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Concrete Incorporating Nanosilica Cured under Freezing Temperatures Using Conventional and Hybrid Protection Methods

机译:使用常规和混合保护方法将混凝土掺入冻结温度下的冻结温度下固化

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摘要

Ultrafine nanosilica particles have the potential to produce concrete under low temperatures. In this study, nanomodified concrete was cured under freezing temperatures (-10°C and -20°C) using insulation blankets without or with phase change material as conventional and hybrid protection methods, respectively. Six mixtures, incorporating general use and high early strength cements, fly ash (20%), nanosilica (6%), and cold weather admixture system (antifreeze/accelerator), were tested. The mixtures were assessed based on setting times, compressive strength, fluid absorption, and resistance to frost damage in water and salt solution. Moreover, thermogravimetric and mercury intrusion porosimetry were conducted to assess the hydration and microstructural development of concrete under these freezing temperatures. The nanomodified concrete protected by the hybrid system, even with the presence of 20% Class F fly ash, indicated improved hardening, mechanical, and durability performance; thus, such a mix design and protection method might present a viable option for concrete applications in cold conditions down to -20°C.
机译:超细纳米硅颗粒具有在低温下产生混凝土的潜力。在该研究中,使用毫无管橡胶或作为常规和混合保护方法的相变材料,纳倍透过混凝土在冷冻温度(-10℃和-20℃)下固化。测试了六种混合物,掺入一般使用和高早期强度水泥,飞灰(20%),纳米硅(6%)和寒冷的天气混合物系统(防冻/加速器)。基于设定时间,抗压强度,流体吸收和水和盐溶液中的霜损伤的抗性来评估混合物。此外,进行了热重率和汞侵入孔隙孔测定法,以评估这些冷冻温度下混凝土的水化和微观结构发育。受杂交系统保护的纳米型混凝土,即使存在20%F型粉煤灰,也表明了改善的硬化,机械和耐用性性能;因此,这种混合设计和保护方法可能在冷条件下的混凝土应用下呈现可行的选择,下至-20°C。

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