材料科学
单剪
晶体孪晶
临界切应力
剪切(地质)
复合材料
打滑(空气动力学)
剪应力
各向同性
变形(气象学)
挤压
变形机理
各向异性
冶金
结晶学
剪切速率
微观结构
化学
热力学
光学
物理
粘度
作者
Amro H. Altoyuri,Junaidi Syarif,Zainuddin Sajuri
出处
期刊:Heliyon
[Elsevier BV]
日期:2022-11-23
卷期号:8 (12): e11837-e11837
被引量:3
标识
DOI:10.1016/j.heliyon.2022.e11837
摘要
Molecular dynamics was applied to simulate ECAP of single-crystal magnesium at room temperature. Four samples with different orientations were processed, and the grain structure, grain fragmentation, slip systems, strain, and twin formation were analyzed. The initial orientation played a substantial role in the strain and deformation experienced by the samples during both stages of deformation. Compressions initially occurred before extrusion, and simple shear occurred in the deformation zone during extrusion. The samples nucleated a {101¯2} tension twin during compression, and the tension twin grew to immediately cover the entire sample, effectively changing the orientation of the sample. Additionally, stacking faults acted as a precursor for the {101¯2} tension twin. The strain was strongly correlated with the shear factor, that is, a high shear factor resulted in low strain. Moreover, discrepancy occurred between theoretical and actual shear strain due to two factors. First, theoretical shear is considered to be simple shear occurring entirely in the deformation zone; it does not consider the shear strain due to the normal stress in the compression phase. Second, deformation is considered to be homogenous and isotropic, and it does not take into account the initial grain orientation and the anisotropic nature of magnesium.
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