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Study on the deterioration process of a chromium-free conversion coating on AZ91D magnesium alloy in NaCl solution

机译:NaCl溶液中AZ91D镁合金上无铬转化膜的变质过程研究

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The morphology of a chromium-free conversion coating for AZ91D magnesium alloy was observed with an Atomic Force Microscopy. The results showed the uniform conversion coating has a relatively smooth appearance with shallow valleys. The EDX results indicated that the compositions of the coating were mainly compounds of Mg, Al, Mn, P, Ca and O. The XRD result showed that the coating contained amorphous materials and a small quantity of crystalline compound. The pitting product of the coating in NaCl water solution mainly composed of Mg, Cl, Mn, P, Ca and O. The corrosion behavior of the samples in NaCl solution was also studied by electrochemical impedance spectroscopy (EIS), which was characterized by one capacitive loop and one inductive loop. Based upon study on both a mathematical model for Faradic admittance of coating in NaCl solution and EIS, it could be considered that the inductive loop was caused by the adsorption of Cl anion and the appearance of pitting corrosion. A degradation mechanism of the coating in NaCl solution is set forth: dissolution velocity of the Cl- adsorption regions of the coating is higher than those non-adsorption regions, for Cl- anions are selective adsorption at some regions of coating surface. When the adsorption regions of coating layer are penetrated by dissolution, the pitting comes into being. The degradation mechanism of conversion coating and the mathematical model are consistent with the EIS results, polarization measurement results and coating's corrosion test results. (c) 2006 Elsevier B.V. All rights reserved.
机译:用原子力显微镜观察了AZ91D镁合金的无铬转化膜的形貌。结果表明,均匀转化涂层具有相对平滑的外观和浅谷。 EDX结果表明,该涂层的成分主要是Mg,Al,Mn,P,Ca和O的化合物。XRD结果表明该涂层含有非晶态材料和少量的结晶化合物。 NaCl水溶液中涂层的点蚀产物主要由Mg,Cl,Mn,P,Ca和O组成。还通过电化学阻抗谱(EIS)研究了样品在NaCl溶液中的腐蚀行为,其特点是电容回路和一个电感回路。基于对NaCl溶液中涂层的法拉第导纳和EIS的数学模型的研究,可以认为感应回路是由Cl阴离子的吸附和点蚀的出现引起的。提出了在NaCl溶液中涂层的降解机理:涂层的Cl-吸附区的溶解速度高于非吸附区,因为Cl-是在涂层表面某些区域的选择性吸附。当涂层的吸附区域通过溶解而渗透时,出现点蚀。转化膜的降解机理和数学模型与EIS结果,极化测量结果和涂层的腐蚀试验结果一致。 (c)2006 Elsevier B.V.保留所有权利。

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