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Combined influence of substrate relief and mechanical compression on topographical evolution of surface wrinkling

机译:基材起伏和机械压缩对表面起皱形貌演变的综合影响

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Controlled surface wrinkling could provide ordered and hierarchical structures in micro- and nano-meter scale. Here combined influence of out-of-plane compressive stress and in-plane substrate relief in Au/PDMS bilayer system was experimentally investigated to explore morphological evolution of surface wrinkling. Compared with single influence from out-of-plane compression or in-plane relief, the combined effect mainly reflected in two aspects: edge effect and rearrangement effect. Edge effect applied morphological change on the compressed fields near the edges, but patterns almost restored to the original shape after stress relaxation. Rearrangement effect made relaxed patterns on the rectangular convex regions to rearrange and led to the failure of shape memory effect. The results demonstrated that the combined effect could partly rearrange the original structures, which would be utilized to fabricate the complicated structures.
机译:受控的表面起皱可以提供微米和纳米尺度的有序和分层结构。在此,通过实验研究了Au / PDMS双层系统中面外压应力和面内基板起伏的综合影响,以探讨表面起皱的形态演变。与来自平面外压缩或平面内起伏的单一影响相比,组合效应主要体现在两个方面:边缘效应和重排效应。边缘效应对边缘附近的压缩场施加了形态变化,但是应力松弛后,图案几乎恢复了原始形状。重排效应使矩形凸区域上的松弛图案重新排列,并导致形状记忆效应的失败。结果表明,综合效果可以部分重新排列原始结构,从而可以用来制造复杂的结构。

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