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Comparisons of microstructures and texture and mechanical properties of magnesium alloy fabricated by compound extrusion and direct extrusion

机译:复合挤压和直接挤压镁合金的组织,织构和力学性能比较

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摘要

In this study, microstructure evolution, textures and mechanical properties of AZ61 magnesium alloy were investigated by optical microscopy (OM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and tensile tests. The samples were processed by a new compound extrusion (CE) which combines direct extrusion (DE) and two steps of equal channel anger extrusion (ECAE). The results show that CE process can refine the microstructure more effectively than the DE process. The CE-fabricated samples have a weaker texture (0002), and a more fine and homogeneous microstructures, which attributes to the additional two steps of ECAE in CE process. In CE process, twin dynamic recrystallization and rotational dynamic recrystallization occurred, which enhances the refinement of the grains and weakening of the texture. In addition, the samples fabricated by CE process display a higher tensile properties (yield strength, tensile strength and elongation) with an excellent balance of strength and tensile ductility. Based on this study, severe plastic deformation (SPD) techniques combining conventional DE and two steps ECAE into a single process are feasibility to improve the mechanical properties of AZ61 Mg alloy.
机译:在这项研究中,通过光学显微镜(OM),扫描电子显微镜(SEM),透射电子显微镜(TEM)和拉伸试验研究了AZ61镁合金的组织演变,织构和力学性能。样品通过新的复合挤压(CE)处理,该挤压结合了直接挤压(DE)和两步等通道激怒挤压(ECAE)。结果表明,CE工艺比DE工艺可以更有效地细化微观结构。使用CE制成的样品质地较弱(0002),并且具有更精细和均匀的微观结构,这归因于CE过程中ECAE的额外两个步骤。在CE工艺中,发生了双动态再结晶和旋转动态再结晶,这增强了晶粒的细化并减弱了织构。另外,通过CE工艺制造的样品显示出较高的拉伸性能(屈服强度,拉伸强度和伸长率)以及强度和拉伸延展性的优异平衡。根据这项研究,将常规DE和两步ECAE结合到一个过程中的严重塑性变形(SPD)技术对于改善AZ61 Mg合金的机械性能是可行的。

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