Experimental and Self-Consistent Modeling Study of De-twinning in a Twinning-Induced Plasticity Steel

被引:0
|
作者
Ahmed A. Saleh
Wei Wen
Elena V. Pereloma
Scott J. McCormack
Carlos N. Tomé
Azdiar A. Gazder
机构
[1] University of Wollongong,School of Mechanical, Materials, Mechatronic and Biomedical Engineering
[2] Los Alamos National Laboratory,Materials Science and Technology Division
[3] Electron Microscopy Centre,undefined
[4] University of Wollongong,undefined
来源
JOM | 2019年 / 71卷
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摘要
The effect of compression–tension loading on the microstructure evolution in a fully annealed Fe–24Mn–3Al–2Si–1Ni–0.06C twinning-induced plasticity steel has been investigated. Electron back-scattering diffraction was used to track a region of interest at true strains of 0 (initial), − 0.09 (after forward compression loading), and 0.04 (after reverse tension loading). All deformation twins detected after forward compression loading were found to de-twin upon subsequent reverse tension loading, likely due to the reverse glide of partial dislocations bounding the twins. The reverse loading behavior, including the twinning and de-twinning processes, was successfully simulated using a recently modified dislocation-based hardening model embedded in the visco-plastic self-consistent polycrystal framework, taking into account the dislocation accumulation/annihilation, as well as the twin barrier and back-stress effects.
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页码:1396 / 1403
页数:7
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