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Discrete element modeling of particle-based additive manufacturing processes

机译:基于粒子的增材制造过程的离散元素建模

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A critical element for the design, characterization, and certification of materials and products produced by additive manufacturing processes is the ability to accurately and efficiently model the associated materials and processes. This is necessary for tailoring these processes to endow the associated products with proper geometrical and functional features. In an effort to address these needs in a computationally elegant and at the same time physically realistic manner, this paper presents the development of a methodology for simulating particle-based additive manufacturing processes, which employs the Discrete Element Method (DEM) extended to incorporate thermal physics. The details of the DEM-based methodology are presented first and the approach is demonstrated on a pair of test problems involving laser sintering of metal powders. The paper concludes with a discussion on how this approach may be generalized to broader classes of additive manufacturing systems, and details are given regarding future work necessary to further develop the present methodology. Published by Elsevier B.V.
机译:对由增材制造过程生产的材料和产品进行设计,表征和认证的关键要素是准确,有效地对相关材料和过程进行建模的能力。这对于定制这些过程以赋予关联产品适当的几何和功能特征是必要的。为了以一种计算优雅的方式同时满足物理现实的方式来满足这些需求,本文提出了一种模拟基于粒子的增材制造过程的方法的开发方法,该方法采用了离散元素方法(DEM),将其扩展为包含热能。物理。首先介绍基于DEM的方法的详细信息,并在涉及金属粉末激光烧结的一对测试问题上论证该方法。本文最后讨论了如何将该方法推广到更广泛的增材制造系统类别,并给出了有关进一步发展本方法学的未来工作的详细信息。由Elsevier B.V.发布

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