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Heat transfer, fluid flow and electromagnetic model of droplets generation and melt pool behaviour for wire arc additive manufacturing

机译:电弧添加剂制造液滴生成和熔池行为的传热,流体流动和电磁模型

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摘要

In this study, a numerical model of Wire Arc Additive Manufacturing has been developed to obtain the geometry of the part as well as its temperature field from the operating parameters. This predictive model takes into account electromagnetism, fluid flow and heat transfer in the arc and the melt pool. The Lorentz forces, shear stress, arc pressure, and Joule effect are calculated. This model is developed using the COMSOL Multiphysics® software. In order to simulate the addition of layer-by-layer material and the strong topological changes, the level set interface tracking method is used. This model aims to simulate the build-up of a 304 stainless steel rod starting from the operating parameters in the case of a pulsed currents. The detachment of droplets of the deposited metal and their fall along the vertical axis are modelled to predict the geometry and the thermal history of the workpiece. The "material supply / cooling" cycles between each layer are simulated. To validate this model, the geometry and the temperature field are analysed and compared to experimental data.
机译:在该研究中,已经开发了一种线弧添加剂制造的数值模型,以获得部分的几何形状以及从操作参数的温度场。该预测模型考虑了弧和熔池中的电磁,流体流动和传热。计算洛伦兹力,剪切应力,弧压和焦耳效应。该模型是使用COMSOLMultiPhySics®软件开发的。为了模拟逐层材料的添加和强大的拓扑变化,使用电平设置界面跟踪方法。该型号旨在在脉冲电流的情况下模拟从操作参数开始的304不锈钢棒的积聚。建模沉积金属的液滴和它们沿垂直轴的掉落的分离以预测工件的几何形状和热历史。模拟每层之间的“材料供应/冷却”循环。为了验证该模型,分析几何和温度场与实验数据进行比较。

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