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Estimation of 3D Effective Properties from 2D Cross Sections in Porous Electrodes

机译:从多孔电极的2D横截面估算3D有效特性

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The study summarizes the correlations between 2D and 3D microstructural properties of SOFC electrodes within the framework of stereology. 3D geometrical properties, such as the mean particle diameter, the pore size, the specific surface area and the three-phase boundary density are correlated by simple relations to 2D properties evaluated in a cross section, such as the mean diameter of the sectioned particles, the mean chord length, the particle perimeter exposed to the porous phase and the number of three-phase boundary points per unit area, respectively. The strong correlation between 2D and 3D properties predicted by stereological relations is verified by using packing algorithms in a wide range of porosity, particle size and electrode composition. The results provide practical indications that can be easily applied to SEM images of real samples for a short-cut estimation of the effective properties and of the range of confidence of the prediction.
机译:该研究总结了立体框架内SOFC电极的2D和3D微结构特性之间的相关性。 3D几何特性(例如平均粒径,孔径,比表面积和三相边界密度)通过简单的关系与截面中评估的2D特性(例如切片颗粒的平均直径)相关联,平均弦长,暴露于多孔相的颗粒周长和每单位面积的三相边界点数。通过在大范围的孔隙率,粒径和电极组成中使用填充算法,可以验证通过立体关系预测的2D和3D属性之间的强相关性。结果提供了实用的指示,可以很容易地将其应用于真实样品的SEM图像,以便对有效属性和预测的置信范围进行快捷估算。

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