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Parametric excitation of wrinkles in elastic sheets on elastic and viscoelastic substrates

机译:弹性粘弹性基板上弹性板皱纹的参数激发

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摘要

Thin elastic sheets supported on compliant media form wrinkles under lateral compression. Since the lateral pressure is coupled to the sheet's deformation, varying it periodically in time creates a parametric excitation. We study the resulting parametric resonance of wrinkling modes in sheets supported on semi-infinite elastic or viscoelastic media, at pressures smaller than the critical pressure of static wrinkling. We find distinctive behaviors as a function of excitation amplitude and frequency, including (a) a different dependence of the dynamic wrinkle wavelength on sheet thickness compared to the static wavelength; and (b) a discontinuous decrease in the dominant wrinkle wavelength upon increasing excitation frequency at sufficiently large pressures. In the case of a viscoelastic substrate, resonant wrinkling requires crossing a threshold of excitation amplitude. The frequencies for observing these phenomena in relevant experimental systems are of the order of a kilohertz and above. We discuss experimental implications of the results.
机译:弹性薄板支撑在柔顺介质上,在侧向压缩下形成褶皱。由于侧向压力与板材的变形相耦合,因此随时间周期性地改变侧向压力会产生参数激励。我们研究了在小于静态起皱临界压力的压力下,支撑在半无限弹性或粘弹性介质上的薄板中起皱模式的参数共振。我们发现,作为激发振幅和频率的函数,具有不同的行为,包括(a)与静态波长相比,动态褶皱波长对板材厚度的依赖性不同;(b)在足够大的压力下,随着激发频率的增加,主要褶皱波长不连续地减少。在粘弹性基底的情况下,共振起皱需要超过激发振幅的阈值。在相关实验系统中观察这些现象的频率为千赫兹及以上。我们讨论了结果的实验意义。

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