首页> 外文会议>Annual Conference of the Australasian Corrosion Association >SMART ANTI-CORROSIVE SELF-HEALING COATINGS USING HALLOYSITE NANOTUBES AS HOST FOR ENTRAPMENT OF CORROSION INHIBITORS
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SMART ANTI-CORROSIVE SELF-HEALING COATINGS USING HALLOYSITE NANOTUBES AS HOST FOR ENTRAPMENT OF CORROSION INHIBITORS

机译:使用Halloysite Nanotubes作为腐蚀抑制剂的宿主使用Holloysite Nanotubes的智能防腐蚀自愈性涂料

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An attempt was made to develop thin film self-healing coatings doped with halloysite nanotubes as host to entrap corrosion inhibitor (benzotriazole); that has an ability to release in a controlled way. The halloysite nanotubes are naturally available alumino-silicate hollow cylinders having 15 nm lumen diameter and 0.5-1.0 micron length. The corrosion inhibitors were loaded into the hollow lumens of halloysite (in acetone medium), which enables higher loading and sustainable release of inhibitor, due to its high aspect ratio. The inhibitor-loaded halloysite nanotubes were doped in the epoxy-silane coating at different loading levels. The ability of these nanotubes to release the corrosion inhibitors as and when required suppressed the anodic activity, thereby preventing the coating from further damage, and restricting the corrosion process. The smart self-healing anticorrosion performance of the epoxy-silane coating loaded with varying amount of halloysite entrapped benzotriazole was investigated on the mild steel substrate by direct exposure to corrosive media. The kinetics of the corrosion protection of the coating at the coating defect was analyzed by scanning vibrating electrode technique (SVET) and electrochemical impedance spectroscopy (EIS). The results confirmed the considerable improvement in the corrosion resistance due to the release of inhibitor from the doped halloysite.
机译:已尝试开发掺杂有高岭土纳米管作为宿主截留腐蚀抑制剂(苯并三唑)薄膜自愈涂料;有以可控的方式释放的能力。埃洛石纳米管是天然具有15nm的内腔直径和0.5-1.0微米长度可用铝硅酸盐的中空圆柱体。所述腐蚀抑制剂装入埃洛石的中空内腔(在丙酮中介质),这使得较高的负荷和抑制剂的可持续释放,由于它的高宽比。抑制剂加载高岭土纳米管在不同负载水平下的环氧基的硅烷涂层进行掺杂。这些纳米管的释放腐蚀抑制剂如的能力,并且需要抑制阳极活性,从而防止进一步的损害的涂层,并且限制腐蚀过程时。的环氧基的硅烷涂层的智能自愈性能防腐装载有不同的多水高岭土夹带苯并三唑量通过直接暴露于腐蚀介质中的低碳钢基片上进行了研究。在涂层缺陷的涂层的腐蚀保护的动力学通过扫描振动电极技术(SVET)和电化学阻抗谱(EIS)分析。其结果,确认在耐腐蚀性的显着改善,由于抑制剂的从掺杂多水高岭土的释放。

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