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A fractal-based approach for reconstructing pore structures of GGBFS-blended cement pastes

机译:基于分形的基于分形的RECHICAL-混合水泥浆料的孔隙结构方法

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摘要

The durability and mechanical behavior of cementitious materials can be substantially affected by changes in pore structure that occur during the hydration process. An accurate analysis of pore structure thus plays an important role in the interpretation and prediction of the performance of cementitious materials. This study investigated an analytical fractal reconstruction procedure for cementitious materials and demonstrated its application by reconstructing pore structure using fractal theory from a geometric perspective. For this purpose, microstructural characteristics of ground granulated blast-furnace slag-based cement pastes were evaluated using the results of mercury intrusion porosimetry measurements. Fractal characteristics in the mesopores and larger capillary pores were quantified using the pore surface fractal type, whereas those in the middle capillary pores were quantified using the solid mass fractal type. As a result of reconstructing pore structure, variations in the cumulative pore volumes appeared similar to those of the measured pore structure. Moreover, the differential pore size distributions of all pore regions were quantified as the fractal dimensions. These results indicated that the investigated methodology can be practically applied for the analysis of changes in pore structure caused by hydration in cementitious materials. (C) 2020 Elsevier Ltd. All rights reserved.
机译:水泥材料的耐久性和力学行为可基本上受水合过程中发生的孔隙结构的变化影响。因此,对孔隙结构的准确分析在解释和预测水泥材料的性能方面起着重要作用。本研究研究了水泥材料的分析分形重建程序,并通过从几何观点使用分形理论重建孔隙结构来证明其应用。为此目的,使用汞侵入孔隙测量测量结果评估地面粒状高炉矿渣基水泥浆料的微观结构特性。使用孔隙表面分形型定量了中孔和较大毛细血管孔中的分形特征,而使用固体分形式定量中毛细孔孔中的那些。作为重建孔结构的结果,累积孔体积的变化出现类似于测量的孔结构的孔结构。此外,所有孔区的差孔尺寸分布量被定量为分形尺寸。这些结果表明,研究方法实际上可以应用于胶凝材料中水合的孔隙结构变化的分析。 (c)2020 elestvier有限公司保留所有权利。

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