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Quantitative characterization of three-dimensional pore structure in hardened cement paste using X-ray microtomography combined with centrifuge driven metal alloy intrusion

机译:用X射线微量立映射与离心机驱动金属合金侵入硬化水泥浆料中三维孔隙结构的定量表征

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摘要

In this paper, a centrifuge device is proposed to facilitate the intrusion of a low-melting point metal alloy into the pore space of hardened cement paste. X-ray microtomography is combined with metal centrifugation porosimetry (MCP) to quantitatively investigate 3D pore structure. The low-melting-point metal alloy is melted and introduced into pore space in pastes with water cement ratio of 0.5 and 1.0 at a temperature of 65 degrees C. 3D pore structure is quantitatively analyzed by X-ray microtomography after the molten metal alloy has been consolidated. A new threshold value segmentation method for pore space was proposed using conversion coefficient on region of interest (ROI). Porosity and pore size distribution are tested by MCP and compared with the results based on mercury intrusion porosimetry (MIP). The results show that the contrast between pore space and solid phase in the X-ray microtomography device image is improved. The total porosity obtained by MCP was found to be consistent with the results obtained by MIP.
机译:本文提出了一种离心机装置,以促进低熔点金属合金的侵入硬化水泥浆料的孔隙空间。 X射线显微镜扫描与金属离心孔隙瘤(MCP)相结合,以定量研究3D孔结构。低熔点金属合金在65℃的温度下熔化并引入糊状物中的糊状物,其水水泥比为0.5和1.0。在熔融金属合金的情况下,通过X射线显微镜定量分析3D孔隙结构已被巩固。利用兴趣区(ROI)的转换系数提出了一种新的阈值分段方法(ROI)。通过MCP测试孔隙率和孔径分布,并与基于汞侵入孔隙瘤率(MIP)的结果进行比较。结果表明,X射线显微映射装置图像中孔隙空间和固相之间的对比度得到改善。发现通过MCP获得的总孔隙率与MIP获得的结果一致。

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