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Self-compacting geopolymer concretes: Effects of addition of aluminosilicate-rich fines

机译:自密实地聚合物混凝土:添加富含铝硅酸盐的细粉的影响

摘要

The presence of alunimosilicate based fine aggregates (2.5 to 7.5 wt%) effectively acted to densify the microstructure of the interfacial zone with a reduction of pore threshold and mean pore size jointly with change on the fracture mode of the Self-Compacting (SC) geopolymer concretes. From the results, pumice and recycled glass with amorphous structure improved the bi-axial four-point flexural strength from 5 to 8 MPa while semi-crystalline feldspar sludge (nepheline syenite) reached 11 MPa. The formation of additional geopolymer gels were responsible for the strengthening mechanism. The specimens with amorphous fines showed the tendency to delay the desorption in the laboratory conditions indicating the need for a very long curing time for the final consolidation. The semi-crystalline fines -nepheline syenite- appeared appropriate for the design of self-compacting geopolymer concretes due to their bulk composition, capacity to enhance densification and strength with low deformation rate, in a short range of curing together with a high rate of desorption, all important parameters for the prediction of the durability of concretes.
机译:基于铝硅钼酸盐的细骨料(2.5至7.5 wt%)的存在有效地致密了界面区域的微观结构,同时降低了孔阈值和平均孔径,并改变了自压缩(SC)地质聚合物的断裂模式混凝土。结果表明,浮石和具有非晶结构的回收玻璃将双轴四点弯曲强度从5 MPa提高到8 MPa,而半结晶长石污泥(霞石正长岩)达到11 MPa。额外的地质聚合物凝胶的形成是增强机理的原因。具有无定形细粉的样品在实验室条件下表现出延迟解吸的趋势,表明需要很长的固化时间才能进行最终固结。半结晶细粉-霞石正长岩-看起来很适合设计自密实的地质聚合物混凝土,这是因为它们的整体组成,在短时间内固化和高解吸率下能够以低变形率提高致密性和强度的能力,是预测混凝土耐久性的所有重要参数。

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