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Electrochemical study on corrosion inhibition effect of Mannich-modified phenolic resin coating on galvanized steel

机译:曼尼希改性酚醛树脂涂层对镀锌钢的缓蚀效果的电化学研究

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The mechanism of corrosion inhibition of Mannich-modified phenolic resin coating which is one of the alternatives to chromate conversion coating on the electrogalvanized steel sheet was investigated by cross-section analysis and electrochemical measurements of the coating film. The 200°C cured coating film which has good corrosion inhibition has the higher charge transfer resistance (Rct) and the higher film resistance (Rf) calculated by electrochemical impedance measurement than the 80 °C cured coating film. The increase of these resistances is due to decrease of water absorption property of the film caused by crosslinking reaction. Namely the film resistance is enhanced by reduction of ionic conductivity of the film, and the charge transfer resistance is enhanced by reduction of the supply of the water containing dissolved oxygen to interface between the film and substrate. The phosphoric acid added to coating solution forms an insoluble zinc phosphate coating layer at the coating / material interface. The zinc phosphate coating layer, which is formed in close contact with the complex surface shape of the substrate by chemical interaction with the substrate surface by chemical interaction with the material surface, enhances the barrier effect to obstruct the contact of substrate with the water containing dissolved oxygen. Consequently the corrosion inhibition of the coating film is excellent. On the other hand, the 80°C cured coating film without phosphoric acid, which has no chemical interaction with the substrate, has some voids (defects) at film /substrate interface and its corrosion inhibition is inferior.
机译:通过对电镀锌钢板的截面分析和电化学测量,研究了曼尼希改性酚醛树脂涂层(铬酸盐转化涂层的替代品之一)在电镀锌钢板上的缓蚀机理。与80 °C固化涂膜相比,具有良好缓蚀性能的200°C固化涂膜具有更高的电荷转移电阻(Rct)和更高的电化学阻抗测量表(Rf)。这些电阻的增加是由于交联反应引起的薄膜吸水性能的降低。即,通过降低薄膜的离子电导率来增强薄膜电阻,通过减少薄膜和衬底之间界面的含有溶解氧的水的供应来增强电荷转移电阻。添加到涂层溶液中的磷酸在涂层/材料界面处形成不溶性磷酸锌涂层。磷酸锌涂层是通过与基材表面的化学相互作用与基材表面的化学相互作用而与基材复杂表面形状紧密接触而形成的,增强了阻隔作用,阻碍了基材与含溶解氧水的接触。因此,涂层膜的缓蚀性能非常好。另一方面,不含磷酸的80°C固化涂膜,与基材没有化学作用,在膜/基材界面处存在一些空隙(缺陷),其缓蚀性能较差。

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