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Cyclic behavior of saturated soft clay under stress path with bidirectional shear stresses

机译:双向剪切应力作用下饱和软黏土的循环特性

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摘要

Under seismic loading, soil layers experience multidirectional cyclic shear stresses with different amplitudes and frequencies. Therefore, the deformation behavior of soft clay under complex stress paths is practically relevant. In this study, cyclic tests are performed on normally consolidated soft clay. To simulate the situation induced by seismic load, the complex figure-eight-shaped stress path is realized by applying shear stresses in two directions simultaneously. Under the figure-eight-shaped shear stress path, the cyclic strain, cyclic modulus, and cyclic strength of soft clay are found to be significantly dependent on the CSR (cyclic shear stress ratio) and the bidirectional shear frequencies. With an increase in the CSR and a decrease in the shear frequency, the dynamic shear modulus decreases and cyclic strain accumulation increases with an increasing number of cycles. Based on the test results, an empirical formula was presented to predict the cyclic strength under different shear frequencies.
机译:在地震荷载作用下,土层会经历具有不同幅度和频率的多向循环切应力。因此,软土在复杂应力路径下的变形行为具有实际意义。在这项研究中,对正常固结的软土进行了循环测试。为了模拟地震荷载引起的情况,通过同时在两个方向上施加切应力来实现复杂的八字形应力路径。在八字形剪切应力路径下,发现软黏土的循环应变,循环模量和循环强度明显取决于CSR(循环剪切应力比)和双向剪切频率。随着CSR的增加和剪切频率的降低,动态剪切模量降低,循环应变累积随着循环次数的增加而增加。根据测试结果,提出了经验公式来预测不同剪切频率下的循环强度。

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