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首页> 外文期刊>Polymers & Polymer Composites >Preparation and Characterization of Self-healing Polymeric Materials with Microencapsulated Epoxy and Imidazoline Derivatives Curing Agent
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Preparation and Characterization of Self-healing Polymeric Materials with Microencapsulated Epoxy and Imidazoline Derivatives Curing Agent

机译:微囊化环氧树脂和咪唑啉衍生物固化剂自修复聚合物的制备与表征

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摘要

Binary self-healing system consisting of epoxy-containing microcapsules and latent curing agent based on anionic polymerization was investigated. When cracks propagated in the composites, the embedded microcapsules would be damaged and the epoxy healing agent would be released. The latent curing agent used in this study can be well dispersed in epoxy matrix during composites manufacturing, and hence activate the released epoxy wherever it is. As a result, self-healing of the cracked sites is successfully achieved through curing of the released epoxy healing agent. This paper also investigated the preparation and performance of microcapsules synthesized by situ polymerization. The mechanism of anionic chain polymerization between epoxy and curing agent was investigated. On the basis of this work, self-healing ability of the epoxy filled with the healing system was evaluated. It was found that the distribution of microcapsules and latent curing agent greatly influences the healing efficiency but not the stoichiometric composition, and the optimal weight ratio of microcapsules and curing agent 2MZ-AZINE are 15 wt.% and 2 wt.%, offering a ~83% healing efficiency.
机译:研究了由含环氧的微胶囊和潜在的基于阴离子聚合的固化剂组成的二元自修复体系。当裂缝在复合材料中扩散时,嵌入的微胶囊将被破坏,环氧固化剂将被释放。本研究中使用的潜在固化剂可以在复合材料制造过程中很好地分散在环氧基质中,因此无论其在何处都能活化释放的环氧。结果,通过固化释放的环氧愈合剂成功地实现了裂纹部位的自我修复。本文还研究了原位聚合合成微胶囊的制备和性能。研究了环氧树脂与固化剂之间的阴离子链聚合机理。基于这项工作,评估了填充有愈合系统的环氧树脂的自愈能力。发现微胶囊和潜在固化剂的分布极大地影响了愈合效率,但对化学计量组成没有影响,并且微胶囊和固化剂2MZ-AZINE的最佳重量比为15重量%和2重量%,提供了〜 83%的治愈效率。

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