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Compressive strength, chloride diffuslvity and pore structure of high performance metakaolin and silica fume concrete

机译:高性能偏高岭土和硅粉混凝土的抗压强度,氯离子扩散性和孔结构

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摘要

This study is to relate the mechanical and durability properties of high performance metakaolin (MK) and silica fume concretes to their microstructure characteristics. The compressive strength and chloride penetrability of the control and the concretes incorporated with MK or silica fume (SF) at water-to-binder (w b) ratios of 0.3 and 0.5 are determined. The pore size distribution and porosity of the concretes are also measured. The effect of MK and SF on the interfacial porosity is discussed based on test results. It is found that MK concrete has superior strength development and similar chloride resistance to SF concrete, and the MK concrete at a w b of 0.3 has a lower porosity and smaller pore sizes than the control (plain) concrete. The resistance of the concretes to chloride ion penetration correlates better with the measured concrete porosity than with the paste porosity. The differences between the measured and calculated concrete porosity is smaller for MK and SF incorporated concrete than for the control concrete, indicating an improvement in the interfacial microstructure with the incorporation of the pozzolanas. This difference is found to be related to the strength and chloride penetrability of concrete to some degree.
机译:这项研究将高性能偏高岭土(MK)和硅粉混凝土的机械性能和耐久性与它们的微观结构特征联系起来。确定了水和粘结剂(w b)比为0.3和0.5的对照料和掺有MK或硅粉(SF)的混凝土的抗压强度和氯离子渗透性。还测量了混凝土的孔径分布和孔隙率。根据试验结果讨论了MK和SF对界面孔隙率的影响。已经发现,MK混凝土具有优异的强度发展能力,并且与SF混凝土具有相似的耐氯化物性能,并且wb为0.3时,MK混凝土的孔隙率较低,孔径小于对照(普通)混凝土。混凝土对氯离子渗透的抵抗力与测得的混凝土孔隙度比与浆糊孔隙度的关联更好。 MK和SF掺混混凝土的实测孔隙度与计算孔隙度之间的差异比对照混凝土小,表明通过引入火山灰可以改善界面微观结构。发现这种差异在某种程度上与混凝土的强度和氯离子渗透性有关。

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