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Preparation and characterization of anodic films on AZ31B Mg alloy formed in the silicate electrolytes with ethylene glycol oligomers as additives

机译:以乙二醇低聚物为添加剂的硅酸盐电解质中形成的AZ31B镁合金上阳极膜的制备与表征

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摘要

Oxide coatings are prepared on AZ31B Mg alloy in an environment-friendly electrolyte with additives by plasma electrolytic anodization, and the effect of ethylene glycol oligmers on the performances of the anodized film is investigated. Under a constant current density of 10 mA cm~(-2), the reaction overpotential of the silicate electrolytes with additives are found higher than that of the original electrolyte as measured by potential-time test. The EIS and DC polarization results reveal that the addition of PEG increases the impedance of the film and reduces its corrosion current density (I_(corr)) at least by one order of magnitude. The surface morphologies are more and more compact and homogeneous with the increase in EG numbers, while a rougher surface appeared again if the PEG4000 is used as observed by SEM. As detected by XRD, the anodic films are found mainly consist of MgO, MgSiO_3 and Mg_2SiO_4, and their relative amounts are related to the lengths of EGs, resulting in the differences in morphology and anticorrosion variations. Furthermore, the improvement in abrasive resistance of the anodic film formed in the electrolyte with PEG1000 may be attributed to its much more compact surface and the incorporation of ductile PEG chains among those oxides.
机译:通过等离子阳极氧化,在具有添加剂的环保电解质AZ31B Mg合金上制备氧化膜,并研究了乙二醇低聚物对阳极氧化膜性能的影响。在10 mA cm〜(-2)的恒定电流密度下,发现硅酸盐电解质与添加剂的反应过电势高于原始电解质的电势时间测试。 EIS和DC极化结果表明,添加PEG可以增加薄膜的阻抗,并降低其腐蚀电流密度(I_(corr))至少一个数量级。随着EG数的增加,表面形态变得越来越致密和均匀,而如果通过SEM观察到使用PEG4000,则表面再次出现更粗糙的表面。 X射线衍射检测发现,阳极膜主要由MgO,MgSiO_3和Mg_2SiO_4组成,它们的相对量与EG的长度有关,导致形貌的差异和防腐性能的变化。此外,用PEG1000在电解质中形成的阳极膜的耐磨性的改善可以归因于其更致密的表面和在这些氧化物中掺入可延展的PEG链。

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  • 来源
    《Applied Surface Science》 |2012年第22期|p.8985-8990|共6页
  • 作者单位

    Beijing Key Laboratory for Corrosion. Erosion and Surface Technology, Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

    Beijing Key Laboratory for Corrosion. Erosion and Surface Technology, Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

    Beijing Key Laboratory for Corrosion. Erosion and Surface Technology, Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

    Beijing Key Laboratory for Corrosion. Erosion and Surface Technology, Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China;

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

    Mg alloy; anodic film; PEG; corrosion protection;

    机译:镁合金阳极膜PEG;防腐蚀保护;

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