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Stress corrosion cracking behavior of Nd :YAG laser-treated aluminum alloy 7075

机译:Nd:YAG激光处理铝合金7075的应力腐蚀开裂行为

摘要

Nd-YAG laser surface treatment was conducted on 7075-T651 aluminum alloy with the aim of improving the stress corrosion cracking resistance of the alloy. Laser surface treatment was performed under two different gas environments, air and nitrogen. After the laser treatment, coarse constituent particles were removed and fine cellular/dendritic structures had formed. In addition, for the N 2-treated specimen, an AlN phase was detected. The results of the stress corrosion test showed that after 30 days of immersion, the untreated specimen had been severely attacked by corrosion, with intergranular cracks having formed along the planar grain boundaries of the specimen. For the air-treated specimen, some relatively long stress corrosion cracks and a small number of relatively large corrosion pits were found. The cracks mainly followed the interdendritic boundaries; the fusion boundary was found to be acting as an arrestor to corrosion attacks. In contrast, only few short stress corrosion cracks appeared in the N 2-treated specimen, indicating an improvement in corrosion initiation resistance. The superior corrosion resistance was attributed to the formation of the AlN phase in the surface of the laser-melted layer, which is an electrical insulator. The electrochemical impedance measurements taken during the stress corrosion test showed that the film resistance of the laser-treated specimens was always higher than that of the untreated specimen, with the N 2-treated specimen showing the highest resistance.
机译:为了提高铝合金的抗应力腐蚀开裂性能,对7075-T651铝合金进行了Nd-YAG激光表面处理。激光表面处理是在两种不同的气体环境(空气和氮气)下进行的。激光处理后,去除了粗糙的成分颗粒,并形成了细小的细胞/树突结构。另外,对于经N 2处理的样品,检测到AlN相。应力腐蚀试验的结果表明,浸没30天后,未经处理的试样已受到腐蚀的严重侵蚀,沿试样的平面晶界形成了晶间裂纹。对于经过空气处理的样品,发现了一些相对较长的应力腐蚀裂纹和少量相对较大的腐蚀坑。裂纹主要遵循树突间边界。发现熔合边界是腐蚀腐蚀的避雷器。相反,在经N 2处理的样品中只有很少的短应力腐蚀裂纹出现,表明耐腐蚀引发性得到了改善。优异的耐腐蚀性归因于在作为电绝缘体的激光熔融层的表面中形成AlN相。在应力腐蚀试验中进行的电化学阻抗测量表明,经激光处理的样品的膜电阻始终高于未处理的样品,而经N 2处理的样品显示出最高的电阻。

著录项

  • 作者

    Yue TM; Yan LJ; Chan CP;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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