论文标题

粘弹性超材料的极端力学

The Extreme Mechanics of Viscoelastic Metamaterials

论文作者

Dykstra, David M. J., Janbaz, Shahram, Coulais, Corentin

论文摘要

由柔性构件制成的机械超材料可以表现出大量极端机械响应,例如负弹性常数,形状变化,可编程性和记忆力。迄今为止,对于这种柔性超材料,耗散仍然被忽略了。实际上,经常在构型材料的选择中专门专门专门的护理,以避免强烈的耗散效应。但是,在越来越多的场景中,在动态加载超材料的情况下,耗散不容忽视。在这篇综述中,我们表明,机械不稳定性和粘弹性之间的相互作用至关重要,并且可以利用以获得新的功能。我们首先表明,这种相互作用是理解使用屈曲和捕捉作为功能机制的柔性耗散超材料的动态行为的关键。我们进一步讨论了粘弹性特性的空间模式为设计的机械超材料设计的新机会,其特性依赖于加载速率。

Mechanical metamaterials made of flexible building blocks can exhibit a plethora of extreme mechanical responses, such as negative elastic constants, shape-changes, programmability and memory. To date, dissipation has largely remained overlooked for such flexible metamaterials. As a matter of fact, extensive care has often been devoted in the constitutive materials' choice to avoid strong dissipative effects. However, in an increasing number of scenarios, where metamaterials are loaded dynamically, dissipation can not be ignored. In this review, we show that the interplay between mechanical instabilities and viscoelasticity can be crucial and can be harnessed to obtain new functionalities. We first show that this interplay is key to understanding the dynamical behaviour of flexible dissipative metamaterials that use buckling and snapping as functional mechanisms. We further discuss the new opportunities that spatial patterning of viscoelastic properties offer for the design of mechanical metamaterials with properties that depend on loading rate.

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