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Fabrication of composite microstructures by capillarity-driven wetting of aligned carbon nanotubes with polymers

机译:通过毛细管驱动的聚合物对取向碳纳米管进行润湿驱动润湿来制备复合材料微结构

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摘要

The interaction, or wetting, of long aligned carbon nanotube (CNT) forests with off-the-shelf (no solvent added) commercial thermoset polymers is investigated experimentally. A technique for creating vertically aligned CNT composite microstructures of various shapes is presented. The effective wetting of the forests, as evidenced by a lack of voids, by three polymers with widely varying viscosities supports the feasibility of using CNT forests in large-scale hybrid advanced composite architectures. Among various routes identified for the polymer to penetrate the forest, capillarity-driven wetting along the CNT axis is the preferred route. Aligned CNT microstructures are useful in many applications including test structures for direct mechanical and multifunctional property characterization of the aligned CNT-polymer composite materials.
机译:实验研究了长排列的碳纳米管(CNT)森林与现成的(不添加溶剂)商用热固性聚合物的相互作用或润湿性。提出了一种用于创建各种形状的垂直排列的CNT复合微结构的技术。三种孔隙度不同的聚合物有效地润湿了森林,这是由于缺少空隙所证明的,这支持在大型混合高级复合材料结构中使用CNT森林的可行性。在确定的聚合物穿透森林的各种途径中,毛细作用驱动的沿CNT轴的润湿是首选途径。对准的CNT微结构可用于许多应用中,包括用于对准的CNT-聚合物复合材料的直接机械和多功能性质表征的测试结构。

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