首页> 外文期刊>Journal of materials in civil engineering >Unrestrained and Restrained Shrinkage Behavior of Sustainable Lightweight Concrete Using Air Foam and Bottom Ash Aggregates
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Unrestrained and Restrained Shrinkage Behavior of Sustainable Lightweight Concrete Using Air Foam and Bottom Ash Aggregates

机译:使用空气泡沫和底灰聚集体的可持续轻质混凝土的无限制和限制收缩行为

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摘要

The objective of this study is to propose reliable models to assess the unrestrained and restrained shrinkage strains of lightweight concrete prepared using bottom ash aggregates and air foam (LWC-BF), on the basis of the nonlinear regression analysis using test data measured in the present specimens. Ten mixtures for LWC-BF were prepared with air foam volume fraction varying between 0% and 40% and water-to-binder ratios (W/B) at 25% and 30%. To grant sustainability with LWC-BF, the binder was composed of 30% ordinary portland cement, 50% ground-granulated blast-furnace slag, and 30% fly ash. All the specimens under the plastic shrinkage condition exhibited no crack development. The equivalent porosity (P_(eq)) and W/B could be regarded as a critical factor to assess the unrestrained (ε_(fsh)) and restrained (ε_(rsh)) shrinkage strains of LWC-BF. The net time to cracking and average stress rate at cracking recorded in the ring specimens under restrained condition ranged between 1.33 and 1.75 days and 1.12 and 1.31 MPa/day, respectively. Thus, the cracking potential of LWC-BF attributable to shrinkage was classified as high level. Based on these analyses and the concept of time function, ε_(fsh.) and ε_(rsh) can be simply formulated as functions of P_(eq) and W/B. The statistic comparisons revealed that the proposed models predict accurately the shrinkage behavior of LWC-BF. The mean and standard deviation of normalized root-mean-square error values determined from the measured and predicted shrinkage curves are 0.083 and 0.014, respectively, for unrestrained specimens, and 0.083 and 0.005, respectively, for restrained specimens. Meanwhile, code models result in unreasonable predictions for unrestrained shrinkage curves.
机译:本研究的目的是提出可靠的模型,以评估使用底灰聚集体和空气泡沫(LWC-BF)制备的轻质混凝土的无限制和限制收缩菌株,基于使用目前测量的测试数据的非线性回归分析标本。使用空气泡沫体积分数在0%至40%的空气泡沫体积分数和水 - 粘合剂比(W / B)为25%和30%的情况下制备10个混合物。为了赋予LWC-BF的可持续性,粘合剂由30%的普通波特泥水泥组成,50%地粒砂浆炉渣和30%飞灰组成。塑料收缩条件下的所有标本都没有显示出裂缝发育。等效孔隙率(P_(EQ))和W / B可以被认为是评估无限制(ε_(FSH))和受限制的(ε_(rsh))收缩菌株的临界因子.LWC-BF。在抑制条件下在环标本中记录的净开裂和平均应力速率分别在1.33和1.75天之间的抑制条件下,分别为1.33和1.75天,分别为1.12和1.31MPa /天。因此,归因于收缩的LWC-BF的裂化电位被归类为高水平。基于这些分析和时间函数的概念,可以简单地将ε_(fsh.)和ε_(rsh)作为P_(eq)和w / b的函数。统计比较揭示了所提出的模型,准确地预测LWC-BF的收缩行为。从测量的和预测的收缩曲线确定的归一化根均方误差值的平均值和标准偏差分别为无限制的样品,分别为0.083和0.014,分别用于约束样品。同时,代码模型导致无理的收缩曲线的不合理预测。

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