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Compressibility and small strain stiffness of kaolin clay mixed with varying amounts of sand

机译:高岭土与不同数量砂土混合的压缩性和小应变刚度

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This experimental investigation quantifies the compressibility and small strain stiffness of kaolin clay mixed with varying amounts of sand particles. The theoretical background of binary mixtures, including critical and limiting fines contents, porosity of binary mixed soils, and the concept of interfine void ratio, were reviewed. In addition, modified oedometer tests were conducted to measure both the compression index (C (c)) and maximum shear modulus (G (max)) of sand-clay mixed soils. The results of this study demonstrate that the critical fines content (FC*) of tested mixed soils is less than 40% and the limiting fines content (FCL) is around 80%; therefore, the C (c) and G (max) of tested mixed soils with fines content (FC) = 80% and 90% are entirely determined by the small particles, reflecting the applicability of the concept of interfine void ratio for mixed soils with FC > FCL. In contrast, the C (c) and G (max) of tested sand-clay mixed soils with FC = 40% and 60% can be captured by the concept of equivalent interfine void ratio with fitting parameter m = 0. Therefore, the mechanical behaviors of tested sand-clay mixed soils with FC* < FC < FCL are determined by both large and small particles.
机译:这项实验研究量化了高岭土与各种数量的砂粒混合后的可压缩性和较小的应变刚度。综述了二元混合物的理论背景,包括临界和极限细粉含量,二元混合土的孔隙率以及细孔空隙率的概念。此外,还进行了改进的里程表测试,以测量砂土混合土的压缩指数(C(c))和最大剪切模量(G(max))。这项研究的结果表明,经测试的混合土壤的临界细粉含量(FC *)小于40%,极限细粉含量(FCL)约为80%。因此,细度含量(FC)分别为80%和90%的被测混合土的C(c)和G(max)完全由小颗粒确定,反映了细孔空隙率概念对于具有混合比的混合土的适用性。 FC>整箱。相比之下,可以通过拟合参数m = 0的等效细孔空隙比的概念来捕获FC = 40%和60%的试验砂土混合土的C(c)和G(max)。 FC *

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