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Self-healing epoxy nanocomposite coatings based on dual-encapsulation of nano-carbon hollow spheres with film-forming resin and curing agent

机译:基于成膜树脂和固化剂对纳米碳空心球的双重包封的自修复环氧纳米复合涂料

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摘要

The ability of an active protective organic coating to restore its protection functionality in case of a coating defect is of pivotal importance to ensure durable performance under demanding corrosive conditions. In this paper, a self-healing epoxy system is fabricated by separate encapsulation of epoxy and polyamine in carbon hollow spheres (CHSs) and the autonomous healing performance of the system applied on mild steel is investigated. CHSs were synthesized via a silica templating method using carbonization of polysaccharide shells formed on the surface of silica templates. Consequently, epoxy and polyamine were loaded in separate capsules by dispersion of CHSs into the dilute solutions of epoxy/acetone and polyamine/acetone respectively, under vacuum conditions. The synthesized CHSs were characterized before and after the silica removal using field emission scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM). The CHSs loaded with the film forming agents were assessed using thermogravimetric analysis (TGA) and Fourier transform infrared (FTIR) spectroscopy. Furthermore, the protective and self-healing properties of the coatings fabricated were studied using electrochemical impedance spectroscopy (EIS), scanning vibrating electrode technique (SVET) and salt spray testing. The results showed that scribe defects in epoxy coatings with 10 wt % epoxy and polyamine capsules were healed effectively upon efficient release and subsequent recombination of the epoxy and poly amine agents reforming a protective layer at the damaged region.
机译:活性保护性有机涂层在出现涂层缺陷的情况下恢复其保护功能的能力,对于确保在苛刻的腐蚀条件下的持久性能至关重要。本文通过将环氧树脂和多胺分别封装在碳空心球(CHSs)中来制造自修复环氧体系,并研究了该体系在低碳钢上的自主修复性能。 CHS通过二氧化硅模板法使用碳化在二氧化硅模板表面上形成的多糖壳合成。因此,在真空条件下,通过将CHS分散到环氧/丙酮和聚胺/丙酮的稀溶液中,将环氧和聚胺分别装入单独的胶囊中。使用场发射扫描电子显微镜(FE-SEM)和透射电子显微镜(TEM)对合成的CHS进行了二氧化硅去除前后的表征。使用热重分析(TGA)和傅里叶变换红外(FTIR)光谱评估了负载有成膜剂的CHS。此外,使用电化学阻抗谱(EIS),扫描振动电极技术(SVET)和盐雾测试研究了所制备涂层的保护性和自修复性能。结果表明,在有效释放并随后重新组合环氧和多胺试剂并在受损区域重新形成保护层后,具有10 wt%环氧和多胺胶囊的环氧涂料中的划痕缺陷可得到有效修复。

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