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On the relation of setting and early-age strength development to porosity and hydration in cement-based materials

机译:水泥基材料的凝固和早期强度发展与孔隙和水化的关系

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摘要

Previous research has demonstrated a linear relationship between compressive strength (mortar cubes and concrete cylinders) and cumulative heat release normalized per unit volume of (mixing) water for a wide variety of cement-based mixtures at ages of 1 d and beyond. This paper utilizes concurrent ultrasonic reflection and calorimetry measurements to further explore this relationship from the time of specimen casting to 3 d. The ultrasonic measurements permit a continuous evaluation of thickening, setting, and strength development during this time period for comparison with the ongoing chemical reactions, as characterized by isothermal calorimetry measurements. Initially, the ultrasonic strength heat release relation depends strongly on water-to-cement ratio, as well as admixture additions, with no universal behavior. Still, each individual strength-heat release curve is consistent with a percolation based view of the cement setting process. However, beyond about 8 h for the systems investigated in the present study, the various strength-heat release curves merge towards a single relationship that broadly characterizes the development of strength as a function of heat released (fractional space filled), demonstrating that mortar and/or concrete strength at early ages can be effectively monitored using either ultrasonic or calorimetry measurements on small paste or mortar specimens. Published by Elsevier Ltd.
机译:先前的研究表明,对于1 d及以上年龄的各种水泥基混合物,抗压强度(砂浆立方体和混凝土圆柱体)与每单位体积(混合)水标准化的累积放热之间存在线性关系。本文利用同时进行的超声波反射和量热法测量来进一步探讨从标本铸造到3 d的这种关系。超声波测量允许在此时间段内连续评估增稠,凝固和强度发展,以便与进行中的化学反应进行比较,以等温量热法测量为特征。最初,超声强度的放热关系在很大程度上取决于水灰比以及外加剂的添加,没有普遍的行为。尽管如此,每条单独的强度-热释放曲线与水泥凝结过程的基于渗滤的观点是一致的。然而,对于本研究中所研究的系统,超过约8小时后,各种强度-热释放曲线合并为一个关系,该关系广泛地表征了强度随释放热量(填充分数空间)而变化的特征,表明了砂浆和/或可以使用超声波或量热法对小浆状或砂浆试样进行有效的早期监测来监测混凝土强度。由Elsevier Ltd.发布

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