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Numerical and experimental analysis of the effect of pore formers on the processing and properties of solid oxide fuel cell electrode

机译:造孔剂对固体氧化物燃料电池电极加工和性能影响的数值和实验分析

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摘要

The fabrication of ceramic components with controlled porosity often requires using pore formers. This paper shows how modeling can help in optimizing pore former quantity and size with respect to sintering behavior and material properties. The case of a mixed ion-electron conductor SOFC cathode is considered. Numerical simulations based on the discrete element method are performed to mimic the sintering of Nd2NiO4 ceramic powders processed with various fractions of pore formers (0-40%) and size ratios (1-5 times the size of ceramic particles). From the results of these simulations, the effect of pore former particle size and amount on sintering densification, conductivity and effective surface area is analyzed. Experiments achieved on a Nd2NiO4 powder with miscellaneous pore formers confirm simulation outcomes as the minor effect of the pore former particle size ratio on the density and the presence of an optimum of oxygen adsorption for 20 vol.%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:具有受控的孔隙率的陶瓷部件的制造通常需要使用成孔剂。本文展示了建模如何在烧结行为和材料性能方面帮助优化成孔剂的数量和尺寸。考虑混合离子电子导体SOFC阴极的情况。进行了基于离散元素方法的数值模拟,以模拟用各种比例的成孔剂(0-40%)和尺寸比(陶瓷颗粒尺寸的1-5倍)处理的Nd2NiO4陶瓷粉末的烧结。从这些模拟的结果,分析了成孔剂的粒径和数量对烧结密度,电导率和有效表面积的影响。在具有其他成孔剂的Nd2NiO4粉末上进行的实验证实,模拟结果是成孔剂粒径比对密度的微小影响,并且存在20%(体积)的最佳氧吸附。 (C)2015 Elsevier Ltd.保留所有权利。

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