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Castability and Recrystallization Behavior of γ'-Strengthened Co-Base Superalloys

机译:γ'加强的巩固基础超合金的铸造和再结晶行为

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Casting of single-crystalline superalloys is known to be difficult due to a variety of challenges. Co-based superalloys, however, promise to show quite good castability compared to Ni-based superalloys, as documented in this manuscript. Therefore, an alloy series, which is designed by changing only the Co-to-Ni ratio, is used to address this topic. In addition to the casting behavior, segregation and recrystallization behavior were also investigated, since these are closely related to casting challenges. It was found that in the as-cast state, all alloying elements distribute more homogeneously in the Co-rich alloys which is beneficial for casting. Casting of directionally solidified tubes revealed that the Co-rich alloys show a lower susceptibility to hot tearing and predominantly develop cold cracks. Since cold cracking can be addressed by component design, Co-base superalloys are suggested to show a better castability compared to Ni-based superalloys. Recrystallization, however, is more pronounced for the Co-rich alloys. This might become a problem during casting of single-crystalline Co-base components, if high deformation is introduced in the solidified component.
机译:已知由于各种挑战,已知单晶高级合金的铸造是困难的。然而,与本手稿中的文档相关的基于基于Ni的超合金相比,Co-inuldalloys承诺展示了相当良好的铸造性。因此,通过仅改变CO-NI比率来解决这一主题而设计的合金系列。除了铸造行为外,还研究了偏析和重结晶行为,因为这些与铸造挑战密切相关。发现,在铸造状态下,所有合金元素在有利于铸造的共聚合金中均匀地分布。铸造定向凝固的管道表明,共质合金对热撕裂的敏感性较低,主要发育冷裂纹。由于组件设计可以解决冷裂纹,因此建议与Ni基超合金相比显示出更好的铸造性。然而,重结晶对于共聚合金更为显着。如果在固化组分中引入高变形,这可能成为铸造单晶的基础组分期间的问题。

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