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Experimental Studies on Drying-Wetting Cycle Characteristics of Expansive Soils Improved by Industrial Wastes

机译:工业废渣改良膨胀土的干湿循环特性试验研究

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The improved engineering properties of the expansive soil by mixing with various additives will be changed during the long-term variation of the meteorological and hydrological conditions. In the present work, a series of tests are performed to investigate the evolution of the unconfined compression strength and the Atterberg limits under drying-wetting cycling conditions for specimens treated by iron tailing sands and calcium carbide slag. Typical results of the unconfined compressive strength can be divided into three stages. The unconfined compressive strength increases initially and then decreases to reach a stable state with continuous drying-wetting process. The calcium carbide slag content (αCCS) of 10% can be determined for the minimum effect of the drying-wetting cycle on the strength of the treated specimen. An exponential relationship is established to describe the evolution of the unconfined compressive strength with the drying-wetting cycle. The liquid limit and plastic index of the specimen increase initially followed by a decreasing trend, while a reverse trend was observed for that of the plastic limit during the drying-wetting process. The minimum effect of the drying-wetting cycle on the Atterberg limits can be presented for the specimen with αCCS of 10% as well.
机译:在气象和水文条件的长期变化过程中,通过与各种添加剂混合来改善膨胀土的工程性能将被改变。在目前的工作中,进行了一系列测试,以研究铁尾矿砂和电石渣处理的样品在干湿循环条件下的无侧限抗压强度和Atterberg极限的演变。无侧限抗压强度的典型结果可分为三个阶段。无边压缩强度在开始时增加,然后在连续的干湿润湿过程中降低到稳定状态。可以确定10%的电石渣含量(αCCS),以实现干湿循环对处理后的试样强度的最小影响。建立了指数关系来描述无侧限抗压强度随干湿循环的演变。样品的液体极限和塑性指数最初增加,然后是下降的趋势,而在干湿过程中,塑料极限的趋势是相反的。对于αCCS也为10%的样品,干湿循环对Atterberg极限的最小影响也可以呈现出来。

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