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Fractal Characteristics of Pore Structures in GGBFS-based Cement Pastes

机译:基于GGBFS的水泥浆孔结构的分形特征

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摘要

The present study evaluated pore surface fractal characteristics of high-strength cement pastes with different ground granulated blast-furnace slag (GGBFS) replacement ratios. Using the results of mercury intrusion porosimetry measurements, the surface fractal dimension in various pore-size ranges was calculated. Experimental results show that the fractal characteristics appeared in mesopores in range of 6-10 nm and 10-25 nm and larger capillary pores with sizes of more than 100 nm. In larger capillary pores, as the GGBFS replacement ratio increased up to 65%, the surface fractal dimension and pore volume decreased, and they increased when the GGBFS replacement ratio increased from 65% to 80%. In contrast, higher GGBFS replacement ratios in mesopore regions resulted in an increased surface fractal dimension and pore volume. Furthermore, in the regions where fractal characteristics appeared, pore volume and the surface fractal dimension exhibited a proportional relationship. The ratio of the surface fractal dimension to the volume of larger capillary pores was strongly correlated with the compressive strength of the specimens. (C) 2017 Elsevier B.V. All rights reserved.
机译:本研究评估了不同磨碎的高炉渣(GGBFS)替代比例的高强度水泥浆的孔表面分形特征。使用压汞法测量的结果,计算了各种孔径范围内的表面分形维数。实验结果表明,分形特征出现在6-10 nm和10-25 nm的中孔中,并且毛细孔的直径大于100 nm。在较大的毛细孔中,随着GGBFS替代率增加到65%,表面分形维数和孔体积减小,并且当GGBFS替代率从65%增加到80%时,表面分形维数和孔体积增加。相反,中孔区域较高的GGBFS置换率导致表面分形维数和孔体积的增加。此外,在出现分形特征的区域中,孔体积与表面分形维数呈比例关系。表面分形维数与较大毛细孔体积的比值与样品的抗压强度密切相关。 (C)2017 Elsevier B.V.保留所有权利。

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