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Void-Free Layered Polymeric Architectures via Capillary-Action of Nanoporous Films

机译:通过纳米多孔薄膜的毛细管动作无空隙层聚合物架构

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Here, a nanomaterial with morphology-controlled nanoscale capillaries is utilized to overcome manufacturing challenges in layered polymeric architectures. It is demonstrated that the capillary pressure from a nanoporous film replaces the need for applied pressure to manufacture void-free layered polymeric architectures. Manufacturing of aerospace-grade advanced carbon fiber composites is performed for the first time without utilizing pressure from an autoclave. Combined with a conductive curing approach, this work allows advanced composites to be manufactured without costly oven or pressure vessel infrastructure. The nanomaterial-enabled capillary pressure is quantified as 50% greater than typical pressures used in such processing, and is anticipated to overcome the limitations imposed by the requirement of high applied pressure in many other applications such as adhesive joining of various bulk materials including metals, press forming, and closed-mold infusion processing of layered composites and polymers.
机译:这里,利用具有形态学控制的纳米尺度毛细血管的纳米材料来克服层状聚合物架构中的制造挑战。证明来自纳米多孔膜的毛细管压力取代了对不含无空隙的层状聚合物架构的施加压力的需求。航空级高级碳纤维复合材料的制造首次进行,而不利用高压釜的压力。结合导电固化方法,这项工作允许生产先进的复合材料,而无需昂贵的烤箱或压力容器基础设施。使纳米材料的毛细管压力量大于这种加工中使用的典型压力的50%,并且预计将克服通过在许多其他应用中的高施加压力的要求施加的限制,例如包括金属的各种散装材料的粘合剂连接,压制成型,分层复合材料和聚合物的闭模输注处理。

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