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Top coating of low-molecular weight polymer MALPB used for enhanced protection on anodized AZ31B Mg alloys

机译:低分子量聚合物MALPB的表面涂层用于增强对阳极氧化AZ31B镁合金的保护

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摘要

A protective composite coating on an AZ31B magnesium alloy was prepared by anodic oxidation to form an oxide layer, followed by single immersion in maleic anhydride-g-liquid polybutadiene (MALPB) solution to cover a polymer coating on top. As a low-molecular weight polymer with low viscosity, MALPB had a tendency to infiltrate into the pores and cracks in the anodic layer to fill the defects among oxides so that a compact layer could be formed after it was cured by its hardeners, as observed by scanning electron microscopy (SEM). This compact layer, which was composed of anodic oxides integrated with solidified MALPB, possessed thickness around 0.7 urn as detected by energy dispersive X-ray (EDX). The anodized, MALPB-coated AZ31B alloy exhibited enhancement in corrosion resistance superior to that separately coated by anodizing oxides or MALPB, as reflected by its much higher corrosion potentials (E_(Ccor)) and lower corrosion current density (i_(Corr)) in DC polarization tests. Based on electrochemical impedance spectroscopy (EIS) data, we conclude that the anticorrosive performance of the composite coating can be attributed to the barrier effects provided by different layers when the electrolyte passed through the MALPB layer, compact layer, and then the inner anodic layer before it reached the surface of Mg alloy, and that among them, the compact layer acted as a much more effective barrier to the electrolyte. The appearance of damaged areas on the composite coating surface after a much longer duration in a salt spray environment revealed that the life-span of the AZ31B Mg alloy could be greatly prolonged if the pores and cracks on the anodizing films were properly sealed by suitable polymers.
机译:AZ31B镁合金上的保护性复合涂层是通过阳极氧化制备的,以形成氧化层,然后将其浸入马来酸酐-g-液体聚丁二烯(MALPB)溶液中,以覆盖顶部的聚合物涂层。观察到,MALPB是一种低粘度的低分子量聚合物,倾向于渗透到阳极层的孔和裂缝中,以填充氧化物中的缺陷,因此在通过固化剂固化后可以形成致密层通过扫描电子显微镜(SEM)。该致密层由与固化的MALPB结合的阳极氧化物组成,通过能量色散X射线(EDX)检测,其厚度约为0.7微米。阳极电镀的MALPB涂层AZ31B合金的耐蚀性增强,优于阳极氧化氧化物或MALPB的单独涂层,这体现在其更高的腐蚀电位(E_(Ccor))和更低的腐蚀电流密度(i_(Corr))上。直流极化测试。基于电化学阻抗谱(EIS)数据,我们得出结论,当电解质先通过MALPB层,致密层然后通过内部阳极层之前,复合涂层的耐腐蚀性能可归因于不同层提供的阻挡作用。它到达镁合金的表面,并且其中的致密层对电解质起到了更有效的阻挡作用。在盐雾环境中经过更长的时间后,复合涂层表面的损坏区域的出现表明,如果用合适的聚合物适当地密封阳极氧化膜上的孔和裂纹,则可以大大延长AZ31B Mg合金的寿命。 。

著录项

  • 来源
    《JCT》 |2010年第6期|p.737-746|共10页
  • 作者单位

    Beijing Key Laboratory for Corrosion, Erosion and Surface Technology, Institute of Advanced Materials, University of Science and Technology Beijing, Beijing 100083, People's Republic of China;

    Beijing Key Laboratory for Corrosion, Erosion and Surface Technology, Institute of Advanced Materials, University of Science and Technology Beijing, Beijing 100083, People's Republic of China;

    Beijing Key Laboratory for Corrosion, Erosion and Surface Technology, Institute of Advanced Materials, University of Science and Technology Beijing, Beijing 100083, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anodizing; top coating; AX31B mg alloy; maleic anhydride-g-liquid polybutadiene; anticorrosion;

    机译:阳极氧化面漆AX31B镁合金;马来酸酐-g-液体聚丁二烯;防腐蚀;

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