Palmieri Barbara, Cilento Fabrizia, Amendola Eugenio, Valente Teodoro, Dello Iacono Stefania, Giordano Michele, Martone Alfonso
Institute of Polymers, Composite and Biomaterials (IPCB), National Research Council of Italy, 80055 Portici, Italy.
Agenzia Spaziale Italiana (ASI), Via del Politecnico snc, 00133 Roma, Italy.
Polymers (Basel). 2023 Aug 31;15(17):3611. doi: 10.3390/polym15173611.
The need to recycle carbon-fibre-reinforced composite polymers (CFRP) has grown significantly to reduce the environmental impact generated by their production. To meet this need, thermoreversible epoxy matrices have been developed in recent years. This study investigates the performance of an epoxy vitrimer made by introducing a metal catalyst (Zn) and its carbon fibre composites, focusing on the healing capability of the system. The dynamic crosslinking networks endow vitrimers with interesting rheological behaviour; the capability of the formulated resin (AV-5) has been assessed by creep tests. The analysis showed increased molecular mobility above a topology freezing temperature (T). However, the reinforcement phase inhibits the flow capability, reducing the flow. The fracture behaviour of CFRP made with the vitrimeric resin has been investigated by Mode I and Mode II tests and compared with the conventional system. The repairability of the vitrimeric CFRP has been investigated by attempting to recover the delaminated samples, which yielded unsatisfactory results. Moreover, the healing efficiency of the modified epoxy composites has been assessed using the vitrimer as an adhesive layer. The joints were able to recover about 84% of the lap shear strength of the pristine system.
为减少碳纤维增强复合聚合物(CFRP)生产所产生的环境影响,对其进行回收利用的需求显著增加。为满足这一需求,近年来已开发出热可逆环氧基体。本研究调查了通过引入金属催化剂(锌)制成的环氧类玻璃离聚物及其碳纤维复合材料的性能,重点关注该体系的自愈能力。动态交联网络赋予玻璃离聚物有趣的流变行为;通过蠕变试验评估了所配制树脂(AV - 5)的性能。分析表明,在拓扑冻结温度(T)以上分子流动性增加。然而,增强相抑制了流动能力,降低了流动性。通过I型和II型试验研究了用玻璃离聚物树脂制成的CFRP的断裂行为,并与传统体系进行了比较。通过尝试修复分层样品研究了玻璃离聚物CFRP的可修复性,结果不尽人意。此外,使用玻璃离聚物作为粘合剂层评估了改性环氧复合材料的愈合效率。接头能够恢复原始体系约84%的搭接剪切强度。