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Multiply fully recyclable carbon fibre reinforced heat-resistant covalent thermosetting advanced composites

机译:多种完全可回收利用的碳纤维增强耐热共价热固性先进复合材料

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摘要

Nondestructive retrieval of expensive carbon fibres (CFs) from CF-reinforced thermosetting advanced composites widely applied in high-tech fields has remained inaccessible as the harsh conditions required to recycle high-performance resin matrices unavoidably damage the structure and properties of CFs. Degradable thermosetting resins with stable covalent structures offer a potential solution to this conflict. Here we design a new synthesis scheme and prepare a recyclable CF-reinforced poly(hexahydrotriazine) resin matrix advanced composite. The multiple recycling experiments and characterization data establish that this composite demonstrates performance comparable to those of its commercial counterparts, and more importantly, it realizes multiple intact recoveries of CFs and near-total recycling of the principal raw materials through gentle depolymerization in certain dilute acid solution. To our best knowledge, this study demonstrates for the first time a feasible and environment-friendly preparation-recycle-regeneration strategy for multiple CF-recycling from CF-reinforced advanced composites.
机译:从CF增强的热固性先进复合材料中无损地回收昂贵的碳纤维(CF)一直是不可及的,因为回收高性能树脂基质所需的苛刻条件不可避免地会损坏CF的结构和性能。具有稳定共价结构的可降解热固性树脂为解决这种冲突提供了潜在的解决方案。在这里,我们设计了一种新的合成方案,并制备了可回收的CF增强的聚(六氢三嗪)树脂基高级复合材料。多次回收利用实验和表征数据表明,该复合材料的性能与其商业同类产品相当,而且更重要的是,它通过在某些稀酸溶液中进行轻度解聚,实现了CF的多次完整回收和主要原料的近乎全部回收。 。据我们所知,本研究首次证明了从CF增强高级复合材料中进行多次CF回收的可行且环境友好的制备-回收-再生策略。

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