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Overview of modelling and simulation of metal powder bed fusion process at Lawrence Livermore National Laboratory

机译:劳伦斯·利弗莫尔国家实验室的金属粉末床熔融过程建模和仿真概述

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摘要

The metal laser powder bed fusion additive manufacturing process uses high power lasers to build parts layer upon layer by melting fine metal powders. Qualification of parts produced using this technology is broadly recognised as a significant challenge. Physics based process models have been identified as being foundational to qualification of additively manufactured metal parts. In the present article, a multiscale modelling strategy is described that will serve as the foundation upon which process control and part qualification can be built. This includes a model at the scale of the powder that simulates single track/single multilayer builds and provides powder bed and melt pool thermal data. A second model computationally builds a complete part and predicts manufactured properties (residual stress, dimensional accuracy) in three dimensions. Modelling is tied to experiment through data mining.
机译:金属激光粉末床熔融增材制造工艺使用高功率激光器通过熔化精细的金属粉末来逐层构建零件。使用此技术生产的零件的质量被广泛认为是一项重大挑战。基于物理的过程模型已被确定为增材制造金属零件合格鉴定的基础。在本文中,描述了一种多尺度建模策略,它将作为可建立过程控制和零件鉴定的基础。这包括一个粉末规模的模型,该模型可以模拟单道/单层多层结构,并提供粉末床和熔池热数据。第二个模型以计算方式构建完整的零件,并预测三维尺寸的制造属性(残余应力,尺寸精度)。通过数据挖掘将建模与实验联系在一起。

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