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Strength evaluation of marine clay stabilized by cementitious binder

机译:水泥基粘结剂稳定海相黏土强度评价

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摘要

Evaluation of the strength of cement-treated clay with a broad range of mix ratios and curing periods was conducted using unconfined compression tests (UCTs). The influence of cement content, total water content, and curing period on the unconfined compressive strength of cemented clay are investigated. It is found that, at constant total water content, higher cement content results in higher unconfined compressive strength, while the total water content has an opposite effect. A power function can be used to correlate the unconfined compressive strength with the cement content or the total water content. For a fixed mix ratio, the unconfined compressive strength of cement-stabilized clay increases with the curing period, the effect of which can be characterized by a semi-log formula. Also, a strength-prediction model that considers both mix ratios and curing periods for cement-admixed marine clay is developed and validated; the model can capture the effect of clay type by considering the plastic index of untreated soils. It is also proved that the proposed framework for strength development is also applicable for other cement types.
机译:使用无侧限压缩试验 (UCT) 对具有广泛混合比和固化期的水泥处理粘土的强度进行评估。研究了水泥含量、总含水量和养护期对胶结黏土无侧限抗压强度的影响。结果表明,在总含水率不变的情况下,水泥含量越高,无侧限抗压强度越高,而总含水率则相反。幂函数可用于将无侧限抗压强度与水泥含量或总含水量相关联。对于固定的配合比,水泥稳定粘土的无侧限抗压强度随着养护期的增加而增加,其效果可以用半对数公式来表征。此外,建立并验证了考虑水泥-掺合海相黏土配合比和养护期的强度预测模型;该模型可以通过考虑未处理土壤的塑性指数来捕捉粘土类型的影响。研究还证明,所提出的强度发展框架也适用于其他水泥类型。

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