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Effects of ambient temperature and relative humidity on early-age shrinkage of UHPC with high-volume mineral admixtures

机译:环境温度和相对湿度对高掺量矿物掺合料UHPC早期收缩的影响

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This study focuses on the early-age shrinkage of ultra-high performance concrete (UHPC) with high-volume mineral admixtures. Two low cement UHPC mixtures, which have similar compressive strength with control mixture, were obtained with high-volume ground granulated blast furnace slag (GGBFS) or fly ash (FA) replacements. The effects of exposure temperature on autogenous shrinkage of sealed specimens and drying shrinkage were studied at early-age (<24 h). Moreover, effect of relative humidity (RH) on early-age drying shrinkage was investigated at a constant temperature. As a result, the following five major conclusions can be drawn: (1) producing eco-friendly UHPCs, which have compressive strength of 150 MPa, with 50% GGBFS or 30% FA replacements is possible, (2) GGBFS replacement can lead to remarkable increase in both autogenous and drying shrinkage at early-age, (3) the use of high volume mineral admixtures may increase the sensitivity of UHPC to external RH, but can reduce temperature sensitivity in terms of shrinkage strain (4) an increase in superplasticizer demand due to FA replacement may trigger the formation of elephant skin under drying conditions, (5) elephant skin can reduce evaporation from the young UHPC, thus, reduce its sensitivity to arid conditions in terms of drying shrinkage. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的重点是具有大量矿物掺合料的超高性能混凝土(UHPC)的早期收缩。用大量磨碎的高炉矿渣(GGBFS)或粉煤灰(FA)替代品获得了两种低水泥UHPC混合物,其抗压强度与对照混合物相似。研究了暴露温度对密封样品自发收缩和干燥收缩的影响(<24 h)。此外,在恒定温度下研究了相对湿度(RH)对早期干燥收缩的影响。结果,可以得出以下五个主要结论:(1)可以生产抗压强度为150 MPa的环保型UHPC,可以使用50%的GGBFS或30%的FA替代品;(2)替代GGBFS可以导致早期的自生和干燥收缩率均显着增加,(3)使用大量矿物掺合料可能会提高UHPC对外部RH的敏感性,但就收缩应变而言可能会降低温度敏感性(4)超塑化剂的增加FA替换引起的需求可能会在干燥条件下触发大象皮肤的形成;(5)大象皮肤可以减少幼龄UHPC的蒸发,从而降低其对干旱条件的干燥收缩敏感性。 (C)2017 Elsevier Ltd.保留所有权利。

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