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Variation of the Pore Morphology during the Early Age in Plain and Fiber-Reinforced High-Performance Concrete under Moisture-Saturated Curing

机译:湿饱和养护下普通和纤维增强高性能混凝土早期孔隙形态的变化

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In this paper, two concrete mixtures of plain concrete (PC) and steel fiber-reinforced high-performance concrete (SFRC) have been scanned in order to analyze the variation of the pore morphology during the first curing week. Six cylinders of 45.2-mm diameter 50-mm height were performed. All of the specimens were kept in a curing room at 20 °C and 100% humidity. A computed tomography (CT) scan was used to observe the internal voids of the mixtures, and the data were analyzed using digital image processing (DIP) software, which identified and isolated each individual void in addition to extracting all of their geometrical parameters. The results revealed that the SFRC specimens showed a greater porosity than the PC ones. Moreover, the porosity increased over time in the case of SFRC, while it remained almost constant in the case of PC. The porosity increased with the depth in all cases, and the lowest porosity was observed in the upper layer of the specimens, which is the one that was in contact with the air. The analysis of the results showed that the fibers provided additional stiffness to the cement paste, which was especially noticeable during this first curing week, resulting in an increasing of the volume of the voids and the pore size, as well as a reduction in the shape factor of the voids, among other effects.
机译:本文分析了普通混凝土(PC)和钢纤维增强高性能混凝土(SFRC)的两种混凝土混合物,以分析固化第一周内孔隙形态的变化。进行了六个直径为45.2毫米,高度为50毫米的圆柱体。将所有样品保存在20°C和100%湿度的固化室中。使用计算机断层扫描(CT)扫描观察混合物的内部空隙,并使用数字图像处理(DIP)软件分析数据,该软件除了提取所有几何参数外,还识别并隔离了每个空隙。结果表明,SFRC试样的孔隙率比PC试样大。此外,SFRC的孔隙度随时间增加,而PC的孔隙率几乎保持恒定。在所有情况下,孔隙率都随深度增加而增加,并且在与空气接触的试样的上层中观察到最低的孔隙率。结果分析表明,纤维为水泥浆提供了额外的刚度,这在固化的第一周特别明显,从而导致空隙体积和孔径的增加,以及形状的减小空隙因素,以及其他影响。

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