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首页> 外文期刊>Journal of Materials Engineering and Performance >Dendritic Growth and Microstructure Evolution with Different Cooling Rates in Ti48Al2Cr2Nb Alloy
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Dendritic Growth and Microstructure Evolution with Different Cooling Rates in Ti48Al2Cr2Nb Alloy

机译:Ti48Al2Cr2Nb合金在不同冷却速率下的枝晶生长和组织演变

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摘要

The influence of cooling rates on the dendritic growth and microstructure evolution of Ti48Al2Cr2Nb alloy is studied by electromagnetic levitation combined with copper mold casting. The different cooling rates of the conical as-cast sample with diameters from 4.7 to 0.8 mm were calculated by ANSYS software. The results show that primary dendrite arm spacing decreases with increase in cooling rate. Peritectic transformation (L + beta -> alpha) and the transformation of alpha -> (alpha(2) + gamma) are restrained at cooling rate of 2.3 x 10(4) K s(-1). With further increase in cooling rate (2.6 x 10(4) K s(-1)), a fine and homogeneous microstructure can be observed in the conical casting sample with the diameter of 0.8 mm. It consists of a large amount of massive gamma phase, lath-like gamma phase, and only few lamellar structures (alpha(2) + gamma). The formation of the microstructure in the alloy is attributed to the strong chilling, giving rise to the high undercooling and the high dislocation density during rapid solidification.
机译:通过电磁悬浮结合铜铸模研究了冷却速率对Ti48Al2Cr2Nb合金枝晶生长和组织演变的影响。通过ANSYS软件计算出直径为4.7至0.8 mm的锥形铸态样品的不同冷却速率。结果表明,一次枝晶臂间距随着冷却速率的增加而减小。包晶转变(L + beta-> alpha)和alpha->(alpha(2)+γ)的转变在2.3 x 10(4)K s(-1)的冷却速率下受到抑制。随着冷却速度的进一步提高(2.6 x 10(4)K s(-1)),可以在直径为0.8 mm的圆锥形铸件中观察到精细而均匀的微观结构。它由大量块状伽马相,板条状伽马相和仅几个层状结构(alpha(2)+伽马)组成。合金中显微组织的形成归因于强烈的急冷,在快速凝固过程中产生了高的过冷度和高的位错密度。

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