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Dendrite growth simulation during solidification in the LENS process

机译:在LENS工艺中模拟凝固过程中的枝晶生长

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摘要

A two-dimensional model combining the finite element method and the cellular automaton technique was developed to simulate dendritic growth occurring in the molten pool during the laser-engineered net shaping (LENS) process. Based on the simulation results and previously published experimental data, empirical expressions describing the relationship between the cooling rate and the dendrite arm spacing (DAS) were proposed. In addition, the influence of LENS process parameters, such as the moving speed of the laser beam, the layer thickness and the substrate size, on the DAS was also discussed. Finally, different dendrite morphol-ogies calculated at different locations were explained based on local solidification conditions. The simulation results showed good agreement with previously published experiments. This work contributes to the understanding of microstructure formation and the resulting mechanical properties of LENS-built parts as well as providing a fundamental basis for optimization of the LENS process.
机译:建立了有限元法和元胞自动机技术相结合的二维模型,模拟了激光工程净成形(LENS)过程中熔池中发生的树枝状生长。基于仿真结果和已有的实验数据,提出了描述冷却速率与枝晶臂间距(DAS)之间关系的经验表达式。此外,还讨论了激光束移动速度、层厚和基板尺寸等LENS工艺参数对DAS的影响。最后,基于局部凝固条件,对不同位置计算的不同枝晶形态进行了解释。仿真结果与先前发表的实验结果吻合较好。这项工作有助于理解LENS制造零件的微观结构形成和由此产生的机械性能,并为优化LENS工艺提供基本基础。

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