首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >A Study on Activation Algorithm of Finite Elements for Three-Dimensional Transient Heat Transfer Analysis of Directed Energy Deposition Process
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A Study on Activation Algorithm of Finite Elements for Three-Dimensional Transient Heat Transfer Analysis of Directed Energy Deposition Process

机译:定向能量沉积过程三维瞬态传热分析有限元激活算法研究

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摘要

Heat transfer finite element analysis (FEA) for directed energy deposition (DED) process is crucial to properly estimate the residual stress in the additive manufactured part. The material deposition of the DED process is generally simulated by activation of finite elements. However, the activation algorithm of inactive finite elements is complicated. Besides, existing element activation algorithm is not suitable for highly focused energy source. In order to overcome these discrepancies, an inactive element activation algorithm with two-element cross section has been proposed for simulating a DED process using a high intensity laser heat flux. The nodal temperature during the element activation has been evaluated. The proposed algorithm has been implemented into the heat transfer FEAs for multilayer and planar depositions to investigate the applicability of the proposed algorithm. Finally, the results of FEAs using the proposed algorithm have been compared to those of commercial software SYSWELD.
机译:用于定向能量沉积(DED)工艺的传热有限元分析(FEA)至关重要,以适当地估计添加剂制造部件中的残余应力。通常通过有限元的激活来模拟DED工艺的材料沉积。但是,非活动有限元的激活算法复杂。此外,现有元素激活算法不适用于高度聚焦的能源。为了克服这些差异,已经提出了一种使用高强度激光热通量模拟DED过程的具有双元横截面的非活动元素激活算法。已经评估了元素活化期间的节点温度。该算法已经实现成用于多层和平面沉积的传热批量,以研究所提出的算法的适用性。最后,使用了使用该算法的FEA的结果与商业软件Sysweld的结果进行了比较。

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