首页> 外文会议>2012 International Conference on Engineering and Technology. >Numerical study of the influence of mold filling conditions on the as-cast structure of Al-4 wt. Cu ingots
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Numerical study of the influence of mold filling conditions on the as-cast structure of Al-4 wt. Cu ingots

机译:模具填充条件对Al-4 wt%Cu铸锭铸态结构影响的数值研究

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In the last few decades research efforts were conducted to grasp good understanding about the origin of equiaxed and columnar grains formed during solidification. The morphological evolutions such as globular/cellular to dendritic or columnar-to-equiaxed transition were generally studied. Correspondingly, some empirical models were introduced. Nevertheless, no sufficient attention was paid to incorporation of such models together with macroscopic phenomena. A 5-phase mixed columnar-equiaxed solidification model recently proposed by the current authors was used to predict the macrostructure formation. However previous results showed that the initial melt conditions can influence the predicted structure particularly at low pouring temperature. In the current work, the impact of mold filling conditions on the final solidification structure is numerically verified in two stages: during pouring using 3-phase globular-equiaxed model; and after filling using the 5-phase mixed columnar-equiaxed model. The calculated results are compared to the as-cast structures obtained from experiments. The results demonstrated the significance of the ‘big bang’ nucleation and the ‘premature’ solidification occurred during pouring at low melt superheat on the as-cast structure.
机译:在过去的几十年中,人们进行了研究工作,以更好地了解凝固过程中形成的等轴和柱状晶粒的起源。通常研究了形态演变,例如从球状/细胞状到树突状或从柱状到等轴状的转变。相应地,引入了一些经验模型。然而,对于这种模型与宏观现象的结合并没有给予足够的重视。当前作者最近提出的五相混合柱状均等凝固模型用于预测宏观结构的形成。然而,先前的结果表明,初始熔融条件会影响预测的结构,特别是在低浇铸温度下。在当前工作中,分两个阶段在数值上验证了模具填充条件对最终凝固组织的影响:在浇注过程中使用三相球状等距模型;并在填充后使用5相混合柱状平衡模型。将计算结果与通过实验获得的铸态结构进行比较。结果证明了“大爆炸”形核和“过早”凝固在铸态结构上以低熔点过热浇注时发生的重要性。

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