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Understanding the anticorrosive protective mechanisms of modified epoxy coatings with improved barrier active and self-healing functionalities: EIS and spectroscopic techniques

机译:了解具有改进的阻隔主动和自修复功能的改性环氧涂料的防腐保护机理:EIS和光谱技术

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摘要

The present investigation adopted long-term in-situ electrochemical and spectroscopic approaches to study the combined active, self-healing and passive protective mechanisms of a new class of innovative anti-corrosive coatings based on epoxy doped with clay nanotubes impregnated with active species for the protection of carbon steel in 3.5% NaCl solution. The suitability of the as-received clay nanotubes to encapsulate the active agents was confirmed by different spectroscopic measurements. Tube end stopper with Ferric ion and polymer encapsulation with chitosan cross-linked with glutaraldehyde were adopted to tunnel the release of the active agents loaded into the nanotubes. The improved passive barrier performances of the various innovative coatings were revealed by the electrochemical impedance spectroscopic, while their active feedback and self-healing abilities were revealed by the optical and spectroscopic techniques. The optical/spectroscopic techniques revealed the degree of pit formation at the steel/coating interface and the iron rust formation around the artificially marked defects, including the ability of the marked defects to self-heal over exposure times. Adhesion and impacts tests were adopted to compare the physical/mechanical properties of the various coatings. The results afforded insights into the effects of exposure time on the protective and failure behaviours of both the reference and modified coatings.
机译:本研究采用长期的原位电化学和光谱方法,研究了一种新型的新型防腐涂料的活性,自愈和被动保护相结合的机理,该新型防腐涂料基于环氧树脂,掺杂有活性物质的粘土纳米管。在3.5%NaCl溶液中保护碳钢。通过不同的光谱测量证实了所接收的粘土纳米管包封活性剂的适用性。采用具有铁离子的管端塞和通过戊二醛交联的脱乙酰壳多糖包封聚合物来引导加载到纳米管中的活性剂的释放。电化学阻抗谱显示了各种创新涂层的无源阻隔性能得到改善,而光学和光谱技术则揭示了它们的主动反馈和自愈能力。光学/光谱技术揭示了在钢/涂层界面处的凹坑形成的程度以及在人工标记的缺陷周围形成的铁锈,包括标记的缺陷在暴露时间内自愈的能力。采用粘合力和冲击力测试来比较各种涂层的物理/机械性能。结果提供了有关暴露时间对参考涂料和改性涂料的保护和失效行为的影响的见解。

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