作者
Xiaotian Fang, Guozhen He, Michael Ruiz, Ce Zheng, Yanfei Wang, Zhongkai Li, Yuntian Zhu
发表日期
2019/12/1
期刊
Letters on Materials
卷号
9
期号
4s
页码范围
556-560
出版商
Letters on Materials
简介
Heterogeneous lamella structured Al-5083 with superior combinations of strength and ductility have been fabricated with different annealing conditions. Hetero-deformation induced (HDI) hardening is an important reason for the excellent combinations of strength and ductility and precipitation hardening is one important component of HDI hardening It has long been a research goal to obtain both high strength and ductility in structural materials. As the most important structural materials, metals and alloys are either strong or ductile, but seldom maintain both characteristics at the same time. After decades of attempts, extraordinary high strength has been achieved by involving nano-or ultrafine-grained structure. However, the ductility of these materials is relatively low. In the recent years, heterostructured materials have been demonstrated to possess superior combinations of strength and ductility, which are attributed to the hetero-deformation induced (HDI) strengthening and work hardening. The HDI hardening in previous studies is mainly caused by soft/hard domain boundaries. Here we report a heterogeneous lamella structure (HLS) in 5083 aluminum alloy fabricated by rolling and partial annealing. Superior combinations of strength and ductility have been achieved in the HLS Al-5083 through various annealing times and temperatures in this paper. Based on EBSD and TEM analysis, HDI hardening is an important reason for the excellent combination of strength and ductility. And soft/domain boundary hardening, and precipitation hardening are revealed as two important components of HDI hardening in Al-5083. These findings elucidate the …
引用总数
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