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首页> 外文期刊>Journal of Thermal Spray Technology >Relationship Between Particle and Plasma Properties and Coating Characteristics of Samaria-Doped Ceria Prepared by Atmospheric Plasma Spraying for Use in Solid Oxide Fuel Cells
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Relationship Between Particle and Plasma Properties and Coating Characteristics of Samaria-Doped Ceria Prepared by Atmospheric Plasma Spraying for Use in Solid Oxide Fuel Cells

机译:固体氧化物燃料电池大气等离子喷涂制备的掺杂Samaria的二氧化铈的颗粒与等离子体性能及涂层特性之间的关系

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摘要

Samaria-doped ceria (SDC) has become a promising material for the fabrication of high-performance, intermediate-temperature solid oxide fuel cells (SOFCs). In this study, the in-flight characteristics, such as particle velocity and surface temperature, of spray-dried SDC agglomerates were measured and correlated to the resulting microstructures of SDC coatings fabricated using atmospheric plasma spraying, a manufacturing technique with the capability of producing full cells in minutes. Plasmas containing argon, nitrogen and hydrogen led to particle surface temperatures higher than those in plasmas containing only argon and nitrogen. A threshold temperature for the successful deposition of SDC on porous stainless steel substrates was calculated to be 2570 °C. Coating porosity was found to be linked to average particle temperature, suggesting that plasma conditions leading to lower particle temperatures may be most suitable for fabricating porous SOFC electrode layers.
机译:掺杂Samaria的二氧化铈(SDC)已成为制造高性能,中温固体氧化物燃料电池(SOFC)的有前途的材料。在这项研究中,测量了喷雾干燥的SDC附聚物的飞行中特性,例如颗粒速度和表面温度,并将其与使用大气等离子喷涂制造的SDC涂层的微观结构相关联,该工艺是具有完全生产能力的制造技术。数分钟内即可获得细胞。包含氩,氮和氢的等离子体导致的粒子表面温度高于仅包含氩和氮的等离子体的温度。 SDC在多孔不锈钢基底上成功沉积的阈值温度经计算为2570°C。发现涂层孔隙率与平均颗粒温度有关,这表明导致较低颗粒温度的等离子体条件可能最适合于制造多孔SOFC电极层。

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