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Microstructural Evolution During the Directional Transient Solidification of a Hypomonotectic AI-0.9wtPb Alloy

机译:次单晶AI-0.9wt%Pb合金定向瞬态凝固过程中的组织演变

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In the present study a hypomonotectic Al-0.9wt%Pb alloy was directionally solidified under transient heat flow conditions and the microstructure evolution was analyzed. The solidification thermal parameters such as the growth rate, the cooling rate and the temperature gradient were experimentally determined by cooling curves recorded by thermocouples positioned along the casting length. The monotectic structure was characterized by metallography and a microstructural transition was observed. From the casting cooled surface up to a certain position in the casting the microstructure was characterized by well-distributed Pb-rich droplets in the aluminum-rich matrix, followed by a mixture of fibers and strings of pearls from this point to the top of the casting. The interphase spacing (λ) and the diameter of Pb-rich particles were also measured along the casting length and experimental growth laws relating these microstructural features to the experimental thermal parameters are proposed.
机译:在本研究中,在瞬态热流条件下定向凝固了亚单晶Al-0.9wt%Pb合金,并分析了组织演变。凝固热参数,例如生长速率,冷却速率和温度梯度,是通过沿铸件长度方向放置的热电偶记录的冷却曲线通过实验确定的。通过金相学对单晶结构进行表征,并观察到微观结构的转变。从铸件冷却的表面到铸件中的某个位置,其微观结构的特征是在富铝基体中分布均匀的富铅液滴,然后是从此点到顶部的纤维和珍珠串的混合物。铸件。还沿铸造长度测量了相间距(λ)和富Pb颗粒的直径,并提出了将这些微观结构特征与实验热参数联系起来的实验生长规律。

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