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INFLUENCE OF THE SOIL FABRIC ON THE MECHANICAL PROPERTIES OF UNSATURATED CLAYS

机译:土壤纤维对非饱和黏土力学性能的影响

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摘要

To determine the properties of bentonite in an unsaturated condition, which is typically used in the initial placement of the clay liners in landfills, the effect of the soil fabric on the mechanical properties of unsaturated compacted Kunigel-Vl, a bentonite clay, and NSF Clay, a non-swelling clay, were investigated. Samples were prepared at varying gravimetric water contents, ranging from natural to 70%, with the use of distilled water. The soil fabric was studied using scanning electron microscopy (SEM) and mercury intrusion porosimetry (MIP). The mechanical behaviour was studied by constant rate of strain (CRS) consolidation testing and constant volume direct shear (CVDS) testing. The results indicate that while an increase in water content resulted in the formation of aggregates and an increase in shear strength, it was the dilatancy behaviour that was most affected. The saturation of Kunigel-Vl resulted in a decrease in the friction angle, from 40.4° to 20.4°, while the saturation of NSF Clay resulted in a decrease in friction angle from over 40° to 32.3°.
机译:为了确定膨润土在不饱和条件下的性能(通常用于在填埋场中最初放置粘土衬里的情况),土壤织物对不饱和压实的Kunigel-Vl,膨润土和NSF粘土的力学性能的影响,一种非膨胀粘土,进行了研究。使用蒸馏水以不同的重量含量(自然含量至70%)制备样品。使用扫描电子显微镜(SEM)和压汞法(MIP)研究了土壤织物。通过恒定应变率(CRS)固结测试和恒定体积直接剪切(CVDS)测试研究了机械性能。结果表明,虽然含水量的增加导致聚集体的形成和剪切强度的增加,但剪胀性行为受到的影响最大。 Kunigel-V1的饱和度导致摩擦角从40.4°减小到20.4°,而NSF Clay的饱和度导致摩擦角从40°以上减小到32.3°。

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