An efficient temperature-dependent crystal plasticity framework for pure magnesium with emphasis on the competition between slip and twinning
Author:
Funder
Army Research Laboratory
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference85 articles.
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3. Solid solution strengthening of magnesium single crystals-ii the effect of solute on the ease of prismatic slip;Akhtar;Acta Metall.,1969
4. Orientation dependent slip and twinning during compression and tension of strongly textured magnesium AZ31 alloy;Al-Samman;Mater. Sci. Eng. A,2010
5. Temperature dependence of deformation behavior in magnesium and magnesium alloy single crystals;Ando,2007
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1. A computational mechanical constitutive modeling method based on thermally-activated microstructural evolution and strengthening mechanisms;International Journal of Plasticity;2024-02
2. Understanding the basal texture initiation in a randomly-oriented AZ31B alloy during cold-rolling;Journal of Magnesium and Alloys;2024-01
3. A multiphase-field approach to small strain crystal plasticity accounting for balance equations on singular surfaces;Computational Mechanics;2023-10-04
4. Texture Evolution and Tension-Compression Asymmetry of an Az31 Magnesium Alloy in Cyclic Extrusion and Compression: Experiment and Polycrystal Plasticity Simulation;2023
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