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碳纤维增强分级复合材料综述:力学性能、制造工艺、结构应用及相关挑战

A review on carbon fiber-reinforced hierarchical composites: mechanical performance, manufacturing process, structural applications and allied challenges.

作者信息

Sayam Abdullah, Rahman A N M Masudur, Rahman Md Sakibur, Smriti Shamima Akter, Ahmed Faisal, Rabbi Md Fogla, Hossain Mohammad, Faruque Md Omar

机构信息

Department of Fabric Engineering, Faculty of Textile Engineering, Bangladesh University of Textiles (BUTEX), 92, Shaheed Tajuddin Ahmed Avenue, Tejgaon I/A, Dhaka, 1208 Bangladesh.

Department of Textile Engineering, Donghua University, Shanghai, People's Republic of China.

出版信息

Carbon Lett (Korean Carbon Soc). 2022;32(5):1173-1205. doi: 10.1007/s42823-022-00358-2. Epub 2022 Jun 7.

Abstract

The utilization of carbonaceous reinforcement-based polymer matrix composites in structural applications has become a hot topic in composite research. Although conventional carbon fiber-reinforced polymer composites (CFRPs) have revolutionized the composite industry by offering unparalleled features, they are often plagued with a weak interface and lack of toughness. However, the promising aspects of carbon fiber-based fiber hybrid composites and hierarchical composites can compensate for these setbacks. This review provides a meticulous landscape and recent progress of polymer matrix-based different carbonaceous (carbon fiber, carbon nanotube, graphene, and nanodiamond) fillers reinforced composites' mechanical properties. First, the mechanical performance of neat CFRP was exhaustively analyzed, attributing parameters were listed down, and CFRPs' mechanical performance barriers were clearly outlined. Here, short carbon fiber-reinforced thermoplastic composite was distinguished as a prospective material. Second, the strategic advantages of fiber hybrid composites over conventional CFRP were elucidated. Third, the mechanical performance of hierarchical composites based on carbon nanotube (1D), graphene (2D) and nanodiamond (0D) was expounded and evaluated against neat CFRP. Fourth, the review comprehensively discussed different fabrication methods, categorized them according to performance and suggested potential future directions. From here, the review sorted out three-dimensional printing (3DP) as the most futuristic fabrication method and thoroughly delivered its pros and cons in the context of the aforementioned carbonaceous materials. To conclude, the structural applications, current challenges and future prospects pertinent to these carbonaceous fillers reinforced composite materials were elaborated.

摘要

基于碳质增强体的聚合物基复合材料在结构应用中的利用已成为复合材料研究中的一个热门话题。尽管传统的碳纤维增强聚合物复合材料(CFRP)通过提供无与伦比的特性彻底改变了复合材料行业,但它们常常受到界面薄弱和韧性不足的困扰。然而,基于碳纤维的纤维混杂复合材料和分级复合材料的诸多优势可以弥补这些不足。本综述详细介绍了基于聚合物基体的不同碳质(碳纤维、碳纳米管、石墨烯和纳米金刚石)填料增强复合材料的力学性能及其最新进展。首先,详尽分析了纯CFRP的力学性能,列出了相关参数,并清晰地概述了CFRP力学性能的障碍。在此,短碳纤维增强热塑性复合材料被视为一种有前景的材料。其次,阐明了纤维混杂复合材料相对于传统CFRP的战略优势。第三,阐述并评估了基于碳纳米管(一维)、石墨烯(二维)和纳米金刚石(零维)的分级复合材料相对于纯CFRP的力学性能。第四,本综述全面讨论了不同的制造方法,根据性能对其进行了分类,并提出了潜在的未来发展方向。由此,本综述将三维打印(3DP)列为最具未来前景的制造方法,并在上述碳质材料的背景下详细阐述了其优缺点。总之,阐述了这些碳质填料增强复合材料的结构应用、当前挑战和未来前景。

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