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Phase dissolution of γ-Mg_(17)Al_(12) during homogenization of as-cast AZ80 Magnesium alloy and its effect on room temperature mechanical properties

机译:铸态AZ80镁合金均质化过程中γ-Mg_(17)Al_(12)的相溶及其对室温力学性能的影响

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As-cast AZ80 Mg alloy contains α-Mg, partially divorce eutectic of α and γ (Mg_(17)Al_(12)), fully divorce eutectic of α and γ, and lamellar eutectic of α and γ phases. During homogenization, second phase (γ-Mg_(17)Al_(12)) gets dissolved can change the mechanical properties. Therefore, the aim of the present work is to bring out the kinetics of dissolution of γ phase and evaluate its effect on mechanical properties. Microstructure evolution during homogenization was investigated as a function of time for 0.5 to 100 hand at the temperatures of 400° and 439°C. In as-cast state, this material was found to contain 70% α-Mg and 30% eutectic phase. With increasing homogenization time, dissolution of lamellar eutectic occurs first which is followed by dissolution of fully divorce eutectic and partially divorce eutectic. The dissolution kinetics of γ phase was analyzed based on the decrease in its volume fraction as a function of time. The time exponent for dissolution was found to be 0.38 and the activation energy for the dissolution of γ phase was found to be 84.1 kJ/mol. This dissolution of γ phase leads to decrease in hardness and tensile strength with increase in homogenization time.
机译:铸态AZ80 Mg合金包含α-Mg,α和γ部分离婚的共晶(Mg_(17)Al_(12)),α和γ完全离婚的共晶以及α和γ相的层状共晶。在均质化过程中,第二相(γ-Mg_(17)Al_(12))溶解会改变机械性能。因此,本发明的目的是揭示γ相的溶解动力学并评估其对机械性能的影响。研究了均质化过程中微结构在400°C和439°C温度下随时间变化(0.5至100手)的函数。在铸态下,发现该材料包含70%的α-Mg和30%的共晶相。随着均质时间的增加,层状共晶的溶解首先发生,然后是完全离婚的共晶和部分离婚的共晶的溶解。基于体积分数随时间的减少,分析了γ相的溶解动力学。发现溶解的时间指数为0.38,发现溶解γ相的活化能为84.1kJ / mol。 γ相的溶解会随着均质时间的增加而导致硬度和抗拉强度下降。

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