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Characterization and kinetic modeling of secondary phases in squeeze cast Al alloy A380 by DSC thermal analysis

机译:DSC热分析表征挤压铸造铝合金A380中的第二相和动力学模型

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摘要

Thermal analyses on squeeze cast aluminum alloy A380 (SC A380) solidified under 90 MPa were carried out to study the microstructure development of the alloy, in which a differential scanning calorimeter (DSC) was employed. During the DSC runs, heating and cooling rates of 1, 3, 10, and 20 °C?min-1 were applied to investigate the heating and cooling effects on dissolution of secondary eutectic phases and microstructure evolution. Various reactions corresponding to troughs and peaks of the DSC curves were identified as corresponding to phase transformations taking place during dissolution or precipitation suggested by the principles of thermodynamics and kinetics. The comparison of the identified characteristic temperatures in the measured heating and cooling curves are generally in good agreement with the computed equilibrium temperatures. The microstructure analyses by scanning electron microscopy (SEM) with energy dispersive X-ray spectroscopy (EDS) indicate that the distribution and morphology of secondary phases present in the microstructure of the annealed sample are similar to the as-cast A380, i.e., strip β(Si), buck bone like or dot distributed θ(Al2Cu), β(Al5FeSi) and Al15(FeMn)3Si2. Two kinetic methods are employed to calculate the activation energies of the three common troughs and three common peaks in DSC curves of SC A380. The activation energies of the identified reaction θCuAl2 = α(Al)+β(Si) is 188.7 and 187.1 kJ?mol-1 when the activation energies of reaction α(Al)+β(Si)→θCuAl2 is -122.7 and -121.8 kJ?mol-1, by the Kissinger and Starink methods, respectively.
机译:对在90 MPa下凝固的挤压铸造铝合金A380(SC A380)进行了热分析,以研究采用差示扫描量热仪(DSC)的合金的显微组织发展。在DSC运行期间,采用1、3、10和20°C?min-1的加热和冷却速率来研究加热和冷却对次级共晶相溶解和微观组织演变的影响。根据热力学和动力学原理,确定了与DSC曲线的波谷和峰相对应的各种反应,其与在溶解或沉淀期间发生的相变相对应。在测量的加热和冷却曲线中识别出的特征温度的比较通常与计算出的平衡温度非常吻合。通过扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDS)进行的微观结构分析表明,退火样品的微观结构中存在的次级相的分布和形态与铸态A380相似,即,带钢β (Si),块状或点状分布θ(Al2Cu),β(Al5FeSi)和Al15(FeMn)3Si2。采用两种动力学方法来计算SC A380的DSC曲线中三个共同谷和三个共同峰的活化能。当反应α(Al)+β(Si)→θCuAl2的活化能为-122.7和-121.8时,确定的反应θCuAl2=α(Al)+β(Si)的活化能为188.7和187.1 kJ?mol-1。 kJ?mol-1,分别通过Kissinger和Starink方法。

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