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用于制备具有非凡抗撕裂性的柔性且可回收弹性体/碳纤维复合材料的可逆交联弹性体工程

Engineering of Reversibly Cross-Linked Elastomers Toward Flexible and Recyclable Elastomer/Carbon Fiber Composites with Extraordinary Tearing Resistance.

作者信息

Wang Xiaohan, Sun Junqi

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.

出版信息

Adv Mater. 2024 Aug;36(35):e2406252. doi: 10.1002/adma.202406252. Epub 2024 Jul 14.

DOI:10.1002/adma.202406252
PMID:39004888
Abstract

Carbon fiber (CF)-reinforced polymers (CFRPs) demonstrate potential for use in personal protective equipment. However, existing CFRPs are typically rigid, nonrecyclable, and lack of tearing resistance. In this study, flexible, recyclable, and tearing resistant polyurethane (PU)-CF composites are fabricated through complexation of reversibly cross-linked PU elastomer binders with CF fabrics. The PU-CF composites possess a high strength of 767 MPa and a record-high fracture energy of 2012 kJ m. The high performance of the PU-CF composites originates from the well-engineered PU elastomer binders that are obtained by cross-linking polytetrahydrofuran chains with in situ-formed nanodomains composed of hierarchical supramolecular interactions of hydrogen and coordination bonds. When subjected to tearing, the force concentrated on the damaged regions of the PU-CF composites can be effectively distributed to a wider area through the PU binders, leading to a significantly enhanced tearing resistance of the composites. The strong interfacial adhesion between PU binders and the CF fabrics enables the fracture of the CF in bundles, thereby significantly enhancing the strength and fracture energy of the composites. Because of the dynamic nature of the PU elastomer binders, the PU-CF composites can be recycled through the dissociation of the PU elastomer binders.

摘要

碳纤维(CF)增强聚合物(CFRPs)在个人防护装备中显示出应用潜力。然而,现有的CFRPs通常是刚性的、不可回收的,并且缺乏抗撕裂性。在本研究中,通过可逆交联的聚氨酯(PU)弹性体粘合剂与CF织物络合制备了柔性、可回收且抗撕裂的聚氨酯(PU)-CF复合材料。PU-CF复合材料具有767MPa的高强度和2012kJ m的创纪录高断裂能。PU-CF复合材料的高性能源于精心设计的PU弹性体粘合剂,该粘合剂通过将聚四氢呋喃链与由氢键和配位键的分级超分子相互作用组成的原位形成的纳米域交联而获得。当受到撕裂时,集中在PU-CF复合材料受损区域上的力可以通过PU粘合剂有效地分布到更广泛的区域,从而显著提高复合材料的抗撕裂性。PU粘合剂与CF织物之间的强界面粘附力使CF成束断裂,从而显著提高复合材料的强度和断裂能。由于PU弹性体粘合剂的动态性质,PU-CF复合材料可以通过PU弹性体粘合剂的解离进行回收。

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