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Characterization of Intergranular Corrosion in AA 5xxx Al-Mg Alloys

机译:AA 5xxx Al-Mg合金中晶间腐蚀的表征

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摘要

Intergranular corrosion refers to a selective corrosion attack at the grain boundaries of polycrystalline materials. In engineering Al-Mg alloys of the AA 5xxx series it iscaused by the formation of chemically less noble beta-Al8Mg5 phases along the grain boundaries. The sensitivity of a material to intergranular corrosion can be assessed based on the mass losses in the so-called nitric acid mass loss test (NAMLT) according to ASTM G67. However, a detailed investigation of the underlying corrosion mechanisms requires that the beta phases are made directly visible in the microstructure by metallographic methods. In the present work, the NAMLT mass losses of three AA 5xxx alloys with different Mg contents are compared with the results from two different etching methods. On the one hand, the alloys are etched in diluted phosphoric acid, a substance routinely used to examine the grain boundary occupancy in AA 5xxx materials. On the other hand, a newer etching method using a dilute ammonium persulfate solution is tested which etches the beta-Al8Mg5 phases in the microstructure in a way that they can be examined at higher magnifications; even examinations in the scanning electron microscope are possible.
机译:晶间腐蚀是指多晶材料晶界的选择性腐蚀。在AA 5xxx系列的工程铝镁合金中,其原因是沿晶界形成了化学成分较低的β-Al8Mg5相。根据ASTM G67,可根据所谓硝酸质量损失试验(NAMLT)中的质量损失评估材料对晶间腐蚀的敏感性。然而,对潜在腐蚀机制的详细研究需要通过金相方法使β相在微观结构中直接可见。本文将三种不同镁含量的AA 5xxx合金的NAMLT质量损失与两种不同蚀刻方法的结果进行了比较。一方面,合金在稀释磷酸中蚀刻,这种物质通常用于检查AA 5xxx材料中的晶界占有率。另一方面,测试了一种使用过硫酸铵稀溶液的较新蚀刻方法,该方法可以在更高的放大率下对微观结构中的β-Al8Mg5相进行蚀刻;甚至可以在扫描电子显微镜中进行检查。

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  • 来源
    《Practical Metallography》 |2020年第8期|共24页
  • 作者单位

    Hydro Aluminium Rolled Prod GmbH Res &

    Dev Bonn POB 2468 D-53014 Bonn Germany;

    Hydro Aluminium Rolled Prod GmbH Res &

    Dev Bonn POB 2468 D-53014 Bonn Germany;

    Hydro Aluminium Rolled Prod GmbH Res &

    Dev Bonn POB 2468 D-53014 Bonn Germany;

    Hydro Aluminium Rolled Prod GmbH Res &

    Dev Bonn POB 2468 D-53014 Bonn Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 金属学(物理冶金);
  • 关键词

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