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首页> 外文期刊>Electrochimica Acta >Electrochemical studies of the inhibition of the cathodic delamination of organically coated galvanised steel by thin conversion films
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Electrochemical studies of the inhibition of the cathodic delamination of organically coated galvanised steel by thin conversion films

机译:薄转化膜抑制有机涂层镀锌钢板阴极分层的电化学研究

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摘要

Scanning Kelvin Probe (SKP) measurements of thin amorphous conversion film coated galvanised steel in combination with current density-potential curves and electrochemical impedance spectroscopy (EIS) were performed with the aim to improve the understanding of electrode potentials at the coating/metal interface and their influence on corrosive de-adhesion. The thin hybrid conversion films contained Zn-phosphates, titanates and also complexing organic compounds and led to an inhibition of the cathodic oxygen reduction and anodic zinc dissolution. In the polymer coated area the conversion film leads to a cathodic shift of the potential as measured by means of the SKP. This cathodic potential shift is explained by the substitution of the n-semiconducting Zn-oxide with an insulating inorganic layer. When the SKP detects the potential of freely corroding iron at a defect, where no protective coating layer is, the interfacial potential for the conversion film coated zinc layer is more negative than the defect potential. This leads to a diminished driving force for an oxygen reduction induced delamination process which is of relevance for the understanding of cut-edge corrosion.
机译:结合电流密度-电势曲线和电化学阻抗谱(EIS)进行了无定形转化膜涂层镀锌钢的扫描开尔文探针(SKP)测量,目的是增进对涂层/金属界面处的电极电势及其特性的了解对腐蚀性脱附的影响。杂化转换薄膜很薄,含有磷酸锌,钛酸盐和有机化合物,并抑制了阴极氧还原和阳极锌溶解。在聚合物涂覆的区域中,转化膜导致电势的阴极移位,如通过SKP测量的。通过用绝缘的无机层代替正半导电的Zn-氧化物来解释这种阴极电势漂移。当SKP检测到在没有保护涂层的缺陷处自由腐蚀铁的电势时,转化膜涂覆锌层的界面电势比缺陷电势更负。这导致用于氧还原引起的分层过程的驱动力减小,这与理解尖端腐蚀有关。

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