这些特性使SPS成为用于固体氧化物燃料电池(SOFC)应用的高效电极和电解质的吸引方法。在本研究中,通过SP成功地沉积在NiO-钇稳定的氧化锆(YSZ)阳极和YSZ电解质半部细胞。所述的NiO-YSZ阳极沉积工艺通过实验的设计优化。通过一次改变一个参数来检查YSZ电解质喷雾过程。实验设计试验的结果表明,沉积涂层的孔隙率随着悬浮液的增加而增加,同时随着总等离子体气体流速和支座距离的增加而降低。随着总等离子体气体流速,悬架进料速率和支座距离的增加而增加,沉积效率增加。 SEM的微观结构检查表明,NIO和YSZ相均匀分布,YSZ相具有层状结构。观察到,随着等离子体焊炬的输入功率增加,YSZ电解质层的密度增加。

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