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Effect of microstructural variables on tensile behaviour of A356 cast aluminium alloy

机译:微观结构变量对A356铸造铝合金拉伸性能的影响

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摘要

The effects of microstructural variables, including secondary dendrite arm spacing (SDAS), the size of primary α phase, the aspect ratio of eutectic Si particle and the thickness of eutectic wall structure, on tensile behaviour of A356 cast aluminium alloy, were quantitatively identified using linear regression analysis method. For systematic microstructural control of A356 specimen, directional solidification method was used with different solidification rates of 5, 25, 50 and 100 μm s−1 respectively. The linear regression analysis suggests that each microstructural variable affects tensile strength and tensile elongation of A356 cast aluminium alloy in a similar fashion. The change in tensile behaviour with varying microstructural variables in A356 cast aluminium alloy is discussed based on fractographic and micrographic observations.
机译:定量确定了二次枝晶臂间距(SDAS),初生α相大小,共晶Si颗粒的长径比和共晶壁结构厚度等微观结构变量对A356铸造铝合金拉伸性能的影响。线性回归分析方法。为了对A356试样进行系统的微结构控制,采用定向凝固法,凝固速率分别为5、25、50和100μms -1 。线性回归分析表明,每个微观结构变量都以相似的方式影响A356铸造铝合金的拉伸强度和拉伸伸长率。基于分形和显微观察,讨论了A356铸造铝合金中具有变化的微观结构变量的拉伸行为的变化。

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