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Simulation of the Laser Beam Melting Process – Approaches for an Efficient Modelling of the Beam-material Interaction

机译:激光束熔化过程的仿真-光束与材料相互作用的有效建模方法

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摘要

Currently, the main field of application of additive manufacturing processes is shifting from research laboratories to production facilities. Simulation models can foster this transition by providing support in process development and design. This paper introduces approaches to modelling the beam-material interaction in laser beam melting on a level of detail that allows the simulation of the whole build-up process of parts, not only of single laser tracks. Thus both the achievable result accuracy and the needed calculation time are discussed. For this purpose, fundamental correlations to link process characteristics with model parameters are explained. Subsequently, four modelling approaches are analysed. After an introduction of the well-known method of applying a uniform load on a whole layer compound (e.?g. [1]), the developed methods are discussed which allow modelling the beam-material interaction on a more detailed level. Thereby, the focus lies on the ability to model load gradients perpendicular to the build direction. This article is completed with a discussion of simulated temperature curves for selected monitoring points using two different modelling approaches.
机译:当前,增材制造工艺的主要应用领域是从研究实验室转移到生产设施。仿真模型可以通过在过程开发和设计中提供支持来促进这种过渡。本文介绍了一种在细节层次上对激光熔化中的光束与材料相互作用进行建模的方法,该方法可以模拟零件的整个组装过程,而不仅仅是单个激光轨道。因此,讨论了可达到的结果精度和所需的计算时间。为此,说明了将过程特征与模型参数链接起来的基本相关性。随后,分析了四种建模方法。在介绍了对整层化合物施加均匀载荷的众所周知的方法(例如[1])之后,讨论了所开发的方法,该方法可以在更详细的层次上对梁与材料的相互作用进行建模。因此,重点在于对垂直于构建方向的载荷梯度进行建模的能力。本文以讨论使用两种不同建模方法的选定监测点的模拟温度曲线作为结尾。

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