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Low-Cycle Fatigue Behavior of an Al-Mg-Si Alloy with and without a Small Addition of Sc

机译:添加和不添加少量Sc的Al-Mg-Si合金的低循环疲劳行为

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Low-cycle fatigue behavior of a wrought Al-0.8wt%Mg-0.7wt%Si alloy with and without 0.27wt%Sc has been investigated at room temperature under constant plastic-strain amplitudes. After peak-aging treatments, both the alloys had fine lath-shaped β' precipitates. In the Sc-containing alloy, spherical Al3Sc precipitates of about 11 nm in diameter were co-existed. The alloy with Sc exhibited cyclic hardening to saturation, while the alloy without Sc showed clear cyclic softening after initial hardening. Transmission electron microscopy observation revealed that slip band structures were developed in the Sc-free alloy. Within the slip bands, shearing of the β' precipitates by moving dislocations was often observed. The cyclic softening in the alloy without Sc can then be explained by a loss of precipitation strengthening effect through the precipitation destruction within strongly-strained slip bands. In the Sc-bearing alloy, owing to the existence of non-shearable Al3Sc precipitates, dislocations were uniformly distributed, resulting in the absence of the cyclic softening.
机译:在室温和恒定塑性应变振幅下,研究了含和不含0.27wt%Sc的Al-0.8wt%Mg-0.7wt%Si变形Al-0.8wt%Mg-0.7wt%Si合金的低周疲劳行为。经过峰值时效处理后,两种合金均具有细条状的β'析出物。在含Sc合金中,共存在直径约11 nm的球形Al3Sc析出物。含Sc的合金表现出循环硬化至饱和,而不含Sc的合金在初始硬化后表现出明显的循环软化。透射电子显微镜观察表明,在无Sc合金中形成了滑带结构。在滑移带中,经常观察到由于移动位错而对β'沉淀物产生的剪切作用。不含Sc的合金中的循环软化可以用强应变滑移带中由于析出破坏引起的析出强化作用损失来解释。在含Sc的合金中,由于存在不可剪切的Al3Sc析出物,因此位错均匀地分布,从而导致没有循环软化。

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