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孪晶辅助的晶界迁移率动态调整

Twinning-assisted dynamic adjustment of grain boundary mobility.

作者信息

Huang Qishan, Zhu Qi, Chen Yingbin, Gong Mingyu, Li Jixue, Zhang Ze, Yang Wei, Wang Jian, Zhou Haofei, Wang Jiangwei

机构信息

Center for X-Mechanics and State Key Laboratory of Fluid Power and Mechatronic Systems, Department of Engineering Mechanics, Zhejiang University, 310027, Hangzhou, China.

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

出版信息

Nat Commun. 2021 Nov 18;12(1):6695. doi: 10.1038/s41467-021-27002-3.

Abstract

Grain boundary (GB) plasticity dominates the mechanical behaviours of nanocrystalline materials. Under mechanical loading, GB configuration and its local deformation geometry change dynamically with the deformation; the dynamic variation of GB deformability, however, remains largely elusive, especially regarding its relation with the frequently-observed GB-associated deformation twins in nanocrystalline materials. Attention here is focused on the GB dynamics in metallic nanocrystals, by means of well-designed in situ nanomechanical testing integrated with molecular dynamics simulations. GBs with low mobility are found to dynamically adjust their configurations and local deformation geometries via crystallographic twinning, which instantly changes the GB dynamics and enhances the GB mobility. This self-adjust twin-assisted GB dynamics is found common in a wide range of face-centred cubic nanocrystalline metals under different deformation conditions. These findings enrich our understanding of GB-mediated plasticity, especially the dynamic behaviour of GBs, and bear practical implication for developing high performance nanocrystalline materials through interface engineering.

摘要

晶界(GB)塑性主导着纳米晶材料的力学行为。在机械载荷作用下,晶界构型及其局部变形几何形状会随着变形而动态变化;然而,晶界可变形性的动态变化在很大程度上仍不为人所知,尤其是关于其与纳米晶材料中经常观察到的与晶界相关的变形孪晶之间的关系。这里通过精心设计的原位纳米力学测试与分子动力学模拟相结合的方法,关注金属纳米晶体中的晶界动力学。发现低迁移率的晶界通过晶体孪晶动态调整其构型和局部变形几何形状,这会立即改变晶界动力学并提高晶界迁移率。这种自调整孪晶辅助的晶界动力学在不同变形条件下的多种面心立方纳米晶金属中普遍存在。这些发现丰富了我们对晶界介导的塑性的理解,特别是晶界的动态行为,并对通过界面工程开发高性能纳米晶材料具有实际意义。

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