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Directional solidification of TiAl-W-Si alloy by electromagnetic confinement of melt in cold crucible

机译:电磁熔体在冷坩埚中定向凝固TiAl-W-Si合金的定向凝固

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The directional solidified Ti-46Al-0.5W-0.5Si alloy with lower oxygen content has been performed successfully by electromagnetic confinement of melt within a water-cooling inductive cold crucible device. By varying the growth rate from 0.5 to 1.5 mm/min, the effects of growth rate on primary phase selection and solidification path as well as structure characteristics either in macro- or micro- scale were determined. The results reveal that the alloys will display β phase primarily when the peritectic reaction completed at a growth rate of less than 1.0 mm/min, which implies that the brittle lamellae with orientation that is perpendicular to the crystal growth direction might be disappeared accordingly. It is also found that the average columnar grain size decreased from 312 to 126 μm with increasing of the growth rate, which is in balance with the similarity of primary dendrite arm spacing (PDAS) λ decreased according to a relationship of λ ∝ V~(-0.41). Due to the oxygen content is reduced to a lower degree for individual DS sample, the oxygen stabilizing effect on yielding α phase to participate primarily seems to be retarded to some extent. Thus, by controlling the directional solidification processing with cold crucible, the gamma based fully lamellar dual-phase DS Ti-46Al-0.5W-0.5Si alloy exhibits good combi nation of tensile properties at ambient temperature, in which it yields more than 479 MPa of yield strength and as much 3.6% in maximum of fracture elongation.
机译:氧含量较低的定向凝固Ti-46Al-0.5W-0.5Si合金已通过在水冷感应冷坩埚装置中将熔体电磁限制在电磁场中而成功完成。通过将生长速率从0.5 mm / min更改为1.5 mm / min,可以确定生长速率对初级相选择和凝固路径以及宏观或微观尺度上的结构特征的影响。结果表明,当包晶反应以小于1.0 mm / min的生长速率完成时,合金将主要显示β相,这意味着与晶体生长方向垂直的取向的脆性薄片可能会消失。还发现,随着生长速率的增加,平均柱状晶粒尺寸从312μm减小到126μm,这与根据λ∝ V〜()的关系减小的初级枝晶臂间距(PDAS)λ的相似性保持平衡。 -0.41)。由于单个DS样品中的氧含量降低到较低的程度,因此对于主要参与α相生成的氧稳定作用似乎有所减弱。因此,通过使用冷坩埚控制定向凝固过程,γ基全层状双相DS Ti-46Al-0.5W-0.5Si合金在环境温度下具有良好的拉伸性能组合,屈服强度超过479 MPa屈服强度的最大值,最大断裂伸长率的3.6%。

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