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Shrinkage and creep behavior of an alkali-activated slag concrete

机译:碱渣混凝土的收缩和蠕变行为

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摘要

In this paper, experimental results about the shrinkage and creep behavior of an alkali-activated slag concrete (AAS-concrete) are presented. The autogenous shrinkage of AAS-concrete is pronounced at a relatively high water to binder ratio of 0.41. The ultimate value of autogenous shrinkage is determined to be higher than that of high-strength concrete (HSC). The observed self-desiccation at a later concrete age can be one of the reasons for the autogenous shrinkage. In a drying environment of 65% relative humidity AAS-concrete exhibits a significantly higher total shrinkage compared to normal-strength concrete composed of Portland cement. In the contrary to normal and HSC carbonation shrinkage must not be neglected for AAS-concrete in the early concrete age. The sum of drying and carbonation shrinkage develops much more rapidly for AAS-concrete in the first weeks after the beginning of drying. Based on the experimental results the shrinkage behavior of AAS-concrete cannot be predicted by conventional models. The creep behavior of the AAS-concrete was investigated under sealed and unsealed conditions. The creep coefficients for both conditions are higher than those calculated when using conventional models.
机译:本文给出了有关碱活化矿渣混凝土(AAS-混凝土)的收缩和蠕变性能的实验结果。 AAS-混凝土的自发收缩在相对较高的水与粘合剂之比0.41时明显。自发收缩的最终值被确定为高于高强度混凝土(HSC)的值。在较晚的混凝土龄期观察到的自干燥可能是自收缩的原因之一。在相对湿度为65%的干燥环境中,与普通硅酸盐水泥组成的普通强度混凝土相比,AAS混凝土的总收缩率明显更高。与正常的和HSC的碳化收缩相反,在混凝土早期,AAS混凝土不能忽略。开始干燥后的最初几周,对于AAS混凝土,干燥和碳化收缩的总和发展得更快。根据实验结果,传统模型无法预测AAS混凝土的收缩行为。在密封和未密封条件下研究了AAS混凝土的蠕变行为。两种条件下的蠕变系数都高于使用常规模型时计算得出的蠕变系数。

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