Influence of pre-rolling deformation on distribution characteristics of T1 precipitate in artificially aged Al–Cu–Li alloy

Shuwei Duan, Fuqiang Guo, Wenting Ma, Zhongli Liu, Xiaoyang Yi, Kenji Matsuda, Yue Li, Yong Zou
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Abstract

The predeformation prior to artificial aging plays an important role in enhancing the properties of Al–Cu–Li based alloys. This study focused on investigating the impact of a large amount of prerolling (20%) on the orientation variation and distribution characteristics of T1 precipitates in a rolled Al–Cu–Li alloy. The results revealed that T1 phases precipitated in the same orientation were not strictly parallel within a grain, a small angle existed between different phases in the same direction due to the orientation fluctuation of the matrix induced by prerolling. The misorientation degree of the T1 precipitates presented a slight expend tendency with increasing the aging time. Furthermore, the connection between this orientation distortion of the T1 phases and the tensile properties was discussed. Additionally, it was found that the T1 variants along different orientations were heterogeneously distributed, possibly due to the activation of different slip systems during the prerolling process and the variation in the number of nucleation sites among the nonparallel habit planes.
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轧制前变形对人工时效铝-铜-锂合金中 T1 沉淀分布特征的影响
人工时效前的预变形对提高铝-铜-锂基合金的性能起着重要作用。本研究主要探讨了大量预轧制(20%)对轧制铝-铜-锂合金中 T1 沉淀的取向变化和分布特征的影响。结果表明,由于预轧引起的基体取向波动,同方向析出的 T1 相在晶粒内并不是严格平行的,同方向的不同相之间存在一个小角度。随着老化时间的延长,T1析出物的取向错位程度呈轻微上升趋势。此外,还讨论了 T1 相的取向变形与拉伸性能之间的联系。此外,研究还发现,沿不同取向的 T1 变体分布不均,这可能是由于在预轧过程中激活了不同的滑移系统,以及非平行习性面之间成核点数量的变化所致。
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