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金属材料中由缺陷孪晶界控制的分层孪晶

Hierarchical twinning governed by defective twin boundary in metallic materials.

作者信息

Zhu Qi, Huang Qishan, Tian Yanzhong, Zhao Shuchun, Chen Yingbin, Cao Guang, Song Kexing, Zhou Yanjun, Yang Wei, Zhang Ze, An Xianghai, Zhou Haofei, Wang Jiangwei

机构信息

Center of Electron Microscopy and State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, P. R. China.

Center for X-Mechanics, Department of Engineering Mechanics, Zhejiang University, Hangzhou 310027, P. R. China.

出版信息

Sci Adv. 2022 May 20;8(20):eabn8299. doi: 10.1126/sciadv.abn8299.

Abstract

Dense networks of deformation twins endow metals and alloys with unprecedented mechanical properties. However, the formation mechanism of these hierarchical twin structures remains under debate, especially their relations with the imperfect nature of twin boundaries (TBs). Here, we investigate the intrinsic deformability of defective TBs in face-centered cubic metallic materials, where the inherent kinks on a set of primary TBs are demonstrated to facilitate the formation of secondary and hierarchical nanotwins. This defect-driven hierarchical twinning propensity is critically dependent on the kink height, which proves to be generally applicable in a variety of metals and alloys with low stacking fault energies. As a geometric extreme, a fivefold twin can be constructed via this self-activated hierarchical twinning mechanism. These findings differ from the conventional twinning mechanisms, enriching our understanding of twinning-mediated plasticity in metallic materials.

摘要

密集的形变孪晶网络赋予金属和合金前所未有的力学性能。然而,这些层级孪晶结构的形成机制仍存在争议,尤其是它们与孪晶界(TBs)不完美性质的关系。在此,我们研究了面心立方金属材料中有缺陷的TBs的内在可变形性,其中一组主TBs上的固有扭结被证明有助于次级和层级纳米孪晶的形成。这种由缺陷驱动的层级孪晶倾向严重依赖于扭结高度,事实证明这在各种具有低堆垛层错能的金属和合金中普遍适用。作为一种几何极限,通过这种自激活的层级孪晶机制可以构建出五次孪晶。这些发现不同于传统的孪晶机制,丰富了我们对金属材料中孪晶介导塑性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30e5/9122314/4607884c0885/sciadv.abn8299-f1.jpg

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