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Experimental Study on a Prediction Model of the Shrinkage and Creep of Recycled Aggregate Concrete

机译:再生骨料混凝土收缩预测模型的实验研究

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摘要

The significant difference between recycled aggregate and natural aggregate is the content of the attached mortar layer. With the increase of the replacement rate of recycled aggregate, the shrinkage and creep of recycled aggregate concrete is significantly increased. In this paper, 180-day shrinkage and creep tests of recycled aggregate concrete with different water−cement ratios were designed in order to analyze the effect of the substitution rate and water−cement ratio on shrinkage and creep properties. The results show that the shrinkage strain of recycled aggregate concrete with a substitution rate of 50% and 100% at 180 days is 26% and 48% higher than that of ordinary concrete, respectively, and the growth of group II is 22% and 47%, respectively. When the load was 180 days old, the creep coefficient of recycled aggregate concrete with a substitution rate of 50% and 100% in group I increased by 19.6% and 39.6%, respectively compared with ordinary concrete, and group II increased by 23.6% and 44.3%, respectively. Based on the difference of adhering mortar content, the creeping increase coefficient and shrinkage increase coefficient of the attached mortar were proposed, and a shrinkage and creep model of recycled aggregate concrete was established. When compared with the experimental results, the model calculation results met the accuracy requirements.
机译:回收骨料和自然聚集体之间的显着差异是附着砂浆层的含量。随着再循环骨料的替代率的增加,再循环骨料混凝土的收缩和蠕变显着增加。本文设计了180天的收缩和蠕变,具有不同水水泥比的再循环混凝土的收缩和蠕变试验,以分析替代率和水水泥比对收缩和蠕变性质的影响。结果表明,在180天内替换率为50%和100%的再生骨料混凝土的收缩菌株分别比普通混凝土的26%和48%,二世二世的生长为22%和47 %, 分别。当负荷为180天时,与普通混凝土相比,I替代率为50%和100%的循环骨料混凝土的蠕变系数分别增加了19.6%和39.6%,而第二组增加了23.6%分别为44.3%。基于粘附砂浆含量的差异,提出了附着砂浆的匍匐增加系数和收缩系数,并建立了再生骨料混凝土的收缩和蠕变模型。与实验结果相比,模型计算结果符合准确性要求。

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