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Studies on the Alkali–Silica Reaction Rim in a Simplified Calcium–Alkali–Silicate System

机译:钙-碱-硅酸盐简化体系中碱-硅反应环的研究

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摘要

This work is intended to provide a better understanding about the properties and roles of the reaction rim in an alkali–silica reaction. A simplified calcium–alkali–silicate system was created to simulate the multiple interactions among reactive silica, alkaline solution and portlandite near the aggregate surface during the formation and evolution of the reaction rim in an alkali–silica reaction. A transport barrier preventing the migration of calcium and silicate through itself was found on the interface between the alkali silicate and the calcium hydroxide. The barrier was mainly composed of calcium alkali silicate with silicon–oxygen organizations of Q2 and Q3 according to the results of 29Si nuclear magnetic resonance, the calcium to silica mole ratio ranging from 0.22 to 0.53 and the alkali to silica ratio ranging from 0.20 to 0.26 based the location of the elemental compositional analysis and the storage period of the system.
机译:这项工作旨在提供对碱-二氧化硅反应中反应环的性质和作用的更好理解。建立了一个简化的钙-碱-硅酸盐体系,以模拟在碱-二氧化硅反应中反应边沿的形成和演化过程中,活性二氧化硅,碱溶液和波特兰石在聚集体表面附近的多重相互作用。在碱性硅酸盐和氢氧化钙之间的界面上发现了一种阻止钙和硅酸盐通过其自身迁移的传输屏障。根据 29 Si核磁的结果,该阻挡层主要由具有Q 2 和Q 3 硅氧结构的碱金属硅酸钙组成。根据元素组成分析的位置和系统的保存时间,钙与二氧化硅的摩尔比在0.22至0.53之间,碱与二氧化硅的比在0.20至0.26之间。

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