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High-performance Ni-YSZ thin-walled microtubes for anode-supported solid oxide fuel cells obtained by powder extrusion moulding

机译:通过粉末挤压成型获得的用于阳极支撑的固体氧化物燃料电池的高性能Ni-YSZ薄壁微管

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Aiming at the fabrication of microtubular anode-supports for Solid Oxide Fuel Cell (SOFC) applications, this contribution deals with the production of Ni-YSZ thin-walled tubes (<1 mm thickness) via Powder Extrusion Moulding (PEM). The overall method has been optimized with an emphasis on the effect of NiO particle size using two commercial NiO powders with mean sizes of 0.7 and 8 mu m. A thermoplastic binder system based on polypropylene (PP), paraffin wax (PW) and stearic acid (SA) in volume ratios of 50, 46 and 4, respectively, was used along with corn starch as a pore forming agent. Different feedstocks with solid loadings varying from 45 to 65 vol% were processed and characterized to determine the optimal formulation. Typically, the mixtures exhibited a pseudoplastic behaviour from 100 to 1000 s(-1). Feedstocks with finer NiO particles had the most balanced properties for PEM purposes and an optimal powder volume content of 65 vol% was established. After extrusion and debinding steps, defect-free and constant cross-section tubes with 15 mm of length and 4 mm of nominal diameter were obtained. The final microstructure and DC conductivity were found to be closely linked to the NiO particle size, yielding a higher degree of open porosity and a better performance when using finer NiO powder. Based on this study, the packing mechanism was found to be likely limited by the contribution of steric hindrances when dissimilar and coarse powders are mixed, which may play a decisive role in order to set tailored formulations.
机译:旨在制造用于固体氧化物燃料电池(SOFC)的微管阳极载体,该产品用于通过粉末挤压成型(PEM)生产Ni-YSZ薄壁管(厚度小于1毫米)。使用两种平均粒径为0.7和8μm的市售NiO粉末,优化了整个方法,重点放在了NiO粒径的影响上。分别使用体积比为50、46和4的基于聚丙烯(PP),石蜡(PW)和硬脂酸(SA)的热塑性粘合剂体系以及玉米淀粉作为成孔剂。固体含量从45%到65%(体积)变化的不同原料经过加工和表征,以确定最佳配方。通常,混合物表现出从100到1000 s(-1)的假塑性行为。 NiO颗粒更细的原料在PEM方面具有最平衡的性能,并确定了65%(体积)的最佳粉末体积含量。经过挤压和脱脂步骤后,获得了长度为15毫米,公称直径为4毫米的无缺陷且横截面恒定的管。发现最终的微观结构和直流电导率与NiO粒径密切相关,当使用更细的NiO粉末时,产生更高的开孔率和更好的性能。根据这项研究,当将异种和粗粉混合时,填充机理可能受到空间位阻的影响,这对于决定量身定制的配方可能起决定性作用。

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