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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Effect of wetting case and softness on adhesion of bioinspired micropatterned surfaces
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Effect of wetting case and softness on adhesion of bioinspired micropatterned surfaces

机译:润湿性壳体和柔软性对生物透明的微图纸表面粘附的影响

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Abstract Inspired by the adhesive ability of amphibian toe-pads, polydimethylsiloxane (PDMS) hexagonal pillar arrayed surfaces with varying softness are fabricated, and their adhesion behaviors in the non-wetting, mostly wetting and totally wetting cases are throughly investigated. Experimental results demonstrate that under a totally wetting case, i.e. the biological toe-pad-like case, besides the long-range capillary force, a short-range interaction caused by close contact plays a significant role for adhesion. Compared with unpatterned surface, hexagonal pillar patterns can lead to a remarkable improvement in both short- and long-range contribution for wet adhesion. Meanwhile, the surface softness performs a beneficial character in the short-range contribution for the adhesion of micropillars. Considering the fact that the soft microstructure and the almost totally wetting case (low surface tension of secretion and high surface energy of epidermis) on the pads of nature species, it is reasonable to suggest that these evolutions are in favor for wet attachments. Graphical abstract Display Omitted Highlights ? Capillary and close contact contribute the biology-like wet adhesion. ? Hexagonal pillars improve these two contributions for wet adhesion. ? Surface softness of micropillars enhances the close contact for wet adhesion.
机译:摘要通过两栖趾垫的粘合剂能力的启发,制造具有不同柔软性的聚二甲基硅氧烷(PDMS)六边形柱阵列的阵列表面,并通过润湿,大多润湿和全润湿壳体中的粘附性行为。实验结果表明,在完全润湿壳体下,即生物趾垫状壳体,除了远程毛细管力之外,由密切接触引起的短距离相互作用对粘附起着重要作用。与未绘图的表面相比,六边形柱形图案可导致湿粘附的短期和远程贡献的显着提高。同时,表面柔软度在短程贡献中对微米的粘附性进行了有益的特征。考虑到柔软的微观结构和几乎完全润湿的情况(表皮的分泌物的低表面张力和高表面能),建议这些演进有利于湿附件是合理的。图形抽象显示省略了亮点?毛细管和紧密接触有助于生物学湿粘附。还六角形柱改善这两种湿粘合的贡献。还微米表面柔软性增强了湿粘合的紧密接触。

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