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Micro Shear Bands: Precursor for Strain Localization in Sheared Granular Materials

机译:微剪切带:剪切颗粒材料中应变局部化的前体

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Recent studies have shown that detection of the onset and evolution of micro shear bands (MSBs) in granular materials can be improved using measurements of the kinematic behavior of particles. Different methods such as the discrete-element method (DEM) or three-dimensional (3D) imaging techniques have been used to measure the kinematics of individual particles within triaxial specimens. However, conventional kinematic techniques that use particle translation and/or rotation cannot detect the onset and growth of MSBs during the hardening phase of axisymmetric triaxial experiments. In order to expose the localized shearing and particle-scale behavior of triaxial specimens, a relative particle translation gradient (RPTG) concept is used to detect and expose the onset of strain localization before the peak principal stress ratio (PSR). RPTG measurements for four different granular materials are reported in this paper. The RPTG concept is used to expose the onset of MSBs during the hardening phase of the experiments. In addition, the contact number of individual particles is quantified and discussed in relation to particle rotation to investigate a particle-scale relationship between particle contacts and rotation. The effects of density, confining pressure, and particle shape on contact number are examined.
机译:最近的研究表明,使用颗粒运动学特性的测量可以改善对颗粒材料中微剪切带(MSB)的发生和演变的检测。已经使用诸如离散元素法(DEM)或三维(3D)成像技术之类的不同方法来测量三轴试样中单个粒子的运动学。但是,使用轴平移和/或旋转的常规运动学技术无法在轴对称三轴实验的硬化阶段检测到MSB的发生和生长。为了揭示三轴试样的局部剪切和颗粒尺度行为,使用相对粒子平移梯度(RPTG)概念来检测和暴露峰值主应力比(PSR)之前应变局部化的开始。本文报道了四种不同颗粒材料的RPTG测量。 RPTG概念用于在实验的硬化阶段暴露MSB的发作。另外,对单个粒子的接触数进行了定量和讨论,并与粒子旋转有关,以研究粒子接触与旋转之间的粒子尺度关系。研究了密度,限制压力和颗粒形状对接触数的影响。

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