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Wrinkling in the deflation of elastic bubbles

机译:弹性气泡收缩时起皱

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The protein hydrophobin HFBII self-assembles into very elastic films at the surface of water; these films wrinkle readily upon compression. We demonstrate and study this wrinkling instability in the context of non-planar interfaces by forming HFBII layers at the surface of bubbles whose interfaces are then compressed by deflation of the bubble. By varying the initial concentration of the hydrophobin solutions, we are able to show that buckling occurs at a critical packing fraction of protein molecules on the surface. Independent experiments show that at this packing fraction the interface has a finite positive surface tension, and not zero surface tension as is usually assumed at buckling. We attribute this non-zero wrinkling tension to the finite elasticity of these interfaces. We develop a simple geometrical model for the evolution of the wrinkle length with further deflation and show that wrinkles grow rapidly near the needle (used for deflation) towards the mid-plane of the bubble. This geometrical model yields predictions for the length of wrinkles in good agreement with experiments independently of the rheological properties of the adsorbed layer.
机译:蛋白质疏水蛋白HFBII在水表面自组装成非常有弹性的薄膜。这些薄膜在压缩时容易起皱。我们通过在气泡表面形成HFBII层来证明和研究在非平面界面情况下的起皱不稳定性,然后在气泡表面上通过气泡的收缩压缩其界面。通过改变疏水蛋白溶液的初始浓度,我们能够显示出屈曲发生在表面上蛋白质分子的关键堆积部分。独立实验表明,在该填充率下,界面具有有限的正表面张力,而不是通常在屈曲时假定的零表面张力。我们将这种非零的起皱张力归因于这些界面的有限弹性。我们开发了一个简单的几何模型来进一步发展皱纹长度并进一步放气,结果表明,皱纹在针头附近(用于放气)迅速向气泡中平面增长。该几何模型独立于被吸附层的流变特性,可以与实验很好地达成对皱纹长度的预测。

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