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镁中形变孪晶的原子重排主导机制。

Atomic shuffling dominated mechanism for deformation twinning in magnesium.

作者信息

Li B, Ma E

机构信息

Department of Materials Science and Engineering and Center for Advanced Metallic and Ceramic Systems, Johns Hopkins University, Baltimore, Maryland 21218, USA.

出版信息

Phys Rev Lett. 2009 Jul 17;103(3):035503. doi: 10.1103/PhysRevLett.103.035503.

Abstract

Deformation twinning is often mediated by partial dislocation activities at the twin boundary. Using molecular dynamics simulations, we have uncovered a new mechanism for the most commonly observed {1012}<101 1> deformation twinning in Mg and other hexagonal close-packed metals. Here the twin growth involves no definable dislocations at the twin boundary, and the twin orientational relationship can be established by local atomic shuffling, directly constructing the twin lattice from the parent lattice.

摘要

形变孪晶通常由孪晶界处的部分位错活动介导。通过分子动力学模拟,我们发现了一种新机制,用于解释在镁及其他六方密排金属中最常见的{1012}<101 1>形变孪晶。在此,孪晶生长在孪晶界处不涉及可定义的位错,并且孪晶取向关系可通过局部原子重排来建立,直接从母晶格构建孪晶晶格。

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