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Uniaxial compressive behaviors of fly ash/slag-based geopolymeric concrete with recycled aggregates

机译:基于粉煤灰/矿渣的地质聚合物混凝土的单轴压缩行为与再循环骨料

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摘要

The uniaxial compressive stress-strain behaviors of fly ash/ground granulated blast furnace slag (GGBFS) geopolymeric concrete containing recycled aggregate were investigated in this study. Geopolymeric concretes with the variations of three recycled aggregate replacement ratios (i.e., 0%, 50% and 100%) and four contents of slag (i.e., 0%, 10%, 20% and 30% of the mass of total binder) were tested under uniaxial compression. Special attention was devoted to the failure behaviors and patterns, stress-strain characteristics (such as the peak stress, the elastic modulus, the peak strain, and the ultimate strain) and energy absorption capacity. The results showed that the peak stress, elastic modulus and energy absorption (toughness) decreased with the increase of the replacement ratio of recycled aggregate, while these mechanical properties increased when the content of slag increased. The reverse trend was observed with respect to the ductility. Moreover, the inclusion of slag could alleviate the negative effects of the recycled aggregate replacement on the stress-strain characteristics of geopolymeric concrete. Additionally, a stress-strain model was developed in this study by modifying the parameters of the existing stress-strain model with the best prediction. This new proposed model can satisfactorily describe the stress-strain behaviors for both geopolymeric natural aggregate concrete and geopolymeric recycled aggregate concrete.
机译:本研究研究了粉煤灰/地粒状高炉炉渣(GGBFS)地产物混凝土的单轴压缩应力 - 应变行为。具有三种再循环的聚集体替换比(即0%,50%和100%)和四种渣含量(即0%,10%,20%和30%的总粘合剂)的聚合物混凝土在单轴压缩下进行测试。特别注意失败行为和模式,应力 - 应变特性(如峰值应力,弹性模量,峰值应变和最终应变)和能量吸收能力。结果表明,随着再循环骨料的替代比的增加,峰值应力,弹性模量和能量吸收(韧性)降低,而当渣的含量增加时,这些机械性能增加。相对于延性观察到反向趋势。此外,包含渣的含量可以缓解再循环骨料置换对地覆多化混凝土的应力 - 应变特性的负面影响。另外,通过改变具有最佳预测的现有应力 - 应变模型的参数在本研究中开发了应力 - 应变模型。这种新的拟议模型可以令人满意地描述地质聚合物天然骨料混凝土和地覆聚合物再循环骨料混凝土的应力 - 应变行为。

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