Experimental study on the influence of cyclic loading frequency on liquefaction characteristics of saturated sand

Chengshun Xu, Chong Yue, Xiuli Du, Ke Liang, Bing Wang, Guoxing Chen
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Abstract

A series of undrained cyclic torsional shear tests were conducted to investigate the effect of cyclic loading frequency on the liquefaction characteristics of saturated sand using the hollow cylinder apparatus. The test results show that the dilative and contractive tendencies of various saturated sands are not only related to the physical properties of sand, but also affected by loading frequency. Under low-frequency loading, the saturated sand has a dilative behaviour, excess pore water pressure fluctuates after initial liquefaction and soil maintains the ability to resist liquefaction to some extent after the initial liquefaction. The liquefaction mode in terms of stress-strain relationship generally performs as the “cyclic mobility”. However, under the high-frequency loading, the saturated sand has a contractive behaviour, excess pore water pressure generally keeps stable after the initial liquefaction. The liquefaction mode in terms of stress-strain relationship generally exhibits as “cyclic instability”. The deformation caused by low-frequency loading is significantly larger compared with that caused by high-frequency loading. At higher loading frequencies, the phase transformation stress ratio increases with the increase of loading frequency, and gradually approaches the failure stress ratio.
循环加载频率对饱和砂液化特性影响的试验研究
为了研究循环加载频率对饱和砂液化特性的影响,使用空心圆筒装置进行了一系列不排水循环扭转剪切试验。试验结果表明,各种饱和砂的扩张和收缩倾向不仅与砂的物理性质有关,还受加载频率的影响。在低频加载下,饱和砂具有扩张行为,过剩孔隙水压力在初始液化后波动,土壤在初始液化后在一定程度上保持了抗液化能力。从应力-应变关系来看,液化模式一般表现为 "循环流动"。然而,在高频荷载作用下,饱和砂具有收缩行为,过剩的孔隙水压力在初始液化后一般保持稳定。从应力-应变关系来看,这种液化模式一般表现为 "循环不稳定性"。低频加载引起的变形明显大于高频加载引起的变形。在较高的加载频率下,相变应力比随着加载频率的增加而增大,并逐渐接近破坏应力比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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