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The effect of liquid metal cooling on thermal gradients in directional solidification of superalloys: Thermal analysis

机译:液态金属冷却对高温合金定向凝固中热梯度的影响:热分析

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Numerical methods were used to examine the influence of casting and baffle geometry, mold thickness as well as withdrawal speed on solidification conditions and resulting microstructure. Achievable thermal gradients, stability limits and primary dendrite arm spacings for Liquid Metal Cooling (LMC) and High Rate Solidification (HRS) process are reported. Calculations were compared with experimental results from the literature and good agreement was found. A thermal gradient almost 1.8 times higher was observed for the use of LMC in the case of simple cylindrical castings. In contrast, a thermal gradient up to three times higher was calculated with LMC compared to HRS for large section size castings. The numerical investigations indicate that the nature of the baffle has a stronger effect than the different mechanism of heat dissipation when HRS and LMC are compared.
机译:数值方法被用来检查铸件和挡板的几何形状,模具厚度以及拉拔速度对凝固条件和最终组织的影响。报告了液态金属冷却(LMC)和高速凝固(HRS)工艺可获得的热梯度,稳定性极限和主要枝晶臂间距。将计算结果与文献中的实验结果进行比较,发现吻合良好。对于简单的圆柱形铸件,使用LMC观察到的热梯度几乎高出1.8倍。相反,对于大截面尺寸的铸件,与HRS相比,LMC计算出的热梯度高出三倍。数值研究表明,当比较HRS和LMC时,折流板的性质具有比不同的散热机制更强的作用。

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