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Effects of initial static shear on liquefaction and large deformation properties of loose saturated Toyoura sand in undrained cyclic torsional shear tests

机译:在不排水循环扭剪试验中,初始静态剪力对松散的饱和丰谷砂土的液化和大变形特性的影响

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摘要

This study focused on the role which static shear plays on the large deformation behavior of loose saturated sand during undrained cyclic loading. A series of undrained cyclic torsional shear tests was performed on saturated Toyoura sand specimens up to single amplitude shear strain exceeding 50%. Three types of cyclic loading patterns, i.e., stress reversal, intermediate and non-reversal, were employed by varying the initial static shear level and the cyclic shear stress amplitude. The observed types of failure could be distinguished into liquefaction (cyclic and rapid flow) and residual deformation by comparing both monotonic and cyclic undrained behavior. It was found that the presence of initial static shear does not always lead to an increase in the resistance to liquefaction or strain accumulation; they could either increase or decrease with an increasing initial static shear level depending on the type of loading pattern and failure behavior. In addition, according to the failure behavior which the specimens exhibited, three modes of development of large residual deformation were observed.
机译:这项研究的重点是静态剪力在不排水循环荷载作用下对松散饱和砂土的大变形行为的影响。对饱和的Toyoura砂样品进行了一系列不排水的循环扭剪试验,直至单振幅剪切应变超过50%。通过改变初始静态剪力水平和循环剪应力幅值,采用了三种类型的循环载荷模式,即应力逆转,中间和非逆转。通过比较单调和循环不排水行为,可以将观察到的破坏类型分为液化(循环和快速流动)和残余变形。发现初始静态剪切的存在并不总是导致抗液化或应变累积的增加;它们可能会随着初始静态剪力水平的增加而增加或减少,具体取决于荷载模式和破坏行为的类型。另外,根据试件表现出的破坏行为,观察到了三种残余变形大的发展模式。

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