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基于通过可持续温和溶剂分解路线重复使用的碳纤维织物的高性能再生碳纤维增强复合材料。

High performance recycled CFRP composites based on reused carbon fabrics through sustainable mild solvolysis route.

作者信息

Ballout W, Sallem-Idrissi N, Sclavons M, Doneux C, Bailly C, Pardoen T, Van Velthem P

机构信息

Institute of Condensed Matter and Nanosciences - Bio & Soft Matter (IMCN/BSMA), UCLouvain, 1 Place Croix du Sud, box: L7.04.02, 1348, Louvain-la-Neuve, Belgium.

Institute of Mechanics, Materials and Civil Engineering, UCLouvain, Place Sainte Barbe 2, 1348, Louvain-La-Neuve, Belgium.

出版信息

Sci Rep. 2022 Apr 8;12(1):5928. doi: 10.1038/s41598-022-09932-0.

Abstract

A novel environmentally friendly recycling method is developed for large carbon-fibers reinforced-polymers composite panels whose efficiency is demonstrated through a proof-of-concept fabrication of a new composite part based on recycled fibers. The recycling process relies on formic acid as separation reagent at room temperature and atmospheric pressure with efficient recycling potential of the separating agent. Electron microscopy and thermal analysis indicate that the recycled fibers are covered by a thin layer of about 10wt.% of residual resin, alternating with few small particles, as compared to the smooth virgin fibers. The recycled composites show promising shear strength and compression after impact strength, with up to 93% retention of performance depending on the property as compared to the reference. The recycled carbon fibers can thus be reused for structural applications requiring moderate to high performances. The loss of properties is attributed to a lower adhesion between fresh epoxy resin and recycled carbon fibers due to the absence of sizing, partly compensated by a good interface between fresh and residual cured epoxy thanks to mechanical anchoring as well as chemical reactions. The room temperature and atmospheric pressure operating conditions combined to the recyclability of the forming acid contribute to the sustainability of the entire approach.

摘要

一种新型的环保回收方法被开发用于大型碳纤维增强聚合物复合板,通过基于回收纤维制造新的复合部件的概念验证,证明了该方法的有效性。回收过程依赖于甲酸作为分离试剂,在室温和大气压下进行,分离剂具有高效的回收潜力。电子显微镜和热分析表明,与光滑的原始纤维相比,回收纤维被一层约10wt.%的残余树脂薄层覆盖,夹杂着少量小颗粒。回收的复合材料显示出有前景的剪切强度和冲击后压缩强度,与参考材料相比,根据性能不同,性能保留率高达93%。因此,回收的碳纤维可重新用于需要中等到高性能的结构应用。性能损失归因于由于没有上浆,新鲜环氧树脂与回收碳纤维之间的粘附性较低,部分由于机械锚固以及化学反应,新鲜和残余固化环氧树脂之间良好的界面而得到补偿。室温和大气压的操作条件以及成型酸的可回收性有助于整个方法的可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcbf/8993918/746f61176a11/41598_2022_9932_Fig1_HTML.jpg

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