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Stress-Strain Relationship Model of Recycled Concrete Based on Strength and Replacement Rate of Recycled Coarse Aggregate

机译:基于再生粗骨料强度和置换率的再生混凝土应力应变关系模型

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摘要

The use of recycled coarse aggregate (RCA) can reduce the consumption of natural coarse aggregate (NCA) and preserve the natural environment. The accurate calculation of the compressive stress-strain relationship of recycled aggregate concrete (RAC) is very important in designing the recycled concrete structure. In this paper, experiments on compressive stress-strain based on five strength grades and six replacement rates of RCA from 0 to 60% were designed. The prism specimens of a height-to-width ratio of 3 were used to conduct the experiments under uniaxial compression load. The complete stress-strain curves were obtained by the experiments, and the ascending and descending branches of the experimental stress-strain curves are discussed separately. Based on the experimental results and by introducing the shape parameter beta of the stress-strain curve, a theoretical model of the stress-strain relationship considering the strength and replacement rate of recycled coarse aggregate was established. Through comparison and analysis, the stress-strain curve of RAC obtained by the suggested model has good fitting accuracy.
机译:使用再生粗骨料(RCA)可以减少天然粗骨料(NCA)的消耗并保护自然环境。再生骨料混凝土(RAC)的压应力-应变关系的准确计算对于设计再生混凝土结构非常重要。本文设计了基于五个强度等级和六种RCA置换率(从0%到60%)的压缩应力-应变实验。高宽比为3的棱镜样品用于单轴压缩载荷下的实验。通过实验获得了完整的应力-应变曲线,并分别讨论了实验应力-应变曲线的上升和下降分支。基于实验结果,通过引入应力-应变曲线的形状参数β,建立了考虑再生粗骨料强度和置换率的应力-应变关系的理论模型。通过比较分析,该模型得到的RAC的应力-应变曲线具有良好的拟合精度。

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