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Composite film formed on magnesium alloy AZ31 by chemical conversion from molybdate/phosphate/fluorinate aqueous solution toward corrosion protection

机译:通过从钼酸盐/磷酸盐/氟化物水溶液向腐蚀防护层的化学转化,在镁合金AZ31上形成复合膜

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摘要

Anticorrosive molybdate films composed mainly of Mg(OH)_2, MoO_2, MoO_3, and MgF_2 were formed on magnesium alloy AZ31 by chemical conversion. The film had relatively compact surfaces and a thickness of approximately 800nm. The XPS studies revealed that the film contained Mg, Al, Mo, O, P, S, and F elements. The corrosion resistant performances of the films were investigated by electrochemical measurements. The potentiodynamic polarization curves showed that anodic current densities and corrosion potential of the Mo coated AZ31 were lower and more positive than those of bare AZ31. The EIS measurement and appropriate equivalent circuit models revealed that the corrosion resistance was improved.
机译:通过化学转化在镁合金AZ31上形成了主要由Mg(OH)_2,MoO_2,MoO_3和MgF_2组成的耐腐蚀钼酸盐膜。该膜具有相对致密的表面和约800nm的厚度。 XPS研究表明,该薄膜含有Mg,Al,Mo,O,P,S和F元素。通过电化学测量研究了膜的耐腐蚀性能。电位动力学极化曲线表明,涂Mo的AZ31的阳极电流密度和腐蚀电位比裸AZ31的低,并且正。 EIS测量和适当的等效电路模型表明,耐蚀性得到了改善。

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