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Influence of Zn and Sn on the Precipitation Behavior of New Al–Mg–Si Alloys

机译:锌和锡对新型Al-Mg-Si合金析出行为的影响

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摘要

In this study, we demonstrate how Zn and Sn influence hardening behavior and cluster formation during pre-aging and paint bake treatment in Al–Mg–Si alloys via hardness tests, tensile tests, and atom probe tomography. Compared to the standard alloy, the Sn-modified variant shows reduced cluster size and yield strength in the pre-aged condition. During the paint bake cycle, the clusters start to grow very fast and the alloy exhibits the highest strength increment. This behavior is attributed to the high vacancy binding energy of Sn. Adding Zn increases the formation kinetics and the size of Mg–Si co-clusters, generating higher yield strength values for both the pre-aged and paint baked conditions. Simultaneous addition of Zn and Sn creates a synergistic effect and produces an alloy that exhibits moderate strength (and good formability) in the pre-aged condition and accelerated hardening behavior during the paint bake cycle.
机译:在这项研究中,我们通过硬度测试,拉伸测试和原子探针层析成像技术证明了Zn和Sn在Al-Mg-Si合金的预时效和烤漆处理过程中如何影响硬化行为和团簇形成。与标准合金相比,Sn改性变体在时效状态下显示出减小的团簇尺寸和屈服强度。在烤漆周期中,团簇开始非常快地生长,并且合金表现出最高的强度增量。此行为归因于Sn的高空位结合能。添加锌会增加形成动力学和Mg-Si共聚体的尺寸,从而在预时效和烤漆条件下产生更高的屈服强度值。锌和锡的同时添加产生协同作用,并产生一种合金,该合金在预时效条件下表现出中等强度(和良好的可成形性),并在烤漆循环中表现出加速的硬化行为。

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