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首页> 外文期刊>Journal of Thermal Spray Technology >Deposition of Composite LSCF-SDC and SSC-SDC Cathodes by Axial-Injection Plasma Spraying
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Deposition of Composite LSCF-SDC and SSC-SDC Cathodes by Axial-Injection Plasma Spraying

机译:轴向注入等离子喷涂沉积LSCF-SDC和SSC-SDC复合阴极

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摘要

The performance of solid oxide fuel cell cathodes can be improved by increasing the number of electrochemical reaction sites, by controlling microstructures, or by using composite materials that consist of an ionic conductor and a mixed ionic and electronic conductor. LSCF (La0.6Sr0.4Co0.2Fe0.8O3−δ) and SSC (Sm0.5Sr0.5CoO3) cathodes were manufactured by axial-injection atmospheric plasma spraying, and composite cathodes were fabricated by mixing SDC (Ce0.8Sm0.2O1.9) into the feedstock powders. The plasma power was varied by changing the proportion of nitrogen in the plasma gas. The microstructures of cathodes produced with different plasma powers were characterized by scanning electron microscopy and gas permeation measurements. The deposition efficiencies of these cathodes were calculated based on the mass of the sprayed cathode. Particle surface temperatures were measured in-flight to enhance understanding of the relationship between spray parameters, microstructure, and deposition efficiency.
机译:固体氧化物燃料电池阴极的性能可以通过增加电化学反应位点的数量,控制微结构或使用由离子导体以及离子和电子混合导体组成的复合材料来改善。 LSCF(La0.6 Sr0.4 Co0.2 Fe0.8 O3-δ)和SSC(Sm0.5 Sr0。通过轴向注入大气等离子体喷涂制备了5 CoO3 )阴极,并通过混合SDC(Ce0.8 Sm0.2 O1.9 )制备了复合阴极。 sub>)放入原料粉末中。通过改变等离子体气体中氮的比例来改变等离子体功率。通过扫描电子显微镜和气体渗透测量来表征以不同等离子功率产生的阴极的微观结构。这些阴极的沉积效率是根据喷涂阴极的质量计算的。在飞行中测量颗粒表面温度,以增强对喷雾参数,微观结构和沉积效率之间关系的理解。

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