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Evolving Strategies for Producing Multiscale Graphene‐Enhanced Fiber‐Reinforced Polymer Composites for Smart Structural Applications

机译:生产用于智能结构应用的多尺度石墨烯增强纤维增强聚合物复合材料的发展策略

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摘要

Graphene has become an important research focus in many current fields of science including composite manufacturing. Developmental work in the field of graphene‐enhanced composites has revealed several functional and structural characteristics that promise great benefits for their use in a broad range of applications. There has been much interest in the production of multiscale high‐performance, lightweight, yet robust, multifunctional graphene‐enhanced fiber‐reinforced polymer (gFRP) composites. Although there are many reports that document performance enhancement in materials through the inclusion of graphene nanomaterials into a matrix, or its integration onto the reinforcing fiber component, only a few graphene‐based products have actually made the transition to the marketplace. The primary focus of this work concerns the structural gFRPs and discussion on the corresponding manufacturing methodologies for the effective incorporation of graphene into these systems. Another important aspect of this work is to present recent results and highlight the excellent functional and structural properties of the resulting gFRP materials with a view to their future applications. Development of clear standards for the assessment of graphene material properties, improvement of existing materials and scalable manufacturing technologies, and specific regulations concerning human health and environmental safety are key factors to accelerate the successful commercialization of gFRPs.
机译:石墨烯已成为包括复合材料制造在内的许多当前科学领域的重要研究重点。石墨烯增强复合材料领域的开发工作揭示了一些功能和结构特征,这些特征有望使其在广泛的应用中受益匪浅。人们对生产多级高性能,轻量但坚固的多功能石墨烯增强纤维增强聚合物(gFRP)复合材料感兴趣。尽管有许多报道表明通过将石墨烯纳米材料包含到基质中或将其集成到增强纤维成分中来提高材料的性能,但实际上只有少数基于石墨烯的产品已向市场过渡。这项工作的主要重点是结构性gFRP,并讨论了将石墨烯有效掺入这些系统的相应制造方法。这项工作的另一个重要方面是介绍最新结果,并强调所得gFRP材料的优异功能和结构特性,以期将来应用。制定清晰的石墨烯材料性能评估标准,改进现有材料和可扩展的制造技术,以及有关人类健康和环境安全的特定法规,是加速gFRP成功商业化的关键因素。

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