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Microstructural correlation with tensile and creep properties of AZ91 alloy in three casting techniques

机译:三种铸造技术中AZ91合金拉伸和蠕变性能的微观结构相关性

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摘要

The relationships among microstructure, tensile and creep behaviour of the AZ91 Mg alloy produced by three different casting techniques have been investigated. All the as-cast alloys consist of primary Mg (alpha-Mg) and beta-Mg17Al12 phases. The volume fraction of beta-Mg17Al12 phase is the highest in the gravity casting (GC), intermediate in the squeeze-casting (SC) and the lowest in the high-pressure die-casting (HPDC). The best tensile properties are exhibited by the SC alloy at all the temperatures employed in the present investigation owing to the presence of negligible porosity and relatively finer grain size. Fracture surfaces of the broken tensile specimens reveal the quasi-cleavage fracture. The best and the worst creep resistance are exhibited by the SC and HPDC alloys respectively with the GC alloy exhibiting the intermediate creep resistance. The inferior creep resistance of the HPDC alloy is attributed to the presence of a higher amount of porosity that allows easy crack initiation and growth during creep tests. On the contrary, the negligible porosity and continuous network of eutectic phase contributes to the superior creep resistance of the SC alloy.
机译:研究了三种不同铸造技术产生的AZ91mg合金的微观结构,拉伸和蠕变行为的关系。所有的铸造合金由伯镁(α-Mg)和β-Mg17Al12阶段组成。 β-Mg17A12相的体积分数是重力铸造(GC)中的最高,挤压浇注(SC)中间体,高压压铸(HPDC)中的最低。由于存在可忽略的孔隙率和相对更细粒尺寸的存在,通过本研究中使用的所有温度所示的最佳拉伸性能。破碎的拉伸标本的断裂表面显示了准切割骨折。 SC和HPDC合金的最佳和最差的蠕变性分别与表现出中间蠕变抗性的GC合金。 HPDC合金的较差抗蠕变性归因于存在较高量的孔隙率,其允许在蠕变试验期间容易地开采和生长。相反,共晶相的可忽略孔隙率和连续网络有助于SC合金的较高抗蠕变性。

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