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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >The coating delamination mitigation of epoxy coatings by inhibiting the hydrogen evolution reaction
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The coating delamination mitigation of epoxy coatings by inhibiting the hydrogen evolution reaction

机译:通过抑制氢进化反应来涂覆环氧涂层的涂层分层缓解

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摘要

The mitigation of coating delamination is one of the important challenges for epoxy coatings under the cathodic protection. Herein we report the possibility to mitigate the coating delamination of epoxy coatings by inhibiting the hydrogen evolution reaction in the presence of thioureas. The wire beam electrode method, electrochemical impedance spectroscopy and traditional delamination test were employed to evaluate the mitigation efficiency in this work. Results show that in the absence of thioureas, the delamination rate increases significantly once the cathodic protection potential is more negative than hydrogen evolution potential, suggesting that hydrogen evolution reaction plays an important role in the coating delamination. Fortunately, the coating delamination is remarkably mitigated by adding thioureas since the hydrogen evolution reaction is suppressed. WBE results show that when delamination commences, the electrodes at the defect region act as anodes, while the electrodes around the defect region act as cathodes. In the presence of thioureas the delamination area is much less than that in the absence of thioureas. Therefore, the coating delamination of epoxy coatings under the cathodic protection could be successfully suppressed through inhibiting the hydrogen evolution reaction. The finding of this work could offer a new insight to reduce the cathodic delamination rate in both theoretical research and practical application engineering applications.
机译:涂层分层的缓解是阴极保护下环氧涂层的重要挑战之一。在此,我们报告了通过抑制硫脲存在的氢进化反应来减轻环氧涂层的涂层分层。电线光束电极方法,电化学阻抗光谱和传统分层试验用于评估这项工作的缓解效率。结果表明,在没有硫脲的情况下,一旦阴极保护电位比氢气进化电位更负,分层率就会显着增加,表明氢进化反应在涂层分层中起重要作用。幸运的是,通过添加硫脲来显着减轻涂层分层,因为抑制了氢进化反应。结果表明,当分层开始时,缺陷区域处的电极充当阳极,而缺陷区域周围的电极充当阴极。在硫脲的存在下,分层区域远小于没有硫酸的少。因此,通过抑制氢进化反应,可以成功地抑制在阴极保护下的环氧涂层的涂层分层。这项工作的发现可以提供新的洞察,以降低理论研究和实际应用工程应用中的阴极分层率。

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