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Long-Term Effect of Curing Temperature on the Strength Behavior of Cement-Stabilized Clay

机译:固化温度对水泥稳定粘土强度特性的长期影响

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摘要

The influence of curing temperature on the strength development of concrete, mortar, or cement-stabilized granular soils has been widely reported in the literature. However, there are fewer studies focusing on cement-stabilized clay. The key difference is the presence of pozzolanic reactions in cement-stabilized clay, which give rise to more complex strength-development behaviors than those of concrete, mortar, or cement-stabilized granular soils. This paper aims to clarify this difference using extensive data collected as part of a land reclamation project in Singapore. Five different mixes of cement-stabilized Singapore marine clay are cured under different temperatures. Their strength development with time is studied by testing the specimens under unconfined compression at various curing ages (up to 1 year). The experimental results show that a higher curing temperature gives rise to not only higher short-term strengths but also higher long-term/ultimate strengths. Based on the experimental results, a model is proposed that combines the maturity theory commonly used for concrete or mortar with a proposed temperature-enhanced strength factor, which takes into account the effect of curing temperature on pozzolanic reactions occurring in cement-stabilized clay. This proposed model is validated by another independent Singapore data set and data sets collected from the literature.
机译:固化温度对混凝土,砂浆或水泥稳定的粒状土的强度发展的影响已在文献中广泛报道。但是,很少有研究关注水泥稳定的粘土。关键的区别是在水泥稳定的粘土中存在火山灰反应,与水泥,砂浆或水泥稳定的粒状土壤相比,它的强度发展行为更为复杂。本文旨在利用作为新加坡土地开垦项目一部分而收集的大量数据来澄清这种差异。水泥稳定的新加坡海事粘土的五种不同混合物在不同温度下固化。通过在不同的固化年龄(长达1年)下无限制压缩测试样品,研究了它们随时间的强度发展。实验结果表明,较高的固化温度不仅会产生较高的短期强度,而且还会产生较高的长期/最终强度。根据实验结果,提出了一个模型,该模型将通常用于混凝土或砂浆的成熟度理论与建议的温度增强强度因子相结合,该模型考虑了固化温度对水泥稳定粘土中火山灰反应的影响。另一个独立的新加坡数据集和从文献中收集的数据集验证了该提出的模型。

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