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首页> 外文期刊>Journal of Materials Engineering and Performance >Scratch Cell Test: A Simple, Cost Effective Screening Tool to Evaluate Self-Healing in Anti-Corrosion Coatings
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Scratch Cell Test: A Simple, Cost Effective Screening Tool to Evaluate Self-Healing in Anti-Corrosion Coatings

机译:划痕电池测试:一种简单,具有成本效益的筛查工具,用于评估防腐蚀涂料的自愈性

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A quick and simple scratch cell set up to evaluate the self-healing of an hybrid sol-gel (ormosil) coating was fabricated. This methacrylate-based anti-corrosion coating was applied on the aerospace aluminium alloy AA2024-T3, and cured at room temperature. This technique of evaluation requires minimum instrumentation. The inhibitors cerium nitrate, benzotriazole and 8-hydroxy quinoline (8-HQ) were used in the study. The self-healing ability of the inhibitors decreased in the following order: 8-HQ, BTZ and Ce. 8-HQ showed the highest self-healing ability and was comparable to the commercial hexavalent chromium conversion coating-Alodine. Spectroscopic analysis of the electrolyte and EDX of the coatings indicated the movement of the inhibitor from the coating to the site of damage, thereby effecting self-healing. It was observed that an increased inhibitor concentration in the coatings did not accelerate the healing process. Inhibitor release was slower in the coatings doped with inhibitor-loaded nano-containers, when compared to inhibitor-spiked coatings. This property of controlled release is desirable in self-healing coatings. Electro impedance studies further confirmed self-healing efficiency of the coatings. The scratch cell study reported here is the first of its kind with the ormosil under study on AA2024-T3 aluminium alloy. The results are encouraging and warranty a quick and simple qualitative screening of the self-healing potential of the inhibitors with minimum instrumentation.
机译:制造了一种快速简单的刮擦池,用于评估混合溶胶-凝胶(ormosil)涂层的自修复。将该甲基丙烯酸酯类防腐涂料涂布在航空铝合金AA2024-T3上,在室温下进行固化。这种评估技术需要最少的仪器。研究中使用了硝酸铈,苯并三唑和8-羟基喹啉(8-HQ)抑制剂。抑制剂的自愈能力按以下顺序降低:8-HQ,BTZ和Ce。 8-HQ具有最高的自愈能力,可与商业六价铬转化涂层-Alodine媲美。涂层的电解质和EDX的光谱分析表明,抑制剂从涂层到损坏部位的移动,从而实现了自我修复。观察到涂层中抑制剂浓度的增加不会加速愈合过程。与掺有抑制剂的涂料相比,掺有抑制剂的纳米容器所掺杂的涂料的抑制剂释放较慢。控释的这种性质在自修复涂层中是理想的。电阻抗研究进一步证实了涂层的自修复效率。此处报道的刮擦电池研究是针对orosil的此类研究中的首次,该研究针对的是Aa2024-T3铝合金。结果令人鼓舞,并保证以最少的仪器对抑制剂的自我修复潜力进行快速,简单的定性筛选。

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