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Effect of Extrusion Ratio on Microstructure and Resulting Mechanical Properties of Mg Alloys with LPSO Phase

机译:挤出比对MG合金与LPSO相的影响及其基机械性能

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The WZ21 (Mg + 1.8 wt% Y + 0.7 wt% Zn) magnesium alloy having an addition of 0.5 wt% of CaO was extruded with different extrusion ratios (4:1, 10:1, 18:1) at 350°C. In all alloys, a long-period stacking-ordered (LPSO) phase composed of Zn and Y is formed. The microstructure was analyzed by electron backscatter diffraction (EBSD) mapping. The WZ21 alloy after extrusion with the extrusion ratio of 4:1 contains large grains. The fraction of recrystallized grains increases with increasing extrusion ratio. All samples have basal planes oriented parallel to the extrusion direction (ED) and this texture weaken with increasing extrusion ratio. Mechanical properties of the samples were investigated during compression along ED at room temperature and at a constant strain rate of 10~(-3) s~(-1). Concurrently, with the deformation tests, the acoustic emission (AE) response of the specimens was recorded. The maximum of the AE count rate in all cases corresponds to the macroscopic yield point.
机译:在350℃的不同挤出比(4:1,10:1,18:1)中挤出具有加入0.5wt%的CaO的WZ21(Mg + 1.8wt%Y + 0.7wt%Zn)镁合金。在所有合金中,形成由Zn和Y组成的长期堆叠(LPSO)相。通过电子反向散射衍射(EBSD)映射分析了微观结构。挤出后的WZ21合金,挤出比为4:1含有大颗粒。重结晶晶粒的级分随着挤出率的增加而增加。所有样品都有平行于挤出方向(ED)的基础平面,并且这种质地随着挤出比的增加而减弱。在室温下沿Ed的压​​缩期间研究样品的机械性能,并以10〜(3)S〜(-1)的恒定应变速率。同时,随着变形试验,记录样品的声学发射(AE)响应。所有情况下AE计数率的最大值对应于宏观屈服点。

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