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Microstructural Evolution of Aluminum Alloy 2618 During Homogenization and Its Kinetic Analysis

机译:铝合金2618均质化过程中的组织演变及其动力学分析。

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The microstructure evolution of aluminum alloy 2618 and its homogenization kinetics were investigated by optical microscope, scanning electron microscope, energy dispersive spectroscopy and differential scanning calorimeter. The results show that the main constituent phases in as-cast alloy 2618 are α–Al, Al_(9)FeNi phase and non-equilibrium binary θ (Al_(2)Cu) phase instead of typical S (Al_(2)CuMg) phase. The θ phase was dissolved into α–Al gradually and the continuous dendritic-network structure was broken with the increase of homogenization temperature and time. DSC analysis shows that the overburnt and liquidus temperatures of as-cast alloy 2618 are 506.4?°C and 638.0?°C, respectively. After the alloy was homogenized at optimized temperature 500?°C for 16?h, the θ phase was completely dissolved in matrix. The size and morphology of Al_(9)FeNi phase had little change, while the liquidus temperature shifted to 641?°C. The calculated homogenization time for alloy 2618 at 500?°C is 15?h, which is in accordance with that obtained in homogenization experiments.
机译:用光学显微镜,扫描电子显微镜,能量色散光谱法和差示扫描量热仪研究了铝合金2618的组织演变及其均质动力学。结果表明,铸态合金2618的主要组成相为α–Al,Al_(9)FeNi相和非平衡二元θ(Al_(2)Cu)相,而不是典型的S(Al_(2)CuMg)相相。 θ相逐渐溶解在α-Al中,随着均质温度和时间的增加,连续的树枝状网络结构破裂。 DSC分析表明,铸态合金2618的过燃烧温度和液相线温度分别为506.4℃和638.0℃。将合金在优化温度500?C下均化16?h后,θ相完全溶解在基体中。 Al_(9)FeNi相的尺寸和形貌变化不大,而液相线温度移至641?C。合金2618在500°C下计算的均质时间为15?h,这与在均质实验中获得的时间一致。

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