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An Investigation on Microstructure Texture and Mechanical Properties of AZ80 Mg Alloy Processed by Annular Channel Angular Extrusion

机译:环形通道角挤压加工AZ80镁合金的组织织构和力学性能的研究

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摘要

Annular channel angular extrusion has been recently developed as a new single-pass severe plastic deformation method suitable for producing large size cup-shaped parts from cylindrical billets. In this study, the novel technology was successfully applied to commercial AZ80 Mg alloy at 300 °C, and microstructure, texture evolution, and mechanical properties were investigated. Due to severe shear deformation, the initial microstructure, including the coarse grains and large eutectic β-phases, was greatly refined. The strong basal texture formed during the initial deformation stage was modified into a weak tilted dynamic texture. During the deformation process, fine β-particles separated from eutectic phases effectively hindered the grain boundary migration and rotation, enhancing the grain refinement and texture weakening. More than 63% of the microhardness increase was achieved in this extruded part. Also, tensile tests showed the yield strength and elongation in both directions (transverse and longitudinal) of extruded part were improved more than 2.5 times, and the ultimate tensile strength was improved more than 2 times, compared to the initial material state. The improved material properties were mainly attributed to microstructure (grain and phase) refinement and texture weakening. It was demonstrated that the annular channel angular extrusion process can be considered as a novel and effective single-pass severe plastic deformation method.
机译:环形通道角挤压是最近开发的一种新的单次严重塑性变形方法,适用于从圆柱形坯料生产大尺寸杯形零件。在这项研究中,该新技术已成功应用于300°C的商用AZ80 Mg合金,并研究了其微观结构,织构演变和力学性能。由于严重的剪切变形,初始的微观组织,包括粗大晶粒和大的共晶β相,被大大地细化了。在初始变形阶段形成的强基础纹理被修改为弱倾斜的动态纹理。在变形过程中,从共晶相中分离出的细小β粒子有效地阻碍了晶界的迁移和旋转,增强了晶粒的细化和组织的弱化。在该挤出部件中实现了超过63%的显微硬度增加。此外,拉伸试验表明,与初始材料状态相比,挤压件的两个方向(横向和纵向)的屈服强度和伸长率提高了2.5倍以上,极限拉伸强度提高了2倍以上。改善的材料性能主要归因于微观结构(晶粒和相)的细化和织构的减弱。结果表明,环形通道角挤压工艺可以被认为是一种新颖有效的单程严重塑性变形方法。

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