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Quantitative relationship between pore size distribution and compressive strength of cementitious materials

机译:孔径分布与水泥材料抗压强度的定量关系

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摘要

Cementitious materials have complex pore structure, which has a significant impact on material properties. The present paper aims to determine the quantitative relationship between pore size distribution and compressive strength of cementitious materials. An influence function is proposed to describe the influence of pore size on strength, based on which an integral model of compressive strength is established. A total of 11 sets of mortar specimens with wide differences in pore size distribution were prepared with the virtual pore method to verify the influence function and the strength model. The influence function indicates that the effect of pores per unit volume on strength increases with the increase of pore size. The effect increases slowly at small pore size and increases significantly at large pore size like microscale pores. The influence of porosity on strength can be determined quantitatively with the proposed influence function when the pore size distribution is obtained, which further gives the predicted strength. It is indicated that microscale pores have a significant impact on the material strength, so the existence of these pores should be avoided to improve material strength. (C) 2020 Elsevier Ltd. All rights reserved.
机译:水泥材料具有复杂的孔隙结构,对材料性质产生显着影响。本文旨在确定胶合材料孔径分布和抗压强度的定量关系。提出了一种影响功能来描述孔径对强度的影响,基于该抗压强度的积分模型。使用虚拟孔法制备总共11套具有宽差差异的孔尺寸分布,以验证影响功能和强度模型。影响功能表明,随着孔径的增加,每个单位体积对强度的影响的影响随着孔径的增加而增加。这种效果在小孔尺寸下缓慢增加,并且在大孔尺寸如微观孔隙中显着增加。当获得孔径分布时,可以用所提出的影响功能定量地确定孔隙率对强度的影响,这进一步给出了预测的强度。表示微观孔对材料强度产生显着影响,因此应避免这些孔的存在以提高材料强度。 (c)2020 elestvier有限公司保留所有权利。

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