Title of article
Predicting the Hall–Petch effect in fcc metals using non-local crystal plasticity
Author/Authors
William A. Counts، نويسنده , , Michael V. Braginsky، نويسنده , , Corbett C. Battaile، نويسنده , , Elizabeth A. Holm، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
21
From page
1243
To page
1263
Abstract
Many conventional continuum approaches to solid mechanics do not address the size sensitivity of deformation to microstructural features like grain boundaries, and are therefore unable to capture much of the experimentally observed behavior of polycrystal deformation. We propose a non-local crystal plasticity model, in which the geometrically necessary dislocation (GND) density is calculated using a non-local integral approach. The model is based on augmented FeFp kinematics, which account for the initial microstructure (primarily grain boundaries) present in the polycrystal. With the augmented kinematics, the initial GND and the evolving GND state are determined in a consistent manner. The expanded kinematics and the non-local crystal plasticity model are used to simulate the tensile behavior in copper polycrystals with different grain sizes ranging from 14 μm to 244 μm. The simulation results show a grain size dependence on the polycrystal’s yield strength, which are in good agreement with the experimental data.
Keywords
Crystal plasticity , Finite elements , Scale effects , Grain boundaries , Strengthening Mechanisms , Polycrystalline material
Journal title
International Journal of Plasticity
Serial Year
2008
Journal title
International Journal of Plasticity
Record number
1257568
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