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Study on the Pore and Microstructure Fractal Characteristics of Alkali-Activated Coal Gangue-Slag Mortars

机译:碱活化煤Gang石矿渣砂浆的孔隙和微结构分形特征研究

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摘要

Just as it is regarding ordinary cement-based materials, the pore structure and microstructure of alkali-activated materials are disordered. It is essential to predict the macroscopic properties by studying the pore and microstructure fractal characteristics of materials. In this paper, the effects of slag content and alkali activator modulus on compressive strength, porosity, and microstructure of alkali-activated coal gangue-slag (AACGS) mortar were studied. Further, with the help of mercury intrusion porosimetry (MIP) data and the MATLAB programming, the pore and SEM photos fractal dimensions of AACGS mortar specimens were obtained, respectively, and the relationship between the microscopic fractal dimensions and the macroscopic strength and the structural characteristics of pores was established. The results show that the pore fractal dimension has a good linear relationship with the compressive strength and pore characteristic parameters (porosity, total pore area, and average pore diameter, etc.). With the increase of slag content, the SEM photos fractal dimension of AACGS mortar specimens increases, and the fractal dimension and compressive strength also show a significant positive linear relationship. The two fractal characterization methods can be used in the alkali-activated material system and have important guiding significance for predicting the macroscopic strength and pore characteristic parameters of the material.
机译:正如关于普通水泥基材料一样,碱活化材料的孔结构和微观结构是无序的。通过研究材料的孔和微观结构的分形特征,预测宏观性能至关重要。本文研究了炉渣含量和碱活化剂模量对碱活化煤石砂浆(AACGS)砂浆抗压强度,孔隙率和微观结构的影响。此外,借助压汞法(MIP)数据和MATLAB编程,分别获得了AACGS砂浆试样的孔隙和SEM照片的分形维数,以及微观分形维数与宏观强度和结构特征之间的关系。建立毛孔。结果表明,孔隙分形维数与抗压强度和孔隙特征参数(孔隙度,总孔隙面积和平均孔径等)具有良好的线性关系。随着矿渣含量的增加,AACGS砂浆试样的SEM照片的分形维数增加,并且分形维数和抗压强度也显示出显着的正线性关系。两种分形表征方法可用于碱活化材料体系中,对预测材料的宏观强度和孔隙特征参数具有重要的指导意义。

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