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Statistics of shear-induced rearrangements in a two-dimensional model foam

机译:二维泡沫模型中剪切引起的重排的统计

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摘要

Under steady shear, a foam relaxes stress through intermittent rearrangements of bubbles accompanied by sudden drops in the stored elastic energy. We use a simple model of foam that incorporates both elasticity and dissipation to study the statistics of bubble rearrangements in terms of energy drops, the number of nearest neighbor changes, and the rate of neighbor-switching (T1) events. We do this for a two-dimensional system as a function of system size, shear rate, dissipation mechanism, and gas area fraction. We find that for dry foams, there is a well-defined quasistatic limit at low shear rates where localized rearrangements occur at a constant rate per unit strain, independent of both system size and dissipation mechanism. These results are in good qualitative agreement with experiments on two-dimensional and three-dimensional foams. In contrast, we find for progessively wetter foams that the event size distribution broadens into a power law that is cut off only by system size. This is consistent with criticality at the melting transition. [S1069-651X(99)06610-6]. [References: 22]
机译:在稳定的剪切力作用下,泡沫通过气泡的间歇性重排并伴随着所存储的弹性能的突然下降来缓解应力。我们使用结合了弹性和耗散性的简单泡沫模型,以能量下降,最近邻变化的数量和邻域转换(T1)事件的速率来研究泡沫重排的统计数据。我们针对二维系统执行此操作,该功能取决于系统大小,剪切速率,耗散机制和气体面积分数。我们发现,对于干泡沫,在低剪切速率下存在一个明确定义的准静态极限,其中局部重排以每单位应变的恒定速率发生,而与系统大小和耗散机制无关。这些结果与二维和三维泡沫的实验具有良好的定性一致性。相比之下,我们发现,对于逐渐润湿的泡沫,事件大小分布扩大为幂律,该幂律仅由系统大小来决定。这与熔融转变时的临界一致。 [S1069-651X(99)06610-6]。 [参考:22]

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