期刊论文详细信息
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING 卷:387
Effects of non-glide stresses on the plastic flow of single and polycrystals of molybdenum
Article; Proceedings Paper
Vitek, V ; Mrovec, A ; Gröger, R ; Bassani, JL ; Racherla, V ; Yin, L
关键词: Peierls stress;    Schmid law;    non-glide stress;    yield criterion;    multiple slip;   
DOI  :  10.1016/j.msea.2004.04.066
来源: Elsevier
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【 摘 要 】

The Schmid law, which has been ubiquitously utilized in large-scale continuum computations, asserts that only the shear stress acting in the slip plane in the slip direction controls the plastic deformation. This rule is accurate for fcc metals but it does not apply in bee metals owing to the spacial spreading of the core of screw dislocations that control their plastic deformation. In this paper we present resulsts of atomic-level simulations of the effect of externally applied stresses on 1/2[111] screw dislocations in molybdenum. We concentrate on the effect of other components of the applied stress tensor than the Schmid stress in the slip plane ( 10 1). These are shear stresses parallel to the Burgers vector in other {110} planes of the [111] zone as well as shear stresses perpendicular to the Burgers vector acting in I I 101 planes. We thus identify three distinct non-glide shear stresses that affect the glide of 1/2 < 111 > screw dislocations and formulate single crystal yield criteria that include the effects of these stress components. This forms a basis for multislip yield criteria and flow relations for continuum analyses. Using this approach we demonstrate that the effects of non-glide stresses that originate at the level of individual dislocations have significant influence on plastic yielding of polycrystals. (C) 2004 Elsevier B.V. All rights reserved.

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