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Early-stage Precipitation Phenomena and Composition-dependent Hardening in Al-Mg-Si-(Cu) Alloys

机译:Al-Mg-Si-(Cu)合金的早期析出现象和成分依赖性硬化

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Al-Mg-Si-(Cu), i.e. AA6xxx, alloys are widely used light alloys which can be effectively strengthened through precipitation hardening. The final microstructure, and thus properties, of these alloys after common artificial aging treatments are largely determined by the composition-dependent nano-scale clustering and precipitation that occur during the earliest stage of aging. Therefore, multi-length scale analysis of the earliest-stage of precipitation can provide critical knowledge in understanding the basis for the microstructural evolution during aging and attaining the desired microstructures and properties. Here, we investigate the effect of alloy composition on the evolution of early-stage clusters and precipitates during aging at 180°C using high resolution transmission electron microscopy. The results map a sequential evolution of clusters with an FCC structure but different morphology/orientation characteristics. GP-zones with structures other than FCC, also form in the early stages of aging. The composition-dependent kinetics of β" phase precipitation and hardening behavior are discussed in light of the results from differential scanning calorimetry experiments, microhardness measurements, and conventional transmission electron microscopy.
机译:Al-Mg-Si-(Cu)合金,即Aa6xxx,是广泛使用的轻合金,可以通过沉淀硬化有效地增强。在普通的人工时效处理之后,这些合金的最终微观结构以及性能,在很大程度上取决于在时效最早阶段发生的与组成有关的纳米级簇和析出。因此,对降水最早阶段的多尺度分析可以为理解老化过程中的微观结构演变的基础并获得所需的微观结构和特性提供重要的知识。在这里,我们使用高分辨率透射电子显微镜研究合金成分对在180°C时效时早期团簇和析出物的演化的影响。结果映射了具有FCC结构但形态/方向特征不同的簇的顺序演化。具有FCC以外的结构的GP区域也会在老化的早期阶段形成。根据差示扫描量热法实验,显微硬度测量和常规透射电子显微镜的结果,讨论了β”相沉淀和硬化行为的成分依赖性动力学。

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