Drained deformation characteristics of granular soil under pure principal stress axis rotation: impact of sample preparation |
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Authors: | Sun Qi Dong Quanyang Cai Yuanqiang Wang Jun Song Xuewei |
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Institution: | 1.College of Civil Engineering and Architecture, The Key Laboratory of Engineering and Technology for Soft Soil Foundation and Tideland Reclamation of Zhejiang Province, Wenzhou University, Higher Education Zone, Chashan Town, Ouhai District, Wenzhou, 325035, People’s Republic of China ;2.Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Hangzhou, 310058, People’s Republic of China ;3.Zhengzhou Yasin Real Estate Development Co. LTD, Zhengzhou, 450052, People’s Republic of China ; |
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Abstract: | The distinct initial fabrics of sand may give rise to dramatically different responses to the applied loading, as evidenced by numerous laboratory tests reported in the literature. In this study, both dry deposition (DD) and moist tamping (MT) methods were employed to prepare sand specimens to generate different initial fabrics. Drained tests were conducted on these specimens under pure principal stress axis rotation while keeping the principal stress components constant. The factors that may influence the deformation characteristics of sand, such as deviatoric stress q, coefficient of intermediate principal stress b, and mean principal stress p, were also taken into consideration in the tests. Test results show that the developments of three normal strain components with number of cycles are very different between DD and MT specimens, which is also closely related to the factors of q, b, and p. It is seen that DD specimen tends to generate larger contractive volumetric strains than MT specimen, which is more significant when q and b increase or p decreases. The shear stiffness of DD specimen is greater than that of MT specimen. The shear modulus ratio, Gj/G1, increases with the increase of q and b or the decrease of p, which is more prominent in DD specimen than in MT specimen. It is also shown that DD specimen appears to exhibit stronger non-coaxiality than MT specimen, in which such difference of non-coaxiality tends to decrease with the increase in number of cycles. |
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