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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Suppression of processing defects in large-scale anode of planar solid oxide fuel cell via multi-layer roll calendering
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Suppression of processing defects in large-scale anode of planar solid oxide fuel cell via multi-layer roll calendering

机译:通过多层辊压延抑制平面固体氧化物燃料电池大规模阳极的处理缺陷

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摘要

In spite of various advantages of solid oxide fuel cells (SOFCs) over various types of fuel cells, SOFCs are yet far from commercial applicability due to their high manufacturing costs. The challenges mainly stem from the ceramic processing defects, particularly for large-scale SOFCs, thereby resulting in high cost in quality control step. Here we present a simple and cost-effective roll calendering process for a lamination of NiO - yttria-stabilized zirconia (YSZ) composite anode tapes with size of 13 x 13 cm(2), which can effectively suppress the defect generation and reduce the residual stress inhomogeneity compared to a conventional uniaxial press. The condition of roll calendering for the successful lamination is optimized based on the analyses of interfacial structure, relative density, and elongation length of the laminated tape against number of roll calendering cycles. X-ray diffraction residual stress and microstructure analyses are carried out for the laminated green anode bodies via the roll calendering and the uniaxial press, respectively. After sintering of each sample, the effect of microstructural feature on electrical property is also examined. The roll calendering process not only suppress the processing defects owing to the shearing, but also induce the evenly-distributed residual stresses with lower magnitude owing to the uniformly-applied pressure during lamination even for large-size sample. In addition, the processing defects are reduced by roll calendering, thereby exhibiting the superior electrical conductivity in practical operating condition. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管固体氧化物燃料电池(SOFC)在各种类型的燃料电池上进行了各种优点,但是由于其高制造成本,SOFC却远非商业适用性。挑战主要源于陶瓷加工缺陷,特别是对于大型SOFC,从而导致质量控制步骤的高成本。在这里,我们提出了一种简单且具有成本效益的卷压延机,用于层压NiO - ytTria稳定的氧化锆(YSZ)复合阳极带,其尺寸为13×13厘米(2),可有效地抑制缺陷产生并减少残余物与传统的单轴压力机相比,应激不均匀性。基于对层压胶带的界面结构,相对密度和伸长长度的分析来优化用于成功层压的辊压延的条件是优化的,层压带对卷压缩循环的数量的分析。 X射线衍射残留应力和微观结构分析分别通过辊压脉冲和单轴压力机进行层压的生坯阳极体对。在每个样品烧结后,还检查了微观结构特征对电性能的影响。滚动压延工艺不仅抑制由于剪切而抑制加工缺陷,而且甚至在层压过程中均匀施加的压力均匀诱导均匀分布的残余应力,即使对于大尺寸样品,也均匀地施加均匀施加的压力。另外,通过辊压延机减小处理缺陷,从而在实际操作条件下表现出优异的导电性。 (c)2019 Elsevier B.v.保留所有权利。

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