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Application of Finite Element Phase-field and CALPHAD-based Methods to Additive Manufacturing of Ni-based Superalloys

机译:有限元相场和CALPHAD方法在镍基高温合金增材制造中的应用

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摘要

Numerical simulations are used in this work to investigate aspects of microstructure and microseg-regation during rapid solidification of a Ni-based superalloy in a laser powder bed fusion additive manufacturing process. Thermal modeling by finite element analysis simulates the laser melt pool, with surface temperatures in agreement with in situ thermographic measurements on Inconel 625. Geometric and thermal features of the simulated melt pools are extracted and used in subsequent mesoscale simulations. Solidification in the melt pool is simulated on two length scales. For the multicomponent alloy Inconel 625, microsegregation between dendrite arms is calculated using the Scheil-Gulliver solidification model and DICTRA software. Phase-field simulations, using Ni–Nb as a binary analogue to Inconel 625, produced microstructures with primary cellular/dendritic arm spacings in agreement with measured spacings in experimentally observed microstructures and a lesser extent of microsegregation than predicted by DICTRA simulations. The composition profiles are used to compare thermodynamic driving forces for nucleation against experimentally observed precipitates identified by electron and X-ray diffraction analyses. Our analysis lists the precipitates that may form from FCC phase of enriched interdendritic compositions and compares these against experimentally observed phases from 1 h heat treatments at two temperatures: stress relief at 1143 K (870 °C) or homogenization at 1423 K (1150 °C).
机译:在这项工作中使用数值模拟来研究激光粉末床熔融添加剂制造过程中镍基高温合金快速凝固过程中的微观结构和微段调节方面。通过有限元分析进行的热建模可以模拟激光熔池,其表面温度与Inconel 625上的现场热成像测量结果相符。提取出模拟熔池的几何和热特征,并将其用于后续的中尺度模拟。在两个长度范围内模拟熔池中的凝固。对于多组分合金Inconel 625,使用Scheil-Gulliver凝固模型和DICTRA软件计算枝晶臂之间的微偏析。相场模拟使用Ni-Nb作为Inconel 625的二元模拟物,产生的微结构具有主要的细胞/树突状臂间距,与实验观察到的微结构中测得的间距一致,并且微偏析程度低于DICTRA模拟所预测的程度。成分分布用于将成核的热力学驱动力与通过电子和X射线衍射分析鉴定的实验观察到的沉淀物进行比较。我们的分析列出了可能由富集的树突状组合物的FCC相形成的沉淀物,并将其与在两种温度下1h热处理的实验观察到的相进行了比较:在1143 K(870°C)时的应力释放或在1423 K(1150°C)时的均质化)。

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