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首页> 外文期刊>Materials & design >Meso-scale modeling of multiple-layer fabrication process in Selective Electron Beam Melting: Inter-layer/track voids formation
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Meso-scale modeling of multiple-layer fabrication process in Selective Electron Beam Melting: Inter-layer/track voids formation

机译:选择性电子束熔化中多层制造过程的中尺度建模:层间/轨道空隙的形成

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摘要

Selective Electron Beam Melting (SEBM) is a promising powder-based metallic Additive Manufacturing (AM) technology. However, most powder-scale modeling efforts are limited to single track process, while it is also difficult to experimentally observe the interaction between tracks and layers. In this study, we develop an integrated modeling framework to investigate the SEBM process of multiple tracks and multiple layers. This approach consists of a Discrete Element model of powder spreading and a Computational Fluid Dynamics (CFD) model of powder melting. These two models exchange 3D geometrical data as a cycle to reproduce the manufacturing process of multiple tracks along various scan paths in multiple powder layers. This integrated modeling approach enables further understanding of how current tracks and layers interact with previous ones leading to inter-track/layer voids. It also incorporates more influential factors, particularly the layer-wise scan strategy. The inter-layer/track voids due to the lack of fusion are systematically discussed in light of our simulation results which qualitatively agree with experimental observations in literature. (c) 2017 Elsevier Ltd. All rights reserved.
机译:选择性电子束熔化(SEBM)是一种有前途的基于粉末的金属增材制造(AM)技术。但是,大多数粉末级建模工作仅限于单轨道过程,同时也很难通过实验观察轨道与层之间的相互作用。在这项研究中,我们开发了一个集成的建模框架来研究多轨道和多层的SEBM过程。该方法由粉末散布的离散元素模型和粉末熔融的计算流体动力学(CFD)模型组成。这两个模型以循环的形式交换3D几何数据,以重现沿着多个粉末层中各种扫描路径的多个轨道的制造过程。这种集成的建模方法可以进一步了解当前的轨迹和图层如何与先前的轨迹和图层交互,从而导致轨迹间/图层空隙。它还结合了更多的影响因素,尤其是逐层扫描策略。根据我们的模拟结果,系统地讨论了由于缺乏融合而导致的层间/轨道空隙,这在质量上与文献中的实验观察相符。 (c)2017 Elsevier Ltd.保留所有权利。

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