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首页> 外文期刊>Journal of materials in civil engineering >Prediction of the Compressive Strength from Resonant Frequency for Low-Calcium Fly Ash-Based Geopolymer Concrete
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Prediction of the Compressive Strength from Resonant Frequency for Low-Calcium Fly Ash-Based Geopolymer Concrete

机译:低钙粉煤灰基高分子聚合物的共振频率抗压强度预测

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摘要

This study focuses on using fly ash to produce a cement-free geopolymer concrete. The combination of potassium hydroxide (KOH) and potassium silicate solution (K2SiO3) was used as the alkaline activator to initiate the geopolymerization reaction. The water immersion curing method was used. The concrete specimens were first cured at 60 degrees C for 24h, followed by ambient temperature curing until testing. The effect of concentration of KOH and the ratio of K2SiO3 to KOH (PS/PH ratio) on the compressive strength was investigated. The experimental results revealed that the geopolymer concrete activated with 14M KOH solution with the PS/PH of 2.0 exhibited the highest strength. This study also proposes a nondestructive method for the prediction of compressive strength. By using multiple regression technique, an accurate predictive relationship was established between the compressive strength and the longitudinal resonant frequency. The effectiveness and the accuracy of the proposed equation were proven by applying it to a previous study by another researcher.
机译:这项研究的重点是使用粉煤灰生产不含水泥的地聚合物。氢氧化钾(KOH)和硅酸钾溶液(K2SiO3)的组合用作碱性活化剂以引发地聚反应。使用水浸固化方法。首先将混凝土样品在60摄氏度下固化24小时,然后在室温下固化直至测试。研究了KOH的浓度和K2SiO3与KOH的比例(PS / PH比)对抗压强度的影响。实验结果表明,PS / PH为2.0的14M KOH溶液活化的地聚合物混凝土具有最高的强度。这项研究还提出了一种抗压强度预测的非破坏性方法。通过使用多元回归技术,在抗压强度和纵向共振频率之间建立了准确的预测关系。通过将其应用于另一位研究人员的先前研究中,证明了该方程的有效性和准确性。

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