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Effect of Processing Steps on the Mechanical Properties and Surface Appearance of 6063 Aluminium Extruded Products

机译:加工步骤对6063铝挤型材力学性能和表面外观的影响

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6063 aluminum anodized extrusions may exhibit a common surface defect known as streaking, characterized by the formation of narrow bands with a surface gloss different from the surrounding material. The origin of this banding lies in the differential surface topography produced after etching during the anodizing stage, shown to be connected to certain microstructural characteristics. The present study has attempted to determine the origin of these defects and measure the mechanical properties in these zones, properties which were either barely acceptable or did not meet the specification’s requirements. Quantitative metallography and mechanical testing, both tensile and microhardness, were used for materials assessment at the different steps of the process of manufacturing 6063 anodized extrusions. The results of this research show that nonequilibrium solidification rates during billet casting could lead to the formation of coarse eutectic Mg2Si particles which have a deleterious effect on both mechanical properties and surface appearance in the anodized condition. However, differences in the size and density of the coarse Mg2Si particles have been found to exist in the streak profile compared to the surrounding zones. The study revealed the importance of these particles in explaining the origin of the marginal or sub-marginal properties and anodizing surface defects found.
机译:6063铝阳极氧化挤压件可能会出现常见的表面缺陷,称为条纹,其特征是形成窄带,其表面光泽与周围材料不同。该条带的起源在于在阳极氧化阶段中在蚀刻之后产生的差异表面形貌,这被证明与某些微结构特征有关。本研究试图确定这些缺陷的根源,并测量这些区域的机械性能,这些性能几乎不能接受或不满足规范要求。在制造6063阳极氧化型材的不同步骤中,使用了抗拉强度和显微硬度的定量金相学和机械测试来进行材料评估。研究结果表明,钢坯铸造过程中不平衡的凝固速率可能导致形成粗大的共晶Mg 2 Si颗粒,这对阳极氧化条件下的机械性能和表面外观均具有不利影响。然而,与周围区域相比,条纹轮廓中存在着粗大的Mg 2 Si颗粒的尺寸和密度差异。研究揭示了这些颗粒在解释边缘或亚边缘性质的起源以及阳极氧化发现的表面缺陷方面的重要性。

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