Amendola Eugenio, Palmieri Barbara, Dello Iacono Stefania, Martone Alfonso
Institute of Polymers, Composites and Biomaterials (IPCB), National Research Council, P.le Enrico Fermi 1, 80055 Portici, Italy.
Institute of Applied Sciences and Intelligent Systems (ISASI), National Research Council, Via P. Castellino 111, 80131 Napoli, Italy.
Materials (Basel). 2023 Feb 21;16(5):1775. doi: 10.3390/ma16051775.
Polymeric coatings represent a well-established protection system that provides a barrier between a metallic substrate and the environment. The development of a smart organic coating for the protection of metallic structures in marine and offshore applications is a challenge. In the present study, we investigated the use of self-healing epoxy as an organic coating suitable for metallic substrates. The self-healing epoxy was obtained by mixing Diels-Alder (D-A) adducts with a commercial diglycidyl ether of bisphenol-A (DGEBA) monomer. The resin recovery feature was assessed through morphological observation, spectroscopic analysis, and mechanical and nanoindentation tests. Barrier properties and anti-corrosion performance were evaluated through electrochemical impedance spectroscopy (EIS). The film on a metallic substrate was scratched and subsequently repaired using proper thermal treatment. The morphological and structural analysis confirmed that the coating restored its pristine properties. In the EIS analysis, the repaired coating exhibited diffusive properties similar to the pristine material, with a diffusivity coefficient of 1.6 × 10 cm/s (undamaged system 3.1 × 10 cm/s), confirming the restoration of the polymeric structure. These results reveal that a good morphological and mechanical recovery was achieved, suggesting very promising applications in the field of corrosion-resistant protective coatings and adhesives.
聚合物涂层是一种成熟的防护体系,可在金属基体与环境之间形成一道屏障。开发用于海洋和近海应用中金属结构防护的智能有机涂层是一项挑战。在本研究中,我们研究了将自愈合环氧树脂用作适用于金属基体的有机涂层。通过将狄尔斯-阿尔德(D-A)加合物与双酚A的商业二缩水甘油醚(DGEBA)单体混合来获得自愈合环氧树脂。通过形态观察、光谱分析以及力学和纳米压痕测试来评估树脂的修复特性。通过电化学阻抗谱(EIS)评估阻隔性能和防腐性能。对金属基体上的涂层进行划痕,随后通过适当的热处理进行修复。形态和结构分析证实涂层恢复了其原始性能。在EIS分析中,修复后的涂层表现出与原始材料相似的扩散特性,扩散系数为1.6×10 cm/s(未受损体系为3.1×10 cm/s),证实了聚合物结构的恢复。这些结果表明实现了良好的形态和力学恢复,这表明在耐腐蚀防护涂层和粘合剂领域具有非常广阔的应用前景。