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Ultralight shape-recovering plate mechanical metamaterials

机译:超轻型形状恢复板机械超材料

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摘要

Unusual mechanical properties of mechanical metamaterials are determined by their carefully designed and tightly controlled geometry at the macro- or nanoscale. We introduce a class of nanoscale mechanical metamaterials created by forming continuous corrugated plates out of ultrathin films. Using a periodic three-dimensional architecture characteristic of mechanical metamaterials, we fabricate free-standing plates up to 2 cm in size out of aluminium oxide films as thin as 25 nm. The plates are formed by atomic layer deposition of ultrathin alumina films on a lithographically patterned silicon wafer, followed by complete removal of the silicon substrate. Unlike unpatterned ultrathin films, which tend to warp or even roll up because of residual stress gradients, our plate metamaterials can be engineered to be extremely flat. They weigh as little as 0.1 g cm−2 and have the ability to ‘pop-back' to their original shape without damage even after undergoing multiple sharp bends of more than 90°.
机译:机械超常材料的异常机械性能取决于它们在宏观或纳米尺度上精心设计和严格控制的几何形状。我们介绍了一类由超薄膜形成连续的波纹板而产生的纳米级机械超材料。利用机械超材料的周期性三维结构特征,我们用厚度仅为25 nm的氧化铝膜制作了最大2 cm的独立式板。这些板是通过在平版印刷的硅晶片上原子层沉积超薄氧化铝膜而形成的,然后完全去除硅基板。与无图案的超薄薄膜(由于残留应力梯度而倾向于翘曲甚至卷起)不同,我们的平板超材料可以设计成非常平坦的。它们的重量仅为0.1µg·cm −2 ,即使经过多次超过90°的急剧弯曲,也能够“弹回”到其原始形状而不会造成损坏。

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