首页> 外文会议>Annual international Solid Freeform Fabrication symposium >COMPUTATIONAL MODELING AND EXPERIMENTAL VALIDATION OF MELTING AND SOLIDIFICATION IN EQUIAXED SUPERALLOYS PROCESSED THROUGH SCANNING LASER EPITAXY
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COMPUTATIONAL MODELING AND EXPERIMENTAL VALIDATION OF MELTING AND SOLIDIFICATION IN EQUIAXED SUPERALLOYS PROCESSED THROUGH SCANNING LASER EPITAXY

机译:通过扫描激光表观进行的等温超级合金的熔化和凝固的计算模型和实验验证

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This paper focuses on simulation-based optimization of the Scanning Laser Epitaxy (SLE) process applied to gas turbine hot-section components made of nickel-base superalloys. SLE creates equiaxed, directionally-solidified and single-crystal microstructures from superalloy powders melted onto like-chemistry substrates using a fast scanning, high power laser beam. In this paper, a transient coupled flow-thermal approach is implemented to accurately simulate the melting and solidification process in SLE. The laser movement is modeled as a Gaussian moving heat source, and the thermophysical properties of the alloys are adjusted based on the thermal field. Simulations for different superalloys such as IN 100, Rene 80 and MAR-M247 are performed and the instantaneous melt pool characteristics are recorded. Comparisons of the simulations with experimental results show reasonably good agreement for the melt depth. Feedback control is implemented, and demonstrated to produce superior quality SLE deposits. This work is sponsored by the ONR through grants N00014-11-1-0670 and N00014-14-1-0658.
机译:本文着重于基于模拟的扫描激光外延(SLE)工艺的优化,该工艺适用于由镍基高温合金制成的燃气轮机热截面部件。 SLE使用快速扫描的高功率激光束,通过将熔融的超合金粉末熔化到化学成分相同的基体上,形成等轴,定向凝固的单晶微结构。在本文中,采用瞬态耦合流热方法来精确模拟SLE中的熔化和凝固过程。将激光运动建模为高斯运动热源,并根据热场调整合金的热物理性质。对不同的高温合金(例如IN 100,Rene 80和MAR-M247)进行仿真,并记录瞬时熔池特性。仿真结果与实验结果的比较表明,熔体深度相当吻合。实施了反馈控制,并证明了该方法可产生优质的SLE沉积物。这项工作是由ONR通过赠款N00014-11-1-0670和N00014-14-1-0658赞助的。

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