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Gel/Space Ratio Evolution in Ternary Composite System Consisting of Portland Cement Silica Fume and Fly Ash

机译:由硅酸盐水泥硅灰和粉煤灰组成的三元复合体系中的凝胶/空间比演变

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摘要

In cement-based pastes, the relationship between the complex phase assemblage and mechanical properties is usually described by the “gel/space ratio” descriptor. The gel/space ratio is defined as the volume ratio of the gel to the available space in the composite system, and it has been widely studied in the cement unary system. This work determines the gel/space ratio in the cement-silica fume-fly ash ternary system (C-SF-FA system) by measuring the reaction degrees of the cement, SF, and FA. The effects that the supplementary cementitious material (SCM) replacements exert on the evolution of the gel/space ratio are discussed both theoretically and practically. The relationship between the gel/space ratio and compressive strength is then explored, and the relationship disparities for different mix proportions are analyzed in detail. The results demonstrate that the SCM replacements promote the gel/space ratio evolution only when the SCM reaction degree is higher than a certain value, which is calculated and defined as the critical reaction degree (CRD). The effects of the SCM replacements can be predicted based on the CRD, and the theological predictions agree with the test results quite well. At low gel/space ratios, disparities in the relationship between the gel/space ratio and the compressive strength are caused by porosity, which has also been studied in cement unary systems. The ratio of cement-produced gel to SCM-produced gel (GC to GSCM ratio) is introduced for use in analyzing high gel/space ratios, in which it plays a major role in creating relationship disparities.
机译:在水泥基浆料中,通常通过“凝胶/空间比”描述词来描述复杂相组装与机械性能之间的关系。凝胶/空间比被定义为复合系统中凝胶与可用空间的体积比,并且在水泥一元系统中已被广泛研究。这项工作通过测量水泥,SF和FA的反应程度来确定水泥-硅粉煤灰-粉煤灰三元系统(C-SF-FA系统)中的凝胶/空间比。理论上和实践上都讨论了补充胶凝材料(SCM)替代对凝胶/空间比的演变的影响。然后探讨了凝胶/空间比与抗压强度之间的关系,并详细分析了不同混合比例下的关系差异。结果表明,只有当SCM反应度高于一定值时,SCM替代物才能促进凝胶/空间比的演变,该值被计算为临界反应度(CRD)。可以基于CRD预测SCM替换的效果,并且神学预测与测试结果非常吻合。在低凝胶/空间比下,凝胶/空间比与抗压强度之间关系的差异是由孔隙率引起的,这也在水泥一元系统中进行了研究。介绍了水泥生产的凝胶与SCM生产的凝胶的比例(GC与GSCM的比例),用于分析高的凝胶/空间比,其中凝胶在产生关系差异方面起着主要作用。

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