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Microstructural Evolution in an Al-6061 Alloy Processed by High-Pressure Torsion and Rapid Annealing

机译:高压扭转和快速退火处理的Al-6061合金的组织演变

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The processing of bulk metals through the application of severe plastic deformation provides the opportunity for introducing significant grain refinement into bulk solids. In the present investigation, an aluminum alloy (Al-6061) was processed by high-pressure torsion (HPT) at room temperature under an applied pressure of 6.0 GPa up to a total of 5 turns. Detailed measurements after processing revealed the occurrence of continuous grain refinement and material strengthening with increasing imposed strain. The average grain size of the alloy was reduced from ~150 μm to a grain size in the range of -500 nm through processing by HPT. Although there was a difference in the average grain size of samples processed to different levels of imposed strain, careful inspection showed that the structures became similar after annealing at 250℃ for 5 min. This suggests that the additional grain refinement introduced at large amounts of deformations is less stable at high temperatures. The results of this investigation, including the distributions of the grain sizes after annealing, are consistent with the predictions of a model based on the occurrence of continuous recrystallization in aluminum alloys having fine grain structures, large fractions of high-angle grain boundaries and where there is a large amount of deformation.
机译:通过施加严重的塑性变形来处理散装金属,为将大量晶粒细化引入散装固体提供了机会。在本研究中,铝合金(Al-6061)在室温下于6.0 GPa的施加压力下进行高压扭力(HPT)加工,总共旋转5圈。加工后的详细测量表明,随着施加的应变的增加,晶粒不断细化和材料强化。通过HPT加工,合金的平均晶粒尺寸从〜150μm减小到-500 nm范围内。尽管在不同水平的应变作用下,样品的平均晶粒尺寸存在差异,但仔细检查后发现,在250℃退火5分钟后,组织变得相似。这表明在高温下以大量变形引入的额外晶粒细化效果不太稳定。该研究的结果(包括退火后晶粒尺寸的分布)与基于具有细晶粒结构,大比例高角度晶界的铝合金以及在何处存在的合金中发生连续重结晶的模型预测相一致。是大量的变形。

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