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通过狄尔斯-阿尔德溶剂分解过程同时回收碳增强复合材料中的基体和纤维

Simultaneous Recovery of Matrix and Fiber in Carbon Reinforced Composites through a Diels-Alder Solvolysis Process.

作者信息

Fortunato Giovanni, Anghileri Luca, Griffini Gianmarco, Turri Stefano

机构信息

Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Piazza Leonardo da Vinci 32, 20133 Milano, Italy.

出版信息

Polymers (Basel). 2019 Jun 6;11(6):1007. doi: 10.3390/polym11061007.

Abstract

Efficient and comprehensive recycling of fiber-reinforced thermosets is particularly challenging, since the irreversible degradation of the matrix component is necessary in order to separate the fiber component in high purity. In this work, a new approach to fully recyclable thermoset composites is presented, based on the thermal reversibility of an epoxy-based polymer network, crosslinked through Diels-Alder (DA) chemistry. Carbon fiber composites, fabricated by compression molding, were efficiently recycled through a simple solvolysis procedure in common solvents, under mild conditions, with no catalysts. Specifically, the purity of reclaimed fibers, assessed by thermogravimetric analysis and scanning electron microscopy, was very high (>95%) and allowed successful reprocessing into second generation composites. Moreover, the dissolved matrix residues were directly employed to prepare smart, thermally healable coatings. Overall, DA chemistry has been shown to provide a convenient strategy towards circular economy of thermoset composites.

摘要

纤维增强热固性材料的高效全面回收极具挑战性,因为为了高纯度分离纤维成分,基体成分的不可逆降解是必要的。在这项工作中,基于通过狄尔斯-阿尔德(DA)化学交联的环氧基聚合物网络的热可逆性,提出了一种用于完全可回收热固性复合材料的新方法。通过压缩成型制备的碳纤维复合材料,在温和条件下,无需催化剂,通过在常用溶剂中的简单溶剂分解程序即可高效回收。具体而言,通过热重分析和扫描电子显微镜评估,回收纤维的纯度非常高(>95%),并能够成功再加工成第二代复合材料。此外,溶解的基体残留物被直接用于制备智能、可热修复的涂层。总体而言,DA化学已被证明为热固性复合材料的循环经济提供了一种便捷策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee7b/6631297/1ce222b50f55/polymers-11-01007-sch001.jpg

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