微观结构
断层摄影术
材料科学
互补性(分子生物学)
图像分辨率
骨料(复合)
复合材料
光学
物理
遗传学
生物
作者
Hyeung-Tae Kim,D. F. Tiana Razakamandimby R.,Veronika Szilágyi,Zoltán Kis,László Szentmiklósi,Michał A. Glinicki,Kyoungsoo Park
标识
DOI:10.1016/j.cemconres.2021.106540
摘要
The concrete microstructure was successfully reconstructed using the complementarity of X-ray and neutron computed tomography (CT). Neither tomogram alone was found to be suitable to properly describe the microstructure of concrete under this study. However, by merging the information revealed by the two modalities, and using image segmentation, noise reduction, and image registration techniques we reconstruct the concrete microstructure. Void, aggregate, and cement paste phases are successfully captured down to the images' spatial resolution, even though the aggregate consists of multiple minerals. The coarse-aggregate volume fraction of the reconstructed microstructure was similar to that of the mixing proportions. Furthermore, image-based finite element analysis is performed to demonstrate the effects of microstructure on stress concentration and strain localization.
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