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Self-healing in epoxy thermoset polymer films triggered by UV light

机译:紫外线引发的环氧热固性聚合物薄膜的自修复

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摘要

Self-healing of damaged structures can occur in three processes: capsule-based healing, vascular healing and intrinsic healing of polymers. The latest concept has a tremendous potential to repair damaged polymers and composite structures. Until now self-healing of composite materials has been addressed using capsule based resin with an initiator that polymerises in the damaged region. In this study, self-healing behaviour of cured epoxy thermoset resins modified with an epoxy-functionalised photoresponsive azobenzene molecule has been addressed by UV light without the use of any resin capsules or other component that is not chemically joined with the composites. The study was executed by nanoindentation and atomic force microscopy (AFM). Artificially damaged thermoset films exhibited good self-healing behaviour under UV irradiation only. This effect is attributed to the intrinsic healing mechanism triggered by UV-induced trans→cis isomerization of the azobenzene chromophore which enables the damaged polymeric matrix to recover.
机译:受损结构的自我修复可以通过三个过程发生:基于胶囊的修复,血管修复和聚合物的固有修复。最新概念具有修复受损聚合物和复合结构的巨大潜力。迄今为止,已经解决了使用基于胶囊的树脂与引发剂在受损区域聚合的复合材料的自修复。在这项研究中,用环氧官能化的光响应性偶氮苯分子改性的固化环氧热固性树脂的自愈性能已通过紫外线得以解决,而无需使用任何未与复合物化学结合的树脂胶囊或其他成分。该研究是通过纳米压痕和原子力显微镜(AFM)进行的。人为损坏的热固性薄膜仅在紫外线照射下才会表现出良好的自愈性能。这种作用归因于紫外线诱导的偶氮苯生色团的反式→顺式异构化,从而使受损的聚合物基质得以恢复,从而引发了固有的修复机制。

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