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Slow viscoelastic relaxation and aging in aqueous foam

机译:水性泡沫中的粘弹性松弛和老化缓慢

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Like emulsions, pastes and many other forms of soft condensed matter, aqueous foams present slow mechanical relaxations when subjected to a stress too small to induce any plastic flow. To identify the physical origin of this viscoelastic behaviour, we have simulated how dry disordered coarsening 2D foams respond to a small applied stress. We show that the mechanism of long time relaxation is driven by coarsening-induced rearrangements of small bubble clusters. These findings are in full agreement with a scaling law previously derived from experimental creep data for 3D foams. Moreover, we find that the temporal statistics of coarsening-induced bubble rearrangements are described by a Poisson process.
机译:像乳液,糊剂和许多其他形式的软冷凝物一样,水性泡沫在受到太小的应力以至于无法引起任何塑性流动时,也会呈现出缓慢的机械松弛。为了确定这种粘弹性行为的物理起源,我们模拟了干燥无序的粗化2D泡沫如何响应较小的施加应力。我们表明,长时间松弛的机制是由小气泡簇的粗化引起的重排驱动的。这些发现与先前从3D泡沫的实验蠕变数据得出的比例定律完全吻合。此外,我们发现由泊松过程描述了由粗化引起的气泡重排的时间统计。

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