Effect of Superabsorbent Polymers and Presoaked Coarse Recycled Shale Lightweight Aggregates on Relative Humidity Development in Early-Age Concrete

Nan Hu, Dongkang Hu, Shujun Ben, Shuo Chen, Haitao Zhao
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Abstract

Self-desiccation-induced shrinkage may result in cracking at an early age, which is averse to the durability of concrete. Internal curing (IC) agents, such as superabsorbent polymers (SAP), are normally used for moisture regulation and shrinkage reduction. In addition, the make-up of recycled shale lightweight aggregate (RSLA) results in a good absorbing capacity, which makes it a potential candidate for IC. In this paper, the synergistic effect of SAP and RSLA on the relative humidity (RH) variation in early-age concrete under sealed conditions is investigated experimentally in terms of the setting time, relative humidity, and autogenous shrinkage. The results indicate that adding SAP and presoaked RSLA can significantly postpone the initial and final setting times. The initial setting time of RSLA30 and SAP06 is delayed by 127 and 171 min, respectively, compared to the benchmark mixture. In addition, increasing the amounts of SAP and presoaked RSLA can effectively extend the duration of the vapour-saturated stage, reducing the decrease in RH and autogenous shrinkage at 28 days. When the RSLA dosage increases from 0 to 10%, 20%, and 30%, the duration of the vapour-saturated stage is extended by 2, 9.4, and 26 days, respectively. Moreover, due to different water desorption behaviours, more IC water released by RSLA during the initial stage can slow the water release of SAP and lead to a higher RH level at 28 days.
超吸水性聚合物和预浸粗再生页岩轻集料对早龄期混凝土相对湿度发展的影响
自干燥引起的收缩可能导致混凝土在早期开裂,不利于混凝土的耐久性。内部养护剂(IC),如超吸收聚合物(SAP),通常用于调节湿度和减少收缩。此外,再生页岩轻质骨料(RSLA)的成分具有良好的吸水能力,使其成为 IC 的潜在候选材料。本文从凝结时间、相对湿度和自生收缩三个方面,对密封条件下 SAP 和 RSLA 对早龄期混凝土相对湿度(RH)变化的协同作用进行了实验研究。结果表明,添加 SAP 和预浸泡 RSLA 可以显著推迟初凝和终凝时间。与基准混合物相比,RSLA30 和 SAP06 的初凝时间分别推迟了 127 分钟和 171 分钟。此外,增加 SAP 和预浸泡 RSLA 的用量可有效延长蒸汽饱和阶段的持续时间,减少相对湿度的下降和 28 天时的自生收缩。当 RSLA 用量从 0 增加到 10%、20% 和 30% 时,蒸汽饱和阶段的持续时间分别延长了 2 天、9.4 天和 26 天。此外,由于水分解吸行为不同,RSLA 在初始阶段释放的 IC 水越多,SAP 的水分释放就越慢,从而导致 28 天时的相对湿度水平越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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