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Mesoscale modelling of laser powder-based directed energy deposition process

机译:基于激光粉的定向能量沉积过程的Messcale建模

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Laser Powder-based Directed Energy Deposition (LP-DED) process is a cutting-edge Additive Manufacturing (AM) technology for metal part repair and production The disruptive potentialities of LP-DED are nowadays limited by the difficulty in the identification of the optimized set of process parameters,typically obtained from long and expensive experimental trials.In this work,a thermal simulation tool able to predict material deposition behaviour is developed using a finite element code.An original method is defined to model the material addition and energy flow.The forecasting capabilities of the model in terms of penetration depth and track dimensions are evaluated by comparing the numerical outcomes with experimental data.
机译:基于激光粉末的定向能量沉积(LP-DED)工艺是一种尖端添加剂制造(AM)技术,用于金属部件修复和生产LP-DED的破坏性潜力现在受到识别优化集的识别情况的限制 通常从长而昂贵的实验试验中获得的过程参数。在这项工作中,能够使用有限元码开发能够预测材料沉积行为的热仿真工具。原始方法定义为模拟材料加法和能量流量。 通过比较实验数据的数值结果来评估模型在渗透深度和轨道尺寸方面的预测能力。

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