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Absence of 'fragility' and mechanical response of jammed granular materials

机译:缺少“易碎性”和堵塞的粒状材料的机械响应

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摘要

We perform molecular dynamic simulations of frictional non-thermal particles driven by an externally applied shear stress. After the system jams following a transient flow, we probe its mechanical response in order to clarify whether the resulting solid is 'fragile'. We find the system to respond elastically and isotropically to small perturbations of the shear stress, suggesting absence of fragility. These results are interpreted in terms of the energy landscape of dissipative systems. For the same values of the control parameters, we check the behaviour of the system during a stress cycle. Increasing the maximum stress value, a crossover from a visco-elastic to a plastic regime is observed.
机译:我们执行由外部施加的剪切应力驱动的非热摩擦颗粒的分子动力学模拟。系统在瞬态流动后卡住后,我们探究其机械响应,以弄清生成的固体是否“易碎”。我们发现系统对剪切应力的小扰动具有弹性和各向同性的响应,表明没有脆性。这些结果是根据耗散系统的能量格局来解释的。对于相同的控制参数值,我们在压力循环期间检查系统的行为。增加最大应力值,观察到从粘弹性到塑性状态的过渡。

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