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Activating dispersed strain bands in tensioned nanostructure layer for high ductility: The effects of microstructure inhomogeneity

Wang, Yanfei; Wei, Yueguang*; Zhao, Zhifu; Long, Hao; Lin, Zhongya; Guo, Fengjiao; He, Qiong; Huang, Chongxiang*; Zhu, Yuntian
SCIE
北京大学; 四川大学

摘要

How to suppress strain localization in tensioned nanograined layer and make it ductile? This remains a great challenge. Here we explore the effects of microstructure inhomogeneity on the plastic behavior of nanostructured layer. A nanostructured CrMnFeCoNi high entropy alloy layer supported by coarse-grained substrate (in gradient architecture) is taken as an example. In the tensile deformation, strain examinations find that the nanostructure layer experiences significant strain delocalization by activating dispersed stable strain bands (SBs) and promoting the deformation of non-strain banding zone. Finite element analysis reveals that it is the intra-layer microstructure inhomogeneity which enables dispersed SBs nucleation from the mechanical weak sites. The inter-layer microstructure inhomogeneity introduces extra shear constraints from the coarse-grained substrate, which stabilizes SBs and improves the stress of non-strain banding zone, thereby suppressing the early catastrophic strain localization. Importantly, the strong nanostructure layer indeed becomes ductile (enables further work hardening) due to the activation of hierarchical nanotwinning and dislocation activity.

关键词

Heterostructure Nanostructure Uniform elongation Strain delocalization Inter-zone constraint Microstructure inhomogeneity

出版信息

论文状态
公开发表
期刊名称
International Journal of Plasticity
发表日期
2022-2
卷
149
期
-
页码
103159
DOI
10.1016/j.ijplas.2021.103159

学科领域

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