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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Directional Solidification and Microsegregation in a Magnesium-Aluminum-Calcium Alloy
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Directional Solidification and Microsegregation in a Magnesium-Aluminum-Calcium Alloy

机译:镁铝钙合金中的定向凝固和微偏析

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Creep-resistant Mg-4Al-4Ca (AX44) alloy was solidified under different growth/cooling rates using a directional solidification (DS) technique. The solidification behavior and microsegregation of the alloying elements in the castings was investigated. Computational thermodynamics calculations of phase equilibria and experimental observations confirm that the solidification microstructure in this alloy consists of a-Mg, C36-(Mg,Al)_2Ca, and C14-Mg_2Ca phases. A relationship was established between the primary dendrite arm spacing and the cooling rate, which can be used to predict mechanical properties such as yield strength and creep. The microsegregation of alloying elements (Al and Ca) predicted by the Scheil model in AX44 agrees well with the electron probe microanalysis (EPMA) measurements, suggesting that the Scheil model can be used in microstructure simulation of magnesium castings.
机译:使用定向凝固(DS)技术在不同的生长/冷却速率下凝固了抗蠕变Mg-4Al-4Ca(AX44)合金。研究了合金元素在铸件中的凝固行为和微观偏析。相平衡的计算热力学计算和实验观察证实,该合金的凝固组织由α-Mg,C36-(Mg,Al)_2Ca和C14-Mg_2Ca相组成。在初级枝晶臂间距与冷却速率之间建立了关系,该关系可用于预测机械性能,例如屈服强度和蠕变。由Scheil模型在AX44中预测的合金元素(Al和Ca)的微观偏析与电子探针微分析(EPMA)测量非常吻合,这表明Scheil模型可用于镁铸件的微观结构模拟。

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