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HRTEM study of the effect of deformation on the early precipitation behaviour in an AA6060 Al-Mg-Si alloy

机译:HRTEM研究变形对AA6060 Al-Mg-Si合金早期析出行为的影响

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The effect of 10% pre-ageing deformation on the early precipitation behaviour in an AA6060 Al-Mg-Si alloy aged 10 min at 190°C was investigated by high-resolution transmission electron microscopy (HRTEM) in ?100?Al projections. The precipitate nucleation was heterogeneous since all precipitates were found to grow on dislocation lines. The pre-ageing deformation suppresses growth of Gunier-Preston zones and β″ phase. The resulting precipitates are still largely coherent with the aluminium matrix. They appear with two main morphologies; one consists of independent, small cross-sections arising from needles with disordered β and B'structures. The other morphology is a much more continuous decoration where precipitates have elongated and conjoined cross-sections and where a particular precipitate phase could not be determined. All precipitates in this work were found to contain a common near-hexagonal sub-cell (SC) with projected bases a = b ≈ 0.4 nm. This strongly indicates that they are built over the same Si network, which recently has been demonstrated to exist in all precipitate intheAl-Mg-Si(-Cu)system. For the discrete morphology type the network has one hexagonal base vector parallelto or very near a ?510?Al direction. For the continuous type, one base vector falls along a ?100?Al direction. This orientation of the network is different from previous studies of ternary Al-Mg-Si alloys and must be a direct consequence of the deformation.
机译:通过高分辨率透射电子显微镜(HRTEM)在?100?Al投影中研究了10%的预时效变形对AA6060 Al-Mg-Si合金在190°C时效10分钟的早期析出行为的影响。沉淀物的成核是异质的,因为发现所有沉淀物都在位错线上生长。预时效变形抑制了Gunier-Preston区和β''相的生长。所得的沉淀物仍与铝基体充分粘结。它们以两种主要形态出现。其中一个由独立的小横截面组成,这些横截面由具有无序β和B'结构的针头产生。另一种形态是更加连续的装饰,其中沉淀物具有伸长和相连的横截面,并且无法确定特定的沉淀相。发现这项工作中的所有沉淀物都包含一个共同的近似六边形子电池(SC),其投影碱基a = b≈0.4 nm。这有力地表明它们建立在相同的Si网络上,最近已证明该网络存在于Al-Mg-Si(-Cu)系统的所有沉淀物中。对于离散形态类型,网络具有一个平行于或非常接近510 Al方向的六边形基本向量。对于连续类型,一个基本向量沿Δ100ΔAl方向落下。网络的这种取向不同于先前对三元铝镁硅合金的研究,并且必须是变形的直接结果。

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