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Linking shape and rotation of grains during triaxial compression of sand

机译:三轴压缩砂粒中谷物的形状和旋转

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Particle shape has a strong effect on the mechanical response of coarse soils. This has been usually observed examining specimen-scale or engineering-scale responses, which are the sum of many microscale interactions. In this work we observe the effects of particle shape directly at the microscale level. X-ray tomography (mu-CT) of two sand specimens is exploited to measure three-dimensional particle shape descriptors but also to track individual particle motions during triaxial compression. A discrete digital volume correlation algorithm is employed to track the motion of individual grains (around 50,000 for each sand specimen) during the test and measure, with good precision, their cumulated displacements and rotations. The specimens examined failed in a clearly localised shear mode. Advantage is taken of this to obtain data relevant for very different kinematical regimes: one uniform and more constrained and the other close to critical state. A direct comparison between the shape and kinematic databases shows to what degree particle shape descriptors are related to observed kinematics. It appears that true sphericity is a good predictor of upper bound rotational restraint.
机译:颗粒形状对粗糙土壤的机械响应具有很强的影响。这通常观察到检测标本级或工程规模的响应,这是许多微观相互作用的总和。在这项工作中,我们在微尺度直接观察粒子形状的影响。利用两个砂试样的X射线断层扫描(MU-CT)来测量三维颗粒形状描述符,但也可以在三轴压缩期间跟踪各个颗粒运动。采用离散数字体积相关算法在测试和测量期间跟踪各个颗粒(每个砂样本约为50,000)的运动,具有良好的精度,其累积的位移和旋转。在清晰的局部剪切模式下检查样本失败。采用该优点,以获得与非常不同的运动型制度相关的数据:一个均匀和更受约束,另一个接近临界状态。形状和运动数据库之间的直接比较显示在多大的粒子形状描述符与观察到的运动学相关。似乎真正的球形是上限旋转束缚的良好预测因子。

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