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Addition of Holmium and Erbium and Hot-Rolling Effects on the Microstructure and Mechanical Properties of Mg-Li Based Alloys

机译:添加钬和铒和热轧作用对Mg-Li基合金的微观结构和力学性能

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Magnesium-Lithium Rare Earth based alloys being ultra-light and strong offer suitability for wide industrial applications. This is because they form stable strengthening phases and activate extra deformation modes under optimized conditions. Effects of introducing Holmium (Ho) and Erbium (Er) elements in Mg-8Li-3Al alloy followed subsequently by aging and hot-rolling deformation were studied. The alloys microstructure morphology was examined using scanning electron microscope (SEM) and energy dispersive spectroscopy (XEDS). Phase analysis depicted the presence of both α-and β-phases alongside intermetallic compounds. Mechanical tensile test results showed increased Yield Strength (YS) and Ultimate Tensile Strength (UTS) on introduction of rare earth elements with optimized thermo-mechanical treatment. The as-cast Mg-8Li-3Al alloy exhibited an elongation of 9.5%. Thermo-mechanically treated Mg-8Li-3Al-3Er and Mg-8Li-3Al-3Ho alloys exhibited an increased optimal elongation of 19.1 and 21.4% respectively. Synergistic effects of adding Holmium and Erbium elements, with aging and hot-rolling deformation enhanced the alloys mechanical properties through work hardening and solution strengthening mechanisms.
机译:镁 - 锂稀土基合金是超轻的,适用于宽工业应用的强大。这是因为它们形成稳定的强化阶段,并在优化条件下激活额外的变形模式。研究了钬(HO)和铒(ER)元件在Mg-8Li-3al合金中的影响,随后通过老化和热轧制变形遵循。使用扫描电子显微镜(SEM)和能量分散光谱(XEDs)检查合金微观结构形态。相分析描绘了伴随金属化合物的α-β-相的存在。机械拉伸试验结果表明,在稀土元素引入具有优化热机械处理的稀土元素的屈服强度(YS)和最终拉伸强度(UTS)增加。铸造Mg-8Li-3al合金伸长为9.5%。热机械处理的Mg-8LI-3AL-31er和Mg-8LI-3AL-3HO合金分别显示出19.1和21.4%的最佳伸长率。添加钬和铒元素的协同​​作用,具有老化和热轧制变形,通过工作硬化和溶液强化机制增强了合金机械性能。

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