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钨中异常滑移的起源

Origin of anomalous slip in tungsten.

作者信息

Marichal C, Srivastava K, Weygand D, Van Petegem S, Grolimund D, Gumbsch P, Van Swygenhoven H

机构信息

Materials Science and Simulation, NUM/ASQ, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland and Neutrons and X-rays for Mechanics of Materials, IMX, École Polytechnique Fédérale de Lausanne, CH-1012 Lausanne, Switzerland.

Institute for Applied Materials IAM, Karlsruhe Institute of Technology, 76131 Karlsruhe, Germany.

出版信息

Phys Rev Lett. 2014 Jul 11;113(2):025501. doi: 10.1103/PhysRevLett.113.025501. Epub 2014 Jul 7.

Abstract

Low-temperature deformation of body-centered cubic metals shows a significant amount of plastic slip on planes with low shear stresses, a phenomenon called anomalous slip. Despite progress in atomistic modeling of the consequences of complex stress states on dislocation mobility, the phenomenon of anomalous slip remained elusive. Using in situ Laue microdiffraction and discrete dislocation dynamics in micrometer sized tungsten single crystals, we demonstrate the occurrence of significant anomalous slip. It occurs as a consequence of cross kinks, topological configurations generated by prior dislocation interactions. This clearly identifies anomalous slip as a multidislocation process and not a property of isolated dislocations. The cross-kink mechanism also explains the ambiguous reporting of anomalous slip traces in the past and directs us to ways of including anomalous slip in continuum crystal plasticity formulations.

摘要

体心立方金属的低温变形在具有低剪切应力的平面上显示出大量的塑性滑移,这一现象被称为异常滑移。尽管在复杂应力状态对位错迁移率影响的原子尺度建模方面取得了进展,但异常滑移现象仍然难以捉摸。通过在微米尺寸的钨单晶中使用原位劳厄微衍射和离散位错动力学,我们证明了显著异常滑移的发生。它是由交叉扭折(一种由先前位错相互作用产生的拓扑构型)导致的。这清楚地将异常滑移确定为一种多晶位错过程,而不是孤立位错的特性。交叉扭折机制还解释了过去关于异常滑移痕迹的模糊报道,并为我们将异常滑移纳入连续体晶体塑性公式指明了方向。

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