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Deep Drawing and Anodizing Quality Improvement in AA3003-O Alloy by Optimization of Homogenization, Rolling and Annealing

机译:通过均质化,轧制和退火工艺优化AA3003-O合金的深冲和阳极氧化质量

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An investigative study was carried out to understand the effect of homogenization, hot and cold rolling as well as annealing cycle on improvement of deep drawing and anodizing quality of thin AA3003-O sheets. Poor drawa-bility of the sheets was attributed to a coarse average grain size, high cube texture intensity and low average normal anisotropy (R). Amount of Al-TiB grain refiner was increased in the casting stage, leading to a significant reduction in as-cast grain size. The 2-stage homogenization cycle was optimized to maximize the conversion of (5-phase (A16(Mn,Fe)) to 7-phase (Al(Mn,Fe)Si), their number density, the area fractions of the precipitates and the electrical conductivity. The degree of hot rolling was increased to reduce the cube texture intensity in annealed circles. The annealing cycle was optimized to obtain the best combination of grain size, mechanical properties (UTS and total elongation), R and average planar anisotropy, AR. AA3003-O circles successfully passed the deep drawing test without any tearing or deformation, up to a draw ratio of 2. Also the presence of the α-phase led to an improvement in the anodizing quality of the final product.
机译:进行了一项调查研究,以了解均质化,热轧和冷轧以及退火周期对改善AA3003-O薄板的深冲和阳极氧化质量的影响。片材的可拉伸性差归因于平均粒度粗大,立方织构强度高和平均法向各向异性(R)低。在铸造阶段增加了Al-TiB晶粒细化剂的量,导致铸态晶粒尺寸显着减小。优化了两个阶段的均质化循环,以最大程度地提高(5相(A16(Mn,Fe))到7相(Al(Mn,Fe)Si)的转化,其数密度,沉淀物的面积分数和提高热轧程度以降低退火圆角中的立方织构强度,优化退火周期以获得晶粒尺寸,机械性能(UTS和总伸长率),R和平均平面各向异性的最佳组合, AR。AA3003-O圆弧成功通过了深拉伸试验,没有任何撕裂或变形,拉伸比高达2。而且,α相的存在还改善了最终产品的阳极氧化质量。

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