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Development of aeronautical epoxy nanocomposites having an integrated selfhealing ability

机译:含有综合自我热爱能力的航空环氧纳米复合材料的研制

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摘要

Functionalized multi-wall carbon nanotubes (MWCNTs) have been embedded in a rubber-toughened epoxy formulation in order to explore the possibility to impart an auto-repair function to the epoxy matrix. The nanofiller has been covalently functionalized with hydrogen bonding moieties able to act as donor and acceptor of hydrogen bondings. Healing efficiencies have been evaluated for nano charged epoxy formulations at a loading of 0.5% wt/wt of functionalized MWCNTs bearing barbituric acid and thymine-based ligands. For both the performed functionalizations, a self-healing efficiency higher than 50% has been found. Dynamic Mechanical Analysis (DMA) highlights that the inclusion of nanofiller increases the storage moduli. Furthermore, DMA analysis evidences the presence of a phase characterized by a greater mobility of the epoxy chains, which promotes the activation of self-healing mechanisms.
机译:官能化的多壁碳纳米管(MWCNT)已嵌入橡胶增韧的环氧制剂中,以探讨赋予环氧基质自动修复功能的可能性。纳米填充物已与能够作为供体和氢键合的受体的氢键组共价官能化。已经评估了含有钙质酸和基于胸腺嘧啶的配体的0.5%wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt / wt /碱基配体的官能化Mwcnts的愈合效率。对于所执行的功能化,已经找到了高于50%的自愈效率。动态机械分析(DMA)突出显示纳米填充物的包含增加了储存模量。此外,DMA分析证明了一种相位,其特征在于环氧链的更大迁移率,这促进了自我愈合机制的激活。

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