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The effect of w/b and temperature on the hydration and strength of blastfurnace slag cements

机译:w / b和温度对高炉矿渣水泥水化和强度的影响

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The combined effect of water to binder ratio and the curing temperature on the progress of the hydration and the crossover effect on blastfurnace cements containing 40% (BFS40) and 80% (BFS80) of GGBFS was investigated. Tests were performed on pastes with w/b of 0.3-0.5 exposed to 20, 40 and 60 degrees C up to 365 days. The hydration progress was monitored by the amount of non-evaporable water and the calcium hydroxide by XRD. A quadratic response-surface model was used to model the crossover effect. Blastfurnace cements present high apparent activation energy (Ea), which is proportional to the GGBFS content in cement, causing a high sensibility to temperature. The non-evaporable water of blastfurnace cements increases with the w/b ratio, temperature and age. The high temperature increasing the early compressive strength and therefore the crossover effect appears after 7 days for PC, 28 days for BFS40 and it is not detected until 365 days for BFS80. The w/b ratio has little or no effect on this phenomenon. To improve the strength of blast-furnace cements, the w/b ratio and the curing temperature will be properly designed according the proportion of slag in cement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了水胶比和固化温度对水化进程的综合影响以及对含40%(BFS40)和80%(BFS80)的GGBFS的高炉水泥的交叉作用。在w / b为0.3-0.5的糊料中暴露于20、40和60摄氏度,最多365天进行测试。通过XRD通过不可蒸发的水和氢氧化钙的量监测水合进程。使用二次响应面模型对交叉效应进行建模。高炉水泥具有很高的表观活化能(Ea),与水泥中GGBFS的含量成正比,因此对温度具有很高的敏感性。高炉水泥的不可蒸发水随w / b比,温度和年龄的增加而增加。高温会提高早期抗压强度,因此PC的7天,BFS40的28天后会出现交叉效应,直到BFS80的365天后才发现。 w / b比对此现象影响很小或没有影响。为了提高高炉水泥的强度,应根据炉渣在水泥中所占的比例适当设计w / b比和固化温度。 (C)2015 Elsevier Ltd.保留所有权利。

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