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Internal relative humidity and drying shrinkage of lightweight aggregate concrete

机译:轻质骨料混凝土的内部相对湿度和干燥收缩

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In this paper, the influence of water/cement ratio, prewetting degree of lightweight aggregate, fly ash content and air content on the internal relative humidity (IRH) and drying shrinkage of lightweight aggregate concrete (LAC) were studied using a relative humidity sensor and drying shrinkage apparatus. Results showed that the IRH of concrete decreased rapidly at early age and slowed down at late age, and prewetting lightweight aggregate could compensate the loss of IRH. The effect of compensation could be enhanced with the increasing of prewetting degree of lightweight aggregate, and the addition of fly ash retarded the decrease of IRH at early age. The drying shrinkage of LAC increased quickly at early stage and it slowed down to the even after 60 days or longer age. Furthermore, the drying shrinkage of LAC increased with increasing of water/cement ratio. The effect of air content on the drying shrinkage of LAC was limited at early stage. However, at the late stage it grew at different level with increasing of air content. By raising the prewetting degree of lightweight aggregate, mixing with proper dosage of fly ash, the shrinkage rate of LAC can be reduced markedly.
机译:在本文中,使用相对湿度传感器研究了水/水泥比,轻质聚集体,粉刺骨料,粉煤灰含量和空气含量的影响和轻质骨料混凝土(LAC)的干燥收缩。干燥收缩装置。结果表明,在休假时,混凝土的IRH迅速下降,晚年减速,预训练轻质骨料可以弥补IRH的丧失。随着轻量级骨料的追捧程度的增加,可以提高补偿的影响,并且粉煤灰在休眠期间增加了IRH的降低。 Lac的干燥收缩在早期速度迅速增加,60天或更长的年龄甚至减慢至均匀。此外,Lac的干燥收缩随着水/水泥比的增加而增加。空气含量对Lac的干燥收缩的影响在早期的初期。然而,在阶段,它随着空气含量的增加而增长。通过提高轻质聚集体的预热度,用适当剂量的粉煤灰混合,可以显着降低LAC的收缩率。

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