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Effect of Initial Microstructure on Surface Appearance of Anodized Aluminum Extrusions

机译:初始微观结构对阳极氧化铝挤压件表面外观的影响

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摘要

Surface defects such as streaks are often present on anodized extrusions of 6xxx series alloys. Microstructural examination and extrusion trials were conducted to investigate the microstructural effect on the surface appearance and the formation of streak defects. It was found that the formation of an inhomogeneous distribution of grain boundary grooves is a critical factor for the formation of die streaks on anodized aluminum extrusions. This is influenced by various microstructural features. Fe-rich intermetallic particles reduced the difference in severity of grain boundary grooves on the same extrusion surface through their effect on other microstructure features, reducing the tendency for streaking. Also, grain size was found not to be a direct cause for the formation of grain boundary grooves, but it does influence the distribution and amount of grooves. Furthermore, variation of grain orientations caused the formation of grain etching steps, which influenced the morphology of grain boundary grooves, but these effects were not significant in the formation of the streak defects. However, Mg2Si precipitates influenced the difference in dissolution rates between grain interiors and grain boundaries during etching, dramatically influencing the formation and severity of grain boundary grooves. Therefore, it is important to reduce any inhomogeneous distribution of precipitates on the surface of extrusions to prevent die streaking and improve the surface appearance of the anodized product.
机译:在6xxx系列合金的阳极氧化型材上经常会出现诸如条纹之类的表面缺陷。进行了显微组织检查和挤压试验,以研究显微组织对表面外观和条纹缺陷形成的影响。已经发现,晶界沟槽的不均匀分布的形成是在阳极氧化铝挤压件上形成模头条纹的关键因素。这受各种微结构特征的影响。富铁金属间颗粒通过影响其他微结构特征,减少了同一挤压表面上晶界槽严重程度的差异,从而减少了划痕的趋势。另外,发现晶粒尺寸不是形成晶界沟槽的直接原因,但是它确实影响沟槽的分布和数量。此外,晶粒取向的变化引起晶粒蚀刻步骤的形成,这影响了晶界沟槽的形态,但是这些效果在条纹缺陷的形成中并不显着。然而,Mg2 Si的析出影响了刻蚀过程中晶粒内部和晶界之间溶解速率的差异,从而极大地影响了晶界沟槽的形成和严重程度。因此,重要的是减少挤出物表面上沉淀物的任何不均匀分布,以防止模头条纹并改善阳极氧化产品的表面外观。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第13期|3264-3275|共12页
  • 作者单位

    Materials Engineering ARC CoE for Design in Light Metals University of Queensland St Lucia QLD 4072 Australia;

    Rio Tinto Alcan Pacific Technology Centre Thomastown VIC 3074 Australia;

    Rio Tinto Alcan Pacific Technology Centre Thomastown VIC 3074 Australia;

    Materials Engineering ARC CoE for Design in Light Metals University of Queensland St Lucia QLD 4072 Australia;

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