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Feather-Inspired Carbon Fiber Reinforced Polymers With Nanofibrous Fractal Interlayer

机译:具有纳米纤维分形夹层的羽毛启发碳纤维增强聚合物

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Much work has been performed in improving carbon fiber-reinforced polymer (CFRP) composites to prevent delamination, which is the major defect in laminated composites. Nevertheless, there is not much focus on improving conventional CFRP systems in terms of weight, especially when these are used in primary structures. This article explores whether lighter and at the same time stronger CFRP composites can be manufactured to replace conventional CFRP systems in major applications. Under this perspective, and having established the fundamentals for creating the next generation of light weight structural composites-the featherweight composites-this work introduces a feather-inspired case which uses a controlled inter-layer reinforcement in a fractal and reproducible manner at the macro-, micro-, and nano-scales. By extensively describing the matrix system and the manufacturing processes and focusing on analytically and thermomechanically testing the CNT (Carbon Nanotubes) reinforced nanofiber interlayer system, it is shown that this feather-inspired CFRP achieves significantly higher mechanical properties as well as potential weight savings. (C) 2014 Society of Plastics Engineers
机译:在改进碳纤维增强聚合物(CFRP)复合材料以防止分层方面已经进行了许多工作,分层是层压复合材料的主要缺陷。然而,就重量而言,并没有太多关注改进传统的CFRP系统,特别是当这些CFRP系统用于主要结构时。本文探讨了在主要应用中,是否可以制造出重量更轻,同时强度更高的CFRP复合材料来代替传统的CFRP系统。在这种情况下,并为创建下一代轻质结构复合材料(轻质复合材料)奠定了基础,这项工作引入了一种羽毛启发性的案例,该案例在宏观上以分形和可复制的方式使用受控的层间增强材料。 ,微米和纳米级。通过广泛描述基体系统和制造工艺,并专注于分析和热机械测试CNT(碳纳米管)增强的纳米纤维夹层系统,结果表明,这种羽毛启发的CFRP可以显着提高机械性能并减轻重量。 (C)2014年塑料工程师学会

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