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Dynamic induced softening in frictional granular materials investigated by discrete-element-method simulation

机译:采用离散元法仿真研究的摩擦粒状材料动态诱导软化

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摘要

A granular system composed of frictional glass beads is simulated using the discrete element method. The intergrain forces are based on the Hertz contact law in the normal direction with frictional tangential force. The damping due to collision is also accounted for. Systems are loaded at various stresses and their quasistatic elastic moduli are characterized. Each system is subjected to an extensive dynamic testing protocol by measuring the resonant response to a broad range of ac drive amplitudes and frequencies via a set of diagnostic strains. The system, linear at small ac drive amplitudes, has resonance frequencies that shift downward (i.e., modulus softening) with increased ac drive amplitude. Detailed testing shows that the slipping contact ratio does not contribute significantly to this dynamic modulus softening, but the coordination number is strongly correlated to this reduction. This suggests that the softening arises from the extended structural change via break and remake of contacts during the rearrangement of bead positions driven by the ac amplitude.
机译:使用离散元件法模拟由摩擦玻璃珠组成的粒状系统。晶体力基于赫兹联系法在正常方向上以摩擦切向力。也占碰撞导致的阻尼。系统在各种应力​​下装载,其Quasistatic Elastic Moduli的特征在于。通过通过一组诊断菌株测量对广泛的AC驱动幅度和频率的谐振响应来进行各种系统进行广泛的动态测试协议。该系统在小型交流驱动幅度下线性,具有随着AC驱动幅度增加而向下移动(即,模量软化)的共振频率。详细测试表明,滑动接触比对该动态模量的软化没有显着贡献,但协调数与这种减少强烈相关。这表明软化在通过AC幅度驱动的珠子位置的重新排列期间通过断裂和翻新的延长结构变化产生。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第6期|062901.1-062901.8|共8页
  • 作者单位

    Chair of Building Physics ETHZ Wolfgang-Paulistrasse 15 CH-8093 Zurich Switzerland Laboratory of Multiscale Studies in Building Physics Empa ueberlandstrasse 129 CH-8600 Duebendorf Switzerland;

    Chair of Building Physics ETHZ Wolfgang-Paulistrasse 15 CH-8093 Zurich Switzerland Laboratory of Multiscale Studies in Building Physics Empa ueberlandstrasse 129 CH-8600 Duebendorf Switzerland;

    Solid Earth Geophysics Group Los Alamos National Laboratory MS D443 Los Alamos New Mexico 87545 USA;

    Solid Earth Geophysics Group Los Alamos National Laboratory MS D443 Los Alamos New Mexico 87545 USA Department of Physics University of Nevada Reno Nevada 89557 USA;

    Institut Langevin ESPCI Paris CNRS UMR 7587-1 rue Jussieu 75005 Paris France;

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