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In situ investigation of corrosion localised at the buried interface between metal and conducting polymer based composite coatings

机译:原位研究腐蚀在金属和导电聚合物基复合涂层之间的埋入界面中的分布

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摘要

Conducting polymers are controversially discussed for application in corrosion protection. In our earlier work we presented a hypothesis for explaining why sometimes very good performance is observed and sometimes fast and disastrous coating break-down, especially in the presence of defects in the coating. By avoiding continuous macroscopic networks of conducting polymer in composite coatings the latter can be prevented, opening up the application of conducting polymers for secure performance in intelligent corrosion protection. In this paper we add further proof. However, at the interface between coating and metal, corrosion induced by galvanic coupling between conducting polymer and the metal still remains a problem, even in the absence of defects in the coating. Now we found that for some metals this corrosion at the buried interface can be studied in situ by Scanning Kelvin Probe microscopy, providing the means to better develop strategies for counter acting this problem.
机译:有争议的讨论了导电聚合物在防腐蚀中的应用。在我们的早期工作中,我们提出了一个假设,以解释为什么有时观察到非常好的性能,有时观察到快速而灾难性的涂层破裂,尤其是在涂层中存在缺陷的情况下。通过避免复合涂层中导电聚合物的连续宏观网络,可以防止后者,从而为确保智能防腐性能中的安全性能开辟了导电聚合物的应用领域。在本文中,我们添加了进一步的证明。然而,在涂层和金属之间的界面处,即使在涂层中不存在缺陷的情况下,由导电聚合物和金属之间的电流耦合引起的腐蚀仍然是一个问题。现在,我们发现对于某些金属,可以通过扫描开尔文探针显微镜原位研究在埋入界面处的腐蚀,从而为更好地制定解决该问题的策略提供了手段。

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