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Evaluating Porosity in Cordierite Diesel Particulate Filter Materials: Advanced X-ray Techniques and New Statistical Analysis Methods

机译:评估堇青石柴油颗粒过滤材料中的孔隙率:先进的X射线技术和新的统计分析方法

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Bi-continuous porous ceramics for filtration applications possess a particularly complicated microstructure, whereby porosity and solid matter are intermingled. Mechanical, thermal, and filtration properties can only be precisely estimated if the morphology of both solid matter and porosity can be quantitatively determined. Using 3D computed tomography (CT) at different resolutions, and several X-ray refraction-based techniques, we quantitatively evaluated porosity and pore orientation in cordierite diesel particulate filter ceramics. Moreover, applying both Fast Fourier Transform (FFT) and a newly developed image analysis algorithm (directional interface variance analysis, DIVA), we quantitatively evaluated porosity and pore orientation. Both the experimental techniques and the statistical approach allow extraction of spatially resolved or average values. Porosity values from synchrotron computed tomography used turn out to agree with mercury intrusion measurements, while pore orientation factors agree with published crystallographic texture data. This latter point also implies that the study of the pore/matter interface is sufficient to describe the morphological properties of these materials.
机译:用于过滤应用的双连续多孔陶瓷具有特别复杂的微观结构,由此孔隙率和固体物质搅拌。如果可以定量确定固体物质和孔隙率的形态,则只能精确地估计机械,热和过滤性能。在不同分辨率下使用3D计算机断层扫描(CT)和基于几种基于X射线折射的技术,我们在堇青石柴油颗粒颗粒过滤陶瓷中定量评估了孔隙率和孔隙取向。此外,应用快速傅里叶变换(FFT)和新开发的图像分析算法(定向界面方差分析,DIVA),我们定量评估了孔隙率和孔隙取向。实验技术和统计方法都允许提取空间分辨或平均值。 Synchrotron计算机断层扫描的孔隙率值,原因与汞入侵测量同意,而孔隙取向因子与已发表的晶体纹理数据一致。后一点也意味着对孔隙/物质界面的研究足以描述这些材料的形态学性质。

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