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Atmospheric Plasma Spraying Low-Temperature Cathode Materials for Solid Oxide Fuel Cells

机译:用于固体氧化物燃料电池的大气等离子体喷涂低温阴极材料

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Atmospheric plasma spraying (APS) is attractive for manufacturing solid oxide fuel cells (SOFCs) because it allows functional layers to be built rapidly with controlled microstructures. The technique allows SOFCs that operate at low temperatures (500-700°C) to be fabricated by spraying directly onto robust and inexpensive metallic supports. However, standard cathode materials used in commercial SOFCs exhibit high polarization resistances at low operating temperatures. Therefore, alternative cathode materials with high performance at low temperatures are essential to facilitate the use of metallic supports. Coatings of lanthanum strontium cobalt ferrite (LSCF) were fabricated on steel substrates using axial-injection APS. The thickness and microstructure of the coating layers were evaluated, and x-ray diffraction analysis was performed on the coatings to detect material decomposition and the formation of undesired phases in the plasma. These results determined the envelope of plasma spray parameters in which coatings of LSCF can be manufactured, and the range of conditions in which composite cathode coatings could potentially be manufactured.
机译:大气等离子体喷涂(APS)对于制造固体氧化物燃料电池(SOFC)是有吸引力的,因为它允许用控制的微结构快速构建功能层。该技术允许在低温(500-700°C)下操作的SOFC通过直接喷涂到鲁棒和廉价的金属支撑件上来制造。然而,商业SOFC中使用的标准阴极材料在低操作温度下表现出高偏振电阻。因此,在低温下具有高性能的替代阴极材料对于便于使用金属支撑件是必不可少的。使用轴向注射APS在钢基板上制造镧锶铁素体(LSCF)的涂层。评价涂层的厚度和微观结构,并在涂层上进行X射线衍射分析以检测材料分解和形成等离子体中不需要的相。这些结果确定了可以制造LSCF的涂层的等离子体喷射参数的包络,以及可以制造复合阴极涂层的条件范围。

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