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Porous Materials with Tunable Structure and Mechanical Properties via Templated Layer-by-Layer Assembly

机译:通过模板化的逐层组装,可调节结构和机械性能的多孔材料

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摘要

The deposition of stiff and strong coatings onto porous templates offers a novel strategy for fabricating macroscale materials with controlled architectures at the micro- and nanoscale. Here, layer-by-layer assembly is utilized to fabricate nanocomposite-coated foams with highly customizable properties by depositing polymer–nanoclay coatings onto open-cell foam templates. The compressive mechanical behavior of these materials evolves in a predictable manner that is qualitatively captured by scaling laws for the mechanical properties of cellular materials. The observed and predicted properties span a remarkable range of density-stiffness space, extending from regions of very soft elastomer foams to very stiff, lightweight honeycomb and lattice materials.
机译:硬质涂层和坚固涂层的沉积在多孔模板上提供了一种新颖的策略,可用于在微米和纳米级控制结构的大型材料的制造。在这里,通过将聚合物-纳米粘土涂料沉积到开孔泡沫模板上,逐层组装来制造具有高度可定制特性的纳米复合涂层泡沫。这些材料的压缩机械性能以可预测的方式演变,并通过蜂窝材料机械性能的定标定性定性地捕获。观察到的和预测到的性质跨越了很大的密度-刚度范围,从非常柔软的弹性体泡沫区域到非常坚硬,轻质的蜂窝和格状材料。

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