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Wrinkles Riding Waves in Soft Layered Materials

机译:皱纹骑在软分层材料中的波浪

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The formation of periodic wrinkles in soft layered materials due to mechanical instabilities is prevalent in nature and has been proposed for use in multiple applications. However, such phenomena have been explored predominantly in quasi-static settings. Here, the dynamics of soft elastomeric blocks with stiff surface films subjected to high-speed impact are measured, and wrinkles forming along with, and riding upon, waves propagating through the system are observed. The measurements are analyzed with large-deformation, nonlinear visco-hyperelastic finite element simulations coupled to an analytical wrinkling model. The comparison between the measured and simulated dynamics shows good agreement, and suggests that inertia and viscoelasticity play an important role. Here, future studies of the dynamics of surface instabilities in soft materials are encouraged, including cases involving large-deformation, highly nonlinear morphologies. Improved understanding of dynamic wrinkle formation may have applications to areas including impact mitigation, soft electronics, and the dynamics of soft sandwich composites.
机译:由于机械不稳定性的软分层材料中的周期性皱纹本质上是普遍的,并且已经提出用于多种应用。然而,这种现象已在准静态设置中主要探讨。这里,测量具有经受高速冲击的硬表面膜的软弹性体块的动态,并且观察到通过系统传播的皱纹和骑在一起。用大变形分析测量,非线性粘合超弹性有限元模拟耦合到分析皱纹模型。测量和模拟动力学之间的比较显示了良好的一致性,并表明惯性和粘弹性起着重要作用。在这里,鼓励对软材料表面稳定性的未来研究,包括涉及大变形,高度非线性形态的病例。改善了对动态皱纹地层的理解可能具有应用于包括影响缓解,软电子和软夹芯复合材料的动态的区域的应用。

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