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Characterization of Hydration Products' Formation and Strength Development in Cement-Stabilized Kaolinite Using TG and XRD

机译:用TG和XRD表征水泥稳定高岭石中水化产物的形成和强度发展

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This study investigates the use of thermogravimetry (TG) and X-ray diffraction (XRD) to characterize and quantify the hydration products, particularly calcium silicate hydrate (CSH) and calcium hydroxide [Ca(OH)2], in stabilized soils and to establish correlations between these products and strength gain over time. A pure kaolinite is the soil for this study and portland cement is the selected stabilizer. Untreated and cement-stabilized samples are compacted at their optimum conditions and cured for different periods of up to 90days. The unconfined compression test, which is a relatively simple and commonly used test, is performed to measure the unconfined compressive strength (UCS) for all the samples and record the macroscopic behavior. A portion of soil from each set of samples is recovered and subsequently subjected to the TG test coupled with mass spectrometry (MS) and XRD. Using TG, the amounts of CSH (mass loss between 105 and 440 degrees C) and calcium hydroxide (mass loss between 440 and 580 degrees C) are measured and monitored with time to establish their correlation with strength gain. Quantitative XRD using whole-pattern fitting (Rietveld analysis) and the reference intensity ratio (RIR) indicated that the amount of kaolinite decreases logarithmically with curing time and a strong linear correlation is observed between the amount of kaolinite and the unconfined compression strength.
机译:这项研究调查了使用热重分析(TG)和X射线衍射(XRD)来表征和定量稳定化土壤中的水合产物,特别是水合硅酸钙(CSH)和氢氧化钙[Ca(OH)2]并确定这些产品与强度随时间的增长之间的相关性。纯高岭石是该研究的土壤,而波特兰水泥是所选的稳定剂。未经处理和水泥稳定的样品会在其最佳条件下压实,并在长达90天的不同时间内固化。进行无限制压缩测试是一种相对简单且常用的测试,用于测量所有样品的无限制压缩强度(UCS)并记录宏观行为。从每组样品中回收一部分土壤,然后进行TG测试,质谱分析(MS)和XRD。使用TG测量并监测CSH(在105至440摄氏度之间的质量损失)和氢氧化钙(在440至580摄氏度之间的质量损失)的量,并随时间进行监测,以建立它们与强度增益的相关性。使用全模式拟合(Rietveld分析)和参考强度比(RIR)进行定量XRD分析表明,高岭石的量随固化时间呈对数减少,并且在高岭石的量与无侧限抗压强度之间观察到很强的线性相关性。

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