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Statistical modelling of compressive strength controlled by porosity and pore size distribution for cementitious materials

机译:孔隙率和孔径分布对胶凝材料控制的抗压强度统计建模

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摘要

The compressive strength of cementitious materials is significantly affected by its pore system inherent in the matrix of cement paste, not only porosity but also pore size distribution. In present work, by deconvolution analysis, the total pore size distribution of cement paste is represented by a multiple distribution consisting of two single distributions for the capillary pores and the macro pores respectively. In this way, the widely accepted Raleigh-Ritz (R-R) function is challenged and the lognormal distribution is found to be best to approximate the pore size distribution for cementitious materials. With pore size distributions, a statistical model based on probability principle and fracture criterion is proposed to reveal the physical mechanism of reduction in compressive strength induced by porous structures. Parameters in the model, e.g. fracture toughness of cement paste matrix, fracture mode, volume of specimen, porosity and pore size distributions, are further discussed and examined quantitatively.
机译:水泥材料的抗压强度受到水泥膏基质中固有的孔隙系统的显着影响,不仅是孔隙率,而且是孔径分布。在目前的工作中,通过去卷积分析,水泥浆料的总孔径分布分别由分别由两个单一分布组成的多种分布和宏观孔。通过这种方式,广泛接受的罗利Ritz(R-R)函数受到挑战,并且发现伐诺型分布最好是近似胶凝材料的孔径分布。利用孔径分布,提出了一种基于概率原理和裂缝标准的统计模型,揭示了多孔结构诱导的压缩强度降低的物理机制。例如,模型中的参数,例如水泥糊剂的断裂韧性,骨折模式,样品体积,孔隙率和孔径分布,并定量地进行了检查。

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