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An investigation into resorcinol formaldehyde carbon aerogel/epoxy coatings: Exploring mechanical properties, ultraviolet stability, and corrosion resistance

机译:对间苯二酚甲醛碳气凝胶/环氧涂层的研究:探索机械性能,紫外稳定性和耐腐蚀性

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In the present study, carbon aerogels (CAs) are prepared through the pyrolysis of resorcinol-formaldehyde aerogel and are then used as reinforcement in epoxy resin (ER) for coating applications. In order to reduce the viscosity of ER and enhance the dispersion and wetting of CA particles in the epoxy matrix, a reactive diluent is used. ER coatings containing different contents of CAs were synthesized and analyzed in terms of mechanical, morphological, ultraviolet (UV) resistance, adhesion, and anticorrosion properties. Applying only 3 wt% of CAs could significantly improve the mechanical properties, impact strength, and the joint shear strength of the ER. The Fourier-transform infrared spectroscopy data before and after UV degradation were used for investigating the effect of CAs on UV stability; it was confirmed that CAs particles improved the UV resistance of the epoxy coatings. Moreover, the results of salt spray test and electro impedance spectroscopy proved that CAs enhanced the corrosion resistance of the epoxy coatings efficiently.
机译:在本研究中,通过热解释甲醛气凝胶的热解制备碳气凝胶(CAS),然后用作涂料应用的环氧树脂(ER)中的增强。为了降低ER的粘度并增强环氧基质中Ca颗粒的分散和润湿,使用反应性稀释剂。在机械,形态学,紫外(UV)电阻,粘附和防腐性方面,合成并分析含有不同CA含量的ER涂层。仅施加3wt%的CA可以显着提高ER的机械性能,冲击强度和关节剪切强度。 uV降解前后的傅里叶变换红外光谱数据用于研究CA对紫外线稳定性的影响;证实CAS颗粒改善了环氧涂层的紫外线抗性。此外,盐喷雾试验和电阻抗谱的结果证明CAS有效增强了环氧涂层的耐腐蚀性。

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