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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of local cooling rates on the microstructures of single crystal CMSX-6 superalloy: A comparative assessment of the Bridgman and the downward directional solidification processes
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Effect of local cooling rates on the microstructures of single crystal CMSX-6 superalloy: A comparative assessment of the Bridgman and the downward directional solidification processes

机译:局部冷却速率对单晶CMSX-6高温合金显微组织的影响:对Bridgman和向下凝固过程的比较评估

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Single-crystal nickel-based CMSX-6 superalloy rods were directionally solidified at a constant withdrawal rate by employing a novel directional solidification process—the downward directional solidification process and the Bridgman process. For the rods cast using both processes, the local cooling rates were measured at the 5.5 cm and 12.5 cm locations between the solidification front and the chill end. With an increasing distance from the chill, the cooling rate varied from 1.21 to 1.08 K/s giving a change in the rate of 10.74% in the novel process. In contrast to this, the cooling rates in the Bridgman process varied from 0.15 to 0.08 K/s giving a change in the rate of 46.67%. The microstructural evolution was comparatively investigated for the two processes as a function of the cooling rates. In comparison to the Bridgman process, refined γ dendrite structures, smaller size of γ/γ' eutectic island, refined γ' precipitates in the dendritic core and a smaller average size of microporosities were observed in both locations of the rods cast by using the novel process. In addition to this, the variations of the primary and secondary dendrite arm spacings, the size of γ/γ' eutectic island, and the size of 7' precipitates in the dendrite core were smaller than those in the Bridgman process with increasing the distance from 5.5 cm to 12.5 cm. This indicates that the downward directional solidification process can cast a rod possessing more homogeneous microstructures. Moreover in comparison to the Bridgman process, the majority of the micropores have smaller diameters and both the variation in the maximum size of microporosity as well as the average diameter of these micropores located between positions near to the chill end and the distant end were smaller in the rods cast by using the novel process; the opposite is found in the Bridgman process.
机译:通过采用新颖的定向凝固工艺(向下定向凝固工艺和Bridgman工艺),以恒定的抽出速率定向凝固单晶镍基CMSX-6高温合金棒。对于使用这两种方法铸造的棒材,在凝固前沿和冷却端之间的5.5 cm和12.5 cm位置测量了局部冷却速率。随着距冷源距离的增加,冷却速度从1.21到1.08 K / s变化,从而使新型工艺的速度变化了10.74%。与此相反,Bridgman工艺中的冷却速率从0.15到0.08 K / s不等,变化率为46.67%。相对于冷却速率的函数,对这两个过程的微观结构演变进行了比较研究。与Bridgman工艺相比,在使用这种新型铸造棒的两个位置上均观察到精制的γ枝晶结构,较小的γ/γ'共晶岛尺寸,树枝状核心中的精制γ'沉淀物和较小的平均微孔尺寸处理。除此之外,随着距离Bridgman过程的距离增加,一次和二次枝晶臂间距,γ/γ'共晶岛的大小以及7'析出物在树枝状核中的变化都小于Bridgman过程中的变化。 5.5厘米至12.5厘米。这表明向下凝固过程可以铸造具有更均匀的微观结构的棒。此外,与Bridgman方法相比,大多数微孔的直径较小,并且微孔最大尺寸的变化以及位于靠近冷端和远端的位置之间的这些微孔的平均直径均较小。采用新颖工艺铸造的棒;在Bridgman过程中发现了相反的情况。

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