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Advancement in additive manufacturing numerical modelling considerations of direct energy deposition process

机译:直接能量沉积工艺在增材制造和数值建模方面的进展

摘要

The development speed and application range of the additive manufacturing (AM) processes, such as selective laser melting (SLM), laser metal deposition (LMD) or laser-engineering net shaping (LENS), are ever-increasing in modern advanced manufacturing field for rapid manufacturing, tooling repair or surface enhancement of the critical metal components. LMD is based on a kind of directed energy deposition (DED) technology which ejects a strand of metal powders into a moving molten pool caused by energy-intensive laser to finally generate the solid tracks on the workpiece surface. Accurate numerical modelling of LMD process is considered to be a big challenge due to the involvement of multiple phase changes and accompanied mass and heat flows. This paper overviewed the existing advancement of additive manufacturing, especially its sub-category relating to the DED. LMD process is analyzed in detail and subsequently broken down to facilitate the simulation of each physical stage involved in the whole process, including powder transportation and dynamics, micro-mechanical modelling, formation of deposited track and residual stress on the substrate. The proposed modelling considerations and a specific CFD model of powder feeding will assist in accurately simulating the DED process; it is particularly useful in the field of aerospace manufacturing which normally has demanding requirement on its products.
机译:增材制造(AM)工艺的发展速度和应用范围,例如选择性激光熔化(SLM),激光金属沉积(LMD)或激光工程网成形(LENS),在现代先进制造领域中日渐增长。快速制造,工具维修或关键金属部件的表面增强。 LMD基于一种定向能量沉积(DED)技术,该技术将一束金属粉末喷射到由能量密集型激光引起的移动熔池中,最终在工件表面上产生固体轨迹。由于涉及多个相变以及伴随的质量和热流,LMD过程的精确数值建模被认为是一个巨大的挑战。本文概述了增材制造的现有进展,特别是与DED相关的子类别。对LMD工艺进行了详细分析,然后对其进行分解,以便于模拟整个工艺中涉及的每个物理阶段,包括粉末传输和动力学,微机械建模,沉积轨迹的形成以及基板上的残余应力。拟议的建模考虑因素和特定的粉末进料CFD模型将有助于准确模拟DED过程;它在通常对产品有苛刻要求的航空航天制造领域特别有用。

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