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Ab initio and thermodynamic modelling of alloying effects on activity of sacrificial aluminium anodes

机译:合金化对牺牲铝阳极活性的影响的从头算和热力学模型

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摘要

This work summarizes the experimental literature to date on Al-alloy sacrificial anodes and shows that the presence of Sn as an alloying element in solid solution form consistently debases the alloy corrosion potential. This study then assesses the lattice expander theory, which states that lattice-expanding dopants can be used to increase Sn solubility in Al and thereby reduce passivation. The thermodynamic effects on Sn solubility of lattice expanders (Ga, Mg, Zr, In and Bi) are predicted with ab-initio methods. Our results support lattice expander theory although we demonstrate that Sn solubility can decrease by alloying with even large dopants if they form compounds with Sn.
机译:这项工作总结了迄今为止在铝合金牺牲阳极上的实验文献,并表明以固溶体形式存在的锡作为合金元素始终会降低合金的腐蚀潜能。然后,该研究评估了晶格扩展理论,该理论指出晶格扩展掺杂剂可用于增加Sn在Al中的溶解度,从而减少钝化。从头开始预测了晶格膨胀剂(Ga,Mg,Zr,In和Bi)对Sn溶解度的热力学影响。我们的结果支持晶格扩展理论,尽管我们证明,如果与大型掺杂剂形成Sn化合物,则Sn的溶解度可能会因与大掺杂剂合金化而降低。

著录项

  • 来源
    《Corrosion science》 |2011年第5期|p.1724-1731|共8页
  • 作者单位

    Materials Science Program, University of Wisconsin-Madison, 1509, University Avenue, Madison, WI53706, USA;

    CompuTherm LLC, 437 S. Yellowstone Dr., Suite 217, Madison, Wl 53719, USA;

    Materials Science Program, University of Wisconsin-Madison, 1509, University Avenue, Madison, WI53706, USA, Department of Materials Science and Engineering, University of Wisconsin-Madison, 1509, University Avenue, Madison, WI 53706, USA;

    AO. Smith Corporate Technology Centre, 12100, West Park Place, Milwaukee, WI 53224, USA;

    Materials Science Program, University of Wisconsin-Madison, 1509, University Avenue, Madison, WI53706, USA, Department of Materials Science and Engineering, University of Wisconsin-Madison, 1509, University Avenue, Madison, WI 53706, USA;

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

    A. Aluminium; A. Tin; A. Alloy; B. Modelling studies; C. Cathodic protection; C. Thermodynamic diagrams;

    机译:A.铝;A。锡合金;B。建模研究;C.阴极保护;C.热力学图;

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