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Irreversible transition of amorphous and polycrystalline colloidal solids under cyclic deformation

机译:无定形和多晶胶体固体在循环变形下的不可逆转变

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摘要

Cyclic loading on granular packings and amorphous media leads to a transition from reversible elastic behavior to an irreversible plasticity. In the present study, we investigate the effect of oscillatory shear on polycrystalline and amorphous colloidal solids by performing molecular dynamics simulations. Our results show that close to the transition, both systems exhibit enhanced particle mobility, hysteresis, and rheological loss of rigidity. However, the rheological response shows a sharper transition in the case of the polycrystalline sample as compared to the amorphous solid. In the polycrystalline system, we see the disappearance of disclinations, which leads to the formation of a monocrystalline system, whereas the amorphous system hardly shows any ordering. After the threshold strain amplitude, as we increase the strain amplitude both systems get fluid. In addition to that, particle displacements are more homogeneous in the case of polycrystalline systems as compared to the amorphous solid, mainly when the strain amplitude is larger than the threshold value. We do not see any effect of oscillation frequency on the reversible-irreversible transition.
机译:粒状填料和非晶介质上的循环加载导致从可逆弹性行为到不可逆的可塑性的过渡。在本研究中,我们通过执行分子动力学模拟来研究振荡剪切对多晶和无定形胶体固体的影响。我们的结果表明,接近过渡,两种系统都表现出增强的颗粒迁移率,滞后和流变丧失的刚性。然而,与无定形固体相比,流变反应在多晶样品的情况下显示出更清晰的转变。在多晶系统中,我们看到了揭示的消失,这导致了单晶系统的形成,而无定形系统几乎没有显示任何排序。在阈值应变幅度之后,随着我们增加应变幅度,两个系统都会变流。除此之外,与非晶固体相比,颗粒位移在多晶系统的情况下更均匀,主要是当应变幅度大于阈值时。我们没有看到振荡频率对可逆不可逆的过渡的任何影响。

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