环氧树脂
复合材料
材料科学
消防安全
工程类
土木工程
作者
Arvindh Sekar,Hermance Muller,Cédric Hervieu,Sithiprumnea Dul,Milijana Jović,Dambarudhar Parida,Sandro Lehner,Patrick Rupper,Edith Perret,Sabyasachi Gaan
标识
DOI:10.1016/j.cej.2025.165779
摘要
The closed-loop recycling of thermoset plastics remains a critical challenge, especially as demand grows for materials that combine high performance with fire safety. This study presents a new class of inherently flame-retardant epoxy thermosets (ETs) incorporating reactive polyphosphonates as co-monomers. The resulting amine-cured ETs achieve UL94 V-0 ratings at just 2.5 wt% phosphorus loading, alongside excellent mechanical and thermal performance (T g = 140–175 °C, tensile strength = 100–110 MPa, modulus = 3.8 GPa). Remarkably, these ETs enable repeated thermomechanical reprocessing, up to ten cycles, without significant loss of performance. When cured with acid anhydrides, the polyphosphonate-based ETs undergo complete chemical depolymerization via alcoholysis, in stark contrast to conventional amine-cured systems. This recyclability extends to carbon-fiber reinforced composites (CFRCs), allowing both carbon fiber recovery and matrix regeneration. These results highlight a promising route toward sustainable, high-performance thermosets with intrinsic flame retardancy and closed-loop recyclability.
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