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Strain localization characteristics of loose saturated Toyoura sand in undrained cyclic torsional shear tests with initial static shear

机译:初始静态剪切下不排水循环扭剪试验中松散饱和丰友砂的应变局部化特征

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Strain localization, or the formation of shear bands, is a key aspect in understanding soil failure mechanisms. While efforts have been made in terms of measuring the shear band properties and the stress-strain behavior within shear bands, there are still uncertainties regarding when shear bands initiate and their influence on the development of large ground deformation. In this paper, the limiting value of shear strain, at which strain localization appears during undrained cyclic torsional shear tests with initial static shear, performed on loose Toyoura sand specimens (Dr=44-48%) up to a single amplitude of shear strain exceeding 50%, was evaluated. Non-uniform specimen deformation was observed at strain levels larger than 20%. However, the onset of strain localization could not be defined on the basis of visual observations. Therefore, the limiting values for half of the double amplitude (yda/2) and single amplitude (ySA) shear strain, to initiate strain localization, were determined from test results based on changes in the deviator stress response and strain accumulation properties as well as changes in the strain-softening behavior during cyclic shear. It was found that ySA is a more appropriate parameter than yda/2. Irrespective of the static shear stress level, the limiting strain value for ygA was evaluated to be in the range of 23—28% for liquefied loose Toyoura sand specimens (i.e., stress reversal and intermediate tests). Alternatively, the limiting strain value could not be properly defined when liquefaction did not occur (i.e., non-reversal stress tests), although various methods were employed.
机译:应变局部化或剪切带的形成是理解土壤破坏机理的关键方面。尽管已经在测量剪切带特性和剪切带内的应力应变行为方面进行了努力,但是关于剪切带何时开始及其对大地基变形发展的影响仍然存在不确定性。在本文中,对松散的Toyoura砂试样(Dr = 44-48%)进行了剪切应变的极限值,该极限值在不排水的循环扭剪试验(具有初始静态剪切)下出现局部应变,直至超过单个剪切应变幅度50%被评估。在大于20%的应变水平下观察到不均匀的试样变形。但是,不能根据目视观察来确定应变局部化的开始。因此,根据偏应力响应和应变累积特性的变化,根据测试结果确定了双振幅(yda / 2)和单振幅(ySA)剪切应变的一半的极限值,以启动应变定位。循环剪切过程中应变软化行为的变化。发现ySA比yda / 2更合适。不论静态剪应力水平如何,对于液化的松散Toyoura砂样品,ygA的极限应变值均评估为23-28%(即,应力逆转和中间测试)。另外,虽然没有采用液化的方法(即不可逆应力试验),但不能适当地定义极限应变值,尽管采用了各种方法。

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