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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Unraveling the effects of Zn addition and hot extrusion process on the microstructure and mechanical properties of as-cast Mg-2Al magnesium alloy
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Unraveling the effects of Zn addition and hot extrusion process on the microstructure and mechanical properties of as-cast Mg-2Al magnesium alloy

机译:解开Zn加法和热挤出过程对铸造Mg-2镁合金微观结构和力学性能的影响

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摘要

The effects of zinc addition and hot working via extrusion process on the microstructure and mechanical properties of as-cast Mg-2Al-xZn (x = 0, 0.5, 1, 2, and 5 wt%) magnesium alloys were studied. It was revealed that the simultaneous addition of 2 wt% Al and 0.5 wt% Zn (known as AZ20 alloy) is an effective way for refining of a-Mg in the as-cast condition, which resulted in a significant enhancement of tensile properties and changing the fracture mechanism from brittle cleavage facets to fibrous appearance characterized by ductile dimples. Further addition of Zn had negligible effect on the grain size but resulted in the appearance of Mg-21(Zn,Al)(17) intermetallic known as phi-phase, where the latter resulted in the deterioration of tensile properties of as-cast ingot due to its unfavorable morphology. After extrusion process, fine and recrystallized microstructures were observed along with the fractured and dispersed second phase particles. Besides the effect of fine grain size as verified by the Hall-Petch relationship, the presence of finely dispersed particles in the ZA52 (Mg-5Zn-2Al) alloy was found to be favorable in improving the mechanical properties and tensile toughness of the extruded alloy. Based on these findings, it was recommended to use these alloys in the wrought condition.
机译:研究了锌加成和热加工通过挤出方法对铸造Mg-2al-XZN(X = 0,0.5,1,2和5wt%)镁合金的微观结构和力学性能的影响。揭示了2重量%Al和0.5wt%Zn(称为AZ20合金)的同时加入用于在铸造条件下精炼A-Mg的有效途径,这导致拉伸性能的显着增强将骨折机制从脆性切割方面改变为具有韧性凹槽的纤维外观。进一步添加Zn对晶粒尺寸的影响可忽略不计,但导致Mg-21(Zn,Al)(17)金属间金属间化合物称为Phi-阶段,其中后者导致铸锭的拉伸性能劣化由于其不利的形态。在挤出过程之后,与裂缝和分散的第二相颗粒一起观察细胞和重结晶微结构。除了通过霍尔辅助关系验证的细粒尺寸的影响外,还发现ZA52(Mg-5ZN-2AL)合金中精细分散的颗粒的存在是有利的,提高挤出合金的机械性能和拉伸韧性。基于这些发现,建议在锻造条件下使用这些合金。

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