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Effect of Extrusion Temperature on the Plastic Deformation of an Mg-Y-Zn Alloy Containing LPSO Phase Using In Situ Neutron Diffraction

机译:挤出温度对含LPSO相的Mg-Y-Zn合金塑性变形的原位中子衍射影响

摘要

The evolution of the internal strains during in situ tension and compression tests has been measured in an MgYZn alloy containing long-period stacking ordered (LPSO) phase using neutron diffraction. The alloy was extruded at two different temperatures to study the influence of the microstructure and texture of the magnesium and the LPSO phases on the deformation mechanisms. The alloy extruded at 623 K (350 °C) exhibits a strong fiber texture with the basal plane parallel to the extrusion direction due to the presence of areas of coarse non-recrystallised grains. However, at 723 K (450 °C), the magnesium phase is fully recrystallised with grains randomly oriented. On the other hand, at the two extrusion temperatures, the LPSO phase orients their basal plane parallel to the extrusion direction. Yield stress is always slightly higher in compression than in tension. Independently on the stress sign and the extrusion temperature, the beginning of plasticity is controlled by the activation of the basal slip system in the dynamic recrystallized grains. Therefore, the elongated fiber-shaped LPSO phase which behaves as the reinforcement in a metal matrix composite is responsible for this tension–compression asymmetry.
机译:使用中子衍射,已在包含长周期堆积有序(LPSO)相的MgYZn合金中测量了在原位拉伸和压缩测试过程中内部应变的演变。在两种不同的温度下挤压合金,以研究镁的微观结构和织构以及LPSO相对变形机理的影响。由于存在未结晶的粗大晶粒区域,在623 K(350°C)下挤压的合金表现出很强的纤维织构,其底面与挤压方向平行。但是,在723 K(450°C)下,镁相完全重结晶,晶粒随机取向。另一方面,在两个挤出温度下,LPSO相的基底平面平行于挤出方向。压缩时的屈服应力总是比拉力略高。独立于应力符号和挤压温度,可塑性的开始是通过动态再结晶晶粒中基层滑移系统的激活来控制的。因此,拉长的纤维状LPSO相在金属基复合材料中起增强作用,是这种拉压不对称的原因。

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