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Bioinspired large-scale aligned porous materials assembled with dual temperature gradients

机译:受生物启发的大规模对齐多孔材料具有双重温度梯度

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摘要

Natural materials, such as bone, teeth, shells, and wood, exhibit outstanding properties despite being porous and made of weak constituents. Frequently, they represent a source of inspiration to design strong, tough, and lightweight materials. Although many techniques have been introduced to create such structures, a long-range order of the porosity as well as a precise control of the final architecture remain difficult to achieve. These limitations severely hinder the scale-up fabrication of layered structures aimed for larger applications. We report on a bidirectional freezing technique to successfully assemble ceramic particles into scaffolds with large-scale aligned, lamellar, porous, nacre-like structure and long-range order at the centimeter scale. This is achieved by modifying the cold finger with a polydimethylsiloxane (PDMS) wedge to control the nucleation and growth of ice crystals under dual temperature gradients. Our approach could provide an effective way of manufacturing novel bioinspired structural materials, in particular advanced materials such as composites, where a higher level of control over the structure is required.
机译:天然材料(例如骨头,牙齿,贝壳和木材)尽管具有多孔性并由弱成分制成,但仍具有出色的性能。通常,它们代表设计坚固,坚韧和轻便的材料的灵感来源。尽管已经引入了许多技术来创建这样的结构,但是仍然难以实现孔隙率的远距离排序以及最终结构的精确控制。这些限制严重阻碍了针对更大应用的分层结构的按比例放大制造。我们报告了一种双向冷冻技术,该技术可以成功地将陶瓷颗粒组装成具有大规模排列,层状,多孔,珍珠质状结构和长距离级(厘米级)的支架。这可以通过用聚二甲基硅氧烷(PDMS)楔修饰冷指来控制双温度梯度下冰晶的成核和生长来实现。我们的方法可以提供一种有效的方法来制造新颖的具有生物启发性的结构材料,尤其是高级材料(例如复合材料),其中需要对结构进行更高级别的控制。

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