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Plastic shrinkage of mortars with shrinkage reducing admixture and lightweight aggregates studied by neutron tomography

机译:用中子断层成像技术研究具有减缩剂和轻质骨料的灰浆的塑性收缩

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摘要

Water transport in fresh, highly permeable concrete and rapid water evaporation from the concrete surface during the first few hours after placement are the key parameters influencing plastic shrinkage cracking. In this work, neutron tomography was used to determine both the water loss from the concrete surface due to evaporation and the redistribution of fluid that occurs in fresh mortars exposed to external drying. In addition to the reference mortar with a water to cement ratio (w/c) of 0.30, a mortar with the addition of pre-wetted lightweight aggregates (LWA) and a mortar with a shrinkage reducing admixture (SRA) were tested. The addition of SEA reduced the evaporation rate from the mortar at the initial stages of drying and reduced the total water loss. The prewetted LWA released a large part of the absorbed water as a consequence of capillary pressure developing in the fresh mortar due to evaporation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:新鲜,高渗透性混凝土中的水传输以及放置后最初几个小时内混凝土表面的快速水分蒸发是影响塑性收缩裂缝的关键参数。在这项工作中,中子层析成像技术既可以确定由于蒸发导致混凝土表面的水分流失,也可以确定暴露于外部干燥的新鲜砂浆中发生的流体的重新分布。除了水灰比(w / c)为0.30的参考砂浆外,还测试了添加了预润湿轻质骨料(LWA)的砂浆和具有减缩掺合料(SRA)的砂浆。 SEA的添加降低了干燥初期砂浆的蒸发速率,并减少了总失水量。由于在新鲜砂浆中由于蒸发而产生毛细压力,因此预润湿的LWA释放了大部分吸收的水。 (C)2015 Elsevier Ltd.保留所有权利。

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