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Simulation of Laser-assisted Directed Energy Deposition of Aluminum Powder: Prediction of Geometry and Temperature Evolution

机译:铝粉激光辅助定向能量沉积的模拟:几何形状和温度演变的预测

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摘要

One of the main current challenges in the field of additive manufacturing and directed energy deposition of metals, is the need for simulation tools to prevent or reduce the need to adopt a trial-and-error approach to find the optimum processing conditions. A valuable help is offered by numerical simulation, although setting-up and validating a reliable model is challenging, due to many issues related to the laser source, the interaction with the feeding metal, the evolution of the material properties and the boundary conditions. Indeed, many attempts have been reported in the literature, although some issues are usually simplified or neglected. Therefore, this paper is aimed at building a comprehensive numerical model for the process of laser-assisted deposition. Namely: the geometry of the deposited metal is investigated in advance and the most effective reference shape is found to feed the simulation as a function of the governing factors for single- and multi-track, multi-layer deposition; then, a non-stationary thermal model is proposed and the underlying hypotheses to simulate the addition of metal are discussed step-by-step. Validation is eventually conducted, based on experimental evidence. Aluminum alloy 2024 is chosen as feeding metal and substrate.
机译:当前在金属的增材制造和定向能量沉积领域中的主要挑战之一是需要仿真工具,以防止或减少采用反复试验的方法来找到最佳加工条件的需求。尽管由于与激光源,与进料金属的相互作用,材料特性的演变和边界条件有关的许多问题,建立和验证可靠的模型仍具有挑战性,但数值模拟可以提供有价值的帮助。确实,尽管一些问题通常被简化或忽略了,但文献中已经报道了许多尝试。因此,本文旨在为激光辅助沉积过程建立一个综合的数值模型。即:预先研究了沉积金属的几何形状,发现了最有效的参考形状,作为单道和多道多层沉积的控制因素的函数来进行模拟;然后,提出了一个非稳态热模型,并逐步讨论了模拟金属添加的基本假设。最后根据实验证据进行验证。选择铝合金2024作为进料金属和基底。

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