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A better understanding of failure process of waterborne coating/metal interface evaluated by electrochemical impedance spectroscopy

机译:通过电化学阻抗光谱评估的水性涂层/金属界面的失效过程更好地理解

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摘要

Cathodic delamination-weakening or loss of adhesion between the coating and the metal-is one of the major failure processes of organic coatings. Generally, it is almost inevitable to introduce defects to the coating during processing and operation. In this work, the delamination process of coatings around defects and the corrosion in defective coated metals was elucidated using immersion and electrochemical impedance tests. Two types of coatings (styrene-acrylic coating and terpolymer coating) were compared. The effects of defect size, chloride ion concentration and resin type on cathodic delamination were investigated. A small defect may affect the metal corrosion. Increasing the chloride ion concentration can promote the corrosion of metal but may not accelerate the delamination of the coating. The resin type is the key factor in the failure process of the coating.
机译:涂层和金属之间的阴极分层 - 弱化或粘附丧失 - 是有机涂层的主要失效过程之一。 通常,在加工和操作期间将缺陷引入涂层几乎是不可避免的。 在这项工作中,使用浸渍和电化学阻抗试验阐明了缺陷周围的涂层的分层过程和缺陷涂覆的金属中的腐蚀。 比较了两种类型的涂层(苯乙烯 - 丙烯酸涂层和三元共聚物涂层)。 研究了缺陷尺寸,氯离子浓度和树脂类型对阴极分层的影响。 小缺陷可能会影响金属腐蚀。 增加氯离子浓度可以促进金属的腐蚀,但可能不会加速涂层的分层。 树脂类型是涂层失效过程中的关键因素。

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