A Cementless Binder Based on High-Calcium Fly Ash, Silica Fume, and the Complex Additive Ca(NO3)2 + MgCl2: Phase Composition, Hydration, and Strength

Yurii Barabanshchikov, K. Usanova
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Abstract

This study aimed to comprehensively investigate the properties of a binder based on high-calcium fly ash and silica fume with a complex additive consisting of calcium nitrate and magnesium chloride. The strength characteristics, the characteristics of the hydration process, and the phase composition of the hydration products of the binder were investigated. Silica fume was used to suppress the expansion of fly ash during hydration. A complex additive (CA) consisting of Ca(NO3)2 and MgCl2 provided a higher strength of binder than each of these salts separately. When testing a mortar with sand, the CA additive ensured that the strength of the specimens was 43.5% higher than the strength of the mortar with the addition of Ca(NO3)2 and 7.5% higher than the strength of the mortar with the MgCl2 additive. Calcium nitrate greatly accelerated the process of heat release in the first 60 min of binder hydration, and subsequently, conversely, slowed it down. The addition of MgCl2 gave a significantly greater thermal effect than Ca(NO3)2. When the two salts acted together, even a small fraction of magnesium chloride (0.2 of CA) compensated for the retarding effect of calcium nitrate and provided heat release for the binder that was almost as good as that of MgCl2.
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基于高钙粉煤灰、硅灰和复合添加剂 Ca(NO3)2 + MgCl2 的无水泥粘结剂:相组成、水化和强度
本研究旨在全面研究一种基于高钙粉煤灰和硅灰的粘结剂以及由硝酸钙和氯化镁组成的复合添加剂的性能。研究了粘结剂的强度特性、水化过程特性以及水化产物的相组成。硅灰用于抑制粉煤灰在水化过程中的膨胀。由 Ca(NO3)2 和 MgCl2 组成的复合添加剂(CA)可提供比这两种盐单独使用时更高的粘结剂强度。在测试砂浆时,CA 添加剂确保试样强度比添加 Ca(NO3)2 的砂浆强度高 43.5%,比添加氯化镁的砂浆强度高 7.5%。在粘结剂水化的最初 60 分钟内,硝酸钙大大加速了热量释放过程,随后则相反地减缓了这一过程。与 Ca(NO3)2 相比,添加氯化镁所产生的热效应要大得多。当这两种盐共同作用时,即使是一小部分氯化镁(CA 的 0.2)也能补偿硝酸钙的延缓作用,使粘结剂的热释放效果几乎与氯化镁相同。
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